ALLTEC Surge Suppression Catalog

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Global Leaders in the design, manufacture, and installation of lightning dissipation, grounding, and surge protection systems Solution Providers for an Energized World TM

Transcript of ALLTEC Surge Suppression Catalog

Page 1: ALLTEC Surge Suppression Catalog

Global Leaders in the design, manufac ture, and insta l lat ion of l ightning diss ipat ion, grounding,and surge protec t ion systems

S u r g e S u p p r e S S i o nequipment Catalog

Solut ion Providers for an Energized World TM

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ALLTEC ® Surge Suppression Equipment Catalog All Rights Reserved. No part of this publication may be reproduced, stored in a retrieval system, or transmitted in any form by any means (electronic, mechanical, recording, or otherwise), without the express written permission of ALLTEC Corporation. ALLTEC Corporation is constantly seeking to improve our products, specifications are subject to change at anytime. Please note that every effort was taken to maintain accuracy in this publication; however, ALLTEC Corporation assumes no responsibility for any errors that may occur.

Introduction

Company OverviewSince 1991 ALLTEC Corporation has proven itself a global leader in the design, manufacture, and installation

of grounding systems, surge suppression and lightning protection. As “Solution Providers for an Energized

World™,” we offer a comprehensive facility approach to solving the world’s most difficult lightning and power

quality issues. Based on vast experience and reputation, we have installed systems on thousands of government,

commercial, historical, industrial, and residential properties. Our technical and consulting services are utilized

by many Fortune 500 companies around the world. ALLTEC’s project managers and engineers work with your

company to implement the best, most cost effective solution.

VisionOur vision is to be the world’s most dynamic lightning protection & power quality company, crafting unsurpassed

solutions to better the safety and productivity of people and businesses everywhere. Our core objective is

to be paramount in the quality of our products and services. We aim to create a diverse, vibrant and creative

corporate environment, with customer needs as our central business focus. We strive continuously for a globally

recognized excellence and work to advance and improve industry standards.

MissionOur mission is to exceed the expectations of our customers by aspiring to the highest level of excellence in

our products and services. We accomplish this by committing our shared resources and knowledge to achieve

superior customer satisfaction.

MethodologyThe ALLTEC Protection Pyramid™ provides a three-step comprehensive facility approach for lightning protection,

surge suppression and grounding solutions. Our system begins with the installation of a code compliant,

single-point, low resistance/low impedance grounding system, sized to carry the full amplitude of short circuit

current safely to the ground. Next, surge protection devices are staged to dramatically filter the voltage, current

and frequency surges. Finally, a well designed lightning protection system is created to protect against direct

lightning strikes.

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Alltec Corporation64 Catalyst Drive Canton,

North Carolina, USA 28716TEL: +1 828.646.9290 / FAX: +1 828.646.9527 / URL: www.allteccorp.com / EMAIL: [email protected]

Products

I. Grounding SystemsThe three-step ALLTEC Protection Pyramid™ begins with the installation of a stable, low resistance/low

impedance grounding system to bond all electrically conductive surfaces together.

TerraDyne® Electrolytic Grounding System•

TerraFill® Ground Enhancement Material•

TerraBar® Bus Bar Series•

TerraWeld® Exothermic Welding System•

II. Surge SuppressionThe second stage of protection comes from a properly installed surge protection device or SPD system, which

reduces the magnitude of random, high energy, short duration electrical power anomalies. These occurrences

are typically caused by atmospheric phenomena (such as lightning strikes), utility switching, inductive loads,

and more internally generated over-voltages. In response to this demand, ALLTEC offers:

PowerTrip® line of surge suppression products•

III. Lightning ProtectionFinally, a well-designed customized lightning protection system will be installed to safeguard facilities from direct

lightning strikes. Traditional lightning protection methods as well as some of the most advanced technologies

are available at ALLTEC Corporation:

TerraStat® Charge Dissipation Terminals•

TerraStreamer® Early Streamer Emission Terminals•

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Alltec Corporation64 Catalyst Drive Canton,

North Carolina, USA 28716TEL: +1 828.646.9290 / FAX: +1 828.646.9527 / URL: www.allteccorp.com / EMAIL: [email protected]

Services

Manufacturing Capabilities & Quality Assurance

ManufacturingALLTEC Corporation is committed to excellence. We ensure our customers the highest caliber of services and

products through our continual investment, testing, and evaluation of our products. Our corporate office and

manufacturing facility is nestled in the Blue Ridge Mountains of North Carolina, which is centrally located

between two of the largest metropolitan areas in the Southeastern United States. Our production facility is

furnished with state-of-the-art equipment, which enables us to produce an extensive line of products while

adhering to rigid design and quality standards. We use only the finest materials to construct our products. You

can be assured that if it’s made by ALLTEC, it’s quality.

QualityIt is ALLTEC’s policy to strive to meet or exceed customer expectations. Our quality systems and processes are

continually being improved to satisfy our customers’ changing needs. ALLTEC’s ISO 9001:2000 quality certification

and focus on Six Sigma ensures its customers receive superior quality products. We have implemented rigorous

quality systems and testing to ensure our continued success. Internal management systems have been designed

to monitor and maintain quality at all levels of service and production.

At ALLTEC Corporation quality and customer service form the foundation of our business. Our process begins

with diligent quality control inspections during the manufacturing process and continues with step-by-step

inspections throughout the entire order filling and shipping process. This calculated and controlled environment

ensures that each shipment contains exactly what was ordered, is packaged correctly, and shipped efficiently

from ALLTEC to the customer on time. We use only first-class distributors to assist in the process and have

ultimately created a comprehensive global network. ALLTEC is committed to creating and maintaining powerful

customer relationships, and we look forward to serving you for many years to come.

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Alltec Corporation64 Catalyst Drive Canton,

North Carolina, USA 28716TEL: +1 828.646.9290 / FAX: +1 828.646.9527 / URL: www.allteccorp.com / EMAIL: [email protected]

General Information

Ability to ServeALLTEC Corporation has the capability to design, manufacture, and install any lightning protection or grounding

system you may require. Our complete engineering facilities are prepared to assist you with any special or

unusual requirements.

Claims & ShortagesPlease be aware that ALLTEC Corporation assumes no liability for any damage to goods in shipment. All materials

must be inspected upon receipt BEFORE signing for acceptance of shipment. Once you have signed the bill of

lading accepting shipment, you are acknowledging that you have received the shipment in full and with no

damage. Any damages or shortages need to be noted on the bill of lading before signing and immediately file

a claim with the delivering transportation company. It is our policy that any claims for shortages or errors must

be made within 24 hours after receipt of goods. Any error on our part will be taken care of promptly and at no

cost to you the customer. Any shortages found and reported more than 24 hours after shipment acceptance

will not be replaced free of charge.

International CustomersOur exporting policy is available upon request. This policy may vary slightly, depending upon the receiving

country and its Customs procedures. ALLTEC Corporation offers all of our engineering and design services

worldwide.

Documentation & Wire Transfer FeesALLTEC Corporation charges standard customary fees for obtaining and processing documents for overseas

shipments. Any wire transfer or bank fees are the responsibility of the customer and will be included in the price

quotation supplied before the shipment leaves our warehouse.

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Alltec Corporation64 Catalyst Drive Canton,

North Carolina, USA 28716TEL: +1 828.646.9290 / FAX: +1 828.646.9527 / URL: www.allteccorp.com / EMAIL: [email protected]

Terms and Conditions

1. Definitions“Seller” means ALLTEC Corporation; “Buyer” means the company, person or other entity who is the purchaser of

the Goods; “Goods” means any goods or materials ordered and sold pursuant to the terms and conditions set

forth herein.

2. PriceUnless otherwise stated, price of the Goods shall be the price in effect at the date and time of shipment. Seller

reserves the right to adjust price based on volume purchases; any discounts allowed for volume purchases

will be in the Seller’s sole discretion. Price does not include any sales, use, excise or similar taxes which shall

be added to the price of the Goods and shall be the responsibility of Buyer. Unless otherwise stated, minimum

order is $125.00 (excluding freight) on any single order. Each shipment will be separately invoiced.

3. Payments TermsTerms of payment are net thirty (30) days. Service charge on late payments shall be applicable at the rate of one

and one-half percent (1.5%) per month or an annual percentage rate of eighteen (18%) per annum. In addition,

Buyer shall be obligated for Seller’s reasonable collection agency or attorneys’ fees that may be incurred by

Seller to collect any sums due Seller hereunder or service charge. Seller reserves the right to apply any payments

received from Buyer to any outstanding invoice of Seller in Seller’s sole discretion.

4. FreightThe purchase price of the Goods shall be EXWORKS, Canton, NC or other named shipping point. In situations

of “prepay and add” ALLTEC is unable to provide a copy of the actual freight bill due to agreements with our

carriers regarding rate disclosure confidentiality.

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Alltec Corporation64 Catalyst Drive Canton,

North Carolina, USA 28716TEL: +1 828.646.9290 / FAX: +1 828.646.9527 / URL: www.allteccorp.com / EMAIL: [email protected]

Terms and Conditions

5. Delivery(a) Seller’s place and point of delivery shall be deemed to be delivery to a carrier at Seller’s plant in Canton,

NC, or such other designated shipping point designated by Seller. If Buyer fails to furnish complete

shipping directions to Seller within a reasonable time of placing the order, Seller, in Seller’s discretion,

may make necessary shipping arrangements with a carrier selected by Seller, the cost of which shall be

paid by Buyer.

(b) If and to the extent a delivery date is stated, it is the estimated delivery date only. All accepted orders,

whether or not delivery dates are specified thereon, shall be subject to delays or failures in manufacture

or delivery due to causes beyond the control of Seller or carrier. Buyer’s obligations shall continue

notwithstanding any delay in delivery, provided if performance by Seller is prevented in whole or in

part for a period of three (3) consecutive months, then in such event Seller or Buyer (provided Buyer is

not responsible for the delay) may cancel any order that has not been shipped as of such date.

(c) If Buyer is unable for any reason to accept delivery of the Goods according to the mutually established

schedule, Seller at its option and after three (3) days written notice to Buyer may place the Goods in

storage, in which event Buyer shall pay any and all storage or other related costs. If Buyer fails to accept

any delivery or part thereof, then Seller may at its option treat such failure as a breach of this Agreement

and exercise any and all remedies available to it pursuant to the terms and conditions set forth herein

or available to it as a matter of law.

6. CreditSeller’s obligations are at all times subject to Seller’s approval of Buyer’s credit standing. Upon request, Buyer

shall furnish Seller such credit information as may be customary and as may be reasonably requested by Seller.

Seller, at its discretion, reserves the right to require payment in advance or C.O.D. and/or otherwise modify credit

terms. If at any time Buyer is past due with respect to amounts due Seller, Seller at its option (without liability or

prejudice to any other remedies), may decline to ship, or stop any Goods in transit, until such time Seller receives

payment in full of all amounts owing to it by Buyer or otherwise receives assurances satisfactory to Seller of such

payment.

7. Risk of LossRisk of loss or damage to the Goods shall be solely that of Buyer upon delivery to a carrier for shipment; any loss

or damage subsequent to such delivery shall not be the responsibility of Seller, provided further any such loss

shall not release Buyer from Buyer’s obligation to pay for the Goods. Any claim for damage or loss in transit must

be asserted by Buyer against the carrier.

8. WarrantySeller warrants that the Goods will conform to the description stated herein subject to tolerances and variations

consistent with current trade practices, testing and inspections methods. Seller makes no other warranties

hereunder, expressed or implied. Seller specifically disclaims any implied warranties of merchantability or fitness

for a particular purpose.

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Alltec Corporation64 Catalyst Drive Canton,

North Carolina, USA 28716TEL: +1 828.646.9290 / FAX: +1 828.646.9527 / URL: www.allteccorp.com / EMAIL: [email protected]

Terms and Conditions

9. Claims(a) Buyer shall inspect the Goods immediately upon receipt. Any claim that the Goods have been damaged

or otherwise do not conform must be made to Seller in writing within ten (10) days of receipt of such

Goods by Buyer. All claims for defective or non-conforming Goods must be submitted in writing to

ALLTEC Corporation, accompanied with a copy of the signed bill-of-lading noting the damage/

shortages, and any other information (photos, etc) supporting your claim. 64 Catalyst Drive, Canton, NC

28716. In the absence of such notice, the Goods shall be deemed to be accepted by Buyer.

(b) With respect to any valid claims properly submitted hereunder, Buyer’s exclusive remedy and Seller’s

sole liability shall be limited to Seller repairing or replacing Goods that do not conform to specifications,

or at Seller’s sole option refunding the purchase price of the Goods. In no event shall Seller have any

liability to damages in connection with the sale of the Goods in an amount exceeding the purchase

price of the Goods sold. Seller shall have no liability for any consequential, special or indirect damages.

(c) Claims for quantity deviations or unit pricing errors are deemed waived unless submitted in writing

within thirty (30) days of notice of invoice.

10. QuotationsQuotations, based on plans and specifications, are Seller’s interpretation of the requirements and include only

the material described and listed on the quotation unless otherwise stated. Quotations will be in writing and

unless otherwise specified will remain in effect for a period of thirty (30) days from issue date. Formal written

purchase orders for work covered by any quotation submitted must be received within forty-five (45) days from

the date of quotation. Prices and inventory classifications are subject to changes without notice, and are those

in effect at the time of shipment.

11. ErrorsALLTEC reserves the right to correct at any and all times any errors and omissions relating to any component or

item upon which a purchase order may be based, including, but not limited to, clerical or stenographic errors or

omissions as may relate to quotations, price, catalog and other materials supplied by ALLTEC, or other terms and

conditions as reasonably determined by Seller.

12. ReturnsGoods may be returned for credit upon request and upon Seller’s approval for return authorization. Any returned

items are subject to reasonable restocking charges which unless otherwise agreed to by Seller shall be deemed

to be twenty-five percent (25%) of the price of the Goods returned. Any returned items must be in saleable

condition, in the original standard packages, and conform to current catalog descriptions. All returned material

is to be shipped to seller freight prepaid.

Unless otherwise stated, these terms and conditions govern the purchase and sale of the Goods. All terms and

conditions, including price, are subject to change without notice as to any Goods not shipped as of the effective

date of such change.

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Alltec Corporation64 Catalyst Drive Canton,

North Carolina, USA 28716TEL: +1 828.646.9290 / FAX: +1 828.646.9527 / URL: www.allteccorp.com / EMAIL: [email protected]

Terms and Conditions

13. CancellationOrders received and accepted by Seller may not be cancelled or changed subsequent to delivery, prior to that

date such orders received and accepted by Seller with the written permission of Seller. Any cancellation or

change shall be subject to applicable charges for labor, material, and other costs actually incurred by Seller.

14. Seller’s RemediesIf Buyer cancels this Agreement prior to shipment for any reason, without Seller’s consent, Buyer shall pay Seller

for all costs and expenses incurred by Seller, including the cost of all work executed or performed; any special

engineering costs and commitments made by Seller prior to the time of cancellation; and all other incidental

and storage costs incurred prior to resale.

15. Binding NatureThese terms and conditions shall be binding upon the parties hereto, their successors and assigns.

16. AuthorityAny person, employee or agent otherwise acting on behalf of Buyer hereunder shall be deemed to have full

authority to act on behalf of Buyer which Seller may rely on exclusively without further inquiry.

17. Governing LawThis Agreement shall be construed in accordance with and governed by laws of the state of North Carolina.

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1Surge Protective Devices

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Section 1.1Introduction

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Surge Protective Devices (SPD)

PowerTriP ®Introduction

Surge Protective Devices (SPD)Alltec Corporation provides a wide selection of Surge Protective Device(SPD)s. For details, refer to the chart below. NOTE: VRC: Voltage Responsive Circuitry, FRC: Frequency Responsive Circuitry

AC & DC Power Models

Series ModelsPeak Surge Current

kA/PhaseType Warranty pg.

PTMPTM-320PTM-240PTM-160

320 kA240 kA160 kA

Medium Voltage

2-1

PTV

PTV-360PTV-300PTV-240PTV-180PTV-120PTV-090

360 kA300 kA240 kA180 kA120 kA90 kA

VRC 2-5

PTF

PTF-360PTF-300PTF-240PTF-180PTF-120PTF-090

360 kA300 kA240 kA180 kA120 kA90 kA

FRC 2-9

PTC

PTC-300PTC-240PTC-180PTC-120PTC-060

300 kA240 kA180 kA120 kA60 kA

FRC 2-13

PTA-V

PTA-V160PTA-V120PTA-V090PTA-V060PTA-V030

160 kA120 kA90 kA50 kA30 kA

VRC 2-17

PTA-F

PTA-F160PTA-F120PTA-F090PTA-F060PTA-F030

160 kA120 kA90 kA60 kA30 kA

FRC 2-21

PTRPTR-120PTR-080PTR-040

120 kA80 kA40 kA

FRC 2-25

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Section 1.1 Introduction

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Series ModelsPeak Surge Current

kA/PhaseType Warranty pg.

PTTPTT-100PTT-060PTT-030

100 kA60 kA30 kA

VRC 2-29

PTP-V PTP-VW (Wire) 60 kA VRC 2-33

PTY-V - 120 kA VRC 2-37

PTY-F - 120 kA FRC 2-41

PTS-VPTS-VT (Terminal)

PTS-VW (Wire)60 kA VRC 2-45

PTS-V (DC)PTS-VTXXXDC (Terminal)

PTS-VWXXXDC (Wire)20 kA (15 Amp)

& 40 kA (30 Amp)VRC 2-49

PTS-FPTS-FT (Terminal)

PTS-FW (Wire)60 kA FRC 2-53

PTS-F (DC)PTS-FTXXXDC (Terminal)

PTS-FWXXXDC (Wire)13 kA FRC 2-57

PTE-FPTE-FT (Terminal)

PTE-FW (Wire)20 kA FRC 2-61

PTE-F (DC)PTE-FTXXXDC-x (Terminal)

PTE-FWXXXDC-x (Wire)20 kA FRC 2-65

Data & Telecom Models

Models Type Warranty pg.

AAK Rack Mount Surge Protection 3-2

ATJ Inline Surge Protection 3-4

ASP Data line Surge Protection 3-6

AIP Subminiature D interface Surge Protection 3-8

ACP Coax Surge Protection 3-10

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2Surge Protective Devices

AC & DC Power Models

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Section 2.1

PTM Series

Medium VoltageThe PowerTrip® PTM series medium voltage secondary arrester is specifically designed for heavy duty applications that require protection from high energy transients. Demanding industries such as chemical and pharmaceutical, water and waste treatment facilities, mining, petroleum refineries, pulp and paper, as well as other automated, heavy commercial or industrial manufacturing plants can benefit. The PTM series can be installed where it is needed the most, at the service entrance, distribution panel and individual equipment for an essential part of your equipment protection/reliability plan.

General

Protected Modes: Directly connected/Bidirectional, True, ALL Mode (Normal & Common Mode) suppression componentry

Technology: Field proven, Multi-parallelized, Thermally Fused, All solid-state, Bipolar, Auto-restoring, MOV suppression arrays

Withstand: High Energy Exposure ANSI/IEEE C62.41.1 & .2-2002 “C3” (20 kV x 10 kA), Location/Category Rating

Connection Means: 5 ft (60 in) of #6 AWG, 5 kV cable, 4 conductors: LA, LB, LC & Ground

Mechanical Interface: 2” diameter threaded hub & external mounting flanges

Environmental: NEMA 12 (Standard), 4, 4X, Steel & Stainless (XS) enclosures (Optional)

Standard Size: 16” x 14” x 6”, (80 kA) 30” x 20” x 6” (120/160 kA)

Weight: Weight is determined by models and options

Peak Surge Capacity:80 kA/Mode (160 kA/Phase PSC L-L, L-G)120 kA/Mode (240 kA/Phase PSC L-L, L-G)160 kA/Mode (320 kA/Phase PSC L-L, L-G)

Protection Ranges: 1 kV to 4.2 kV in seven model voltage ranges

Frequency: 47 – 420 Hz. (60 Hz. typical.)

Interrupt Means: 30 Amp. Ferraz A055F1D0R0-30E line fusing required; (see model Installation Instructions)

Applications: Multiple ANSI/IEEE C62.41.2 Location (Category A, B & C) & high energy suppression uses

KEY FEATURESDiscrete “All Mode” Circuitry: Directly •Connected Protection Elements in “All Modes” (6 modes for 3 phase Delta circuits) as recommend by NEMA LS-1 and IEEE Std. 1100-1999

5 Year Free Replacement Warranty•

Circuit Encapsulation•

Multistage, Voltage Responsive Circuitry•

Variety of enclosure types•

Service Entrance, Distribution, And •Individual Equipment protection

Special order options available•

ISO 9001-2000 Manufactured Quality•

Temperature Range: -40 °C to +80 °C (-40 °F to +176 °F)

% RH : 0 – 100% (non-condensing)

Manufacturer & Product Qualifications: ISO 9001-2000

Assurance: All models electrically quality checked at factory

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Medium VoltageSection 2.1

Section 2.1

Medium Voltage

MODEL PTM-XXX VOLTAGE PERFORMANCE AND ELECTRICAL SPECIFICATIONS

Model NumberXXX = 160/240/320

Nominal Operating VoltagesMaximum Continuous Operating

Voltage

PTM-XXX-3N1000 Up to 1,000 Vrms 1,300 Vrms

PTM-XXX-3N1500 Up to 1,500 Vrms 1,850 Vrms

PTM-XXX-3N2000 Up to 2,000 Vrms 2,550 Vrms

PTM-XXX-3N2500 Up to 2,500 Vrms 3,000 Vrms

PTM-XXX-3N3000 Up to 3,000 Vrms 3,750 Vrms

PTM-XXX-3N3500 Up to 3,500 Vrms 4,550 Vrms

PTM-XXX-3N4160 Up to 4,160 Vrms 5,200 Vrms

Part Numbering SystemExample: PTM-160-3N1000-F

PTM - 160 - 3N1000 - F

(1) Model

-(2) Peak Surge Current

per Phase (kA)320, 240, 160

-(3) Voltage Code

3N1000, 3N1500, 3N2000, 3N2500, 3N3000, 3N3500, 3N4160,

-(4) Option

See the Option Suffixes

Enclosure DimensionsStandard Model Fused Option

Inches (mm) 160 kA 240/320 kA Inches (mm) 160 kA 240/320 kA

A 16 (406) 30 (762) A 48 (1219) 60 (1524)

B 14 (356) 20 (508) B 30 (762) 36 (914)

C 6 (152) 6 (152) C 11 (280) 12 (305)

B

C

A

Option Code SuffixesM NEMA 12 MetalW NEMA 4 SteelXS 4X Stainless Steel

X NEMA 4X CompositeE1 Hub, wires out side of enclosureF Fuses, Holders, Enclosure (NEMA 12)*Other options may be available upon request.

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Medium Voltage PTM Series - Disconnect Switch

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Section 2.1

PTM Series - Disconnect Switch

Medium VoltageThe PowerTrip® medium voltage disconnect switch is specifically designed for heavy duty applications. These units provide a means whereby medium voltage surge protective devices can be cleared from the distribution system allowing for system service without unscheduled down time.

General

Description: Heavy Duty, Medium Voltage Controller which can be coordinated into a wide range of electrical distribution systems.

Application: Fused Overcurrent Protection for Medium Voltage Surge Protective Device

Applications Withstand: High Energy Exposure ANSI/IEEE C62.41.1 & .2-2002 “C3” (20 kV x 10 kA) Location/Category Rating

Enclosure: NEMA 12/3R rated steel, powder coated (stainless steel, optional)

Mounting: Outside enclosure is mounted using the external mounting feet provided. The protection module is integrated with the enclosure.

Connection Method: #6 AWG, 5 kV cable, 4 conductors: LA, LB, LC & Ground

System Connections: Use crimps as necessary

Weight: 500+ lbs

Operating Temperature: -40 °F to 160 °F (-40 °C to + 70 °C)

Relative Humidity Range: 0-100% Non-condensing

Diagnostics: Indicators, one per phase, normally on

Nominal Current Rating: 400 Amps Continuous

Maximum Voltage Rating: 5 kV

Switch Current Rating: 42 kA fault make – 2.4 kA fault break

Interrupt Means: 30 A. Ferraz A055F1D0R0-30E line fusing; rated at 63,000AIC

Operating Frequency: 50-60 Hz

Circuit Interrupt: Integral fusing – one per phase

KEY FEATURESEngineered to Specific Medium Voltage •Application

Clear Door for Visual Observation of •Disconnect

Highly Customizable•

Individual Fuses – one per phase•

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PTM Series - Disconnect Switch

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Medium VoltageSection 2.1

Section 2.1

MODEL PTM-XXX Disconnected SwitchVOLTAGE PERFORMANCE AND ELECTRICAL SPECIFICATIONS

Model NumberXXX = 160/240/320

Nominal Operating VoltagesMaximum Continuous Operating

Voltage

PTM-XXX-3N1000D1F Up to 1,000 Vrms 1,300 Vrms

PTM-XXX-3N1500D1F Up to 1,500 Vrms 1,850 Vrms

PTM-XXX-3N2000D1F Up to 2,000 Vrms 2,550 Vrms

PTM-XXX-3N2500D1F Up to 2,500 Vrms 3,000 Vrms

PTM-XXX-3N3000D1F Up to 3,000 Vrms 3,750 Vrms

PTM-XXX-3N3500D1F Up to 3,500 Vrms 4,550 Vrms

PTM-XXX-3N4160D1F Up to 4,160 Vrms 5,200 Vrms

Enclosure Dimensions

Part Numbering SystemExample: PTM-160-3N1000D1F

PTM - 160 - 3N1000 - D1F

(1) Model -(2) Peak Surge Current

per Phase (kA)320, 240, 160

-(3) Voltage Code

3N1000, 3N1500, 3N2000, 3N2500, 3N3000, 3N3500, 3N4160,

- (4) Option Code

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PTV Series

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Voltage Responsive Circuitry Section 2.2

Section 2.2

PTV Series

Voltage Responsive CircuitryThe PowerTrip® PTV series has a response time of less than one nanosecond while having a short circuit rating of 200 kA per circuit. This device is robust enough to handle external high energy surges from such events as lightning and utility switching as well as transients generated from inside the facility. Whether located at the service entrance or distribution panels, the PTV series is designed to suppress the constant bombardment of transients that damage valuable equipment and operations.

Peak surge capacity ratings from 90 kA to 360 kA per phase allow the devices to be located where the protection is needed. Intended for sensitive and critical load applications at the main distribution panel, branch panels, motor control centers, VFD applications and individual equipment disconnects. With the lowest let-through voltage in the industry for a unit of this type, combined with a 25 year warranty, the PTV series offers protection and reliability.

PTV-360360 kA/phase120 kA/mode

PTV-300300 kA/phase100 kA/mode

PTV-240240 kA/phase80 kA/mode

Particularly suited for applications with a high level of exposure and mission-critical computer controlled equipment and systems:

Industrial Power Generation and •Substation FacilitiesManufacturing Facilities•Oil & Gas Refineries and Off-shore •PlatformsGovernment and Defense Bases of •OperationsLarge Data Centers•Airports and Transportation Hubs•

Exposure Category “C” Uses:Outside and including service •entrance equipmentBetween Meter and Service entrance •equipmentOverhead line to detached building•Underground line to a well, pump or •other outdoor electrical equipment

Industrial and commercial services: High ampacity service entrances•Distribution panels•Main disconnects to provide robust •protection from severe lightning surges and transients

PTV-180180 kA/phase60 kA/mode

PTV-120120 kA/phase40 kA/mode

PTV-09090 kA/phase30 kA/mode

Ideal for application environments that depend on reliable operations of their computer systems and networks for their day to day operations, such as:

Small Businesses•Office Buildings•Banks•Retail Stores•Restaurants•Gas Stations and Fuel Depots•Office Complexes•School Campuses•Churches, etc. •

Exposure category “B” Uses:Service entrance equipment located •inside a facility, feeder circuits and short branch circuitsDistribution panel boards and •devicesBusways and feeders in industrial •plantsHeavy appliance outlets with short •connections to the service entrance equipmentLighting systems in large buildings or •facilities

Light Industrial, Commercial and Residential services:

Sub-panels within a large commercial •facility, or for smaller service entrances Protection of mid to upper level •residential applications, in particular smart homes or homes with above average computer networks or home entertainment systems.

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Voltage Responsive CircuitrySection 2.2

Section 2.2

Voltage Responsive Circuitry

GeneralIEEE–C62.41.1 & C62.41.2-2002 environments: Suitable for Categories: A, B & C (Most Severe Electrical Environments)

IEC Environments: Suitable for use in IEC 61643-11 environments

Circuit Topology: Parallel configured Voltage Responsive Circuitry design incorporating component-level, thermal fusing and Patented internal, circuit board mounted, over-current fusing; and Discrete “All Mode” Protection (10 modes for 3 phase Wye units). All protection circuits are encapsulated in our high dielectric compound to promote long component life and protection from the weather and vibration.

Protection Modes: Industry-best practice of true all mode dedicated protection components for all operational modes of the electrical system. Discrete L-N, L-L (Normal Mode) and L-G, N-G (Common Mode) Example: Directly Connected Protection Elements in All 10 modes for a 3 phase, 4 wire, Wye system, (i.e. 3 L-N modes, 3 L-L modes, 3 L-G modes and 1 N-G mode).

Input Power: 50-400 Hz (60 Hz nominal)

Temperature Rating: Up to 176 °F (80 °C)

Standard Enclosure: 360 kA: NEMA 12 rated, painted steel enclosure, 90 - 300 kA: NEMA 4X Rated (Other enclosure options available on pg. 2-8.)

Diagnostics: Green LED’s, one per phase, normally on. A wide range of optional diagnostics is available (see pg. 2-8 for details).

Circuit Interrupt: Internal component-level, thermal fusing and patented circuit board mounted, over-current fusing.

Short Circuit Current Rating: 200 kAIC

Product Qualifications: Listed to UL1449 2nd Edition (Feb. 9, 2007 Rev.) by CSA and UL, an NRTL, CSA MC#241804, UL1283 and CE Compliant, ISO 9001 Certified Manufacturing Facility

Warranty: 25 years Unlimited Free Replacement

KEY FEATURESDiscrete “All Mode” Circuitry: Directly •Connected Protection Elements in “All Modes” (10 modes for 3 phase Wye circuits) as recommended by NEMA LS-1 and IEEE Std. 1100-2005

Industry Leading Measured Limiting •Voltage (let-through) Performance

UL 1283 EMI/RFI Parallel Configured Voltage •Response Circuitry

Local & Remote Diagnostics•

Independent Verification of Performance •and Safety

Component-Level, Thermal Fusing•

Patented Internal, Circuit Board Mounted, •Over-Current Fusing

Part Numbering SystemExample: PTV-360-1S1-C

PTV - 360 - 1S1 - C

(1) Model -(2) Peak Surge Current

per Phase (kA)360, 300, 240, 180, 120, 090

-(3) Voltage Code

See the Voltage Code Chart-

(4) OptionSee the Option Suffixes

LISTED 1449Second Edition

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Voltage Responsive Circuitry Section 2.2

Section 2.2

MODEL PTV-XXX VOLTAGE PERFORMANCE AND ELECTRICAL SPECIFICATIONS

Model Circuit Type MCOV

ANSI/IEEE C62.41.1 & .2-2002 and C62.45-2002Let-through Voltage Test Results

(tested w/6” lead length external to the enclosure per UL 1449)

TestMode

Cat A30 Ω 100 kHz

Ring Wave 6 kV 200 A@ 90° Phase Angle

Cat B2 Ω Impulse Wave

6 kV / 3 kA@ 90° Phase Angle

Cat C2 Ω Impulse Wave

20 kV / 10 kA@ 90° Phase Angle

PTV-XXX-1S1 120/240 V, 1Ø (Split) (3 wire + ground)

150 V300 V150 V150 V

L-NL-LL-GN-G

295 V444 V296 V570 V

393 V566 V374 V668 V

914 V1,119 V1,025 V1,176 V

PTV-XXX-3Y1 120/208 V, 3Ø Wye (4 wire + ground)

150 V300 V150 V150 V

L-NL-LL-GN-G

295 V444 V296 V570 V

393 V566 V374 V668 V

914 V1,119 V1,025 V1,176 V

PTV-XXX-3D1120/240 V 3Ø

High-Leg Delta (4 wire + ground)

150 V320 V300 V150 V320 V150 V

L-NHi-L-N

L-LL-G

Hi-L-GN-G

295 V429 V444 V596 V420 V570 V

393 V529 V566 V374 V533 V668 V

914 V1,066 V1,119 V1,025 V1,262 V1,176 V

PTV-XXX-3Y2 277/480 V, 3Ø Wye (4 wire + ground)

320 V550 V320 V320 V

L-NL-LL-GN-G

429 V689 V420 V833 V

529 V785 V533 V

1,025 V

1,066 V1,456 V1,262 V1,575 V

PTV-XXX-3N2 240 V, 3Ø Delta (NN) (3 wire + ground)

320 V320 V

L-LL-G

420 V420 V

533 V533 V

1,262 V1,262 V

PTV-XXX-3N4 480 V, 3Ø Delta (NN) (3 wire + ground)

550 V550 V

L-LL-G

689 V689 V

785 V785 V

1,456 V1,456 V

Let-through Voltage Test Parameters: Positive Polarity, Net voltages are peak (±10%). All tests are static except 150 V MCOV modes. Let-through voltages on static tests calculated by subtracting sinewave peak from let-through measured from zero. 150 V MCOV mode let-through voltages measured from the insertion point on the sinewave. Each phase is the average of the 3 modes. In order to duplicate the results, the specified mode must be tested for all three phases (except N-G) and averaged together. (Individual mode or shot results may vary by more than 10%. Scope Settings: Time Base = 10 microseconds, Sampling Rate = 500 Megasamples/sec. These settings assure Let-through voltages test results are accurate). All tests performed with 6” lead length (external to the enclosure), simulating actual installed performance.

Surge Current Testing: Single-pulse surge current testing for all modes at rated currents as recommended by NEMA LS1-1992. Single pulse surge current capacities of 200,000 amps or less are determined by testing all suppression components within each mode as a group. Present industry test equipment limitations require testing of individual suppression components or subassemblies within a mode for single-pulse surge capacities over 200,000 amps.

VOLTAGE CODE

Voltage Code Nominal System Voltage # of Phases Neutral Ground

1P1 Single Phase 120 1 1 1

1P22 Single Phase 220 1 1 1

1P23 Single Phase 230 1 1 1

1P2 Single Phase 240 1 1 1

1S1 Split Phase 120/240 2 1 1

1S2 Split Phase 240/480 2 1 1

3Y1 Wye 120/208 3 1 1

3Y2 Wye 277/480 3 1 1

3Y22 Wye 220/380 3 1 1

3Y23 Wye 230/400 3 1 1

3Y24 Wye 240/415 3 1 1

3Y3 Wye 347/600V 3 1 1

3D1 High Leg Delta 120/240 3 1 1

3N2 Delta 240 3 0 1

3N4 Delta 480 3 0 1

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Voltage Responsive CircuitrySection 2.2

Section 2.2

Enclosure Dimensions

Option Code SuffixesAC Internal Audible Alarm, requires Dry Relay Contacts (included).C Dry Relay Contacts in Suppressor Enclosure. With Remote Light

Option, the DRC’s will be mounted on the Remote Light BoardD1 Integral Disconnect, base model mounted in NEMA 4X Fiberglass

Composite Enclosure with Disconnect Switch on the outside of the enclosure (Models for 120 kA to 300 kA)

D2 External Non-Fused Disconnect (Separate 10x8x6 NEMA 12 Metal Enclosure)

D3 Integral Disconnect, base model mounted in NEMA 4X Fiberglass Composite Enclosure with Internal Handle Disconnect Switch (Models for 120 kA to 300kA)

D4 Flush Mount Disconnect, NEMA 1 Type Metal Enclosure, Internal Disconnect Option for 300 kA and lower Peak Surge Currents

D5 Integral Disconnect, base model mounted in NEMA 4X Fiberglass Composite Enclosure with Disconnect Switch on the outside of the enclosure. (Models 360 kA)

D6 Integral Disconnect, base model mounted in NEMA 4X Fiberglass Composite Enclosure with Internal Handle Disconnect Switch. (Models 360 kA)

E1 Hub Mounted on the Side of the Enclosure*F Internal FusesK Full gaskets for products using NEMA 4 or 4X enclosures that have

either Audible Alarm and/or Surge Counter Options.

M NEMA 12 Rated Metal Enclosure - Size varies by Model. Models for 360 kA standard with NEMA 12 Enclosure.

N Removes Neutral to Ground Sine Wave TrackingP Flush Mount Trim PlateR1 Remote Lights - LED’s on separate circuit board with no enclosure.

No LED’s or DRC’s in the Suppressor EnclosureR2 Remote Lights - Stand Alone Enclosure with LED’s. No LED’s or DRC’s

in the Suppressor EnclosureS Internal Surge CounterW NEMA 4 Metal EnclosureX NEMA 4X Corrosion Resistant Enclosure made of Fiberglass

Composite Material (12”x10”) for ABS Composite Enclosures 300kA/Phase and below.

XS NEMA 4X Corrosion Resistant Enclosure made of Stainless Steel.EACS External Audible Alarm Module*** with additional set of DRC’s and

Surge CounterOption Notes:* The above options only apply to the standard Composite enclosures.

Standard configuration is hub on the end of the Enclosure. Models above 300 kA do not have hub Pre-Mounted on the Enclosure.

** Audible alarm requires DRC’s be opted on Base Suppressor.NOTE: Some options may not be available for all products. Other options

may be available on request.

Inches (mm)Standard

Model(90 - 300 kA)

Standard Model

(360 kA)Inches (mm)

Standard Model

(90 - 300 kA)

Standard Model

(360 kA)Options

A 8.25 (210) 10.00 (254) F 6.23 (159) 9.98 (254)

SPD

B 5.00 (127) 8.00 (204) G 8.87 (226) 10.75 (274)

C 3.00 (77) 4.00 (102) H 3.37 (86) 6.00 (153)

D 9.37 (238) 11.50 (293) Type NEMA 4X* ABS NEMA 12 Steel

E 9.48 (242) 11.98 (305) Weight 6.0 lbs (2.7 kg) 14 lbs (6.36 kg)

Enclosure (90 -300 kA) Enclosure (360 kA)

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Frequency Responsive Circuitry Section 2.3

Section 2.3

PTF Series

Frequency Responsive CircuitryThe PowerTrip® PTF series has a response time of less than one nanosecond while having a short circuit rating of 200 kA per circuit, the industry’s highest rating for a Surge Protective Device. FRC technology tracks the AC sinewave and responds to transient activity on the system at whatever polarity and phase angle it occurs- clearly offering the best available level of protection for your equipment from severe surges and ringwave transients.

Intended for sensitive and critical load applications at main distribution panels, branch panels, motor control centers, and individual equipment disconnects. They are equally effective against externally generated high energy impulses and internally generated switching events.

Ratings from 90 kA to 360 kA surge current per phase allow the devices to be located wherever they are needed. With the lowest let-through voltage in the industry, combined with a 25 year warranty, these are the perfect Surge Protective Devices for protecting expensive industrial and manufacturing equipment.

PTF-360360 kA/phase120 kA/mode

PTF-300300 kA/phase100 kA/mode

PTF-240240 kA/phase80 kA/mode

Particularly suited for applications with a high level of exposure and mission-critical computer controlled equipment and systems:

Industrial Power Generation and •Substation FacilitiesManufacturing Facilities•Oil & Gas Refineries and Off-shore •PlatformsGovernment and Defense Bases of •OperationsLarge Data Centers•Airports and Transportation Hubs•

Exposure Category “C” Uses:Service entrance equipment•Overhead line to detached building•Underground line to a well, pump or •other outdoor electrical equipment

Industrial and commercial services: High ampacity service entrances•Distribution panels•Main disconnects to provide robust •protection from severe lightning surges and transients

PTF-180180 kA/phase60 kA/mode

PTF-120120 kA/phase40 kA/mode

PTF-09090 kA/phase30 kA/mode

Ideal for application environments that depend on reliable operations of their computer systems and networks for their day to day operations, such as:

Small Businesses•Office Buildings•Banks•Retail Stores•Restaurants•Gas Stations and Fuel Depots•Office Complexes•School Campuses•Churches, etc. •

Exposure category “B” Uses:Service entrance equipment located •inside a facility, feeder circuits and short branch circuitsDistribution panel boards and devices•Busways and feeders in industrial •plantsHeavy appliance outlets with short •connections to the service entrance equipmentLighting systems in large buildings or •facilities

Light Industrial, Commercial and Residential services:

Sub-panels within a large commercial •facility, or for smaller service entrances Protection of mid to upper level •residential applications, in particular smart homes or homes with above average computer networks or home entertainment systems.

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Frequency Responsive CircuitrySection 2.3

Section 2.3

Frequency Responsive Circuitry

GeneralIEEE–C62.41.1 & C62.41.2-2002 environments: Suitable for Categories: A, B & C (Most Severe Electrical Environments)

IEC Environments: Suitable for use in IEC 61643-11 environments

Circuit Topology: Parallel configured combination Frequency Responsive Circuitry and Voltage Responsive Circuitry design incorporating component-level, thermal fusing and Patented internal, circuit board mounted, over-current fusing; and Discrete “All Mode” Protection (10 modes for 3 phase Wye units). All protection circuits are encapsulated in our high dielectric compound to promote long component life and protection from the weather and vibration.

Protection Modes: Industry-best practice of true all mode dedicated protection components for all operational modes of the electrical system. Discrete L-N, L-L (Normal Mode) and L-G, N-G (Common Mode) Example: Directly Connected Protection Elements in All 10 modes for a 3 phase, 4 wire, Wye system, (i.e. 3 L-N modes, 3 L-L modes, 3 L-G modes and 1 N-G mode).

Input Power: 50-60 Hz (60 Hz nominal)

Temperature Rating: Up to 176 °F (80 °C)

Insertion Loss Data: (L-N)Frequency: 10 kHz 100 kHz 1 MHz Max Attenuation & Freq.

Attenuation: 20 dB 47 dB 26 dB 65 dB @ 135 kHz

Standard Enclosure: 360 kA: NEMA 12 rated, painted steel enclosure, 90 - 300 kA: NEMA 4X Rated (Other enclosure options available on pg. 2-12.)

Diagnostics: Green LED’s, one per phase, normally on. A wide range of optional diagnostics is available (see pg. 2-12 for details).

Circuit Interrupt: Internal component-level, thermal fusing and patented circuit board mounted, over-current fusing.

Short Circuit Current Rating: 200 kAIC

Product Qualifications: Listed to UL1449 2nd Edition (Feb. 9, 2007 Rev.) by CSA and UL, an NRTL, CSA MC#241804, UL1283 and CE Compliant, ISO 9001 Certified Manufacturing Facility

Warranty: 25 years Unlimited Free Replacement

KEY FEATURESDiscrete “All Mode” Circuitry: Directly •Connected Protection Elements in “All Modes” (10 modes for 3 phase Wye circuits) as recommended by NEMA LS-1 and IEEE Std. 1100-2005

Industry Leading Measured Limiting •Voltage (let-through) Performance

Multi-stage Hybrid Frequency Responsive •Circuitry

Local & Remote Diagnostics•

Independent Verification of Performance •and Safety

Component-Level, Thermal Fusing•

Patented Internal, Circuit Board Mounted, •Over-Current Fusing

Part Numbering SystemExample: PTF-360-1S1-C

PTF - 360 - 1S1 - C

(1) Model -(2) Peak Surge Current

per Phase (kA)360, 300, 240, 180, 120, 090

-(3) Voltage Code

See the Voltage Code Chart-

(4) OptionSee the Option Suffixes

LISTED 1449Second Edition

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Frequency Responsive Circuitry Section 2.3

Section 2.3

PTF-XXX VOLTAGE PERFORMANCE AND ELECTRICAL SPECIFICATIONS

Model Circuit Type MCOV

ANSI/IEEE C62.41.1 & .2-2002 and C62.45-2002Let-through Voltage Test Results

(tested w/6” lead length external to the enclosure per UL 1449)

TestMode

Cat A30 Ω 100 kHz

Ring Wave 2 kV / 67 A@ 270° Phase Angle

Cat B2 Ω Impulse Wave

6 kV / 3 kA@ 90° Phase Angle

Cat C2 Ω Impulse Wave

20 kV / 10 kA@ 90° Phase Angle

PTF-XXX-1S1 120/240 V, 1Ø (Split) (3 wire + ground)

150 V300 V150 V150 V

L-NL-LL-GN-G

35 V43 V56 V58 V

382 V581 V397 V558 V

914 V1,119 V1,025 V1,176 V

PTF-XXX-3Y1 120/208 V, 3Ø Wye (4 wire + ground)

150 V300 V150 V150 V

L-NL-LL-GN-G

35 V43 V56 V58 V

382 V581 V397 V558 V

914 V1,119 V1,025 V1,176 V

PTF-XXX-3D1120/240 V 3Ø

High-Leg Delta (4 wire + ground)

150 V320 V300 V150 V320 V150 V

L-NHi-L-N

L-LL-G

Hi-L-GN-G

35 V35 V43 V56 V56 V58 V

382 V558 V581 V397 V588 V558 V

914 V1,066 V1,119 V1,025 V1,262 V1,176 V

PTF-XXX-3Y2 277/480 V, 3Ø Wye (4 wire + ground)

320 V550 V320 V320 V

L-NL-LL-GN-G

51 V126 V79 V54 V

558 V912 V588 V965 V

1,066 V1,456 V1,262 V1,575 V

PTF-XXX-3N2 240 V, 3Ø Delta (NN) (3 wire + ground)

320 V320 V

L-LL-G

51 V51 V

588 V588 V

1,262 V1,262 V

PTF-XXX-3N4 480 V, 3Ø Delta (NN) (3 wire + ground)

550 V550 V

L-LL-G

51 V51 V

912 V878 V

1,456 V1,456 V

Let-through Voltage Test Parameters: Positive Polarity, Net voltages are peak (±10%). All tests are static except 150 V MCOV modes. Let-through voltages on static tests calculated by subtracting sinewave peak from let-through measured from zero. 150 V MCOV mode let-through voltages measured from the insertion point on the sinewave. Each phase is the average of the 3 modes. In order to duplicate the results, the specified mode must be tested for all three phases (except N-G) and averaged together. (Individual mode or shot results may vary by more than 10%. Scope Settings: Time Base = 10 microseconds, Sampling Rate = 500 Megasamples/sec. These settings assure Let-through voltages test results are accurate). All tests performed with 6” lead length (external to the enclosure), simulating actual installed performance.

Surge Current Testing: Single-pulse surge current testing for all modes at rated currents as recommended by NEMA LS1-1992. Single pulse surge current capacities of 200,000 amps or less are determined by testing all suppression components within each mode as a group. Present industry test equipment limitations require testing of individual suppression components or subassemblies within a mode for single-pulse surge capacities over 200,000 amps.

VOLTAGE CODE

Voltage Code Nominal System Voltage # of Phases Neutral Ground

1P1 Single Phase 120 1 1 1

1P22 Single Phase 220 1 1 1

1P23 Single Phase 230 1 1 1

1P2 Single Phase 240 1 1 1

1S1 Split Phase 120/240 2 1 1

1S2 Split Phase 240/480 2 1 1

3Y1 Wye 120/208 3 1 1

3Y2 Wye 277/480 3 1 1

3Y22 Wye 220/380 3 1 1

3Y23 Wye 230/400 3 1 1

3Y24 Wye 240/415 3 1 1

3Y3 Wye 347/600V 3 1 1

3D1 High Leg Delta 120/240 3 1 1

3N2 Delta 240 3 0 1

3N4 Delta 480 3 0 1

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Frequency Responsive CircuitrySection 2.3

Section 2.3

Enclosure Dimensions

Option Code SuffixesAC Internal Audible Alarm, requires Dry Relay Contacts (included).C Dry Relay Contacts in Suppressor Enclosure. With Remote Light

Option, the DRC’s will be mounted on the Remote Light BoardD1 Integral Disconnect, base model mounted in NEMA 4X Fiberglass

Composite Enclosure with Disconnect Switch on the outside of the enclosure (Models for 120 kA to 300 kA)

D2 External Non-Fused Disconnect (Separate 10x8x6 NEMA 12 Metal Enclosure)

D3 Integral Disconnect, base model mounted in NEMA 4X Fiberglass Composite Enclosure with Internal Handle Disconnect Switch (Models for 120 kA to 300kA)

D4 Flush Mount Disconnect, NEMA 1 Type Metal Enclosure, Internal Disconnect Option for 300 kA and lower Peak Surge Currents

D5 Integral Disconnect, base model mounted in NEMA 4X Fiberglass Composite Enclosure with Disconnect Switch on the outside of the enclosure. (Models 360 kA)

D6 Integral Disconnect, base model mounted in NEMA 4X Fiberglass Composite Enclosure with Internal Handle Disconnect Switch. (Models 360 kA)

E1 Hub Mounted on the Side of the Enclosure*F Internal FusesK Full gaskets for products using NEMA 4 or 4X enclosures that have

either Audible Alarm and/or Surge Counter Options.

M NEMA 12 Rated Metal Enclosure - Size varies by Model. Models for 360 kA standard with NEMA 12 Enclosure.

N Removes Neutral to Ground Sine Wave TrackingP Flush Mount Trim PlateR1 Remote Lights - LED’s on separate circuit board with no enclosure.

No LED’s or DRC’s in the Suppressor EnclosureR2 Remote Lights - Stand Alone Enclosure with LED’s. No LED’s or DRC’s

in the Suppressor EnclosureS Internal Surge CounterW NEMA 4 Metal EnclosureX NEMA 4X Corrosion Resistant Enclosure made of Fiberglass

Composite Material (12”x10”) for ABS Composite Enclosures 300kA/Phase and below.

XS NEMA 4X Corrosion Resistant Enclosure made of Stainless Steel.EACS External Audible Alarm Module*** with additional set of DRC’s and

Surge CounterOption Notes:* The above options only apply to the standard Composite enclosures.

Standard configuration is hub on the end of the Enclosure. Models above 300 kA do not have hub Pre-Mounted on the Enclosure.

** Audible alarm requires DRC’s be opted on Base Suppressor.NOTE: Some options may not be available for all products. Other options

may be available on request.

Inches (mm)Standard

Model(90 - 300 kA)

Standard Model

(360 kA)Inches (mm)

Standard Model

(90 - 300 kA)

Standard Model (360

kA)Options

A 8.25 (210) 10.00 (254) F 6.23 (159) 9.98 (254)

SPD

B 5.00 (127) 8.00 (204) G 8.87 (226) 10.75 (274)

C 3.00 (77) 4.00 (102) H 3.37 (86) 6.00 (153)

D 9.37 (238) 11.50 (293) Type NEMA 4X* ABS NEMA 12 Steel

E 9.48 (242) 11.98 (305) Weight 6.0 lbs (2.7 kg) 14 lbs (6.36 kg)

Enclosure (90 -300 kA) Enclosure (360 kA)

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Frequency Responsive Circuitry Section 2.4

Section 2.4

PTC Series

Frequency Responsive CircuitryThe PowerTrip® PTC series blends outstanding high-energy surge protection with ring-wave transient protection. This dependable device is intended for general purpose and sensitive/critical load applications.

With peak surge ratings available from 60 kA per phase to 300 kA per phase, the PTC series covers a wide range of applications. Locations include main service entrance panels, for protection from high energy externally generated surges, to panels feeding office locations and/or microprocessor based equipment. This value priced device offers protection from surges and transients that cost facilities time and money in loss of equipment and productive time.

PTC-300300 kA/phase100 kA/mode

PTC-240240 kA/phase80 kA/mode

Particularly suited for applications with a high level of exposure and mission-critical computer controlled equipment and systems:

Industrial Power Generation and •Substation FacilitiesManufacturing Facilities•Oil & Gas Refineries and Off-shore •PlatformsGovernment and Defense Bases of •OperationsLarge Data Centers•Airports and Transportation Hubs•

Exposure Category “C” Uses:Service entrance equipment•Overhead line to detached building•Underground line to a well, pump or •other outdoor electrical equipment

Industrial and commercial services: High ampacity service entrances•Distribution panels•Main disconnects to provide robust •protection from severe lightning surges and transients

PTC-180180 kA/phase60 kA/mode

PTC-120120 kA/phase40 kA/mode

PTC-06060 kA/phase20 kA/mode

Ideal for application environments that depend on reliable operations of their computer systems and networks for their day to day operations, such as:

Small Businesses•Office Buildings•Banks•Retail Stores•Restaurants•Gas Stations and Fuel Depots•Office Complexes•School Campuses•Churches, etc. •

Exposure category “B” Uses:Service entrance equipment located •inside a facility, feeder circuits and short branch circuitsDistribution panel boards and devices•Busways and feeders in industrial •plantsHeavy appliance outlets with short •connections to the service entrance equipmentLighting systems in large buildings or •facilities

Light Industrial, Commercial and Residential services:

Sub-panels within a large commercial •facility, or for smaller service entrances Protection of mid to upper level •residential applications, in particular smart homes or homes with above average computer networks or home entertainment systems.

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Frequency Responsive CircuitrySection 2.4

Section 2.4

Frequency Responsive Circuitry

GeneralDescription: Parallel connected, Surge Protective Device utilizing both high-energy handling and Frequency Responsive Circuitry for virtual elimination of ring wave type transients.

Application: Designed for use at ANSI/IEEE Categories C, B and A with susceptibility up to medium exposure levels. Designed to protect sensitive/critical loads fed from distribution panels, branch panels and/or individual equipment panels.

Warranty: 20 Years Unlimited Free Replacement

Product Qualifications: Listed to UL1449 2nd Edition (Feb. 9, 2007 Rev.) by CSA and UL, an NRTL, CSA MC#214804, UL1283 and CE Compliant, ISO 9001:2000, ANSI C62.72-2007

Enclosure: High strength ABS Plastic, NEMA 4 rated enclosure.

Mounting: 1” conduit fitting (internally threaded) and external mounting feet.

Connection Method: #10 stranded wire.

Shipping Weight: 6 lbs (2.7 kg)

Circuit Design: Parallel connected, internally fused, hybrid design incorporating Discrete “All Mode” Protection (10 modes for 3 phase wye units) and utilizing our encapsulated design to provide improved durability. All suppression circuits are encapsulated in our exclusive compound to assure long component life and complete protection from the environment and/or vibration.

Protection Modes: Dedicated protection components and circuitry for each mode. Discrete L-N, L-L (Normal Mode), and Discrete L-G, N-G (Common Mode). 10 modes/3 phase wye system.

Input Power Frequency: 50- 60Hz typical

EMI/RFI Noise Attenuation: 40dB Max. from 1kHz to 10MHz

Circuit Diagnostics: Super Bright LED, 1 per phase, normally on. Dry relay contacts for remote monitoring.

Circuit Interrupt: External and internal (see installation instructions for details).

Fusing: Component Level Thermal and Board Level Current Fusing

kAIC Rating: 200 kAIC when installed according to installation instructions

KEY FEATURESDiscrete “All Mode“ Circuitry: Directly •Connected Protection Elements in “All Modes“ (10 modes for 3 phase, 4 wire Wye circuits) as recommend by NEMA LS-1 and IEEE Std. 1100-2005

Industry Leading Measured Limiting •Voltage (let-through) Performance

Multi-stage Hybrid Frequency Responsive •Circuitry

Local & Remote Diagnostics•

Independent Verification of Performance •and Safety

Component-Level, Thermal Fusing•

Patented, Internal, Circuit Board Mounted, •Over-Current Fusing

Part Numbering SystemExample: PTC-300-1S1-C

PTC 300 - 1S1 - C

(1) Model(2) Peak Surge Current

per Phase (kA)300, 240, 180, 120, 060

-(3) Voltage Code

See the Voltage Code Chart-

(4) OptionSee the Option Suffixes

LISTED 1449Second Edition

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Section 2.4

MODEL PTC-XXX VOLTAGE PERFORMANCE AND ELECTRICAL SPECIFICATIONS

Model Circuit Type MCOV

ANSI/IEEE C62.41 & C62.45Let-Through Voltage Test Results

TestMode

A12kV, 67A

100KHz Ring Wave270º Phase Angle

B3/C16kV, 3kA

Impulse Wave90º Phase Angle

C320kV, 10kA

Impulse Wave90º Phase Angle

PTC-XXX-1P1-C 120 V, Single Ø(2 wire + ground)

150 V150 V150 V

L-NL-GN-G

45 V60 V55 V

385 V400 V560 V

914 V1,025 V1,176 V

PTC-XXX-1S1-C 120/240 V, Split Ø(3 wire + ground)

300 V150 V150 V150 V

L-LL-NL-GN-G

75 V45 V60 V55 V

570 V385 V400 V560 V

1,119 V914 V

1,025 V1,176 V

PTC-XXX-3Y1-C 120/208 V, 3ØY(4 wire + ground)

300 V150 V150 V150 V

L-LL-NL-GN-G

55 V45 V60 V55 V

570 V385 V400 V560 V

1,119 V914 V

1,025 V1,176 V

PTC-XXX-1P2-C 240 V, Single Ø(2 wire + ground)

320 V320 V320 V

L-NL-GN-G

60 V80 V55 V

560 V590 V965 V

1,050 V1,262 V1,575 V

PTC-XXX-3Y2-C220/380 V, 3ØY277/480 V, 3ØY

(4 wire + ground)

550 V320 V320 V320 V

L-LL-NL-GN-G

130 V60 V80 V55 V

895 V560 V590 V965 V

1,344 V1,050 V1,262 V1,575 V

PTC-XXX-3N2-C 240V, 3Ø Delta(3 wire + ground)

320 V320 V

L-LL-G

60 V75 V

590 V590 V

1,262 V1,262 V

PTC-XXX-3N4-C380V, 3Ø Delta480V, 3Ø Delta

(3 wire + ground)

550 V550 V

L-LL-G

60 V130 V

895 V895 V

1,344 V1,344 V

PTC-XXX-3N6-C550V, 3Ø Delta660V, 3Ø Delta

(3 wire + ground)

750 V750 V

L-LL-G

160 V140 V

1,250 V1,290 V

1,750 V1,750 V

Let-Through Voltage Test Environment: Positive Polarity. Time base=1ms. All voltages are peak (±10%). Surge voltages are measured from the insertion point of surge on the sine wave to the peak of the surge. All tests are Dynamic (voltage applied) except N-G which is static (no voltage applied). All tests were performed with 6 inches of lead length outside the device enclosure which simulates actual “as installed” performance. Single-pulse, surge current testing for all modes at rated currents, is in compliance with NEMA LS 1-1992. Single-pulse, surge current capacities of 200,000 amps or less are determined by single-unit testing of all components within each mode. Present industry test equipment limitations require testing of individual components or sub-assemblies within a mode for single-pulse, surge current capacities over 200,000 amps.

VOLTAGE CODE

Voltage Code Nominal System Voltage # of Phases Neutral Ground

1P1 Single Phase 120 1 1 1

1P22 Single Phase 220 1 1 1

1P23 Single Phase 230 1 1 1

1P2 Single Phase 240 1 1 1

1S1 Split Phase 120/240 2 1 1

1S2 Split Phase 240/480 2 1 1

3Y1 Wye 120/208 3 1 1

3Y2 Wye 277/480 3 1 1

3Y22 Wye 220/380 3 1 1

3Y23 Wye 230/400 3 1 1

3Y24 Wye 240/415 3 1 1

3Y3 Wye 347/600V 3 1 1

3D1 High Leg Delta 120/240 3 1 1

3N2 Delta 240 3 0 1

3N4 Delta 480 3 0 1

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Section 2.4

Enclosure Dimensions

Option Code SuffixesC Dry Relay Contacts in Suppressor Enclosure. With Remote Light

Option, the DRC’s will be mounted on the Remote Light BoardS Internal Surge CounterDIN DIN Rail Mounting Foot

Inches (mm) Standard Model

A 9.37 (238)

B 5.00 (127)

C 3.00 (77)

D 8.87 (226)

E 3.37 (86)

Type NEMA 4 (ABS)

Weight 6.0 lbs (2.7 kg)

Enclosure A

B

C

D

E

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Section 2.5

PTA-V Series

Voltage Responsive CircuitryThe PowerTrip® PTA-V series of surge protective devices are designed for AC power protection against harmful transients that can enter a power system and cause costly damage to equipment and facilities. Available in peak surge capacity ratings from 30 kA per phase to 160 kA per phase with a robust 200 kA short circuit current rating. Designed for locations requiring protection from high energy surges such as lightning and/or utility power events. Units are also effective in providing protection on sub panels and individual equipment from the internally generated transients that can be caused by switching events and other power anomalies.

PTA-V160160 kA/phase

PTA-V120120 kA/phase

Particularly suited for applications with a high level of exposure and mission-critical computer controlled equipment and systems:

Industrial Power Generation and •Substation FacilitiesManufacturing Facilities•Oil & Gas Refineries and Off-shore •PlatformsGovernment and Defense Bases of •OperationsLarge Data Centers•Airports and Transportation Hubs•

Exposure Category “C” Uses:Outside and including service entrance •equipmentBetween Meter and Service entrance •equipmentOverhead line to detached building•Underground line to a well, pump or •other outdoor electrical equipment

Industrial and commercial services: High ampacity service entrances•Distribution panels•Main disconnects to provide robust •protection from severe lightning surges and transients

PTA-V09090 kA/phase

PTA-V06060 kA/phase

PTA-V03030 kA/phase

Ideal for application environments that depend on reliable operations of their computer systems and networks for their day to day operations, such as:

Small Businesses•Office Buildings•Banks•Retail Stores•Restaurants•Gas Stations and Fuel Depots•Office Complexes•School Campuses•Churches, etc. •

Exposure category “B” Uses:Service entrance equipment located •inside a facility, feeder circuits and short branch circuitsDistribution panel boards and devices•Busways and feeders in industrial •plantsHeavy appliance outlets with short •connections to the service entrance equipmentLighting systems in large buildings or •facilities

Light Industrial, Commercial and Residential services:

Sub-panels within a large commercial •facility, or for smaller service entrances Protection of mid to upper level •residential applications, in particular smart homes or homes with above average computer networks or home entertainment systems.

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Voltage Responsive CircuitrySection 2.5

Section 2.5

Voltage Responsive Circuitry

GeneralIEEE–C62.41.1 & C62.41.2-2002 environments: Suitable for Categories: A, B & C (Most Severe Electrical Environments)

IEC Environments: Suitable for use in IEC 61643-11 environments

Circuit Topology: Parallel configured Voltage Responsive Circuitry design incorporating component-level, thermal fusing and internal, circuit board mounted, over-current fusing; and Discrete “All Mode” Protection (10 modes for 3 phase Wye units). All protection circuits are encapsulated in our high dielectric compound to promote long component life and protection from the weather and vibration.

Protection Modes: Industry-best practice of true all mode dedicated protection components for all operational modes of the electrical system. Discrete L-N, L-L (Normal Mode) and L-G, N-G (Common Mode) Example: Directly Connected Protection Elements in All 10 modes for a 3 phase, 4 wire, Wye system, (i.e. 3 L-N modes, 3 L-L modes, 3 L-G modes and 1 N-G mode).

Input Power: 50-400 Hz (60 Hz nominal)

Temperature Rating: Up to 176 °F (80 °C)

Standard Enclosure: NEMA 4X Rated (Other enclosure options available on pg. 2-20.)

Diagnostics: Bright Blue LED’s, one per phase, normally on. A wide range of optional diagnostics is available (see pg. 2-20 for details).

Circuit Interrupt: Internal component-level, thermal fusing and patented circuit board mounted, over-current fusing.

Short Circuit Current Rating: 200 kAIC

Product Qualifications: CE Compliant, ISO 9001 Certified Manufacturing Facility

Warranty: 20 years Unlimited Free Replacement

KEY FEATURESDiscrete “All Mode” Circuitry: Directly •Connected Protection Elements in “All Modes” (10 modes for 3 phase Wye circuits) as recommended by NEMA LS-1 and IEEE Std. 1100-2005

Industry Leading Measured Limiting •Voltage (let-through) Performance

Local & Remote Diagnostics•

Independent Verification of Performance •and Safety

Component-Level, Thermal Fusing•

Internal, Circuit Board Mounted, Over-•Current Fusing

Part Numbering SystemExample: PTA-V160-1S1-C

PTA-V - 160 - 1S1 - C

(1) Model -(2) Peak Surge Current

per Phase (kA)160, 120, 090, 060, 030

-(3) Voltage Code

See the Voltage Code Chart-

(4) OptionSee the Option Suffixes

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Section 2.5

PTA-VXXX VOLTAGE PERFORMANCE AND ELECTRICAL SPECIFICATIONS

Model Circuit Type MCOVLet-through Voltage Test Results

Test Mode Cat B6 kV / 3 kA 8/20us

PTA-VXXX-1P1 120 V, 1Ø (2 wire + ground)

150 V150 V150 V

L-NL-GN-G

410 V412 V371 V

PTA-VXXX-1P2 240 V, 1Ø(2 wire + ground)

320 V320 V320 V

L-NL-GN-G

664 V683 V663 V

PTA-VXXX-3Y1 120/208 V, 3Ø Wye (4 wire + ground)

150 V150 V300 V150 V

L-NL-GL-LN-G

414 V416 V658 V383 V

PTA-VXXX-3Y2 277/480 V, 3Ø Wye (4 wire + ground)

320 V320 V550 V320 V

L-NL-GL-LN-G

833 V833 V

1,454 V807 V

PTA-VXXX-3Y22 220/380 V, 3Ø Wye(4 wire + ground)

320 V320 V550 V320 V

L-NL-GL-LN-G

645 V650 V

1,138 V650 V

Let-through Voltage Test Parameters: Positive Polarity, Net voltages are peak (±10%). All tests are static except 150 V MCOV modes. Let-through voltages on static tests calculated by subtracting sinewave peak from let-through measured from zero. 150 V MCOV mode let-through voltages measured from the insertion point on the sinewave. Each phase is the average of the 3 modes. In order to duplicate the results, the specified mode must be tested for all three phases (except N-G) and averaged together. (Individual mode or shot results may vary by more than 10%. Scope Settings: Time Base = 10 microseconds, Sampling Rate = 500 Megasamples/sec. These settings assure Let-through voltages test results are accurate). All tests performed with 6” lead length (external to the enclosure), simulating actual installed performance.

Surge Current Testing: Single-pulse surge current testing for all modes at rated currents as recommended by NEMA LS1-1992. Single pulse surge current capacities of 200,000 amps or less are determined by testing all suppression components within each mode as a group. Present industry test equipment limitations require testing of individual suppression components or subassemblies within a mode for single-pulse surge capacities over 200,000 amps.

VOLTAGE CODE

Voltage Code Nominal System Voltage # of Phases Neutral Ground

1P1 Single Phase 120 1 1 1

1P22 Single Phase 220 1 1 1

1P23 Single Phase 230 1 1 1

1P2 Single Phase 240 1 1 1

1S1 Split Phase 120/240 2 1 1

1S2 Split Phase 240/480 2 1 1

3Y1 Wye 120/208 3 1 1

3Y2 Wye 277/480 3 1 1

3Y22 Wye 220/380 3 1 1

3Y23 Wye 230/400 3 1 1

3Y24 Wye 240/415 3 1 1

3Y3 Wye 347/600V 3 1 1

3D1 High Leg Delta 120/240 3 1 1

3N2 Delta 240 3 0 1

3N4 Delta 480 3 0 1

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Voltage Responsive CircuitrySection 2.5

Section 2.5

Enclosure Dimensions

Option Code SuffixesC Dry Relay Contacts in Suppressor Enclosure. With Remote Light

Option, the DRC’s will be mounted on the Remote Light BoardD1 Integral Disconnect, base model mounted in NEMA 4X Fiberglass

Composite Enclosure with Disconnect Switch on the outside of the enclosure

D2 External Non-Fused Disconnect (Separate 10x8x6 NEMA 12 Metal Enclosure)

D3 Integral Disconnect, base model mounted in NEMA 4X Fiberglass Composite Enclosure with Internal Handle Disconnect Switch

M NEMA 12 Rated Metal Enclosure - Size varies by Model.S Internal Surge CounterNOTE: Some options may not be available for all products. Other options

may be available on request.

Inches (mm) Standard Model (30, 60 & 90 kA) Standard Model (120 & 160 kA)

A 8.265 (210) 10.151 (258)

B 5.155 (131) 6.151 (156)

C 3.010 (76.5) 3.000 (76.2)

D 9.380 (238) 11.400 (290)

E 8.875 (225) 10.75 (273)

F 3.375 (85.7) 4.000 (102)

Type NEMA 4 (ABS) NEMA 4 (ABS)

Weight 1.8 lbs (0.85 kg) 2.2 lbs (1.0 kg)

Enclosure

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Section 2.6

PTA-F Series

Frequency Responsive CircuitryThe PowerTrip® PTA-F series of surge protective devices are designed for AC power protection against harmful transients that can enter a systems and cause costly damage to equipment and facilities. This device utilizes the advanced FRC technology which tracks the AC sine wave and suppresses the transient at any phase angle resulting in lower let through voltage and increased protection. Equally effective in responding to high energy surges such as lightning as well as the ring wave transients that are internally generated. Peak surge capacity ratings from 30 kA per phase to 160 kA per phase with a 200 kA short circuit current rating. Engineered for installation on high ampacity service entrances, distribution panels and individual equipment locations. An ideal choice for the protection of sensitive/critical electronic equipment resulting in more productive time and longer equipment life.

PTA-F160160 kA+/phase

PTA-F120120 kA/phase

Particularly suited for applications with a high level of exposure and mission-critical computer controlled equipment and systems:

Industrial Power Generation and •Substation FacilitiesManufacturing Facilities•Oil & Gas Refineries and Off-shore •PlatformsGovernment and Defense Bases of •OperationsLarge Data Centers•Airports and Transportation Hubs•

Exposure Category “C” Uses:Outside and including service •entrance equipmentBetween Meter and Service entrance •equipmentOverhead line to detached building•Underground line to a well, pump or •other outdoor electrical equipment

Industrial and commercial services: High ampacity service entrances•Distribution panels•Main disconnects to provide robust •protection from severe lightning surges and transients

PTA-F09090 kA/phase

PTA-F06060 kA/phase

PTA-F03030 kA/phase

Ideal for application environments that depend on reliable operations of their computer systems and networks for their day to day operations, such as:

Small Businesses•Office Buildings•Banks•Retail Stores•Restaurants•Gas Stations and Fuel Depots•Office Complexes•School Campuses•Churches, etc. •

Exposure category “B” Uses:Service entrance equipment located •inside a facility, feeder circuits and short branch circuitsDistribution panel boards and devices•Busways and feeders in industrial •plantsHeavy appliance outlets with short •connections to the service entrance equipmentLighting systems in large buildings or •facilities

Light Industrial, Commercial and Residential services:

Sub-panels within a large commercial •facility, or for smaller service entrances Protection of mid to upper level •residential applications, in particular smart homes or homes with above average computer networks or home entertainment systems.

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Frequency Responsive CircuitrySection 2.6

Section 2.6

Frequency Responsive Circuitry

GeneralIEEE–C62.41.1 & C62.41.2-2002 environments: Suitable for Categories: A, B & C (Most Severe Electrical Environments)

IEC Environments: Suitable for use in IEC 61643-11 environments

Circuit Topology: Parallel configured combination Frequency Responsive Circuitry and Voltage Responsive Circuitry design incorporating component-level, thermal fusing and internal, circuit board mounted, over-current fusing; and Discrete “All Mode” Protection (10 modes for 3 phase Wye units). All protection circuits are encapsulated in our high dielectric compound to promote long component life and protection from the weather and vibration.

Protection Modes: Industry-best practice of true all mode dedicated protection components for all operational modes of the electrical system. Discrete L-N, L-L (Normal Mode) and L-G, N-G (Common Mode) Example: Directly Connected Protection Elements in All 10 modes for a 3 phase, 4 wire, Wye system, (i.e. 3 L-N modes, 3 L-L modes, 3 L-G modes and 1 N-G mode).

Input Power: 50-60 Hz (60 Hz nominal)

Temperature Rating: Up to 176 °F (80 °C)

Insertion Loss Data: (L-N)Frequency: 10 kHz 100 kHz 1 MHz Max Attenuation & Freq.

Attenuation: 13 dB 34 dB 36 dB 65 dB @ 135 kHz

Standard Enclosure: NEMA 4X Rated (Other enclosure options available on pg. 2-24.)

Diagnostics: Bright Blue LED’s, one per phase, normally on. A wide range of optional diagnostics is available (see pg. 2-24 for details).

Circuit Interrupt: Internal component-level, thermal fusing and circuit board mounted, over-current fusing.

Short Circuit Current Rating: 200 kAIC

Product Qualifications: CE Compliant, ISO 9001 Certified Manufacturing Facility

Warranty: 20 years Unlimited Free Replacement

KEY FEATURESDiscrete “All Mode” Circuitry: Directly •Connected Protection Elements in “All Modes” (10 modes for 3 phase Wye circuits) as recommended by NEMA LS-1 and IEEE Std. 1100-2005

Industry Leading Measured Limiting •Voltage (let-through) Performance

Multi-stage Hybrid Frequency Responsive •Circuitry

Local & Remote Diagnostics•

Independent Verification of Performance •and Safety

Component-Level, Thermal Fusing•

Internal, Circuit Board Mounted, Over-•Current Fusing

Part Numbering SystemExample: PTA-F160-1S1-C

PTA-F - 160 - 1S1 - C

(1) Model -(2) Peak Surge Current

per Phase (kA)160, 120, 090, 060, 030

-(3) Voltage Code

See the Voltage Code Chart-

(4) OptionSee the Option Suffixes

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Section 2.6

PTA-FXXX VOLTAGE PERFORMANCE AND ELECTRICAL SPECIFICATIONS

Model Circuit Type MCOVLet-through Voltage Test Results

Test Mode Cat B6 kV / 3 kA 8/20us

PTA-FXXX-1P1 120 V, 1Ø (2 wire + ground)

150 V150 V150 V

L-NL-GN-G

410 V412 V371 V

PTA-FXXX-1P2 240 V, 1Ø(2 wire + ground)

320 V320 V320 V

L-NL-GN-G

664 V683 V663 V

PTA-FXXX-3Y1 120/208 V, 3Ø Wye (4 wire + ground)

150 V150 V300 V150 V

L-NL-GL-LN-G

414 V416 V658 V383 V

PTA-FXXX-3Y2 277/480 V, 3Ø Wye (4 wire + ground)

320 V320 V550 V320 V

L-NL-GL-LN-G

833 V833 V

1,454 V807 V

PTA-FXXX-3Y22 220/380 V, 3Ø Wye(4 wire + ground)

320 V320 V550 V320 V

L-NL-GL-LN-G

645 V650 V

1,138 V650 V

Let-through Voltage Test Parameters: Positive Polarity, Net voltages are peak (±10%). All tests are static except 150 V MCOV modes. Let-through voltages on static tests calculated by subtracting sinewave peak from let-through measured from zero. 150 V MCOV mode let-through voltages measured from the insertion point on the sinewave. Each phase is the average of the 3 modes. In order to duplicate the results, the specified mode must be tested for all three phases (except N-G) and averaged together. (Individual mode or shot results may vary by more than 10%. Scope Settings: Time Base = 10 microseconds, Sampling Rate = 500 Megasamples/sec. These settings assure Let-through voltages test results are accurate). All tests performed with 6” lead length (external to the enclosure), simulating actual installed performance.

Surge Current Testing: Single-pulse surge current testing for all modes at rated currents as recommended by NEMA LS1-1992. Single pulse surge current capacities of 200,000 amps or less are determined by testing all suppression components within each mode as a group. Present industry test equipment limitations require testing of individual suppression components or subassemblies within a mode for single-pulse surge capacities over 200,000 amps.

VOLTAGE CODE

Voltage Code Nominal System Voltage # of Phases Neutral Ground

1P1 Single Phase 120 1 1 1

1P22 Single Phase 220 1 1 1

1P23 Single Phase 230 1 1 1

1P2 Single Phase 240 1 1 1

1S1 Split Phase 120/240 2 1 1

1S2 Split Phase 240/480 2 1 1

3Y1 Wye 120/208 3 1 1

3Y2 Wye 277/480 3 1 1

3Y22 Wye 220/380 3 1 1

3Y23 Wye 230/400 3 1 1

3Y24 Wye 240/415 3 1 1

3Y3 Wye 347/600V 3 1 1

3D1 High Leg Delta 120/240 3 1 1

3N2 Delta 240 3 0 1

3N4 Delta 480 3 0 1

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Frequency Responsive CircuitrySection 2.6

Section 2.6

Enclosure Dimensions

Option Code SuffixesC Dry Relay Contacts in Suppressor Enclosure. With Remote Light

Option, the DRC’s will be mounted on the Remote Light BoardD1 Integral Disconnect, base model mounted in NEMA 4X Fiberglass

Composite Enclosure with Disconnect Switch on the outside of the enclosure

D2 External Non-Fused Disconnect (Separate 10x8x6 NEMA 12 Metal Enclosure)

D3 Integral Disconnect, base model mounted in NEMA 4X Fiberglass Composite Enclosure with Internal Handle Disconnect Switch

M NEMA 12 Rated Metal Enclosure - Size varies by Model.S Internal Surge CounterNOTE: Some options may not be available for all products. Other options

may be available on request.

Inches (mm) Standard Model (30, 60 & 90 kA) Standard Model (120 & 160 kA)

A 8.265 (210) 10.151 (258)

B 5.155 (131) 6.151 (156)

C 3.010 (76.5) 3.000 (76.2)

D 9.380 (238) 11.400 (290)

E 8.875 (225) 10.75 (273)

F 3.375 (85.7) 4.000 (102)

Type NEMA 4 (ABS) NEMA 4 (ABS)

Weight 1.8 lbs (0.85 kg) 2.2 lbs (1.0 kg)

Enclosure

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Frequency Responsive Circuitry Section 2.7

Section 2.7

PTR Series

Frequency Responsive CircuitryThe PowerTrip® PTR series incorporates both high-energy surge protection with Frequency Responsive Circuitry for ring-wave transient protection. This combination of protection works on external surges as well as internally generated transients. Compact size and non metallic enclosure design allows the unit to be installed directly inside electrical panels, local codes permitting, and at individual equipment disconnects. These installationoptions provide the shortest possible lead length for optimum performance. The PTR series is an ideal choice for protecting sensitive/critical equipment and for use on panels feeding office locations.

PTR-120120 kA/phase60 kA/mode

PTR-08080 kA/phase40 kA/mode

Particularly suited for applications with a medium level of exposure and mission-critical computer controlled equipment and systems:

Industrial Power Generation and •Substation FacilitiesManufacturing Facilities•Oil & Gas Refineries and Off-shore •PlatformsGovernment and Defense Bases of •OperationsLarge Data Centers•Airports and Transportation Hubs•

Exposure Category “C” Uses:Service entrance equipment•Underground line to a well, pump or •other outdoor electrical equipment

Industrial and commercial services: Distribution panels•Main disconnects to provide robust •protection from severe lightning surges and transients

PTR-04040 kA/phase20 kA/mode

Premium mid level protection at affordable costs, while providing the Frequency Responsive Circuitry properties only available on much more expensive products.Ideal for application environments that depend on reliable operations of their computer systems and networks for their day to day operations, such as:

Small Businesses•Office Buildings•Banks•Retail Stores•Restaurants•Gas Stations and Fuel Depots•Office Complexes•School Campuses•Churches, etc. •

Exposure category “B” Uses:Service entrance equipment located •inside a facility, feeder circuits and short branch circuitsDistribution panel boards and devices•Busways and feeders in industrial •plantsHeavy appliance outlets with short •connections to the service entrance equipmentLighting systems in large buildings or •facilities

Light Industrial, Commercial and Residential services:

Sub-panels within a large commercial •facility, or for smaller service entrances Protection of mid to upper level •residential applications, in particular smart homes or homes with above average computer networks or home entertainment systems.

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Frequency Responsive CircuitrySection 2.7

Section 2.7

Frequency Responsive Circuitry

GeneralDescription: Parallel connected, Surge Protective Device utilizing both high-energy handling and Frequency Responsive Circuitry for virtual elimination of impulse and ring wave type transients.

Application: Designed for use at ANSI/IEEE Categories C, B and A with susceptibility up to medium exposure levels. Designed to protect sensitive/critical loads fed from distribution panels, branch panels and/or individual equipment panels.

Warranty: 15 Years Unlimited Free Replacement

Product Qualifications: Listed to UL1449 2nd Edition (Feb. 9, 2007 Rev.) by CSA and UL, an NRTL, CSA MC#214804, UL1283 and CE Compliant, ISO 9001:2000, ANSI C62.72-2007

Enclosure: High strength ABS Plastic, NEMA 4 rated enclosure.

Mounting: 3/4” conduit fitting (internally threaded) and external mounting feet.

Connection Method: #10 stranded wire.

Shipping Weight: 6 lbs (2.7 kg)

Circuit Design: Parallel connected, internally fused, hybrid design incorporating full mode protection, and utilizing our encapsulated design to provide improved durability. All suppression circuits are encapsulated in our exclusive compound to assure long component life and complete protection from the environment and/or vibration.

Protection Modes: L-N, L-L (Normal Mode), and L-G, N-G (Common Mode). (Seven discrete modes)

Input Power Frequency: 50-60Hz constant

EMI/RFI Noise Attenuation: 30dB Max. from 1kHz to 10MHz

Circuit Diagnostics: Super Bright LED, 1 per phase, normally on.

Circuit Interrupt: External and internal (see installation instructions for details).

Fusing: Component Level Thermal and Board Level Current Fusing

kAIC Rating: 200 kAIC when installed according to installation instructions

KEY FEATURESIndustry leading Measured Limiting Voltage •(let-through) performance

Multi-stage Hybrid Frequency Responsive •Circuitry

Local & Remote Diagnostics•

Independent Verification of Performance •and Safety

Component-Level, Thermal Fusing•

Patent Pending, Internal, Circuit Board •Mounted, Over-Current Fusing

Part Numbering SystemExample: PTR-120-1S1-C

PTR - 120 - 1S1 - C

(1) Model -(2) Peak Surge Current

per Phase (kA)120, 080, 040

-(3) Voltage Code

See the Voltage Code Chart-

(4) OptionSee the Option Suffixes

LISTED 1449Second Edition

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Section 2.7

PTR-XXX VOLTAGE PERFORMANCE AND ELECTRICAL SPECIFICATIONS

Model Circuit Type MCOV Mode

ANSI/IEEE C62.41 & C62.45Let-Through Voltage Test Results

A12kV, 67A

100KHz Ring Wave270º Phase Angle

B3/C16kV, 3kA

Impulse Wave90º Phase Angle

C320kV, 10kA

Impulse Wave90º Phase Angle

PTR-XXX-1P1 120 V, Single Ø(2 wire + ground)

150 V150 V150 V

L-NL-GN-G

70 V85 V60 V

385 V400 V565 V

925 V1,200 V1,200 V

PTR-XXX-1S1 120/240 V, Split Ø(3 wire + ground)

300 V150 V150 V150 V

L-LL-NL-GN-G

80 V75 V85 V65 V

600 V410 V420 V565 V

1,200 V914 V

1,200 V1,200 V

PTR-XXX-3Y1 120/208 V, 3ØY(4 wire + ground)

300 V150 V150 V150 V

L-LL-NL-GN-G

80 V75 V85 V65 V

600 V410 V420 V565 V

1,200 V914 V

1,200 V1,200 V

PTR-XXX-1P2 240 V, Single Ø(2 wire + ground)

320 V320 V320 V

L-NL-GN-G

96 V100 V100 V

560 V590 V590 V

1,050 V1,290 V1,290 V

PTR-XXX-3Y2277/480 V, 3ØY220/380 V, 3ØY

(4 wire + ground)

550 V320 V320 V320 V

L-LL-NL-GN-G

135 V96 V

100 V100 V

895 V575 V575 V985 V

1,400 V1,050 V1,400 V1,575 V

PTR-XXX-3N2 240 V, 3 Ø Delta(3 wire + ground)

320 V320 V

L-LL-G

96 V100 V

643 V643 V

1,275 V1,275 V

PTR-XXX-3N4380 V, 3 Ø Delta480 V, 3 Ø Delta

(3 wire + ground)

550 V550 V

L-LL-G

140 V140 V

915 V915 V

1,375 V1,375 V

Let-Through Voltage Test Environment: Positive Polarity. Time base=1ms. All voltages are peak (±10%). Surge voltages are measured from the insertion point of surge on the sine wave to the peak of the surge. All tests are Dynamic (voltage applied) except N-G which is static (no voltage applied). All tests were performed with 6 inches of lead length outside the device enclosure which simulates actual “as installed” performance. Single-pulse, surge current testing for all modes at rated currents, is in compliance with NEMA LS 1-1992. Single-pulse, surge current capacities of 200,000 amps or less are determined by single-unit testing of all components within each mode. Present industry test equipment limitations require testing of individual components or sub-assemblies within a mode for single-pulse, surge current capacities over 200,000 amps.

VOLTAGE CODE

Voltage Code Nominal System Voltage # of Phases Neutral Ground

1P1 Single Phase 120 1 1 1

1P22 Single Phase 220 1 1 1

1P23 Single Phase 230 1 1 1

1P2 Single Phase 240 1 1 1

1S1 Split Phase 120/240 2 1 1

1S2 Split Phase 240/480 2 1 1

3Y1 Wye 120/208 3 1 1

3Y2 Wye 277/480 3 1 1

3Y22 Wye 220/380 3 1 1

3Y23 Wye 230/400 3 1 1

3Y24 Wye 240/415 3 1 1

3Y3 Wye 347/600V 3 1 1

3D1 High Leg Delta 120/240 3 1 1

3N2 Delta 240 3 0 1

3N4 Delta 480 3 0 1

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Frequency Responsive CircuitrySection 2.7

Section 2.7

Enclosure Dimensions

Option Code SuffixesC Dry Relay Contacts in Suppressor Enclosure. With Remote Light

Option, the DRC’s will be mounted on the Remote Light BoardS Internal Surge CounterDIN DIN Rail Mounting Foot

Inches (mm) Standard Model

A 9.37 (238)

B 5.00 (127)

C 3.00 (77)

D 8.87 (226)

E 3.37 (86)

Type NEMA 4 (ABS)

Weight 6.0 lbs (2.7 kg)

Enclosure A

B

C

D

E

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Section 2.8

PTT Series

Voltage Responsive CircuitryThe PowerTrip® PTT series of surge protective device is designed for AC power protection against harmful transients that cost facilities in both loss of equipment and loss of productive time. Utilizing the VRC technology this device provides excellent protection against high energy surges that bombard power systems. Units are available in 30, 60 and 100 kA per phase peak surge capacity with a 200 kA short circuit current rating. This model is engineered for single and three phase applications and offers silicon high temperature, high voltage power connection cables. These features and a 10 year warranty make the PowerTrip® PTT series a good value for a high level of protection.

PTT-100

PTT-060

PTT-030

Ideal for application environments that depend on reliable operations of their computer systems and networks for their day to day operations, such as:

Small Businesses•Office Buildings•Banks•Retail Stores•Restaurants•Gas Stations and Fuel Depots•Office Complexes•School Campuses•Churches, etc. •

Exposure category “B” Uses:Service entrance equipment located •inside a facility, feeder circuits and short branch circuitsDistribution panel boards and devices•Busways and feeders in industrial •plantsHeavy appliance outlets with short •connections to the service entrance equipmentLighting systems in large buildings or •facilities

Light Industrial, Commercial and Residential services:

Sub-panels within a large commercial •facility, or for smaller service entrances Protection of mid to upper level •residential applications, in particular smart homes or homes with above average computer networks or home entertainment systems.

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Voltage Responsive CircuitrySection 2.8

Section 2.8

Voltage Responsive Circuitry

GeneralIEEE–C62.41.1 & C62.41.2-2002 environments: Suitable for Categories: A, B & C (Most Severe Electrical Environments)

IEC Environments: Suitable for use in IEC 61643-11 environments

Circuit Topology: Individual Fused Suppression Module, parallel redundant for long life, High energy parallel design, Thermal cutout protection, Multi-stage suppression circuit, all protection circuits are encapsulated in high strength dielectric compound to promote long component life and protection from the weather and vibration.

Protection Modes: L-N, L-L (normal mode) and L-G, N-G (common mode). Seven discrete modes

Input Power: 50-400 Hz (60 Hz nominal)

Temperature Rating: Up to 176 °F (80 °C)

Standard Enclosure: NEMA 4X Rated (Other enclosure options available on pg. 2-32.)

Diagnostics: Bright Blue LED’s, one per phase, normally on.

Circuit Interrupt: Internal component-level, thermal fusing and circuit board mounted, over-current fusing.

Short Circuit Current Rating: 200 kAIC

Product Qualifications: CE Compliant, ISO 9001 Certified Manufacturing Facility

Warranty: 10 years Unlimited Free Replacement

KEY FEATURESSilicon High temperature, High voltage •power connecting cables

Independent Verification of Performance •and Safety

LED indication to indicate Protection Status •(one per phase)

NEMA 4x enclosure standard•

Individually fused Suppression Modules-•parallel redundant

Circuit Encapsulation for safety and •performance

Part Numbering SystemExample: PTT-100-1S1-C

PTT - 100 - 1S1 - C

(1) Model -(2) Peak Surge Current

per Phase (kA)100, 060, 030

-(3) Voltage Code

See the Voltage Code Chart-

(4) OptionSee the Option Suffixes

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PTT-XXX VOLTAGE PERFORMANCE AND ELECTRICAL SPECIFICATIONS

Model Circuit Type MCOVLet-through Voltage Test Results

Test Mode Cat B6 kV / 3 kA 8/20us

PTT-XXX-1P1 120 V, 1Ø (2 wire + ground)

150 V150 V150 V

L-NL-GN-G

389 V418 V360 V

PTT-XXX-1P2 240 V, 1Ø Wye (2 wire + ground)

320 V320 V320 V

L-NL-GN-G

680 V703 V650 V

PTT-XXX-3Y1 120/208 V, 3Ø Wye (4 wire + ground)

150 V150 V300 V150 V

L-NL-GL-LN-G

425 V440 V789 V360 V

PTT-XXX-3Y22 220/380 V, 3Ø Wye (4 wire + ground)

320 V320 V550 V320 V

L-NL-GL-LN-G

691 V714 V

1,327 V650 V

PTT-XXX-3Y2 277/480 V, 3Ø Wye(4 wire + ground)

320 V320 V550 V320 V

L-NL-GL-LN-G

836 V867 V

1,616 V797 V

Let-through Voltage Test Parameters: Positive Polarity, Net voltages are peak (±10%). All tests are static except 150 V MCOV modes. Let-through voltages on static tests calculated by subtracting sinewave peak from let-through measured from zero. 150 V MCOV mode let-through voltages measured from the insertion point on the sinewave. Each phase is the average of the 3 modes. In order to duplicate the results, the specified mode must be tested for all three phases (except N-G) and averaged together. (Individual mode or shot results may vary by more than 10%. Scope Settings: Time Base = 10 microseconds, Sampling Rate = 500 Megasamples/sec. These settings assure Let-through voltages test results are accurate). All tests performed with 6” lead length (external to the enclosure), simulating actual installed performance.

Surge Current Testing: Single-pulse surge current testing for all modes at rated currents as recommended by NEMA LS1-1992. Single pulse surge current capacities of 200,000 amps or less are determined by testing all suppression components within each mode as a group. Present industry test equipment limitations require testing of individual suppression components or subassemblies within a mode for single-pulse surge capacities over 200,000 amps.

VOLTAGE CODE

Voltage Code Nominal System Voltage # of Phases Neutral Ground

1P1 Single Phase 120 1 1 1

1P22 Single Phase 220 1 1 1

1P23 Single Phase 230 1 1 1

1P2 Single Phase 240 1 1 1

1S1 Split Phase 120/240 2 1 1

1S2 Split Phase 240/480 2 1 1

3Y1 Wye 120/208 3 1 1

3Y2 Wye 277/480 3 1 1

3Y22 Wye 220/380 3 1 1

3Y23 Wye 230/400 3 1 1

3Y24 Wye 240/415 3 1 1

3Y3 Wye 347/600V 3 1 1

3D1 High Leg Delta 120/240 3 1 1

3N2 Delta 240 3 0 1

3N4 Delta 480 3 0 1

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Section 2.8

Enclosure Dimensions

Option Code SuffixesD1 Integral Disconnect, base model mounted in NEMA 4X Fiberglass

Composite Enclosure with Disconnect Switch on the outside of the enclosure

D2 External Non-Fused Disconnect (Separate 10x8x6 NEMA 12 Metal Enclosure)

D3 Integral Disconnect, base model mounted in NEMA 4X Fiberglass Composite Enclosure with Internal Handle Disconnect Switch

M NEMA 12 Rated Metal Enclosure.NOTE: Some options may not be available for all products. Other options

may be available on request.

Inches (mm) Standard Model

A 7.625 (194)

B 4.725 (120)

C 2.260 (57.4)

D 8.780 (223)

E 8.260 (210)

F 3.500 (89)

Type NEMA 4 (ABS)

Wieght 1.7 lbs (0.8 kg)

Enclosure

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PTP-V Series

Voltage Responsive CircuitryThe PowerTrip® PTP-V series provides transient protection in a parallel wired AC unit intended for single phase or 208/380/480 VAC 3 phase wye or delta circuit applications at locations feeding sensitive/critical equipment. Extremely effective in limiting transients generated inside the facility with a peak surge current rating of 20 kA per mode. The compact size and fast response time deliver protection where and when it is needed.

PTP-V SeriesProtection

ServiceEntrance

DistributionPanel

Individual Equipment

SPD

SPD

SPD

MCC

Individual VFD Motor Circuit

Lighting Panel

HVAC Panel

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Voltage Responsive CircuitrySection 2.9

Section 2.9

Voltage Responsive Circuitry

GeneralDescription: Series wired parallel-connected Surge Protective Device with encapsulated Voltage Responsive circuitry (20kA per mode peak surge current.)

Application: Designed for use at ANSI/IEEE Category A with susceptibility up to medium exposure levels to protect sensitive/critical loads fed by a single phase or 208/380/480 V 3 phase AC circuit.

Warranty: 25 Years Unlimited Free Replacement

Enclosure: Plastic, UL 94V

Mounting: External mounting feet.

Connection Method: Wires - #10 stranded wire // 2.60 mm dia.

Shipping Weight: 2 lbs (0.9 kg)

Circuit Design: Parallel connected hybrid design incorporating discrete all mode protection and utilizing our encapsulated Voltage Responsive Circuitry design to provide lowest possible let-through-voltages. All suppression circuits are completely encapsulated in our exclusive compound to assure long component life and complete protection from the environment and/or vibration.

Protection Modes: Protection components and circuitry for each mode. Normal Mode and Common Mode

Input Power Frequency: 50-60Hz

Maximum Continuous Operating Current: 60 Amps AC

Circuit Diagnostics: LED – 1 per phase, normally on.

Circuit Interrupt: Thermal and Current fusing integral to the unit

Options: Din rail mountable – specify - DIN as suffix.

KEY FEATURESDiscrete “All Mode“ Circuitry: Directly •Connected Protection Elements in “All Modes“ (10 modes for 3 phase, 4 wire Wye circuits) as recommend by NEMA LS-1 and IEEE Std. 1100-1999

Industry leading Measured Limiting Voltage •(let-through) performance

Local & Remote Diagnostics•

Independent Verification of Performance •and Safety

Component-Level, Thermal Fusing•

Part Numbering SystemExample: PTP-VW-1S1-DIN

PTP-VW - 1S1 - DIN

(1) Model -(2) Voltage Code

See the Voltage Code Chart-

(3) OptionDin rail mountable

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PTP-VW VOLTAGE PERFORMANCE AND ELECTRICAL SPECIFICATIONS

Model MCOV Mode

ANSI/IEEE C62.41 & C62.45Let-Through Voltage Test Results

A36kV, 200A

100KHz Ring Wave 90º Phase Angle

B3/C16kV, 3kA

Impulse Wave90º Phase Angle

C320kV, 10kA

Impulse Wave90º Phase Angle

PTP-VW-1S1

150 V300 V150 V150 V

L-NL-LL-GN-G

535 V930 V930 V510 V

650 V1,110 V1,090 V640 V

1,000 V1,200 V900 V900 V

PTP-VW-3Y1

150 V300 V150 V150 V

L-NL-LL-GN-G

535 V930 V930 V510 V

650 V1,110 V1,090 V640 V

1,000 V1,200 V900 V900 V

PTP-VW-3Y2

320 V550 V320 V320 V

L-NL-LL-GN-G

475 V620 V620 V475 V

585 V875 V592 V590 V

1,200 V1,400 V1,100 V1,400 V

PTP-VW-3N2 320 V320 V

L-LL-G

470 V470 V

575 V575 V

1200 V1200 V

PTP-VW-3N4 550 V550 V

L-LL-G

625 V625 V

825 V825 V

1400 V1400 V

*Measured Limiting Voltage (Let-Through) Test Environment: Dynamic (D) or Static (S), positive polarity. All voltages are peak (±10%). Time Base is 1ms. 180° phase angle voltages are measured form the zero crossing, 90° phase angle voltages are measured from the positive peak of the sine wave to the positive peak of the surge indicating actual excess voltage let through. All tests were performed with the device connected in series simulating actual installation.**Suppressed Voltage Test Environment using test parameters as defined by Underwriters Laboratory: Dynamic (D) or Static (S), Positive Polarity. Time base=10μs. All voltages are peak (±10%), 90° phase angle voltages are measured from the zero crossing to the peak of the surge.

VOLTAGE CODE

Voltage Code Nominal System Voltage # of Phases Neutral Ground

1P1 Single Phase 120 1 1 1

1P22 Single Phase 220 1 1 1

1P23 Single Phase 230 1 1 1

1P2 Single Phase 240 1 1 1

1S1 Split Phase 120/240 2 1 1

1S2 Split Phase 240/480 2 1 1

3Y1 Wye 120/208 3 1 1

3Y2 Wye 277/480 3 1 1

3Y22 Wye 220/380 3 1 1

3Y23 Wye 230/400 3 1 1

3Y24 Wye 240/415 3 1 1

3D1 High Leg Delta 120/240 3 1 1

3N2 Delta 240 3 0 1

3N4 Delta 480 3 0 1

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Section 2.9

Enclosure Dimensions

Option Code SuffixesDIN DIN Rail Mounting foot

Inches (mm) Standard Model

A 5.750 (146)

B 5.250 (133)

C 4.625 (117)

D 2.250 (57)

E 3.125 (79)

Type NEMA 4 (ABS)

Weight 2 lbs (0.9 kg)

Enclosure

ABC

D E

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PTY-V Series

Voltage Responsive CircuitryThe PowerTrip PTY-V® series with Voltage Responsive Circuitry features clamping protection that provides surge suppression in some of the harshest environments. Applications including exposure to lightning, grid switching, pole mounted applications and other sensitive/critical locations requiring protection from external transient sources. Available in a 120 kA per phase peak surge current and a 200 kA short circuit rating. This unit is designed for locations including industrial-type sub panels, office equipment, warehouse panels, lighting systems and residential applications. The small size and NEMA 4X composite housing allows maximum application flexibility and ease of installation by a licensed electrician.

PTY-V SeriesProtection

ServiceEntrance

IndustrialSub Panel

Residential

SPD

WarehousePanel

Office Equipment

Lighting Panel

Motor Circuit

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Voltage Responsive CircuitrySection 2.10

Section 2.10

Voltage Responsive Circuitry

GeneralIEEE–C62.41.1 & C62.41.2-2002 environments: Suitable for Categories: A, B & C (Most Severe Electrical Environments)

IEC Environments: Suitable for use in IEC 61643-11 environments

Circuit Topology: Parallel connected, Voltage Responsive Circuitry design incorporating component level, thermal fusing; internal, circuit board mounted over-current fusing; and Discrete “All Mode” Protection (10 modes for 3 phase Wye units). All protection circuits are encapsulated to assure long component life and complete protection from the weather and vibration.

Protection Modes:Industry-best practice of true all mode dedicated protection components for all operational modes of the electrical system. Discrete L-N, L-L (Normal Mode) and L-G, N-G (Common Mode) Example: Directly Connected Protection Elements in All 10 modes for a 3 phase, 4 wire, Wye system, (i.e. 3 L-N modes, 3 L-L modes, 3 L-G modes and 1 N-G mode).

Input Power: 50-60 Hz (60 Hz nominal)

Temperature Rating: Up to 176 °F (80 °C)

Standard Enclosure: NEMA 4X

Diagnostics: Green LED’s, one per phase, normally on.

Circuit Interrupt: Internal component-level, thermal fusing and patented circuit board mounted, over-current fusing.

UL 1449 Short Circuit Current Rating: 200 kAIC (Highest Rating)

Product Qualifications: UL Lightning Protection System Certified Component, Secondary Surge Arrestor (Q option), Listed to UL1449 2nd Edition (Feb. 9, 2007 Rev.) by CSA and UL, an NRTL, CSA MC#214804, UL1283 and CE Compliant, ISO 9001 Certified Manufacturing Facility

KEY FEATURESDiscrete “All Mode” Circuitry: Directly •Connected Protection Elements in “All Modes” (10 modes for 3 phase Wye circuits) as recommend by NEMA LS-1 and IEEE Std. 1100-2005

Industry Leading Measured Limiting •Voltage (let-through) Performance

Local & Remote Diagnostics•

Independent Verification of Performance •and Safety

Component-Level, Thermal Fusing•

Patented Internal, Circuit Board Mounted,•

Over-Current Fusing•

Part Numbering SystemExample: PTY-V120-1S1-C

PTY-V 120 - 1S1 - C

(1) Model(2) Peak Surge Current

per phase (kA)120

-(3) Voltage Code

See the Voltage Code Chart-

(4) OptionSee the Option Suffixes

Other configurations are available upon request, for example:1Px - True single phase (1 phase, neutral and ground)2Nx - Dual phase Delta (2 phases and ground)

LISTED 1449Second Edition

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MODEL PTY-FXXX VOLTAGE PERFORMANCE AND ELECTRICAL SPECIFICATIONS

Model Circuit Type MCOV Mode

ANSI/IEEE C62.41.1 & .2-2002 and C62.45-2002Let-through Voltage Test Results

(tested w/6” lead length external to the enclosure per UL 1449)

Cat B2 Ω Impulse Wave

6 kV / 3 kA@ 90° Phase Angle

Cat C2 Ω Impulse Wave

20 kV / 10 kA@ 90° Phase Angle

PTY-V120-1P1 120 V, Single Ø(2 wire + ground)

150 V150 V150 V

L-NL-GN-G

447 V444 V620 V

1,000 V900 V900 V

PTY-V120-1S1 120/240 V 1Ø (Split)(3 wire + ground)

150 V300 V150 V150 V

L-NL-LL-GN-G

447 V907 V444 V620 V

1,000 V1,200 V900 V900 V

PTY-V120-3Y1 120/208 V 3Ø Wye(4 wire + ground)

150 V300 V150 V150 V

L-NL-LL-GN-G

447 V907 V444 V620 V

1,000 V1,200 V900 V900 V

PTY-V120-3D1120/240 V 3Ø

High-Leg Delta(4 wire + ground)

150 V320 V300 V150 V320 V150 V

L-NHi-L-N

L-LL-G

Hi-L-GN-G

447 V907 V907 V444 V907 V620 V

1,000 V1,200 V1,200 V900 V

1,100 V900 V

PTY-V120-3Y2 277/480 V 3Ø Wye(4 wire + ground)

320 V550 V320 V320 V

L-NL-LL-GN-G

585 V925 V592 V

1,000 V

1,200 V1,400 V1,100 V1,400 V

PTY-V120-3N2 240 V 3Ø Delta (NN)(3 wire + ground)

320 V320 V

L-LL-G

585 V585 V

1,200 V1,200 V

PTY-V120-3N4 480 V 3Ø Delta (NN)(3 wire + ground)

550 V550 V

L-LL-G

925 V925 V

1,400 V1,400 V

Let-through Voltage Test Parameters: Positive Polarity, Net voltages are peak (±10%). All tests are static except 150 V MCOV modes. Let-through voltages on static tests calculated by subtracting sinewave peak from let-through measured from zero. 150 V MCOV mode let-through voltages measured from the insertion point on the sinewave. Each phase is the average of the 3 modes. In order to duplicate the results, the specified mode must be tested for all three phases (except N-G) and averaged together. (Individual mode or shot results may vary by more than 10%. Scope Settings: Time Base = 10 microseconds, Sampling Rate = 500 Megasamples/sec. These settings assure Let-through voltages test results are accurate). All tests performed with 6” lead length (external to the enclosure), simulating actual installed performance.

Surge Current Testing: Single-pulse surge current testing for all modes at rated currents as recommended by NEMA LS1-1992. Single pulse surge current capacities of 200,000 amps or less are determined by testing all suppression components within each mode as a group. Present industry test equipment limitations require testing of individual suppression components or subassemblies within a mode for single-pulse surge capacities over 200,000 amps.

VOLTAGE CODE

Voltage Code Nominal System Voltage # of Phases Neutral Ground

1P1 Single Phase 120 1 1 1

1P22 Single Phase 220 1 1 1

1P23 Single Phase 230 1 1 1

1P2 Single Phase 240 1 1 1

1S1 Split Phase 120/240 2 1 1

1S2 Split Phase 240/480 2 1 1

3Y1 Wye 120/208 3 1 1

3Y2 Wye 277/480 3 1 1

3Y22 Wye 220/380 3 1 1

3Y23 Wye 230/400 3 1 1

3Y24 Wye 240/415 3 1 1

3D1 High Leg Delta 120/240 3 1 1

3N2 Delta 240 3 0 1

3N4 Delta 480 3 0 1

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Voltage Responsive CircuitrySection 2.10

Section 2.10

Enclosure Dimensions

Option Code SuffixesC Form C dry relay contactsLP Remote daylight bright LEDsP Flush mount plateQ Secondary Arrester labelingOther options are be available upon request.

Inches (mm) Standard Model

A 7.100 (180)

B 6.125 (156)

C 5.829 (148)

D 3.250 (83)

E 3.455 (88)

F 2.375 (60)

Type NEMA 4X

Weight 4 lbs (1.8 kg)

Enclosure

A

B

C

D

E

F

Green LED status indicators, one per phase, normally on.Pre-installed 3/4" hub (As shown)Circuit Connection: #10 Wire (preattached)

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Section 2.11

PTY-F Series

Frequency Responsive Circuitry The PowerTrip® PTY-F series utilizes FRC technology which provides the best ring wave transient protection available in a surge protective device. Designed for protection of light industrial-type sub panels and residential applications. These units are extremely effective in virtually eliminating internally generated transients and are a must on panels feeding small offices and other locations with microprocessor-based, sensitive equipment and/or computer systems. Available in a 120 kA per phase peak surge current with a 200 kA short circuit rating. The small size and NEMA 4X composite housing allows maximum application flexibility with ease of installation. Features include suppression status indication through normally-on, LEDs (one per phase indicating suppression status on each phase) and a dry relay contact option (C suffix).

PTY-F SeriesProtection

ServiceEntrance

IndustrialSub Panel

Computer System

SPD

WarehousePanel

Microprocessor BasedEquipment

Manufacturing Equipment

Lighting Panel

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Frequency Responsive CircuitrySection 2.11

Section 2.11

Frequency Responsive Circuitry

GeneralIEEE–C62.41.1 & C62.41.2-2002 environments: Suitable for Categories: A, B & C (Most Severe Electrical Environments)

IEC Environments: Suitable for use in IEC 61643-11 environments

Circuit Topology: Parallel connected, hybrid Frequency Responsive Circuitry and Voltage Responsive Circuitry design incorporating component level, thermal fusing; internal, circuit board mounted over-current fusing; and Discrete “All Mode” Protection (10 modes for 3 phase Wye units). All protection circuits are encapsulated to assure long component life and complete protection from the weather and vibration. Available without Frequency Responsive Circuitry (PTY-V Series).

Protection Modes: Industry-best practice of true all mode dedicated protection components for all operational modes of the electrical system. Discrete L-N, L-L (Normal Mode) and L-G, N-G (Common Mode) Example: Directly Connected Protection Elements in All 10 modes for a 3 phase, 4 wire, Wye system, (i.e. 3 L-N modes, 3 L-L modes, 3 L-G modes and 1 N-G mode).

Input Power: 50-60 Hz (60 Hz nominal)

Temperature Rating: Up to 176 °F (80 °C)

Standard Enclosure: NEMA 4X

Diagnostics: Green LED’s, one per phase, normally on.

Circuit Interrupt: Internal component-level, thermal fusing and patented circuit board mounted, over-current fusing.

UL 1449 Short Circuit Current Rating: 200 kAIC (Highest Rating)

Product Qualifications: UL Lightning Protection System Certified Component, Secondary Surge Arrestor (Q option), Listed to UL1449 2nd Edition (Feb. 9, 2007 Rev.) by CSA and UL, an NRTL, CSA MC#214804, UL1283 and CE Compliant, ISO 9001 Certified Manufacturing Facility

KEY FEATURESDiscrete “All Mode” Circuitry: Directly •Connected Protection Elements in “All Modes” (10 modes for 3 phase Wye circuits) as recommend by NEMA LS-1 and IEEE Std. 1100-2005

Industry Leading Measured Limiting •Voltage (let-through) Performance

Multi-stage Hybrid Frequency Responsive •Circuitry

Local & Remote Diagnostics•

Independent Verification of Performance •and Safety

Component-Level, Thermal Fusing•

Patented Internal, Circuit Board Mounted,•

Over-Current Fusing•

Part Numbering SystemExample: PTY-F120-1S1-C

PTY-F 120 - 1S1 - C

(1) Model(2) Peak Surge Current

per Phase (kA)120

-(3) Voltage Code

See the Voltage Code Chart-

(4) OptionSee the Option Suffixes

Other configurations are available upon request, for example:1Px - True single phase (1 phase, neutral and ground)2Nx - Dual phase Delta (2 phases and ground)

LISTED 1449Second Edition

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Frequency Responsive Circuitry Section 2.11

Section 2.11

MODEL PTY-FXXX VOLTAGE PERFORMANCE AND ELECTRICAL SPECIFICATIONS

Model Circuit Type MCOV Mode

ANSI/IEEE C62.41.1 & .2-2002 and C62.45-2002Let-through Voltage Test Results

(tested w/6” lead length external to the enclosure per UL 1449)

Cat A30 Ω 100 kHz

Ring Wave 2 kV / 67 A@ 270° Phase Angle

Cat B2 Ω Impulse Wave

6 kV / 3 kA@ 90° Phase Angle

Cat C2 Ω Impulse Wave

20 kV / 10 kA@ 90° Phase Angle

PTY-F120-1P1 120 V, Single Ø(2 wire + ground)

150 V150 V150 V

L-NL-GN-G

29 V398 V358 V

447 V444 V620 V

1,000 V900 V900 V

PTY-F120-1S1 120/240 V 1Ø (Split)(3 wire + ground)

150 V300 V150 V150 V

L-NL-LL-GN-G

29 V73 V

398 V358 V

447 V907 V444 V620 V

1,000 V1,200 V900 V900 V

PTY-F120-3Y1 120/208 V 3Ø Wye(4 wire + ground)

150 V300 V150 V150 V

L-NL-LL-GN-G

29 V73 V

398 V358 V

447 V907 V444 V620 V

1,000 V1,200 V900 V900 V

PTY-F120-3D1120/240 V 3Ø

High-Leg Delta(4 wire + ground)

150 V320 V300 V150 V320 V150 V

L-NHi-L-N

L-LL-G

Hi-L-GN-G

29 V73 V73 V

398 V398 V358 V

447 V907 V907 V444 V907 V620 V

1,000 V1,200 V1,200 V900 V

1,100 V900 V

PTY-F120-3Y2 277/480 V 3Ø Wye(4 wire + ground)

320 V550 V320 V320 V

L-NL-LL-GN-G

73 V69 V

677 V679 V

585 V925 V592 V

1,000 V

1,200 V1,400 V1,100 V1,400 V

PTY-F120-3N2 240 V 3Ø Delta (NN)(3 wire + ground)

320 V320 V

L-LL-G

116 V 585 V585 V

1,200 V1,200 V

PTY-F120-3N4 480 V 3Ø Delta (NN)(3 wire + ground)

550 V550 V

L-LL-G

232 V 925 V925 V

1,400 V1,400 V

Let-through Voltage Test Parameters: Positive Polarity, Net voltages are peak (±10%). All tests are static except 150 V MCOV modes. Let-through voltages on static tests calculated by subtracting sinewave peak from let-through measured from zero. 150 V MCOV mode let-through voltages measured from the insertion point on the sinewave. Each phase is the average of the 3 modes. In order to duplicate the results, the specified mode must be tested for all three phases (except N-G) and averaged together. (Individual mode or shot results may vary by more than 10%. Scope Settings: Time Base = 10 microseconds, Sampling Rate = 500 Megasamples/sec. These settings assure Let-through voltages test results are accurate). All tests performed with 6” lead length (external to the enclosure), simulating actual installed performance.

Surge Current Testing: Single-pulse surge current testing for all modes at rated currents as recommended by NEMA LS1-1992. Single pulse surge current capacities of 200,000 amps or less are determined by testing all suppression components within each mode as a group. Present industry test equipment limitations require testing of individual suppression components or subassemblies within a mode for single-pulse surge capacities over 200,000 amps.

VOLTAGE CODE

Voltage Code Nominal System Voltage # of Phases Neutral Ground

1P1 Single Phase 120 1 1 1

1P22 Single Phase 220 1 1 1

1P23 Single Phase 230 1 1 1

1P2 Single Phase 240 1 1 1

1S1 Split Phase 120/240 2 1 1

1S2 Split Phase 240/480 2 1 1

3Y1 Wye 120/208 3 1 1

3Y2 Wye 277/480 3 1 1

3Y22 Wye 220/380 3 1 1

3Y23 Wye 230/400 3 1 1

3Y24 Wye 240/415 3 1 1

3D1 High Leg Delta 120/240 3 1 1

3N2 Delta 240 3 0 1

3N4 Delta 480 3 0 1

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Frequency Responsive CircuitrySection 2.11

Section 2.11

Enclosure Dimensions

Option Code SuffixesC Form C dry relay contactsLP Remote daylight bright LEDsN Removes neutral to ground Frequency Responsive CircuitryP Flush mount plateQ Secondary Arrester labelingOther options are be available upon request.

Inches (mm) Standard Model

A 7.100 (180)

B 6.125 (156)

C 5.829 (148)

D 3.250 (83)

E 3.455 (88)

F 2.375 (60)

Type NEMA 4X

Weight 4 lbs (1.8 kg)

Enclosure

A

B

C

D

E

F

Green LED status indicators, one per phase, normally on.Pre-installed 3/4" hub (As shown)Circuit Connection: #10 Wire (preattached)

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Section 2.12

PTS-V Series

Voltage Responsive CircuitryThe PowerTrip® PTS-V series provides surge protection for serial connected individual equipment applications. Models are available in most AC single phase electrical configurations. Units are extremely effective in limiting transients generated within the facility and have a robust 60 kA per phase peak surge current rating. The PTS-V series provides protection at locations feeding sensitive, mission critical equipment. For installation and flexibility most units are available with terminal connections or wire connections. A DC unit with the same features and benefits is also available, see PTS-V DC Series (pg. 2-49).

PTS-V SeriesProtection

ServiceEntrance

DistributionPanel

Office Equipment

SPD

SPD

SPD

Sub Panel

Computer

Small Motor

Industrial Equipment

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Voltage Responsive CircuitrySection 2.12

Section 2.12

Voltage Responsive Circuitry

GeneralDescription: Series connected Surge Protective Device with encapsulated Voltage Responsive circuitry (20 kA per mode)

Application: Designed for use at ANSI/IEEE Categories A, B, and C with susceptibility up to all exposure levels to protect sensitive/critical loads fed by a single electrical circuit.

Warranty: 25 Year Unlimited Free Replacement

Unit Certification: Recognized Component under UL1449 2nd Edition (Feb. 9, 2007 Rev.) by CSA, an NRTL

Enclosure: Plastic, UL 94V-5VA (UL’s highest fire rating)

Mounting: External mounting feet. Din rail mounting feet (DIN option)

Connection Method: Single Phase*: 3-position screw terminal strips on the line/equipment sides of the device. (wire connections are also available). Three Phase♦: 4-5 position screw terminal strips on the line/equipment sides of the device. (wire connections are also available) Note: 60 A Models are available only with wire connections.

Shipping Weight: *: < 2 lbs (0.9 kg), ♦: 3 lbs (1.36 kg)

Circuit Design: Series connected hybrid design incorporating discrete all mode protection and utilizing our encapsulated Voltage Responsive Circuitry design to provide lowest possible let-through voltages. All suppression circuits are encapsulated in our high dielectric compound to assure long component life and complete protection from the environment and/or vibration. All circuits include Component Level/Thermal Fusing.

Protection Modes: Dedicated protection circuitry for every possible mode. Discrete L-N (Normal Mode), and Discrete L-G, N-G (Common Mode)

Input Power Frequency: 50-420 Hz (60 Hz)

Current & Voltage Configurations: 15 to 60 Amps with various models up to 480 V AC (Other voltages & configurations available upon request)

Peak Surge Current: 20 kA per mode/60 kA total PSC

Circuit Diagnostics: Green LED, normally on.

Circuit Interrupt: External (see installation instructions for details).

KEY FEATURESDiscrete “All Mode” Circuitry•

Industry Leading Measured Limiting •Voltage (let-through) Performance

Multi-stage Hybrid Voltage Responsive •Circuitry

Local & Remote Diagnostics•

Independent Verification of Performance •and Safety

Component-Level, Thermal Fusing•

Internal, Circuit Board Mounted, Over-•Current Fusing

Part Numbering SystemExample: PTS-VT1S1-15-C

PTS-VT 1S1 - 15 - C

(1) ModelPTS-VT - Terminals

PTS-VW - Wires

(2) Voltage CodeSee the Voltage Code Chart

-(3) Amperage

15, 30, 60-

(4) OptionSee the Option Suffixes

*

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Section 2.12

PTS-VXXXX VOLTAGE PERFORMANCE AND ELECTRICAL SPECIFICATIONS

Model MCOV Mode

ANSI/IEEE C62.41.1 & .2-2002 and C62.45-2002Let-through Voltage Test Results

Cat A 30 Ω 100 kHz Ring Wave

6 kV 200 A @ 90° Phase Angle

Cat B 2 Ω Impulse Wave

6 kV / 3 kA @ 90° Phase Angle

PTS-V1S1-x

150 V300 V150 V150 V

L-NL-LL-GN-G

210469 (S)

290430 (S)

324561 (S)

322655 (S)

PTS-V3Y1-x

150 V300 V150 V150 V

L-NL-LL-GN-G

210469 (S)

290430 (S)

324561 (S)

322655 (S)

PTS-V3D1-x

150 V300 V300 V150 V300 V150 V

L-NHL-NL-LL-G

HL-GN-G

210398 (S)469 (S)

290425 (S)430 (S)

324548 (S)561 (S)

322558 (S)655 (S)

PTS-V3Y2-x

320 V550 V320 V320 V

L-NL-LL-GN-G

398 (S)735 (S)425 (S)830 (S)

548 (S)921 (S)558 (S)960 (S)

PTS-V3N2-x 320320

L-LL-G

398 (S)398 (S)

548 (S)548 (S)

PTS-V3N4-x 550550

L-LL-G

735 (S)735 (S)

921 (S)921 (S)

*Let-Through Voltage Test Environment: All tests are dynamic except for those marked (S) which are static. All voltages are peak (±10%). Tests performed at270 degrees are measured from the insertion point to the peak of the surge. Tests performed at 90 degrees are measured from the peak of the AC sine wave to the peak of the surge. All tests were performed with the device connected in series simulating actual installation. Time base=10 μs.

VOLTAGE CODE

Voltage Code Nominal System Voltage # of Phases Neutral Ground

1P1* Single Phase 120 1 1 1

1P22* Single Phase 220 1 1 1

1P23* Single Phase 230 1 1 1

1P2* Single Phase 240 1 1 1

1S1♦ Split Phase 120/240 2 1 1

1S2♦ Split Phase 240/480 2 1 1

3Y1♦ Wye 120/208 3 1 1

3Y2♦ Wye 277/480 3 1 1

3Y22♦ Wye 220/380 3 1 1

3Y23♦ Wye 230/400 3 1 1

3Y24♦ Wye 240/415 3 1 1

3D1♦ High Leg Delta 120/240 3 1 1

3N2♦ Delta 240 3 0 1

3N4♦ Delta 480 3 0 1

* CSA Recognized Component

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Voltage Responsive CircuitrySection 2.12

Section 2.12

Enclosure Dimensions

Option Code SuffixesEAC External Audible Alarm ModuleC Dry Relay ContactsLP Remotely mounted NEMA-4X LED(s)

Special OptionsDIN DIN rail mountingRJnn Modular ISDN Grade Telecom Circuit Protection (nn = 11, 14, 45, etc.)P Parallel connected (The P suffix replaces the amperage)WX NEMA 4X housing*Special lead lengths are available upon request (Ex.: -48IN = 48” leads)

Inches (mm) PTS-VT PTS-VW

A 5.750 (146) 5.750 (146)

B 5.250 (133) 5.250 (133)

C 4.625 (117) 4.625 (117)

D 2.250 (57) 2.250 (57)

E 3.125 (79) 3.125 (79)

F 1.875 (47) 1.875 (47)

Weight 2 lbs (0.9 kg) 2 lbs (0.9 kg)

Enclosure

End View

Top View

Status Light(Normaly On)

ABC

D E

F

End View

Top View

F

ED

CBA

Status Light(Normaly On)

ConnectingWires

Wire Leads(2 ft - #10AWG)

♦ ♦

♦: Unit dimensions: 8.265” x 5.010” x 3.150”, Weight 3 lbs (1.36 kg)This drawing is representative of 3 Phase Wye models (4Wire + G). Other models may have fewer terminal positions and number of LED’s based on the respective electrical configuration. Actual unit may vary from picture.

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Section 2.13

PTS-V DC Series

Voltage Responsive CircuitryThe PowerTrip® PTS-V DC series provides surge protection for DC serial connected equipment. Models are available in most DC voltages with a peak surge capacity of 20 kA per mode for 15 amp units and 40 kA per mode for 30 amp units. These devices are extremely effective in limiting transients generated within the facility and provide protection at locations feeding sensitive, mission critical equipment. For installation and flexibility most units are available with terminal connections or wire connections. An AC voltage unit that offers the same industry leading let-through values for unsurpassed equipment protection is also available, PTS-V Series (pg. 2-45).

PTS-V DC SeriesProtection

ServiceEntrance

Sub Panel

DC Drive

SPD

SPD

SPD

Sub Panel

DC Power Supply

Instrumentation

DC Alarm System

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Voltage Responsive CircuitrySection 2.13

Section 2.13

Voltage Responsive Circuitry

GeneralDescription: Series connected Surge Protection Device with encapsulated Voltage Responsive circuitry (20 kA per mode/60 kA total peak surge current)

Application: Designed for use at ANSI/IEEE Categories A, B, and C with susceptibility up to all exposure levels to protect sensitive/critical loads fed by a single electrical circuit.

Warranty: 25 Year Unlimited Free Replacement

Enclosure: Plastic, UL 94V-5VA (UL’s highest fire rating)

Mounting: External mounting feet. Din rail mounting feet (DIN option)

Connection Method: 3-position screw terminal strips on the line/equipment sides of the device. (wire connections are also available). Note: 60 A Models are available only with wire connections.

Shipping Weight: < 2 lbs (0.9 kg)

Circuit Design: Series connected hybrid design incorporating discrete all mode protection and utilizing our encapsulated Voltage Responsive Circuitry design to provide lowest possible let-through voltages. All suppression circuits are encapsulated in our high dielectric compound to assure long component life and complete protection from the environment and/or vibration. All circuits include Component Level/Thermal Fusing.

Protection Modes: Dedicated protection circuitry for every possible mode. Discrete L-N (Normal Mode), and Discrete L-G, N-G (Common Mode)

Current & Voltage Configurations: 15 to 60 Amps with various models up to 480 V DC (Other voltages & configurations available upon request)

Peak Surge Current: 20 kA per mode/60 kA total PSC

Circuit Diagnostics: Green LED, normally on.

Circuit Interrupt: External (see installation instructions for details).

KEY FEATURESDiscrete “All Mode” Circuitry•

Industry Leading Measured Limiting •Voltage (let-through) Performance

Multi-stage Hybrid Voltage Responsive •Circuitry

Local & Remote Diagnostics•

Independent Verification of Performance •and Safety

Component-Level, Thermal Fusing•

Part Numbering SystemExample: PTS-VT120DC-15-C

PTS-VT 120 DC - 15 - C

(1) ModelPTS-VT - Terminals

PTS-VW - Wires

(2) Voltage15 to 480

(3) DC -(4) Amperage

15, 30, 60-

(5) OptionSee the Option Suffixes

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Section 2.13

PTS-VXXXX VOLTAGE PERFORMANCE AND ELECTRICAL SPECIFICATIONS

Model MCOV TestMode

ANSI/IEEE C62.41.1 & .2-2002 and C62.45-2002Let-through Voltage Test Results

Cat A30 Ω 100 kHz

Ring Wave 6 kV 200 A@ 90° Phase Angle

Cat B2 Ω Impulse Wave

6 kV / 3 kA@ 90° Phase Angle

*PTS-VT120DC-x150 V150 V150 V

P-NP-GN-G

210 (D)290 (D)430 (S)

289 (D)380 (D)550 (S)

*PTS-VT240DC-x320 V320 V320 V

P-NP-GN-G

398 (S)425 (S)430 (S)

548 (S)558 (S)655 (S)

*PTS-VT277DC-x320 V320 V320 V

P-NP-GN-G

398 (S)425 (S)830 (S)

548 (S)558 (S)655 (S)

*PTS-VT480DC-x550 V550 V550 V

P-NP-GN-G

66 (S) < 900 (S)< 900 (S)< 900 (S)

Let-Through Voltage Test Environment: All tests are dynamic (D) except for those marked (S) which are static. All voltages are peak (±10%). Tests performed at 270 degrees are measured from the insertion point to the peak of the surge. Tests performed at 90 degrees are measured from the peak of the AC sine wave to the peak of the surge. All tests were performed with the device connected in series simulating actual installation. Time base=10 μs.* CSA Recognized Component

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Voltage Responsive CircuitrySection 2.13

Section 2.13

Enclosure Dimensions

Option Code SuffixesEAC External Audible Alarm ModuleC Dry Relay ContactsLP Remotely mounted NEMA-4X LED(s)

Special OptionsDIN DIN rail mountingRJnn Modular ISDN Grade Telecom Circuit Protection (nn = 11, 14, 45, etc.)P Parallel connected (The P suffix replaces the amperage)WX NEMA 4X housing*Special lead lengths are available upon request (Ex.: -48IN = 48” leads)

Inches (mm) PTS-VT PTS-VW

A 5.750 (146) 5.750 (146)

B 5.250 (133) 5.250 (133)

C 4.625 (117) 4.625 (117)

D 2.250 (57) 2.250 (57)

E 3.125 (79) 3.125 (79)

F 1.875 (47) 1.875 (47)

Weight 2 lbs (0.9 kg) 2 lbs (0.9 kg)

Enclosure

End View

Top View

Status Light(Normaly On)

ABC

D E

F

End View

Top View

F

ED

CBA

Status Light(Normaly On)

ConnectingWires

Wire Leads(2 ft - #10AWG)

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Section 2.14

PTS-F Series

Frequency Responsive CircuitryThe PowerTrip® PTS-F series of surge protective devises offers the best combined method of transient protection. This series offers FRC protection which tracks and clamps transients on the sine wave resulting in lower let-through voltages and a greater level of protection. These models are effective in limiting internally generated transients that cost a facility in the loss of equipment and productive time. All models are rated with a robust 60 kA per phase peak surge current rating. Series wired for AC single phase applications designed for use on sensitive/critical loads fed by a single electrical circuit. For installation and flexibility most units are available with terminal or wire connections. A DC unit that offers the same level of protection is also available, see PTS-F DC Series (pg. 2-57).

PTS-F SeriesProtection

ServiceEntrance

Sub Panel

Instrumentation

SPD

SPD

SPD

Sub Panel

Individual Circuit

Computer

Microprocessor BasedEquipment

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Frequency Responsive CircuitrySection 2.14

Section 2.14

Frequency Responsive Circuitry

GeneralDescription: Series connected Surge Protective Device with encapsulated Voltage Responsive Circuitry (20 kA per mode/60 kA total peak surge current) and Enhanced Frequency Responsive Circuitry for virtual elimination of ring wave type transients.

Application: Designed for use at ANSI/IEEE Categories A, B, and C with susceptibility up to all exposure levels to protect sensitive/critical loads fed by a single electrical circuit.

Warranty: 25 Year Unlimited Free Replacement

Unit Certification: Recognized Component under UL1449 2nd Edition (Feb. 9, 2007 Rev.) by CSA, an NRTL

Enclosure: Plastic, UL 94V-5VA (UL’s highest fire rating)

Mounting: External mounting feet. Din rail mounting feet (DIN option)

Connection Method: Single Phase*: 3-position screw terminal strips on the line/equipment sides of the device. Three Phase♦: 4-5 position screw terminal strips on the line/equipment sides of the device. (wire connections are also available) Note: 60 A Models are available only with wire connections.

Shipping Weight: *:< 2 lbs (0.9 kg), ♦: 3 lbs (1.36 kg)

Circuit Design: Series connected hybrid design incorporating discrete all mode protection and utilizing our encapsulated Voltage Responsive Circuitry and optional Enhanced Frequency Responsive Circuitry design to provide lowest possible let-through-voltages. All suppression circuits are encapsulated in our high dielectric compound to promote long component life and protection from the environment and/or vibration. All circuits include Component Level/Thermal Fusing.

Protection Modes: Dedicated protection circuitry for every possible mode. Discrete L-N (Normal Mode), and Discrete L-G, N-G (Common Mode)

Input Power Frequency: 50-60 Hz

Current & Voltage Configurations: 15 to 60 Amps with various models up to 480 V AC (Other voltages & configurations available upon request)

Peak Surge Current: 20 kA per mode/60 kA total PSC

Circuit Diagnostics: Green LED, normally on.

Circuit Interrupt: External (see installation instructions for details).

KEY FEATURESDiscrete “All Mode” Circuitry•

Industry Leading Measured Limiting •Voltage (let-through) Performance

Multi-stage Hybrid Frequency Responsive •Circuitry

Local & Remote Diagnostics•

Independent Verification of Performance •and Safety

Component-Level, Thermal Fusing•

Part Numbering SystemExample: PTS-FT1S1-15-C

PTS-FT 1S1 - 15 - C

(1) ModelPTS-FT - Terminals

PTS-FW - Wires

(2) Voltage CodeSee the Voltage Code Chart

-(3) Amperage

15, 30, 60-

(4) OptionSee the Option Suffixes

*

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Section 2.14

PTS-FXXXX VOLTAGE PERFORMANCE AND ELECTRICAL SPECIFICATIONS

Model MCOV Mode

ANSI/IEEE C62.41.1 & .2-2002 and C62.45-2002Let-through Voltage Test Results

Cat A30 Ω 100 kHz Ring Wave

2 kV / 67 A@ 270° Phase Angle

Cat B2 Ω Impulse Wave

6 kV / 3 kA@ 90° Phase Angle

PTS-FT1S1-x

150 V300 V150 V150 V

L-NL-LL-GN-G

3046 (S)

5833 (S)

324561 (S)

322655 (S)

PTS-FT3Y1-x

150 V300 V150 V150 V

L-NL-LL-GN-G

3046 (S)

5833 (S)

324561 (S)

322655 (S)

PTS-FT3D1-x

150 V300 V300 V150 V300 V150 V

L-NHL-NL-LL-G

HL-GN-G

3030 (S)46 (S)

5858 (S)33 (S)

324548 (S)561 (S)

322558 (S)655 (S)

PTS-FT3Y2-x

320 V550 V320 V320 V

L-NL-LL-GN-G

66 (S)131 (S)100 (S)51 (S)

548 (S)921 (S)558 (S)960 (S)

PTS-FT3N2-x 320 V320 V

L-LL-G

66 (S) 548 (S)548 (S)

PTS-FT3N4-x 550 V550 V

L-LL-G

131 (S) 921 (S)921 (S)

Let-Through Voltage Test Environment: All tests are dynamic (D) except for those marked (S) which are static. All voltages are peak (±10%). Tests performed at 270 degrees are measured from the insertion point to the peak of the surge. Tests performed at 90 degrees are measured from the peak of the AC sine wave to the peak of the surge. All tests were performed with the device connected in series simulating actual installation. Time base=10 μs.

VOLTAGE CODE

Voltage Code Nominal System Voltage # of Phases Neutral Ground

1P1* Single Phase 120 1 1 1

1P22* Single Phase 220 1 1 1

1P23* Single Phase 230 1 1 1

1P2* Single Phase 240 1 1 1

1S1♦ Split Phase 120/240 2 1 1

1S2♦ Split Phase 240/480 2 1 1

3Y1♦ Wye 120/208 3 1 1

3Y2♦ Wye 277/480 3 1 1

3Y22♦ Wye 220/380 3 1 1

3Y23♦ Wye 230/400 3 1 1

3Y24♦ Wye 240/415 3 1 1

3D1♦ High Leg Delta 120/240 3 1 1

3N2♦ Delta 240 3 0 1

3N4♦ Delta 480 3 0 1

* CSA Recognized Component

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Frequency Responsive CircuitrySection 2.14

Section 2.14

Enclosure Dimensions

Option Code SuffixesEAC External Audible Alarm ModuleC Dry Relay ContactsLP Remotely mounted NEMA-4X LED(s)N No Neutral-to-Ground Sinewave Tracking Filter

Special OptionsDIN DIN rail mountingRJnn Modular ISDN Grade Telecom Circuit Protection (nn = 11, 14, 45, etc.)P Parallel connected (The P suffix replaces the amperage)WX NEMA 4X housing*Special lead lengths are available upon request (Ex.: -48IN = 48” leads)

Inches (mm) PTS-FT PTS-FW

A 5.750 (146) 5.750 (146)

B 5.250 (133) 5.250 (133)

C 4.625 (117) 4.625 (117)

D 2.250 (57) 2.250 (57)

E 3.125 (79) 3.125 (79)

F 1.875 (47) 1.875 (47)

Weight 2 lbs (0.9 kg) 2 lbs (0.9 kg)

Enclosure

End View

Top View

Status Light(Normaly On)

ABC

D E

F

End View

Top View

F

ED

CBA

Status Light(Normaly On)

ConnectingWires

Wire Leads(2 ft - #10AWG)

♦ ♦

♦ Unit dimensions: 8.265” x 5.010” x 3.150”, Weight 3 lbs (1.36 kg)This drawing is representative of 3 Phase Wye models (4Wire + G). Other models may have fewer terminal positions and number of LED’s based on the respective electrical configuration. Actual unit may vary from picture.

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Section 2.15

PTS-F DC Series

Frequency Responsive CircuitryThe PowerTrip® PTS-F DC series of surge protective device offers the best combined method of transient protection. The FRC feature results in lower let-through voltages, there by offering a greater level of protection against internally generated transients. These devices are intended for a single 12, 24, 48,125 or 240v DC circuit application at locations feeding sensitive/critical equipment. All models are related with a robust 20 kA per mode peak surge current rating. The PTS-F DC series is designed as a stand-alone device that requires no special external enclosure. Most voltages are available with either wired or terminal connections. An AC voltage unit that offers the same industry leading let-through values for unsurpassed equipment protection is also available, PTS-F Series (pg. 2-53).

PTS-F DC SeriesProtection

ServiceEntrance

Sub Panel

DC Controls

SPD

SPD

SPD

Sub Panel

DC Power Supply

DC Circuit

Instrumentation

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C Series

Frequency Responsive CircuitrySection 2.15

Section 2.15

Frequency Responsive Circuitry

GeneralDescription: Series connected Surge Protective Device with encapsulated Voltage Responsive Circuitry (20 kA per mode and Frequency Responsive Circuitry for virtual elimination of ring wave type transients.

Application: Designed for use at ANSI/IEEE Categories A, B, and C with susceptibility up to all exposure levels to protect sensitive/critical loads fed by a single electrical circuit.

Warranty: 25 Year Unlimited Free Replacement

Enclosure: Plastic, UL 94V-5VA (UL’s highest possible fire rating)

Mounting: External mounting feet. Din rail mounting feet (DIN option)

Connection Method: 3-position screw terminal strips on the line/equipment sides of the device. (wire connections are also available) Note: 60 A Models are available only with wire connections.

Shipping Weight: < 2 lbs (0.9 kg)

Circuit Design: Series connected hybrid design incorporating discrete all mode protection and utilizing our encapsulated Voltage Responsive Circuitry and Frequency Responsive Circuitry design to provide lowest possible let-through-voltages. All suppression circuits are encapsulated in our high dielectric compound to promote long component life and protection from the environment and /or vibration. All circuits include Component Level/Thermal Fusing.

Protection Modes: Dedicated protection circuitry for every possible mode. Discrete L-N (Normal Mode), and Discrete L-G, N-G (Common Mode)

Input Power Frequency: 50-60 Hz

Current & Voltage Configurations: 15 to 60 Amps with various models up to 480 V DC (Other voltages & configurations available upon request)

Peak Surge Current: 20 kA per mode

Circuit Diagnostics: Green LED, normally on.

Circuit Interrupt: External (see installation instructions for details).

KEY FEATURESDiscrete “All Mode” Circuitry•

Industry Leading Measured Limiting •Voltage (let-through) Performance

Multi-stage Hybrid Frequency Responsive •Circuitry

Local & Remote Diagnostics•

Independent Verification of Performance •and Safety

Component-Level, Thermal Fusing•

Part Numbering SystemExample: PTS-FT120DC-15-C

PTS-FT 120 DC - 15 - C

(1) ModelPTS-FT - Terminals

PTS-FW - Wires

(2) Voltage15 to 480

(3) DC -(4) Amperage

15, 30, 60-

(5) OptionSee the Option Suffixes

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Section 2.15

PTS-FXXXX VOLTAGE PERFORMANCE AND ELECTRICAL SPECIFICATIONS

Model MCOV TestMode

ANSI/IEEE C62.41.1 & .2-2002 and C62.45-2002Let-through Voltage Test Results

Cat A30 Ω 100 kHz

Ring Wave 2 kV 67 A@ 270° Phase Angle

Cat B2 Ω Impulse Wave

6 kV / 3 kA@ 90° Phase Angle

*PTS-FT120DC-x150 V150 V150 V

P-NP-GN-G

16 (D)50 (D)32 (S)

316 (D)429 (D)498 (S)

*PTS-FT240DC-x320 V320 V320 V

P-NP-GN-G

16 (S)50 (S)32 (S)

548 (S)558 (S)655 (S)

*PTS-FT277DC-x320 V320 V320 V

P-NP-GN-G

35 (S)87 (S)61 (S)

548 (S)558 (S)655 (S)

*PTS-FT480DC-x550 V550 V550 V

P-NP-GN-G

35 (S)87 (S)61 (S)

< 855 (S)< 1,014 (S)< 855 (S)

Let-Through Voltage Test Environment: All tests are dynamic (D) except for those marked (S) which are static. All voltages are peak (±10%). Tests performed at 270 degrees are measured from the insertion point to the peak of the surge. Tests performed at 90 degrees are measured from the peak of the AC sine wave to the peak of the surge. All tests were performed with the device connected in series simulating actual installation. Time base=10 μs.* CSA Recognized Component

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Frequency Responsive CircuitrySection 2.15

Section 2.15

Enclosure Dimensions

Option Code SuffixesEAC External Audible Alarm ModuleC Dry Relay ContactsLP Remotely mounted NEMA-4X LED(s)N No Neutral-to-Ground Sinewave Tracking Filter

Special OptionsDIN DIN rail mountingRJnn Modular ISDN Grade Telecom Circuit Protection (nn = 11, 14, 45, etc.)P Parallel connected (The P suffix replaces the amperage)WX NEMA 4X housing*Special lead lengths are available upon request (Ex.: -48IN = 48” leads)

Inches (mm) PTS-FT PTS-FW

A 5.750 (146) 5.750 (146)

B 5.250 (133) 5.250 (133)

C 4.625 (117) 4.625 (117)

D 2.250 (57) 2.250 (57)

E 3.125 (79) 3.125 (79)

F 1.875 (47) 1.875 (47)

Weight 2 lbs (0.9 kg) 2 lbs (0.9 kg)

Enclosure

End View

Top View

Status Light(Normaly On)

ABC

D E

F

End View

Top View

F

ED

CBA

Status Light(Normaly On)

ConnectingWires

Wire Leads(2 ft - #10AWG)

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Section 2.16

PTE-F Series

Frequency Responsive CircuitryThe PowerTrip® PTE-F series of surge protective device offers the best combined method of transient protection. This series features FRC technology protection which tracks the AC sinewave and responds to harmful transient activity at whatever polarity and phase angle it occurs resulting in the lowest let- through voltage ratings available. These models are effective in limiting internally generated transients that cost a facility in the loss of equipment and productive time. This extreme level of protection is ideal for series wired single phase critical/sensitive equipment. All models are rated with a robust 20 kA peak surge current rating. Most units are available with either terminal or wire connections. A DC voltage unit that offers the same industry leading let-through values for unsurpassed equipment protection is also available, PTE-F DC Series (pg-2-65).

PTE-F SeriesProtection

ServiceEntrance

Sub Panel

Office Equipment

SPD

SPD

SPD

Sub Panel

Microprocessor BasedEquipment

Computer

Individual Circuit

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PTE-F Series

Frequency Responsive CircuitrySection 2.16

Section 2.16

Frequency Responsive Circuitry

GeneralDescription: Series connected/Series protected Surge Protective Device with encapsulated Voltage Responsive Circuitry (40 kA per mode) and Enhanced Frequency Responsive Circuitry for virtual elimination of ring wave type transients.

Application: Designed for use at ANSI/IEEE Categories A, B, and C with susceptibility up to all exposure levels to protect sensitive/critical loads fed by a single electrical circuit.

Warranty: 25 Year Unlimited Free Replacement

Enclosure: Plastic, UL 94V-5VA (UL’s highest fire rating)

Mounting: External mounting feet. Din rail mounting feet (DIN option)

Connection Method: 2-position screw terminal strips on the line/equipment sides of the device. (wire connections are optional)

Shipping Weight: < 2 lbs (0.9 kg)

Circuit Design: Series connected hybrid design incorporating discrete protection and utilizing our encapsulated Voltage Responsive Circuitry and Frequency Responsive Circuitry design to provide lowest possible let-through-voltages. All suppression circuits are encapsulated in our high dielectric compound to assure long component life and protection from the environment and/or vibration.

Protection Modes: Dedicated protection circuitry for every possible mode. Discrete L-N (AC) (Normal Mode) + to – P-N (DC) modes

Input Power Frequency: 50-60 Hz

Maximum Continuous Operating Current: 3 Amps

Current & Voltage Configurations: 3 Amps 5-140 V AC/DC

Series Impedance: 100 μH

Peak Surge Current: 20 kA per mode, /20 kA total PSC

Circuit Diagnostics: Green LED, normally on.

Circuit Interrupt: External (see installation instructions for details).

KEY FEATURESDiscrete “All Mode” Circuitry•

Industry Leading Measured Limiting •

Voltage (let-through) Performance•

Multi-stage Hybrid Frequency Responsive •Circuitry (FRC)

Independent Verification of Performance •and Safety

Component Level, Thermal Fusing•

Part Numbering SystemExample: PTE-FT120-3-C

PTE-FT 120 - 3 - C

(1) ModelPTE-FT - Terminals

PTE-FW - Wires

(2) Voltage15 to 480

- (3) Amperage* -(4) Option

See the Option Suffixes

*Additional ratings are available upon request.

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Section 2.16

PTE-FXXXX VOLTAGE PERFORMANCE AND ELECTRICAL SPECIFICATIONS

Model

MCOV TestMode

ANSI/IEEE C62.41.1 & .2-2002 and C62.45-2002Let-through Voltage Test Results

Nominal System VoltageAC/DC

A1 Ring Wave

6 kV, 100 A, 100 kHz RW180° Phase Angle

A3Ring Wave6 kV, 200 A

180° Phase Angle

B3/C1Impulse Wave

6 kV, 3 kA180° Phase Angle

5 7.5 L-L (S) (S) (S)

12 15 L-L (S) (S) (S)

24 36 L-L (S) (S) (S)

48 54 L-L 5 (S) 14 (S) 46 (S)

140 140 L-L (D) (D) (D)

Let-Through Voltage Test Environment: All tests are dynamic (D) except for those marked (S) which are static. All voltages are peak (±10%). Tests performed at 270 degrees are measured from the insertion point to the peak of the surge. Tests performed at 90 degrees are measured from the peak of the AC sine wave to the peak of the surge. All tests were performed with the device connected in series simulating actual installation. Time base=10 μs.

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Frequency Responsive CircuitrySection 2.16

Section 2.16

Enclosure Dimensions

Option Code SuffixesLP Remotely mounted NEMA-4X LED(s)

Special OptionsDIN DIN rail mountingRJnn Modular Telco/LAN (nn = 11, 14, 45, etc.)WX NEMA 4X housing*Special lead lengths are available upon request (Ex.: -48IN = 48” leads)

Inches (mm) Standard Model

A 5.750 (146)

B 5.250 (133)

C 1.875 (47)

D 3.125 (79)

Weight 2 lbs (0.9 kg)

Enclosure

AB

CD

End ViewTop View

Status Light(Normaly On)

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Frequency Responsive Circuitry Section 2.17

Section 2.17

PTE-F DC Series

Frequency Responsive CircuitryThe PowerTrip® PTE-F series of surge protective device offers the best combined method of transient protection. This series features FRC technology protection which tracks the sinewave and responds to harmful transient activity on the circuit resulting in the lowest let-through voltage ratings available. These models are effective in limiting internally generated transients that cost a facility in the loss of equipment and productive time. This extreme level of protection is ideal for DC voltage series wired critical/sensitive equipment. All models are rated with a robust 20 kA peak surge current rating. Most units are available with either terminal or wire connections. An AC voltage unit that offers the same industry leading let-through values for unsurpassed equipment protection is also available, PTE-F Series (pg. 2-61).

PTE-F DC SeriesProtection

ServiceEntrance

Sub Panel

DC Power Supply

SPD

SPD

SPD

Sub Panel

Servo System

DC Individual Circuit

Instrumentation

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Frequency Responsive CircuitrySection 2.17

Section 2.17

Frequency Responsive Circuitry

GeneralDescription: Series connected/Series protected Surge Protective Device with encapsulated Voltage Responsive Circuitry (20 kA per mode) and Frequency Responsive Circuitry for virtual elimination of ring wave type transients.

Application: Designed for use at ANSI/IEEE Categories A, B, and C with susceptibility up to all exposure levels to protect sensitive/critical loads fed by a single electrical circuit.

Warranty: 25 Year Unlimited Free Replacement

Enclosure: Plastic, UL 94V-5VA (UL’s highest fire rating)

Mounting: External mounting feet. Din rail mounting feet (DIN option)

Connection Method: 2-position screw terminal strips on the line/equipment sides of the device. (wire connections are optional)

Shipping Weight: < 2 lbs (0.9 kg)

Circuit Design: Series connected hybrid design incorporating discrete protection and utilizing our encapsulated Voltage Responsive Circuitry and Frequency Responsive Circuitry design to provide lowest possible let-through-voltages. All suppression circuits are encapsulated in our high dielectric compound to assure long component life and protection from the environment and/or vibration.

Protection Modes: Dedicated protection circuitry for every possible mode. + to – P-N (DC) modes

Input Power Frequency: 0 Hz

Maximum Continuous Operating Current: 3 Amps

Current & Voltage Configurations: 3 Amps 5-140 V AC/DC

Series Impedance: 100 μH

Peak Surge Current: 20 kA per mode, /20 kA total PSC

Circuit Diagnostics: Green LED, normally on.

Circuit Interrupt: External (see installation instructions for details).

KEY FEATURESDiscrete “All Mode” Circuitry•

Industry Leading Measured Limiting •

Voltage (let-through) Performance•

Multi-stage Hybrid Frequency Responsive •Circuitry (FRC)

Independent Verification of Performance •and Safety

Component Level, Thermal Fusing•

Part Numbering SystemExample: PTE-FT120DC-3-C

PTE-FT 120 DC - 3 - C

(1) ModelPTE-FT - Terminals

PTE-FW - Wires

(2) Voltage15 to 480

(3) DC - (4) Amperage* -(5) Option

See the Option Suffixes

*Additional ratings are available upon request.

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Frequency Responsive Circuitry Section 2.17

Section 2.17

PTE-FXXXX VOLTAGE PERFORMANCE AND ELECTRICAL SPECIFICATIONS

Model

MCOV TestMode

ANSI/IEEE C62.41.1 & .2-2002 and C62.45-2002Let-through Voltage Test Results

Nominal System VoltageAC/DC

A1 Ring Wave

6 kV, 100 A, 100 kHz RW180° Phase Angle

A3Ring Wave6 kV, 200 A

180° Phase Angle

B3/C1Impulse Wave

6 kV, 3 kA180° Phase Angle

5 7.5 L-L (S) (S) (S)

12 15 L-L (S) (S) (S)

24 36 L-L (S) (S) (S)

48 54 L-L 5 (S) 14 (S) 46 (S)

140 140 L-L (D) (D) (D)

Let-Through Voltage Test Environment: All tests are dynamic (D) except for those marked (S) which are static. All voltages are peak (±10%). Tests performed at 270 degrees are measured from the insertion point to the peak of the surge. Tests performed at 90 degrees are measured from the peak of the AC sine wave to the peak of the surge. All tests were performed with the device connected in series simulating actual installation. Time base=10 μs.

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Frequency Responsive CircuitrySection 2.17

Section 2.17

Enclosure Dimensions

Option Code SuffixesLP Remotely mounted NEMA-4X LED(s)

Special OptionsDIN DIN rail mountingRJnn Modular Telco/LAN (nn = 11, 14, 45, etc.)WX NEMA 4X housing*Special lead lengths are available upon request (Ex.: -48IN = 48” leads)

Inches (mm) Standard Model

A 5.750 (146)

B 5.250 (133)

C 1.875 (47)

D 3.125 (79)

Weight 2 lbs (0.9 kg)

Enclosure

AB

CD

End ViewTop View

Status Light(Normaly On)

Page 85: ALLTEC Surge Suppression Catalog

3Surge Protective Devices

Data & Telecom Models

Page 86: ALLTEC Surge Suppression Catalog

Section 3.1 AAK Series

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AA

K Series

AAK SeriesAAK Series RJ45 Rack mount and wall mount protector will ensure the reliable operation of networked equipment connected to 10BASE-T, 100BASE-T Ethernet, CDDI , 100VG-AnyLan, ATM155 RS422, RS232, Token Ring, Lease Line, ISDN, T1, DDS, Dial-Up and most other communication interfaces.

FEATURES

State-of-the-art, avalanche diode technology•

Compact, in-line installation•

High speed, high energy handling capability•

Low shunt capacitance to reduce signal loss•

BENEFITS

Affordable, superior, equipment protection•

Improved reliability resulting in less down time•

The AAK series offers protection from transients that damage critical/sensitive data and communication equipment. Transients can enter the electronic equipment through any connection, not just the power line. High energy surges from sources such as nearby lightning strikes, load switching and electrostatic discharge can result in expensive equipment loss and down time. A properly installed AAK model will clamp the over voltage event and keep the harmful transients away from valuable equipment. ALLTEC’s AAK series includes a 19 inch relay rack protector as well as 5 inch standoff units designed for wall mount applications or when space is limited. A wide variety of communication interface options are available including coax, 10/100/1000BASE T Ethernet, RS232, RS422, along with Power over Ethernet Modes A and B. On Telco applications we offer protection for T1 and other lease line environments. All models feature a response time of less than 5 nanoseconds.

ORDERING INFORMATIONTo order an AAK, choose the connector type that accommodates the system application and the number of wires to be protected.

NOTESpecial units can be supplied for any voltage between 7.5 V and 240 V. The following information must be specified when ordering special units:

Connector type and port assignment (ex. 24 •ports)

System application (ex. Ethernet)•

INSTALLATIONTo install, insert the protector in series between the incoming communication line and the I/O port of the equipment to be protected. The protector ground wire must be connected to the metal chassis of the equipment being protected. Units should be installed at both ends of the data cable for the most effective protection.

CAUTION!Ground wire must be grounded directly to the metal chassis of the equipment being protected. The equipment chassis must be connected to earth through a properly grounded AC power receptacle.

WARRANTY

5 Year Replacement Program•

Limited Lifetime Warranty•This warranty applies only to serialized products registered with ALLTEC Corporation and is subject to certain disclaimers and limitations.

For a complete warranty statement, please contact ALLTEC Corporation. All specifications and dimensions are subject to change without notice.

Page 87: ALLTEC Surge Suppression Catalog

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AAK SERIES SCHEMATIC

19.0

1.37

3.54

*8, 12, 16, 24 ports are available.

ELECTRICAL SPECIFICATIONS

10/100 BASE T,RS422, RS485,

RS423, ETHERNET

1000 BASE TCATEGORY 6

ETHERNET

HIGH VOLTAGE ETHERNET

RS232 T1

STD. CLAMP VOLTAGE

7.5 VOLTS 7.5 VOLTS 60 VOLTS 18 VOLTS 60 VOLTS

PEAK PULSE CURRENT 10/1000 us s.c. wave form @Vcl

132 AMPS 100 AMPS 45 AMPS 60 AMPS 50 AMPS

RESPONSE TIME — — — — — — — — — — LESS THAN 5 NANOSECONDS — — — — — — — — — —

MAXIMUM SHUNT CAPACITANCE

<40pF <10pF <15pF <40pF <75pF

SYSTEM APPLICATION AND MODEL NUMBER

10/100 BASE T,RS422, RS485,

RS423, ETHERNET

1000 BASE TCATEGORY 6

ETHERNET

HIGH VOLTAGE ETHERNET

RS232 T1

24 Ports19” Rack MountedALL PINS

AAK-24EAAK-24E-C5E

AAK-24-E-C6 X AAK-24-T AAK-24-B

16 Ports19” Rack MountedALL PINS

AAK-16EAAK-16E-C5E

AAK-16E-C6AAK-16-C6

60VAAK-16-T AAK-16-B

12 Ports19” Rack MountedALL PINS

AAK-12EAAK-12E-C5E

AAK-12E-C6AAK-12-C6

60VAAK-12-T AAK-12-B

8 Ports19” Rack MountedALL PINS

AAK-8EAAK-8E-C5E

AAK-8E-C6AAK-8-C6

60VAAK-8-T AAK-8-B

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Section 3.2 ATJ Series

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ATJ Series

ATJ Series

Ideal for RJ11 and RJ45 Style - Twisted Pair InterfacesThe ATJ Series of SPD for RJ45 and RJ11 interfaces will ensure the reliable operation of Local and Wide Area Networks. We offer protection for LAN interface technologies such as Ethernet 10BASE T, 100BASE T, CDDI, 100VG-AnyLan and ATM155. For WAN and Telco applications we offer protection for environments including ISDN, T1, FT1, DDS, analog dial up modems, faxes and more. Additionally, our Custom Products Division provides products for nonstandard or custom applications not included in our standard product offering.

FEATURES

State-of-the-art, avalanche diode technology•

Thyristor technology•

Compact, in-line installation•

High speed, high energy handling capability•

Low shunt capacitance to reduce signal loss•

BENEFITS

Affordable, superior, equipment protection•

Improved reliability resulting in less down time•

Protection at the interface card•

Adaptability to most industry applications•

The ATJ Series devices guard sensitive data networks against lightning induced surges, AC power interference, electrostatic discharge, and ground loop energies. Typical applications include: NIC’s, switches, hubs, repeaters, bridges, routers, point of sale terminals, modems, fax machines, telephones and most other types of communications equipment utilizing RJ45 or RJ11 modular telephone jacks. High speed avalanche diode technology is used in conjunction with low capacitance circuitry enabling the protectors to function at a much greater bandwidth without causing signal degradation. Standard units are available with up to 8 wires protected on the RJ45 devices, and up to 6 wires protected on the RJ11 device. All this, in combination with their small size, makes the ATJ exceedingly versatile.

ORDERING INFORMATIONTo order an ATJ, choose the connector type that accommodates the system application and the number of wires to be protected.

NOTESpecial units can be supplied for any voltage between 7.5 V and 240 V. The following information must be specified when ordering special units:

Connector type and pin assignment (ex., RJ45 •pins 1,2,7,8)

System application (ex., Ethernet)•

INSTALLATIONTo install, insert the protector in series between the incoming communication line and the I/O port of the equipment to be protected. The protector ground wire must be connected to the metal chassis of the equipment being protected. Units should be installed at both ends of the data cable for the most effective protection.

CAUTION!Ground wire must be grounded directly to the metal chassis of the equipment being protected. The equipment chassis must be connected to earth through a properly grounded AC power receptacle.

WARRANTY

5 Year Replacement Program•

Limited Lifetime Warranty•This warranty applies only to serialized products registered with ALLTEC Corporation and is subject to certain disclaimers and limitations.

For a complete warranty statement, please contact ALLTEC Corporation. All specifications and dimensions are subject to change without notice.

Page 89: ALLTEC Surge Suppression Catalog

Section 3.2ATJ Series

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ATJ

Ser

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ATJ SERIES RJ45 AND RJ11 INTERFACES PROTECTION

1.69

3.0

0.81

ELECTRICAL SPECIFICATIONS (CONTACT ALLTEC FOR SPECIAL CONFIGURATIONS)

10BASE TETHERNET

RS422/RS423

100BASE TETHERNET

ATM155

1000BASE TETHERNET

TOKEN RINGRS232

T1DIAL-UPMODEMFAX/DSL

STD. CLAMP VOLTAGE

7.5 VOLTS 12 VOLTS 7.5 VOLTS 18 VOLTS 60 VOLTS 240 VOLTS

PEAK PULSE CURRENT 10/1000 us s.c. wave form @Vcl

132 AMPS 97 AMPS 100 AMPS 60 AMPS 50 AMPS 75 AMPS

RESPONSE TIME — — — — — — — — — — LESS THAN 5 NANOSECONDS — — — — — — — — — —

MAXIMUM SHUNT CAPACITANCE

<40pF <25pF <10pF <40pF <75pF <95pF

RJ-11 AND RJ-45 SYSTEM APPLICATION AND MODEL NUMBER

WIRES PROTECTED

10BASE T ETHERNET

RS422/RS423

100BASE T ETHERNET

ATM155

1000BASE TETHERNET

TOKEN RINGRS232

T1DIAL-UP MODEMFAX/DSL

RJ11

2 WIRE2 CENTER PINSPROTECTED

X X X X X ATJ-02G/RJ11

4 WIRE4 CENTER PINSPROTECTED

ATJ-04E/RJ11 X X ATJ-04T/RJ11 ATJ-04B/RJ11 ATJ-04G/RJ11

6 WIREALL PINSPROTECTED

ATJ-06E/RJ11 X X ATJ-06T/RJ11 ATJ-06B/RJ11 X

RJ-45

1,2,3,6 ATJ-04E/RJ45 X X X X X

1,2,4,5 X X X X X X

1,2,7,8 X X X X X X

4 WIRE4 CENTER PINSPROTECTED

ATJ-04E/RJ45 C X X ATJ-04T/RJ45 X X

8 WIREALL PINSPROTECTED

ATJ-08E/RJ45

ATJ-C5(no RJ45

m/m adapter provided)

ATJ-C6/RJ45 ATJ-08T/RJ45 ATJ-Digital ATJ-08G/RJ45

Page 90: ALLTEC Surge Suppression Catalog

Section 3.3 ASP Series

Data &

Telecom

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3-6 Section 3.3 www.allteccorp.com

ASP

Series

ASP Series

Data Line Surge Protection - Ideal for LAN, Data, Signal and Instrumentation InterfacesThe ASP Series of terminal strip protectors will ensure the reliable operation of networked equipment connected to Token Ring, RS422, RS232, Short Haul Modems, Muxes, DDS, Analog Dial Up, ISDN, T1 and most other communication interfaces.

FEATURES

State-of-the-art, avalanche diode technology•

Compact in-line installation•

High speed, high energy handling capability•

Low shunt capacitance to reduce signal loss•

BENEFIT

Affordable, superior, equipment protection•

Improved reliability resulting in less down time•

Protection at the I/O interface•

Adaptability to most industry applications•

The ASP Series devices will guard sensitive data networks against lightning induced surges, AC power interference, electrostatic discharge, and ground loop energies. Typical applications include: data communications and instrumentation interfaces using Token Ring, RS422, RS232, Short Haul Modems, Muxes, CSU/DSU, T1, PLC’s and most other communication interfaces. When installed on the system I/O ports, ASPs prevent equipment damage and system errors which are a common result of transient surge energies induced onto the communications interface and ground plane. ASPs utilize low capacitance avalanche diode arrays for low loss, high speed protection. These field-proven circuits offer the most dependable protection available for today’s highly sensitive electronic systems. Whether you need to protect a single communication line, or an entire installation, ALLTEC protectors are an easy, cost-effective solution to overvoltage problems.

ORDERING INFORMATIONTo order a ASP, choose the correct part number by selecting the system application and connector type from the chart. See figures for product physical outlines.

NOTESpecial units can be supplied for any clamp voltage between 7.5 V and 240 V. The following information must be specified when ordering special units:

Connector type and number of wires (ex., barrier •strip, 4 wires)

System application (ex., 4-20 mA current loop)•

INSTALLATIONTo install, insert the protector in series between the incoming communication lines and the I/O port of the equipment to be protected. The protector ground wire must be connected to the metal chassis of the equipment being protected. Units should be installed at both ends of the data cable for the most effective protection.

CAUTION!If the protector has a ground wire it must be grounded directly to the metal chassis of the equipment being protected. Also, the equipment chassis must be connected to earth through a properly grounded AC power receptacle.

WARRANTY

5 Year Replacement Program•

Limited Lifetime Warranty•This warranty applies only to serialized products registered with ALLTEC Corporation and is subject to certain disclaimers and limitations.

For a complete warranty statement, please contact ALLTEC. All specifications and dimensions are subject to change without notice.

Page 91: ALLTEC Surge Suppression Catalog

Section 3.3ASP Series

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ASP

Ser

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ASP SERIES DATA LINE PROTECTION

1.69

3.0

0.81

ELECTRICAL SPECIFICATIONS (CONTACT ALLTEC FOR SPECIAL CONFIGURATIONS)

10BASE T ETHERNET

RS422RS423RS485

RS232,V.35 or Digital

4-20 mA Current

loop

TOKEN RING

ARCNETor Analog 4-20 mA Current

loop

CSU/DSU, T1, DDS,

ISDN (fused)

DIAL-UP MODEM

FAX (fused)

STD. CLAMP VOLTAGE 7.5 VOLTS 7.5 VOLTS 18 VOLTS 18 VOLTS 27 VOLTS 60 VOLTS 240 VOLTS

PEAK PULSE CURRENT 10/1000 us s.c. wave form @Vcl

132 AMPS 132 AMPS 60 AMPS 60 AMPS 40 AMP 50 AMPS 75 AMPS

RESPONSE TIME — — — — — — — —— — — — LESS THAN 5 NANOSECONDS — — — — — — — — — —

MAXIMUM SHUNT CAPACITANCE

<40pF <40pF 40pF <40pF <40pF <75pF <95pF

SYSTEM APPLICATION AND MODEL NUMBER

10BASE TETHERNET

RS422RS423RS485

RS232, V.35 or Digital

4-20 mA Current

loop

TOKENRING

ARCNETor Analog4-20 mA Current

loop

CSU/DSU, T1, DDS,

ISDN (fused)

DIAL-UP MODEM

FAX (fused)

2 TERMINAL BARRIER STRIP FIGURE A

ASP-2B-E ASP-2B-E ASP-2B-T ASP-2B-T ASP-2B-A ASP-2B-B ASP-2B-G

4 TERMINAL BARRIER STRIP FIGURE A

ASP-4B-E ASP-4B-E ASP-4B-T ASP-4B-T ASP-4B-A ASP-4B-B ASP-4B-G

Page 92: ALLTEC Surge Suppression Catalog

Section 3.4 AIP Series

Data &

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AIP

Series

AIP Series

Ideal for Subminiature D and Centronics Communication PortsThe AIP Series of Subminiature D interface protectors ensures the reliable operation of parallel and serial devices such as printers, and external modems, point-of-sale terminals, mainframes, dumb terminals and most other devices using Subminiature D or Centronics connectors, which are sensitive to destructive transient energies. Standard applications include Ethernet, Token Ring, RS232, RS422 and LAN/WAN interfaces. Special applications can be accommodated through our Custom Products Group.

FEATURES

State-of-the-art, avalanche diode technology•

Compact in-line installation•

High speed, high energy handling capability•

Low shunt capacitance to reduce signal loss•

BENEFIT

Affordable, superior, equipment protection•

Improved reliability resulting in less down time•

Protection at the interface card•

Adaptability to most industry applications•

Transient surges can enter electronic equipment through any pathway provided and damage expensive communications hardware. If a facility has a reliable AC power protection system in place, transient surge energies can still be generated within a building by sources such as inductive load switching, ground loop currents and electrostatic discharge. AIP Series protectors combine compact enclosures with extremely fast response times of less than 5 nanoseconds. They are specifically designed to give added security to electronic devices sensitive to voltage rises or ground loop energies and have been particularly effective in areas prone to lightning activity. Standard Centronics and Subminiature D (9 & 25 pin) interface connectors are available in configurations protecting all pins or specific pins as required. All these features make the AIP protectors the most cost effective and versatile devices of their kind available today.

ORDERING INFORMATIONTo order a AIP, choose the connector type that accommodates the system application to be protected.

NOTE Special units can be supplied for any voltage between 7.5 V and 240 V. The following information must be specified when ordering special units:

Connector type and pin assignment (ex., DB9 •pins (1),2,3,4 & 7) ( ) = pin designated as chassis or earth ground

System application (ex., RS232)•

INSTALLATIONTo install, insert the protector in series between the incoming communication lines and the I/O port of the equipment to be protected. The protector ground wire must be connected to the metal chassis of the equipment being protected. Units should be installed at both ends of the data cable for the most effective protection.

CAUTION!Ground wire must be grounded directly to the metal chassis of the equipment being protected. The equipment chassis must be connected to earth through a properly grounded AC power receptacle.

WARRANTY

5 Year Replacement Program•

Limited Lifetime Warranty•This warranty applies only to serialized products registered with ALLTEC Corporation and is subject to certain disclaimers and limitations.

For a complete warranty statement, please contact ALLTEC Corporation. All specifications and dimensions are subject to change without notice.

Page 93: ALLTEC Surge Suppression Catalog

Section 3.4AIP Series

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AIP

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SUBMINIATURE D INTERFACE PROTECTION

ELECTRICAL SPECIFICATIONS (CONTACT ALLTEC FOR SPECIAL CONFIGURATIONS)

ETHERNET RS422 PARALLEL RS232 TOKEN RING

STD. CLAMP VOLTAGE 7.5 VOLTS 7.5 VOLTS 7.5 VOLTS 18 VOLTS 18 VOLTS

PEAK PULSE CURRENT

10/1000 us s.c. wave form

@Vcl

132 AMPS 132 AMPS 132 AMPS 60 AMPS 60 AMPS

RESPONSE TIME — — — — — — — — LESS THAN 5 NANOSECONDS — — — — — — — —

MAXIMUM SHUNT

CAPACITANCE<30pF <30pF <30pF <30pF <30pF

SYSTEM APPLICATION AND MODEL NUMBER

DB 9 SERIES PINS PROTECTED RS422/RS423/RS485 RS232 TOKEN RING

PROTECTS ALL DB 9-RS422 DB 9-RS232 DB 9-18VLC

DB 25 SERIES STANDARD PIN

CONFIGURATIONS

RS422/RS423/RS485/

RS530RS232 PARALLEL

25 WIRE

ALL 25 PINS PROTECTEDDB 25-RS422 DB 25-RS232 DB 25-PARLL

4 WIRE

PINS (1), 2, 3, 7, 20X 425-R232 X

8 WIRE

PINS (1), 2, 3, 4, 5, 6, 7,

8, & 20

X 825-RS232 X

Page 94: ALLTEC Surge Suppression Catalog

Section 3.5 ACP Series

Data &

Telecom

Mo

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3-10 Section 3.5 www.allteccorp.com

AC

P Series

ACP Series

Coaxial/Twinaxial - Communication Line ProtectionThe ACP Series of data communication line SPDs will ensure the reliable operation of coaxial or twinaxial based networking equipment running IBM 3270, AS400, Ethernet, ArcNet, Satellite/Cable/Closed Circuit TV and most other wideband communication interfaces.

FEATURES

State-of-the-art, avalanche diode technology•

Compact in-line installation•

High speed, high energy handling capability•

Low shunt capacitance to reduce signal loss•

BENEFIT

Affordable, superior, equipment security•

Improved reliability resulting in less down time•

Protection at the interface card•

Adaptability to most industry applications•

The ACP Series devices guard sensitive data networks against lightning induced surges, AC power interference, electrostatic discharge and ground loop energies. Typical applications include: terminals, file servers, repeaters, and mainframes using Ethernet, ArcNet, IBM, Token Ring and most other communication applications. High speed avalanche diode technology is used in conjunction with low capacitance circuitry enabling the protectors to function at a much greater bandwidth without causing signal degradation. This, in combination with their small size, makes the ACP exceedingly versatile. Standard units protect both center conductor(s) and shield circuits. A separate grounding wire on all units provides an isolated path to ground without adding an additional ground connection to the shield or network ground point. ACPs can also be specially configured to accommodate other standard connector interfaces (F, N, TNC, BNC, etc.). A wide selection of clamping voltages is available.

ORDERING INFORMATIONTo order a ACP, choose the correct part number by selecting the system application and connector type from the chart. See figures for product physical outlines.

NOTESpecial units can be supplied for any clamp voltage between 7.5 V and 240 V. The following information must be specified when ordering special units:

Connector type and gender (ex., BNC male/•female)

System application/protocol (ex. CCTV)•

INSTALLATIONTo install, insert the protector in series between the incoming communication lines and the I/O port of the equipment to be protected. The protector ground wire must be connected to the metal chassis of the equipment being protected. Units must be installed at both ends of the data cable for effective protection.

CAUTION!Ground wire must be grounded directly to the metal chassis of the equipment being protected. The equipment chassis must be connected to earth through a properly grounded AC power receptacle.

WARRANTY

5 Year Replacement Program•

Limited Lifetime Warranty•This warranty applies only to serialized products registered with ALLTEC Corporation and is subject to certain disclaimers and limitations.

For a complete warranty statement, please contact ALLTEC Corporation. All specifications and dimensions are subject to change without notice.

Page 95: ALLTEC Surge Suppression Catalog

Section 3.5ACP Series

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AC

P S

erie

s

ACP SERIES COMMUNICATION LINE PROTECTION

1.06

2.44

3.63

1.06

ELECTRICAL SPECIFICATIONS (CONTACT ALLTEC FOR SPECIAL CONFIGURATIONS)

CCTV

STD. CLAMP VOLTAGE 7.5 VOLTS

PEAK PULSE CURRENT

10/1000 us s.c. wave form @Vcl132 AMPS

RESPONSE TIME LESS THAN 5 NANOSECONDS

MAXIMUM SHUNT CAPACITANCE <30pF

SERIES RESISTANCE none

INSERTION LOSS @40MHz -0.5db

SYSTEM APPLICATION AND MODEL NUMBER

CONNECTOR TYPE CCTV

75 BNC MALE/FEMALE STRAIGHT ACP-CCTV

Page 96: ALLTEC Surge Suppression Catalog

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PHone: +1 828-646-9290 toll Free: +1 800-203-2658 (u.s.) Fax: +1 828-646-9527

email: [email protected]

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