COMPLIANCE TEST SPECIFICATION 2 - HDBaseT...
Transcript of COMPLIANCE TEST SPECIFICATION 2 - HDBaseT...
COMPLIANCE TEST SPECIFICATION 2.0a
HDBaseT Alliance 3855 SW 153rd Drive, Beaverton, OR 97006 Tel +1 (503) 619-0337 | Fax (503) 619-6708 [email protected] | www.hdbaset.org
HDBaseT Compliance Test Specification 2.0a
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Important Notice
This document may not be photocopied. This document may only be released to companies who have signed a Non-Disclosure Agreement with HDBaseT Alliance Ltd. specifically regarding the VS010 or VS100 product families.
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HDBaseT Alliance does not warrant performance of its hardware and software products except to the specifications applicable at the time of sale in accordance with HDBaseT Alliance’s standard warranty. Testing and other quality control techniques are used to the extent HDBaseT Alliance deems necessary to support this warranty. Except where mandated by government requirements, testing of all parameters of each product is not necessarily performed.
HDBaseT Alliance assumes no liability for applications assistance or customer product design. Customers are responsible for their products and applications using HDBaseT Alliance components. To minimize the risks associated with customer products and applications, customers must provide adequate design and operating safeguards.
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HDBaseT Alliance products are not designed, intended or authorized for use as components in systems intended for surgical implantation into the body or other applications intended to support life or for any other application in which the failure of the HDBaseT Alliance product may result in personal injury or death. Should the Buyer purchase or use HDBaseT Alliance products for any such unintended or unauthorized application, the Buyer shall indemnify and not hold responsible HDBaseT Alliance and its officers, employees, subsidiaries, affiliates and distributors against all claims, costs, damages and expenses and attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that HDBaseT Alliance was negligent regarding the design or manufacture of the part. Reproduction of information in HDBaseT Alliance data books or datasheets is permissible only if reproduction is without alteration and is accompanied by all associated warranties, conditions, limitations and notices.
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HDBaseT™ and the HDBaseT Alliance logo are trademarks of HDBaseT Alliance. All other trademarks are the property of their respective owners.
Copyright © 2015, HDBaseT Alliance Ltd.
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Contact Information
HDBaseT Alliance
3855 SW 153rd Drive l Beaverton, OR 97006
Tel: +1 (503) 619-3007 l Fax: +1 (503) 644-6708
[email protected] • www.hdbaset.org
Revision History
Revision Date Author Description
2.0_Draft 20 January
2015
Peretz Ben-Haviv Draft specification
2.0 10
February
2015
Peretz Ben-Haviv,
Ronen Mazor,
Shlomi Vaknin
First Release
2.0a 28 April
2015
Peretz Ben-Haviv,
Michael Reich
Merging 2.0 and 1.3.b
Chapter 2.1.1: adding HDBaseT_CTS_V2.3 software reference
Chapter 2.12: cables: unifying cables list for class A,B and
Class C,D (CFG#1,2,3…8).
Chapter 9: Test Report: updating Report format (adding
general info section).
Chapter 10: updating CDF.
Add report for recommended cable and recommended SFP
Add HDBaseT class definition
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Glossary
Term Definition
ARC Audio Return Channel
AFE Analog Front End
AV Audio Video / Audio-Visual
CE Consumer Electronics
CEC Consumer Electronic Control
CIR Consumer Infrared
CTS Compliance Test Specification
EVK Evaluation Kit
CTS Compliance Test Specification
DDC Display Data Channel
DVI Digital Visual Interface
EEPROM Electronically Erasable Programmable Read-Only Memory
GPIO General Purpose Input Output
HD High Definition
HDBT HDBaseT
HDCD HDBaseT Configuration Database
HDCP High-Bandwidth Digital Content Protection
HDMI High Definition Multimedia Interface
HIF Host Interface
HLIC HDBaseT Link Internal Controls
HPD Hot Plug Detect
I/F Interface
IC Integrated Circuit
I2C Inter IC
I2S Inter IC Sound
KVM Keyboard / Video / Mouse
LPPF Low Power Partial Functionality
LSB Least Significant Bit
LVDS Low-Voltage Differential Signaling
MSIO Multi Serial Input Output
MAC Media Access Control Layer
MCU Microcontroller Unit
RoHS Restriction of Hazardous Substances
SNR Signal-to-Noise Ratio
MIB Management Information Base
MSB Most Significant Bit
OM Operation Mode
PHY Physical Layer
PoE Power Over Ethernet
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Term Definition
PRBS Pseudo Random Bit Stream
RIF Register Interface
SERDES SERializer DESerializer
SPDIF Sony/Philips Digital Interface Format
SPI Serial Peripheral Interface
STB Set-Top Box
UART Universal Asynchronous Receive Transmit
USB Universal Serial Bus
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Table of Contents
1 Overview ...................................................................................................... 10
1.1 Scope ........................................................................................................... 10
1.2 References ................................................................................................... 10
1.3 Introduction ................................................................................................. 10
2 Test Set Up and Equipment ........................................................................... 13
2.1 Golden Units ................................................................................................ 13
2.1.1 PC with CTS Software ................................................................................ 14
2.1.2 Cables ........................................................................................................ 15
2.1.3 Test equipment ......................................................................................... 16
2.1.4 Device Required Tests ............................................................................... 16
3 HDBaseT Port ............................................................................................... 19
3.1 HDBaseT Link performance ........................................................................... 19
3.1.1 HDBaseT Stand by Interface (HDSBI) Link ................................................. 19
3.1.2 HDBaseT Active mode (Copper) ................................................................ 22
3.1.3 HDBaseT Active mode (Fiber) ................................................................... 31
3.1.4 100BaseTX Phy performance .................................................................... 33
3.2 PoH ............................................................................................................. 34
3.3 HDCD ........................................................................................................... 38
3.3.1 Vendor ID .................................................................................................. 38
4 Network ....................................................................................................... 40
4.1 Discovery ..................................................................................................... 40
5 Interfaces over HDBaseT ............................................................................... 41
5.1 HDMI ........................................................................................................... 41
5.1.1 External HDMI Source interface ................................................................ 41
5.1.2 Embedded HDMI Source interface ............................................................ 48
5.1.3 External HDMI Sink interface .................................................................... 51
5.1.4 Embedded HDMI Sink interface ................................................................ 58
5.2 USB.............................................................................................................. 62
5.2.1 USBH .......................................................................................................... 62
5.2.2 USBD .......................................................................................................... 65
5.3 SPDIF ........................................................................................................... 68
5.3.1 SPDIF TX ..................................................................................................... 68
5.3.2 SPDIF RX .................................................................................................... 72
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5.4 Ethernet ...................................................................................................... 76
5.4.1 Ethernet..................................................................................................... 76
5.5 CIR ............................................................................................................... 80
5.5.1 CIR TX (Receiver) ....................................................................................... 80
5.5.2 CIR RX (Transmitter) .................................................................................. 84
5.6 UART ........................................................................................................... 89
6 HDBaseT Recommended Cable ..................................................................... 91
7 HDBaseT Recommended Fiber Optic SFP ....................................................... 93
8 Test Report ................................................................................................... 95
8.1 Device Test Report ....................................................................................... 95
8.2 Recommended CATx Cable Test Report ...................................................... 104
8.3 Recommended SFP Test Report .................................................................. 105
9 Capabilities Declaration Form (CDF) ............................................................ 106
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Table of Figures
Figure 1: HDBaseT TX Golden Unit ...................................................................................................................... 13
Figure 2: HDBaseT RX Golden Unit ...................................................................................................................... 14
Figure 3: Basic Test Setup .................................................................................................................................... 19
Figure 4: HDBaseT TX Class A/B – Test Setup ................................................................................................... 22
Figure 5: HDBaseT Sink – Test Setup .................................................................................................................. 27
Figure 6: PSE detection output voltage test setup ................................................................................................ 34
Figure 7: PSE Feeding Voltage ............................................................................................................................. 35
Figure 8: Non PSE connected to PD GU .............................................................................................................. 37
Figure 9: External HDMI SRC test setup ............................................................................................................... 41
Figure 10: Embedded HDMI SRC test setup ........................................................................................................ 48
Figure 11: External HDMI SNK test setup ............................................................................................................. 52
Figure 12: Embedded HDMI SNK test setup ......................................................................................................... 58
Figure 13: USBH External ..................................................................................................................................... 62
Figure 14: USBH Embedded ................................................................................................................................. 64
Figure 15: USB External Device Connect Through External Hub ......................................................................... 65
Figure 16: Embedded USBD ................................................................................................................................. 67
Figure 17: SPDIF TX External ............................................................................................................................... 68
Figure 18: SPDIF TX Embedded ........................................................................................................................... 70
Figure 19: SPDIF RX External .............................................................................................................................. 72
Figure 20: SPDIF RX embedded ........................................................................................................................... 74
Figure 21: Ethernet External ................................................................................................................................. 76
Figure 22: Ethernet Embedded Test Setup ........................................................................................................... 78
Figure 23: CIR TX (Reciever) ................................................................................................................................ 80
Figure 24: CIR RX (Transmitter) ........................................................................................................................... 84
Figure 25: External UART test setup ..................................................................................................................... 89
Figure 26: Embedded UART test setup ................................................................................................................ 90
Figure 27: HDBaseT Recommended Cable Test Setup ........................................................................................ 91
Figure 28: HDBaseT Recommended Fiber Optic SFP Test Setup........................................................................ 93
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Table of Tables
Table 1: Class supported feature and cable distances.......................................................................................... 11
Table 2: Interfaces supported by each Type ......................................................................................................... 14
Table 3: CATx Cable Assembly Configurations for classA, classB setups ............................................................ 15
Table 4: Recommended Test Equipment .............................................................................................................. 16
Table 5: Required Tests per the device’s CDF ..................................................................................................... 17
Table 6: HDBaseT Downstream Link Quality Test Limits Supported TMDS clock =<225hz ................................. 23
Table 7: HDBaseT downstream Link Quality Test Limits Supported TMDS Clock >225hz ................................... 23
Table 8: BIST HDCD values ................................................................................................................................. 25
Table 9: Test performance configuration and Pass Criteria .................................................................................. 26
Table 10: HDBaseT upstream link quality test limits ............................................................................................. 28
Table 11: HDBaseT Downstream Link Quality Test Limits Supported TMDS clock =<225hz ............................... 29
Table 12: HDBaseT downstream Link Quality Test Limits Supported TMDS Clock >225hz ................................. 29
Table 13: Recommended Cable Pass Criteria ...................................................................................................... 92
Table 14: Test Report Table ................................................................................................................................. 96
Table 15: Class C/D HDBaseT performance test result ........................................................................................ 98
Table 16: Class A/B HDBaseT Performance Test Result ..................................................................................... 99
Table 17: Video Data Reliability Test Result ....................................................................................................... 101
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1 Overview
1.1 Scope
The scope and purpose of this document is to define procedures, tools and criteria for testing the compliance of systems with HDBaseT Specification Version 2.0.
Section 1.3 provides an overview of the Certification Test Specification document.
Chapter 2 discusses test setups and equipment.
Chapter 2.1.4 contains a list of required tests.
Chapter 3 describes the HDBaseT port test procedures.
Chapter 4 describes the HDBaseT network test procedures.
Chapter 5 describes the interfaces over HDBaseT test procedures.
Chapter 6 describes the HDBaseT recommended cable test procedure.
Chapter 7 describes the HDBaseT recommended SFP test procedure.
Chapter 8 contains a sample test report.
Chapter 9 contains sample Capabilities Declaration Forms (CDFs).
1.2 References
HDBaseT Specification Version 2.0, August 4th 2014
IEEE 802.3 Section 2
CEA-861-E Standard
High-Definition Multimedia Interface Specification Version 1.4
1.3 Introduction
HDBaseT is a connectivity standard for whole-home and commercial distribution of uncompressed ultra-high-definition multimedia content. The cornerstone of HDBaseT technology is 5Play, a feature set that converges uncompressed ultra-HD digital video and audio, 100BaseT Ethernet, USB 2.0, up to 100W of power over cable, and various control signals through a single LAN cable for up to 100 meters/328 feet. The latest specification of HDBaseT also enables the transmission of audio & video, Ethernet, USB and controls over fiber optic, for even longer distances.
HDBaseT define 5 classes of HDBaseT products. Table 1 shows each class supported features and cable distances
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Table 1: Class supported feature and cable distances
Class/
Features
A B C D E
Supported
distances per
cable type and
HDBaseT
Bandwidth/
Video
resolution
1080P60 36bit/
6Gbps
CAT5E/6/6A/7up to
100 meter
4k/2K/1080P60 48 bit
/8 Gbps
CAT5E/6 up to
70 meter
CAT6A/7 up to
90 meter
1080P60 36bit/
6Gbps
CAT5E/6 up to
60 meter
CAT6A/7
up to 70 meter
4k/2K/1080P60 48
bit/8 Gbps
CAT5E/6 up to
35 meter
CAT6A/7 up to
40 meter
1080P60 36bit/
6Gbps
CAT5E/6/6A/7up
to 100 meter
4k/2K/1080P60
48 bit/8 Gbps
CAT5E up to
90 meter
CAT6/6A/7 up to
100 meter
1080P60 24bit/ 6Gbps
CAT6A/7
up to 30 meter
Fiber OM3 – 600 meter for
any video resolution /
HDBaseT Bandwidth
Fiber OM4– 800 meter for
any video resolution /
HDBaseT Bandwidth
HDMI Mandatory Mandatory Optional Optional Optional
USB Not supported Not supported Optional Optional Optional
Ethernet
Optional Not supported Optional Not supported Optional
SPDIF Not supported Not supported Optional Not supported Optional
CIR Optional Optional Optional Optional Optional
UART Optional Optional Optional Optional Optional
PoH Optional Optional Optional Optional Not supported
In order to ensure the various components in an HDBaseT system function optimally and according to specification, comprehensive compliance tests must be conducted. These tests are structured in this document to provide a description of the purpose, resources, and procedures for each test. Each test description consists of the following components:
Test ID: Test ID number and title
Test Setup: Describes the configuration of the test environment
Test Purpose: A brief statement outlining the goal of the test
Test References: Specifies source material external to this document
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Test Resources: Specifies the test hardware and/or software needed to perform the
test
Test Procedure: Describes the test method in detail
Test Pass/Fail Criteria States the test limits for pass and fail
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2 Test Set Up and Equipment
A typical test setup contains the following:
HDBaseT Golden Units (GUs)
A PC with HDBaseT2.0_CTS software and RS232 cable connected to the Debug port
Set of LAN and/or Fiber Cables and HDMI cables
Various test equipment
2.1 Golden Units
In general, all tests require connection of the device under test (DUT) to a Golden Unit (GU). There are three types of Golden Units, named classes- for each class there shall be an HDBaseT TX Extender GU and an HDBaseT RX Extender GU:
Type 1: Tx & Rx units that includes VS100 chipset For Class A&B tests
Type 2: Tx & Rx units that includes VS2310 chipset For Class C&D tests
Type 3: Tx & Rx units that includes VS2310 chipset and VS2311 chipset (Fiber interface) For Class E tests.
Golden Unit
HDBaseT™
HDBaseT™
TX
Fiber/Copper EthernetUSBH
Spdif
in
Spdif
outHDMI
In
USBD
External
CIR
Transmitter
Type A&B
External
CIR
Receiver
Type B
Integrated
CIR
Receiver
Type A
MNG
UART
External
UARTPower
Figure 1: HDBaseT TX Golden Unit
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Golden Unit
HDBaseT™
HDBaseT™
RX
Fiber/Copper EthernetUSBH
Spdif
in
Spdif
outHDMI
Out
USBD
External
CIR
Transmitter
Type A&B
External
CIR
Receiver
Type B
Integrated
CIR
Receiver
Type A
MNG
UART
External
UARTPower
Figure 2: HDBaseT RX Golden Unit
The GUs include the following interfaces:
Table 2: Interfaces supported by each Type
Interface Type 1 Type 2 Type3
HDBaseT Copper Yes Yes No
HDBaseT Fiber (SFP) No No Yes
HDMI In/Out Yes Yes Yes
USBH/USBD No Yes Yes
Ethernet Yes Yes Yes
UART Yes Yes Yes
Integrated CIR receiver
Type A
Yes Yes Yes
External CIR receiver
Type B
Yes Yes Yes
External CIR Transmitter
Type A&B
Yes Yes Yes
External SPDIF in /out No Yes Yes
PSE/PD configuration Yes Yes No
2.1.1 PC with CTS Software
PC with window 7 32/64 bit
Software:
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For class A,B chipsets: HDBaseT_CTS_V2.3 software installed.
For class C,D chipsets: HDBaseT2.0_CTS software installed.
RS-232 (UART) cable - control cable connection to the GU through MNG UART port
2.1.2 Cables
2.1.2.1 Cables for all class setups
The following cable types are used for all setups (A,B,C,D,E):
HDMI cables: 2 x 2-m HDMI 1.4 compliant cables with standard type A connectors
RS232 cable
2.1.2.2 Cables for class A, B,C, D setups
The following CAT5E/6/6A Cables and CAT5E patches are to be used when HDBT
Class of DUT is class A,B,C,D (all compliant with ANSI/TIA/EIA-568):
Table 3: CATx Cable Assembly Configurations for classA, classB setups
Cfg# Supported per class Yes/No HDBaseT cables assembly configuration
Class A Class B Class C Class D
#1 Yes No No No F/STP CAT 6A 100 m
#2 Yes No No No UTP CAT 5E 90 m + 2x5 m CAT 5E patch
#3 Yes Yes No No UTP CAT 5E 55m + 1m CAT 5E patch + 5m CAT 5E patch
#4 Yes Yes No No F/STP CAT6A 20 m
#5 Yes Yes No No UTP CAT5E 0.5 m
#6 No No Yes No F/UTP CAT5E 90 m + 2x5 m CAT5e patch
#7 No No Yes No U/STP CAT6 90 m + 2x5 m CAT5e patch
#8 No No Yes Yes F/STP CAT6A 30 m
2.1.2.3 CTS Cable Kit manufacture part number/model
Cables Manufacture part number
F/STP CAT 6A: Teldor 83G0204xxx Cat. 6A 4x2x23/1 AWG U/FTP FR-LSZH
UTP CAT5E : Teldor 7562004129 4x2x24# UTP
U/STP CAT6 : Teldor 830024129 4x2x23# STP HFFR
F/UTP CAT5E :Teldor 8375204129 4x2x24# FTP HFFR
Recommended RJ45 connector types for testing the HDBaseT link masks:
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BTR NETCOM - Art-Nr 140 140 5012-I E-DAT industry IP20 RJ45 cat 6A field plug.
WESTERN WIRE Cat 6A shielded plugs P/N GLA-00820+GLA-0821.
Any standard Cat 5E RJ45 connector.
2.1.2.4 Fiber cables for class E
The following fiber cables are to be used when HDBT Class of DUT is class E:
Fiber optic OM3 600 meter cable
Fiber optic OM4 800 meter cable
2.1.3 Test equipment
The following table shows the recommended test equipment.
Table 4: Recommended Test Equipment
Equipment Manufacture Model Notes
Video Test
Instrument
Quantum
Data
QD882EA Networked Video Tests - Pattern generator and
protocol analyzer
Video Test
Instrument
Quantum
Data
QD980D
GEN3
Networked Video Test Instrument - Pattern generator
and protocol analyzer for 4K video formats
Audio Generator and
Analyzer
PrismSound dScope
Series III
Scope various various Calibrated
Multimeter various various
PoE Test Fixture Valens
Fiber Attenuator various various 4db
PC various ICH family Windows 7 or 8
Based on Intel chipsets using an I/O Controller Hub
(ICH) family component
USB Mouse/
Keyboard
various various
USB Disk-On-Key various various
High Speed USB Hub Belkin various
2.1.4 Device Required Tests
While the devices ID and the declaration of the Device’s feature list are always tested, all other tests are executed depending on the devices capabilities and features as define in the Capabilities Declaration Form (CDF), as describes in section 9.
Table 5 describes the various optional and mandatory tests for the HDBaseT devices, and correlates between the test to be executed and the actual capabilities/feature in the CDF.
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Table 5: Required Tests per the device’s CDF
Test name CDF condition
3.1.1.1 HDSBI ClassA,B Tests HDBaseT class=A, B
3.1.1.2 HDSBI ClassC,D Tests HDBaseT class =C,D
3.1.2.1 HDBaseT ClassA,B Tx Phy downstream
performance Test HDBaseT class =A, B
3.1.2.2 HDBaseT ClassA,B Tx Phy upstream
perfromanceTest HDBaseT class =A,B
3.1.2.3 HDBaseT ClassC,D Tx Phy performance Test HDBaseT class =C,D
3.1.2.4 HDBaseT ClassA,B Rx Phy upstream
performance Test HDBaseT class =A,B
3.1.2.5 HDBaseT ClassA,B Rx phy downstream
performance Test HDBaseT class =A,B
3.1.3.1 HDBaseT fiber (ClassE )TX Phy performance
Test HDBaseT class =E
3.1.3.2 HDBaseT fiber (ClassE) RX Phy performance
Test HDBaseT class =E
3.2.1.1 PSE detection output voltage Test PoE=PSE
3.2.1.2 PSE feeding voltage Test PoE=PSE
3.2.1.3 Non PoE output voltage test PoE=No or PD
3.3.1.1 Vendor ID Test Mandatory for all DUTs
3.3.1.2 ClassA,B Feature list Test HDBaseT class=A, B
4.1.1.1 ClassC,D,E Feature list Test HDBaseT class =C,D,E
5.1.1.2 External HDMI-SRC HPD Test HDMI source type ≠Embedded
5.1.1.3 External HDMI-SRC pass-through EDID Test HDMI source type ≠Embedded &
Internal EDID = Not supported
5.1.1.4 External HDMI-SRC internal EDID Test HDMI source type ≠Embedded &
Internal EDID = Supported
5.1.1.5 External HDMI-SRC HDCP Test HDMI source type ≠Embedded
5.1.1.6 External HDMI-SRC CEC HDMI source type ≠Embedded &
CEC=supported
5.1.2.1 Embedded HDMI-SRC Data reliability Test HDMI-Source type=Embedded
5.1.2.2 Embedded HDMI-SRC CEC Test HDMI-Source type=Embedded
5.1.3.1 External HDMI-SNK Data reliability Test HDMI-Sink type≠ Embedded
5.1.3.2 External HDMI-SNK 5V Test HDMI-Sink type≠ Embedded
5.1.3.3 External HDMI-SNK pass-through EDID Test HDMI-Sink type≠ Embedded
Internal EDID = Not Supported
5.1.3.4 External HDMI-SNK internal EDID Test HDMI-Sink type≠ Embedded
Internal EDID = Supported
5.1.3.5 External HDMI-SNK HDCP Test HDMI-Sink type≠ Embedded
5.1.3.6 External HDMI-SNK CEC Test HDMI-Sink type≠ Embedded &
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CEC=supported
5.1.4.1 Embedded HDMI-SNK Data reliability Test HDMI-Sink type= Embedded
5.1.4.2 Embedded HDMI-SNK EDID Test HDMI-Sink type= Embedded
5.1.4.3 Embedded HDMI-SNK HDCP Test HDMI-Sink type= Embedded
*Optional for Camera Receiver product category
5.1.4.4 Embedded HDMI-SNK CEC Test HDMI-Sink type= Embedded
& CEC=supported
5.2.1.1 External USBH Test USB-H=External
5.2.1.2 Embedded USBH Test USB-H=Embedded
5.2.2.1 External USBD Test USB-D=External
5.2.2.2 Embedded USBD Test USB-D=embedded
5.3.1.1 External SPDIF TX Test SPDIF TX interface type =External
5.3.1.2 Embedded SPDIF TX Test SPDIF TX interface type =Embedded
5.3.2.1 External SPDIF RX Test SPDIF RX interface type =External
5.3.2.2 Embedded SPDIF RX Test SPDIF RX interface type =Embedded
5.4.1.1 External Ethernet Test Ethernet interface type≠ Embedded
5.4.1.2 Embedded Ethernet Test Ethernet interface type≠ External
5.5.1.1 CIR TX (Receiver) Class C, D, E Test HDBaseT class =C,D,E &
CIR = Receiver, Transmitter & Receiver
5.5.1.2 CIR TX (Receiver) Class A, B Test HDBaseT class =A,B &
CIR = Receiver, Transmitter & Receiver
5.5.2.1 External CIR RX (Transmitter) Class C, D, E Test HDBaseT class =C,D,E &
External IR Transmitter Type ≠ None
5.5.2.2 External CIR RX (Transmitter) Class A, B Test HDBaseT class =A,B &
External IR Transmitter Type ≠ None
5.5.2.4 Integrated (Embedded) CIR RX (Transmitter)
Class A, B Test
HDBaseT class =A,B &
Integrated IR Transmitter Type ≠ None
5.5.2.4 Integrated (Embedded) CIR RX (Transmitter)
Class A, B Test
HDBaseT class =C,D,E &
Integrated IR Transmitter Type ≠ None
5.6.1.1 External UART Test UART interface type = External
5.6.1.2 Embedded UART Test UART interface type = Embedded
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3 HDBaseT Port
3.1 HDBaseT Link performance
3.1.1 HDBaseT Stand by Interface (HDSBI) Link
3.1.1.1 HDSBI Class A,B Tests
Test Overview
Test Purpose To verify the DUT HDSBI™ Transceiver performance
Test References HDBaseT Specification 2.0, Section 2.4 HDSBI Link Layer
Test Setup Figure 3: Basic Test Setup
Test Resources
PC/Laptop with HDBaseT CTS SW
HDBaseT Source (Tx)/Sink(RX) GU
Cables Kit CFG#2
HDBaseT™
Golden Unit
RS
-23
2
DUT
HDBaseT™
TX Device
or
HDBaseT™
RX Device
HD
Ba
se
T™
Po
rt #
1
HD
Ba
se
T™
Po
rt #
N
HDBaseT LAN /Fiber cableTX/RX
Figure 3: Basic Test Setup
Test Procedure
1. Configure the DUT and the GU HDBaseT port to HDSBI mode.
2. Configure the DUT and the GU to HDSBI test mode.
3. Configure the DUT HDSBI transmitter on channel C and the HDSBI RX on channel D.
4. Receive 1000 Packets of type Long.
5. Configure the DUT HDSBI transmitter on channel D and HDSBI RX on channel C.
6. Receive 1000 Packets of type Long.
HDBaseT Compliance Test Specification 2.0a
Page 20 of 119 HDBaseT Alliance Confidential
Test Pass/Fail Criteria
If the HDSBI Link Down event occurs in any cable assembly configuration or any channel swap, the test fails.
If the GU receives an error packet greater than 0 in any cable assembly
configuration or any channel swap, the test fails.
If the DUT receives an error packet greater than 0 in any cable assembly configurations or any channel swap, the test fails.
HDBaseT Compliance Test Specification 2.0a
Page 21 of 119 HDBaseT Alliance Confidential
3.1.1.2 HDSBI Class C,D Tests
Test Overview
Test Purpose To verify that the DUT HDSBI™ link performance
Test References HDBaseT Specification 2.0, Section 2.4 HDSBI Link Layer
Test Setup Figure 3: Basic Test Setup
Test Resources PC/Laptop with HDBaseT CTS SW
Cable CFG#6 /CFG#8
Test Procedure
1. Connect GU HDBaseT port to DUT HDBaseT port using CFG#6 if DUT defined as Class C or CFG#8 if DUT define as Class D
2. Verify that the HDBaseT link is active.
3. Set GU mode to LPPF1 mode.
4. GU monitor HDSBI link status and run HLIC commands for 5 minutes.
5. In case that (according to CDF) the DUT supports LPPF2 perform, set GU to LPPF2 mode and repeat steps 1 to 4.
Pass/Fail Criteria
If no HDSBI link errors monitored and no HLIC error than the test pass.
HDBaseT Compliance Test Specification 2.0a
Page 22 of 119 HDBaseT Alliance Confidential
3.1.2 HDBaseT Active mode (Copper)
3.1.2.1 HDBaseT Class A,B TX Phy downstream performance Test
Test Overview
Test Purpose Establish an HDBaseT link and verify the DUT’s downstream transmitter performance
and bit error rate for different cable assembly configurations.
Test References HDBaseT Specification 2.0 section 3
Test Setup Figure 4: HDBaseT TX Class A/B – Test Setup
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT RX Extender GU
Cables kit according to Table 2 CFG#1-#5.
Cfg#1 – DUT with Embedded HDMI interface
Golden Unit
HDBaseT™
RX Extender RS
-23
2
HD
Ba
seT
™
DUT
HDBaseT™
TX Extender
HD
Ba
seT
™
Po
rt #
1
HD
Ba
seT
™
Po
rt #
N
HDBaseT LAN Cable
Cfg#2 – DUT with External HDMI interface
AARDVARKHo
st
I/F
HDMI outHDMI in
QD882EA
HDMI
In-1
HDMI
Out1
LAN
NET
Golden Unit
HDBaseT™
RX Extender RS
-23
2
HD
Ba
seT
™
DUT
HDBaseT™
Source Device
HD
Ba
seT
™
Po
rt #
1
HD
Ba
seT
™
Po
rt #
N
HDBaseT LAN Cable AARDVARKHo
st
I/F
HDMI out
Figure 4: HDBaseT TX Class A/B – Test Setup
Test Procedure
1. Configure the DUT and the GU HDBaseT port to HDBaseT.
2. Configure the QD to transmit HDMI at maximum video pixel clock according to the DUT CDF. If the supported TMDS clock >222.5 MHz, set the QD format to 1080P60 36 bit.
3. Receive at least 1E9 video packets and measure the CRC error count.
4. Read the HDBaseT GU RX receiver slicer performance matrices; slicer mean square error (MSE) and slicer max error.
5. Repeat step 3-4 for each cable configuration as define in tables 5,6
HDBaseT Compliance Test Specification 2.0a
Page 23 of 119 HDBaseT Alliance Confidential
Test Pass/Fail Criteria For each cable assembly configuration the CRC error count, slicer
mean square error (MSE) and slicer max error must comply with the upper and lower test limits as defined by the following:
For a DUT with a supported TMDS clock =<225, refer to Table 6: HDBaseT Downstream Link Quality Test Limits Supported TMDS clock =<225hz.
For DUT with supported TMDS clock >225 refer to Table 7: HDBaseT downstream Link Quality Test Limits Supported TMDS Clock >225hz.
Table 6: HDBaseT Downstream Link Quality Test Limits Supported TMDS clock =<225hz
HDBaseT Cable Assembly Configuration Maximum CRC Error Count
HDBaseT classA HDBaseT classB
Minimum Mean Square Error
Maximum Slicer Max Error
Minimum Mean Square Error
Maximum Slicer Max Error
STP CAT6A 100 m CFG#1 10 -14. 00dB 1.8 N/A N/A
UTP CAT 5E 90 m + 2x5 m CAT 5 E patch CFG#2 10 -10.00dB 2.00 N/A N/A
UTP CAT 5E 55m + 1m patch + 5m patch CFG#3 10 -16.50dB 1.8 -13.50dB 1.8
STP CAT6A 20 m CFG#4 10 -18.00dB 1.8 -18.00dB 1.8
UTP CAT5E 0.5 m CFG#5 10 -19.00dB 1.8 -19.00dB 1.8
Table 7: HDBaseT downstream Link Quality Test Limits Supported TMDS Clock >225hz
HDBaseT Cable Assembly Configuration Maximum CRC Error Count
HDBaseT classA HDBaseT classB
Minimum Mean Square Error
Maximum Slicer Max Error
Minimum Mean Square Error
Maximum Slicer Max Error
STP CAT6A 100 m CFG#1 10 -14. 00dB 1.25 N/A N/A
UTP CAT 5E 90 m + 2x5 m CAT 5 E patch CFG#2 10 -10.00dB 2 N/A N/A
UTP CAT 5E 55m + 1m patch + 5m patch CFG#3 10 -16.50dB 1.1 -13.50dB 1.5
STP CAT6A 20 m CFG#4 10 -18.00dB 0.8 -18.00dB 0.85
UTP CAT5E 0.5 m CFG#5 10 -19.00dB 0.7 -19.00dB 0.85
HDBaseT Compliance Test Specification 2.0a
Page 24 of 119 HDBaseT Alliance Confidential
3.1.2.2 HDBaseT Class A,B TX Phy upstream performance Test
Test Overview
Test Purpose Establish an HDBaseT link and verify performance and bit error rate for different cable
assembly configurations.
Test References HDBaseT Specification 2.0 section 3
Test Setup Figure 4: HDBaseT TX Class A/B – Test Setup
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT RX Extender GU
Cables kit according to Table 3.
Test Procedure
1. Configure the DUT and GU HDBaseT ports to HDBaseT.
2. Enable Ethernet BIST on the DUT and the GU.
3. Receive at least 2 million tokens and read the Ethernet BIST Error Counter.
4. Read the HDBaseT DUT Source Receiver slicer performance matrices; slicer mean-square error (MSE) and slicer max error.
5. Repeat steps 1-4 on each cable configuration as define in table 8
Test Pass/Fail Criteria
For each cable assembly configuration, if the Ethernet error count, slicer mean square error (MSE), or slicer max error do not comply with the upper and lower test limits as defined in the table below, the test fails.
Table 8: HDBaseT Upstream Link Quality Test Limits
HDBaseT Cable Assembly Configuration
HDBaseT classA
HDBaseT classB
Ethernet Error Count
Mean Square Error
Slice Max Error
STP CAT6A 100 m CFG#1 supported Not
supported 0 -19.25dB 0.825
UTP CAT 5E 90 m + 2x5 m CAT 5 E patch
CFG#2
supported Not
supported 0 -19.00dB 0.88
UTP CAT 5E 55m + 1m patch + 5m patch
CFG#3 supported supported 0 -19.50dB 0.77
STP CAT6A 20 m CFG#4 supported supported 0 -20.00dB 0.715
UTP CAT5E 0.5 m CFG#5 supported supported 0 -20.50dB 0.605
HDBaseT Compliance Test Specification 2.0a
Page 25 of 119 HDBaseT Alliance Confidential
3.1.2.3 HDBaseT Class C, D TX Phy performance Test
Test Overview
Test Purpose Verify DUT copper TX port HDBaseT active mode performance
Test References HDBaseT Specification 2.0
Test Setup Figure 3: Basic Test Setup
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT RX Extender GU
Cables kit according to Table 3, CFG#6-CFG#8
Table 8: BIST HDCD values
BIST HDCD Name Entity ID Default values
TX port
BIST TX Token Type 0x0482 0x0
BIST TX payload length 0x0483 0xBE
BIST TX SID 0x0484 0x22
BIST TX Retransmission protection 0x0485 0x1
BIST TX interoperability Packet gap 0x0486 0x1
RX port
BIST TX Token Type 0x0482 0x0
BIST TX payload length 0x0483 0xF
BIST TX SID 0x0484 0x22
BIST TX Retransmission protection 0x0485 0x0
BIST TX interoperability Packet gap 0x0486 0x4E
HDBaseT Compliance Test Specification 2.0a
Page 26 of 119 HDBaseT Alliance Confidential
Test Procedure
1. Connect GU HDBaseT port to DUT HDBaseT port using CFG#6 for class C or CFG#8 for class D
2. Verify that the HDBaseT link is active.
3. GU set BIST HDCD values according to Table 8: BIST HDCD values
4. Perform the following steps on each specified configuration as defined in Table 9: Test performance configuration and Pass Criteria, according to the device class and the supported Active mode as defined in CDF.
5. GU enables protected BIST traffic on the DUT TX port according to Table 9.
6. GU monitor retransmission rate.
7. Enable BIST traffic on the GU RX port, clear statistic and run the BIST for 5 minutes in Test configuration 3,4 or 30 minutes in Test configuration 1,2
8. GU retrieves Main and Aux BIST BER.
Pass/Fail Criteria
If the DUT Active mode Phy performance is within the pass criteria as defined in Table 9: Test performance configuration and Pass Criteria, then the test is passed.
Table 9: Test performance configuration and Pass Criteria
Test Configuration
#
Cable CFG#
Active Mode
Class X Main BIST Token Type
Main Retransmission Rate
Pass criteria
Main BIST BER
Pass criteria
Aux BIST BER
Pass criteria
1 CFG#6 500 Class C TokD12 Retransmission
<1/10000000
1 Error per 10M
packets
BER<10E-
12
BER<10E-12
2 CFG#6 250 Class C TokD16 Retransmission
<1/10000000
1 Error per 10M
packets
BER<10E-
12
BER<10E-12
3 CFG#7 500 Class C TokD16 Retransmission
<1/500
1 Error per 500
packets
BER<10E-9 BER<10E-12
4 CFG#8 500 Class D TokD16 Retransmission
<1/500
1 Error per 500
packets
BER<10E-9 BER<10E-12
HDBaseT Compliance Test Specification 2.0a
Page 27 of 119 HDBaseT Alliance Confidential
3.1.2.4 HDBaseT Class A,B Rx Phy upstream performance Test
Test Overview
Test Purpose Establish an HDBaseT link and verify the upstream receiver performance for different
cable assembly configurations.
Test References HDBaseT Specification 2.0 section 3
Test Setup Figure 5: HDBaseT Sink – Test Setup
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT RX Extender GU
Cables kit according to Table2 CFG #1-#5.
Golden Unit
HDBaseT™
TX Extender RS
-23
2
HD
Ba
se
T™
DUT
HDBaseT™
Sink Device
or
HDBaseT™
RX Extender
HD
Ba
se
T™
Po
rt #
1
HD
Ba
se
T™
Po
rt #
N
HDBaseT LAN Cable AARDVARK
Ho
st
I/F
HDMI in
QD882EA
HDMI
In-1
HDMI
Out1
LAN
NET
Figure 5: HDBaseT Sink – Test Setup
Test Procedure
1. Configure the DUT and GU HDBaseT ports to HDBaseT.
2. Enable Ethernet BIST on the DUT and on the GU.
3. Receive at least 2 million tokens and read the Ethernet BIST Error Counter.
4. Read the HDBaseT DUT Source Receiver slicer performance matrices; slicer mean square error (MSE) and slicer max error.
Test Pass/Fail Criteria
If for each cable assembly configuration the Ethernet error count, slicer mean square error (MSE), and slicer max error do not comply with the upper and lower test limits as in Table 10: HDBaseT upstream link quality test limits, the test fails.
HDBaseT Compliance Test Specification 2.0a
Page 28 of 119 HDBaseT Alliance Confidential
Table 10: HDBaseT upstream link quality test limits
HDBaseT Cable Assembly Configuration HDBaseT Class A
HDBaseT Class B
Ethernet Error Count
Mean Square Error
Slice Max Error
STP CAT6A 100 m CFG#1 supported Not
supported
0 -19.25dB 0.825
UTP CAT 5E 90 m + 2x5 m CAT 5 E patch CFG#2 supported Not
supported
0 -19.00dB 0.88
UTP CAT 5E 55m + 1m patch + 5m patch CFG#3 supported supported 0 -19.50dB 0.77
STP CAT6A 20 m CFG#4 supported supported 0 -20.00dB 0.715
UTP CAT5E 0.5 m CFG#5 supported supported 0 -20.50dB 0.605
3.1.2.5 HDBaseT Class A,B RX Phy downstream performance Test
Test Overview
Test Purpose Establish an HDBaseT link and verify the DUT’s downstream receiver performance and
bit error rate for different cable assembly configurations.
Test References HDBaseT Specification 2.0 section 3
Test Setup Figure 5: HDBaseT Sink – Test Setup
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT RX Extender GU
Cables kit according to Table 3.
Test Procedure
1. Configure the DUT and the GU HDBaseT port to HDBaseT.
2. Configure the QD to transmit HDMI at maximum video pixel clock according to the DUT CDF. If the supported TMDS clock >222.5 MHz, set the QD format to 1080P60 36 bit.
3. Receive at least 1E-9 video packets and measure the CRC error count.
4. Read the HDBaseT GU Sink receiver slicer performance matrices; slicer mean square error (MSE) and slicer max error.
Test Pass/Fail Criteria
For each cable assembly configuration the CRC error count, slicer mean square error (MSE) and slicer max error must comply with the upper and lower test limits as defined by the following:
For a DUT with a supported TMDS clock =<225, refer to Table13
HDBaseT Compliance Test Specification 2.0a
Page 29 of 119 HDBaseT Alliance Confidential
For DUT with supported TMDS clock >225 refer to Table 14
Table 11: HDBaseT Downstream Link Quality Test Limits Supported TMDS clock =<225hz
HDBaseT Cable Assembly Configuration
Maximum CRC Error Count
HDBaseT classA HDBaseT classB
Minimum Mean Square Error
Maximum Slicer Max Error
Minimum Mean Square Error
Maximum Slicer Max Error
STP CAT6A 100 m CFG#1 10 -14. 00dB 1.8 N/A N/A
UTP CAT 5E 90 m + 2x5 m CAT 5 E patch
CFG#2 10 -10.00dB 2.00 N/A N/A
UTP CAT 5E 55m + 1m patch + 5m patch
CFG#3 10 -16.50dB 1.8 -13.50dB 1.8
STP CAT6A 20 m CFG#4 10 -18.00dB 1.8 -18.00dB 1.8
UTP CAT5E 0.5 m CFG#5 10 -19.00dB 1.8 -19.00dB 1.8
Table 12: HDBaseT downstream Link Quality Test Limits Supported TMDS Clock >225hz
HDBaseT Cable Assembly Configuration
Maximum CRC Error Count
HDBaseT classA HDBaseT classB
Minimum Mean Square Error
Maximum Slicer Max Error
Minimum Mean Square Error
Maximum Slicer Max Error
STP CAT6A 100 m CFG#1 10 -14. 00dB 1.25 N/A N/A
UTP CAT 5E 90 m + 2x5 m CAT 5 E patch
CFG#2
10 -10.00dB 2 N/A N/A
UTP CAT 5E 55m + 1m patch + 5m patch
CFG#3 10 -16.50dB 1.1 -13.50dB 1.5
STP CAT6A 20 m CFG#4 10 -18.00dB 0.8 -18.00dB 0.85
UTP CAT5E 0.5 m CFG#5 10 -19.00dB 0.7 -19.00dB 0.85
HDBaseT Compliance Test Specification 2.0a
Page 30 of 119 HDBaseT Alliance Confidential
3.1.2.6 HDBaseT Class C, D RX Phy performance Test
Test Overview
Test Purpose Verify DUT copper RX port HDBaseT active mode performance.
Test References HDBaseT Specification 2.0 section 3
Test Setup Figure 3: Basic Test Setup
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT RX Extender GU
Cables kit according to Table 3.
Test Procedure
1. Connect GU HDBaseT port to DUT HDBaseT port using CFG#6 for Class C or CFG#8 for Class D
2. Verify that the HDBaseT link is active.
3. GU set BIST HDCD values according to Table 8: BIST HDCD values
4. Perform the following steps on each specified configuration as define in Table 9: Test performance configuration and Pass Criteria according to the device class and the supported Active mode as defined in CDF.
5. GU enables protected BIST traffic on the GU TX port according to table 9.
6. GU monitor retransmission rate.
7. Enable BIST traffic on the DUT RX port ,clear statistic and run the BIST for 5 minutes in Test configuration 4,2 or 30 minutes in Test configuration 1,2
8. GU retrieve Main and Aux BIST BER.
Pass/Fail Criteria
If the DUT Active mode Phy performance is within the pass Criteria as defined in Table 9: Test performance configuration and Pass Criteria Then the test PASS
HDBaseT Compliance Test Specification 2.0a
Page 31 of 119 HDBaseT Alliance Confidential
3.1.3 HDBaseT Active mode (Fiber)
3.1.3.1 HDBaseT fiber (Class E) TX Phy performance Test
Test Overview
Test Purpose To verify DUT HDBaseT TX fiber port performance over OM3 and OM4 cables
Test References HDBaseT Specification 2.0
Test Setup Figure 3: Basic Test Setup
Test Resources
PC/Laptop with HDBaseT CTS SW
Fiber RX GU
OM3 600 meter cable
OM4 800 meter cable
2x GU multimode SFP modules as define in section 2.3
Test Procedure
1. Connect GU SFP and the OM3 cable to both GU and DUT SFP port.
2. Verify that the HDBaseT link is active.
3. Set BIST Packets HDCD as define in Table 8: BIST HDCD values on both GU an DUT.
4. Enable BIST TokD16 packets transmission Both GU RX port and DUT TX port.
5. Clear BIST packet count and Bit Error count.
6. Run BIST traffic for30 minutes and retrieves Bit error count on both RX port and TX port.
7. Repeat steps 1 to 6 using the OM4 800 meter cable.
Pass/Fail Criteria
If Both TX port and RX port BIST Bit error counters are error-free and no link error events occur during the test then test Pass.
HDBaseT Compliance Test Specification 2.0a
Page 32 of 119 HDBaseT Alliance Confidential
3.1.3.2 HDBaseT fiber (Class E) RX Phy performance Test
Test Overview
Test Purpose To verify DUT HDBaseT RX fiber port performance over OM3 and OM4 fiber optic
cables
Test References HDBaseT Specification 2.0
Test Setup Figure 3: Basic Test Setup
Test Resources
PC/Laptop with HDBaseT CTS SW
Fiber TX GU
OM3 600 meter cable
OM4 800 meter cable
2x GU multimode SFP modules as define in section 2.3
Test Procedure
1. Connect GU SFP and the OM3 cable to both GU and DUT SFP port.
2. Verify that the HDBaseT link is active.
3. Set BIST Packets HDCD as define in Table 8: BIST HDCD values on both GU an DUT.
4. Enable BIST TokD16 packets transmission Both GU TX port and DUT RX port.
5. Clear BIST packet count and Bit Error count.
6. Run BIST traffic for 30 minutes and retrieves Bit error count on both RX port and TX port.
7. Repeat steps 1 to 6 using the OM4 800 meter cable
Pass/Fail Criteria
If Both TX port and RX port BIST Bit error counters are free error and no link error events occur during the test than test Passed.
HDBaseT Compliance Test Specification 2.0a
Page 33 of 119 HDBaseT Alliance Confidential
3.1.4 100BaseTX Phy performance
3.1.4.1 100BaseTX Phy performance Test
Test Overview
Test Purpose To verify DUT Ability to Establish 100BaseTX link over cable CFG#1
Test References HDBaseT Specification 2.0 section 3
Test Setup Figure 3: Basic Test Setup
Test Resources
PC/Laptop with HDBaseT CTS SW
TX/RX GU
Cable CFG#7
Test Procedure
1. Connect GU HDBaseT port to DUT HDBaseT port using CFG#1 link cable.
2. Set GU to 100BaseTX mode and verify the 100BaseT/Fallback mode is UP
3. Monitor 100BaseTX link status for 5 minutes
Pass/Fail Criteria
If the 100BaseTX link established successfully and the link is error free for 5 minutes then the test Pass.
HDBaseT Compliance Test Specification 2.0a
Page 34 of 119 HDBaseT Alliance Confidential
3.2 PoH
3.2.1.1 PSE detection output voltage Test
Test Overview
Test Purpose To verify that The DUT PSE detection Voltage output is less than 10V
Test References HDBaseT Specification 2.0 section 9
Test Setup
Figure 6: PSE detection output voltage test setup
Test Resources
PC/Laptop with HDBaseT CTS SW
Calibrated Scope
25 Ohm termination Jig#1 (PoE Test Fixture)
Cable CFG#5
Figure 6: PSE detection output voltage test setup
Test Procedure
1. Connect DUT to the 100Ω load circuit using CFG5# cable
2. Measure the voltage between Load circuit center Taps : A-B,C-D
Pass/Fail Criteria
If measured Voltage between center taps A, B and C, D is less than 10V then Test PASS else test FAIL.
HDBaseT Compliance Test Specification 2.0a
Page 35 of 119 HDBaseT Alliance Confidential
3.2.1.2 PSE feeding voltage Test
Test Overview
Test Purpose To verify DUT PSE feeding voltage is below 58V and above 40V
Test References HDBaseT Specification 2.0 section 9
Test Setup
Figure 7: PSE Feeding Voltage
Test Resources
PC/Laptop with HDBaseT CTS SW
PSE DUT
PD RX GU
Cable CFG#5
PoE Test Fixture
Figure 7: PSE Feeding Voltage
HDBaseT Compliance Test Specification 2.0a
Page 36 of 119 HDBaseT Alliance Confidential
Test Procedure
1. Connect DUT to the GU with PD module using CFG5# cable and Booster Adaptor
2. Verify the GU is powered by the DUT PSE and HDBaseT link established
3. Measure the voltage between GU center Taps : A-B,C-D
Pass/Fail Criteria
If measured Voltage between centers taps A, B and C, D is less than 57 V and bigger than 37V then the Test PASS.
HDBaseT Compliance Test Specification 2.0a
Page 37 of 119 HDBaseT Alliance Confidential
3.2.1.3 Non PoE output voltage test
Test Overview
Test Purpose To verify that Non PSE DUT ( PD device or None PoE )do not output voltage over the
HDBaseT link
Test References HDBaseT Specification 2.0 section 9
Test Setup Figure 8: Non PSE connected to PD GU
Test Resources
PC/Laptop with HDBaseT CTS SW
TX GU
Calibrated Scope
Cable CFG#5
PoE test Fixture
Set up:
Figure 8: Non PSE connected to PD GU
Test Procedure
1. Connect DUT to the 100Ω load circuit using CFG5# cable
2. Measure the voltage between all Load circuit center Taps :A-B,A-C,A-D,B-C,B-D,C-D
Pass/Fail Criteria
If measured Voltage between all centers taps doesn’t not Exceed 0.1 V then the test PASS
HDBaseT Compliance Test Specification 2.0a
Page 38 of 119 HDBaseT Alliance Confidential
3.3 HDCD
3.3.1 Vendor ID
3.3.1.1 Vendor ID Test
Test Overview
Test Purpose To verify that the DUT vendor-ID matches to the vendor ID reported by the HDBaseT
alliance LLC.
Test References HDBaseT Specification 2.0 section 4
Test Setup Figure 3: Basic Test Setup
Test Resources
PC/Laptop with HDBaseT CTS SW
TX/RX GU
Cable CFG#5
Test Procedure
1. Configure the DUT and GU HDBaseT port to HDSBI mode.
2. Read the DUT’s vendor-ID.
Pass/Fail Criteria
If the vendor-ID does not match the vendor ID reported by the HDBaseT alliance LLC, the test fails.
HDBaseT Compliance Test Specification 2.0a
Page 39 of 119 HDBaseT Alliance Confidential
3.3.1.2 Class A,B Feature list Test
Test Overview
Test Purpose To verify that the DUT declared feature list match to the CDF.
Test References HDBaseT Specification 2.0 section 9
Test Setup Figure 3: Basic Test Setup
Test Resources
PC/Laptop with HDBaseT CTS SW
TX/RX GU
Cable CFG#5
Test Procedure
1. Configure the DUT and GU HDBaseT port to HDSBI mode.
2. Read the DUT’s declared Feature list.
Pass/Fail Criteria
If the declared Feature list does not match the CDF, the test fails.
HDBaseT Compliance Test Specification 2.0a
Page 40 of 119 HDBaseT Alliance Confidential
4 Network
4.1 Discovery
4.1.1.1 Class C ,D, E Feature List Test
Test Overview
Test Purpose To verify that DUT publish valid T-adaptor info packets which match the DUT actual
feature list as defined in the CDF.
Test References HDBaseT Specification 2.0 section 5.3
Test Setup Figure 3: Basic Test Setup
Test Resources
PC/Laptop with HDBaseT CTS SW
TX/RX GU
Cable CFG#5
Test Procedure
1. Connect GU HDBaseT port to DUT using Cable CFG#5
2. Verify that HDBaseT Active link has Established
3. GU retrieve the received T-adaptor Info messages form DUT
Pass/Fail Criteria
If DUT T-adaptors info messages match to the reported feature list in the CDF then the test PASS
HDBaseT Compliance Test Specification 2.0a
Page 41 of 119 HDBaseT Alliance Confidential
5 Interfaces over HDBaseT
5.1 HDMI
5.1.1 External HDMI Source interface
5.1.1.1 External HDMI-SRC Data reliability Test
Test Overview
Test Purpose To verify External HDMI-SRC DUT video data pixel reliability
Test References HDBaseT Specification 2.0 section 7
Test Setup Figure 9: External HDMI SRC test setup
Test Resources
PC/Laptop with HDBaseT CTS SW
RX GU
QD 882EA/980 GEN3
HDBaseT cable CFG#5 for class A,B,C,D or 600m OM3 for class E
QD882EA/
980GEN3
CAT5E
cable
DUT
HDMI
cable
HDMI
In-1/RX
HDMI
Out
HDMI
cable
HDBaseT
HDMI
in
HDMI
Out1/
TX1/2
HDBaseT
RX GU
HDBT
Tx
NET
LAN
Figure 9: External HDMI SRC test setup
HDBaseT Compliance Test Specification 2.0a
Page 42 of 119 HDBaseT Alliance Confidential
Test Procedure
1. Establish setup as described in the figure above.
2. Connect the DUT HDMI (in port) to the QD HDMI generator (out port) and the GU HDMI (out port) to the QD analyzer (in port). If using the QD980 then connect both (GU and DUT) to the analyzer.
3. Connect HDBT link with short cable.
4. Set the QD to the highest format supported as reported in CDF
5. Set the QD to transmit 2000 sequences.
6. Start PRN test.
Pass/Fail Criteria
PRN test BER needs to be less than 1 per billion.
HDBaseT Compliance Test Specification 2.0a
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5.1.1.2 External HDMI-SRC HPD Test
Test Overview
Test Purpose To verify that External HDMI-SRC DUT pass-through or Provide high HPD signal on its
External HDMI in interface in case that a High indication is provided from the HDBaseT
link
Test References HDBaseT Specification 2.0 section 7
Test Setup Figure 9: External HDMI SRC test setup
Test Resources
PC/Laptop with HDBaseT CTS SW
RX GU
QD 882EA/980 GEN3
HDBaseT cable CFG#5 for class A,B,C,D or 600m OM3 for class E
2xHDMI1.4 cables
Test Procedure
1. Establish setup as described in the figure above.
2. Connect the DUT HDMI (in port) to the QD882EA HDMI generator (out1 port) and the GU HDMI (out port) to the QD882EA analyzer (in1 port).
3. Connect HDBT link with short cable.
4. Open the ACA (Auxiliary Channel Application) and monitor port out1.
5. Disconnect HDMI cable from the GU to the QD882EA and verify HPD to source is down.
6. Reconnect the HDMI cable and verify HPD is up.
Pass/Fail Criteria
HPD is down when HDMI cable from GU is disconnected. HPD is up when HDMI cable is connected.
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5.1.1.3 External HDMI-SRC pass-through EDID Test
Test Overview
Test Purpose Verify DUT External HDMI-SRC interface Handle EDID transaction correctly over
HDBaseT
Test References HDBaseT Specification 2.0 section 7
Test Setup Figure 9: External HDMI SRC test setup
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX) GU
QD882EA with network connection and configured IP
HDBaseT cable CFG#5 for class A,B,C,D or 600m OM3 for class E
2 x 2 m HDMI 1.4 cable, as specified in Section 2.1.2.
Test Procedure
1. Connect to the QD882EA and open the EDID comparison tool
2. Connect the QD882EA HDMI generator (out1 port) to the QD882EA HDMI analyzer (in1 port) using HDMI cable.
3. Capture the reference EDID.
4. Establish setup as described in the figure above.
5. Connect the DUT HDMI (in port) to the QD882EA HDMI generator (out1 port) and
the GU HDMI (out port) to the QD882EA analyzer (in1 port).
6. Connect HDBT link with short cable.
7. Open the ACA (Auxiliary Channel analyzer) and monitor port out1.
8. Start monitoring the EDID transactions on the ACA tool, and compare EDID to the reference. Repeat this step 10 times.
Pass/Fail Criteria
The comparison should pass with no errors on EDID transactions monitored on the ACA tool.
5.1.1.4 External HDMI-SRC internal EDID Test
Test Overview
Test Purpose To verify DUT HDMI-SRC external internal EDID compliancy with VESA
Test References HDBaseT Specification 2.0 section 7
VESA EDID 1.3
Test Setup Figure 9: External HDMI SRC test setup
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Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX) GU
QD882EA with network connection and configured IP
HDBaseT cable CFG#5 for class A,B,C,D or 600m OM3 for class E
2 x 2 m HDMI 1.4 cable, as specified in Section 2.1.2.
Test Procedure
1. Connect to the QD882EA and open the EDID comparison tool
2. Establish setup as described in the figure above.
3. Connect the DUT HDMI (in port) to the QD882EA HDMI generator (out1 port) and
the GU HDMI (out port) to the QD882EA analyzer (in1 port).
4. Connect HDBT link.
5. Open the ACA (Auxiliary Channel analyzer) and monitor port in-1.
6. Capture the reference EDID.
7. Start monitoring the EDID transactions on the ACA tool, and compare EDID to the reference. Repeat this step 10 times.
8. Open the compliance controller of the QD882EA.
9. Set auto CDF. And press USE.
10. Perform EDID compliance test.
Pass/Fail Criteria
The comparison should pass with no errors on EDID transactions monitored on the ACA tool.
Compliance should pass with no failures.
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5.1.1.5 External HDMI-SRC HDCP Test
Test Overview
Test Purpose To verify that DUT HDMI-SRC external passes through HDCP functionality over
HDBaseT
Test References HDBaseT Specification 2.0 section 7
Test Setup Figure 9: External HDMI SRC test setup
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX) GU
QD882EA with network connection and configured IP
HDBaseT cable CFG#5 for class A,B,C,D or 600m OM3 for class E
2 x 2 m HDMI 1.4 cable as specified in Section 2.1.2.
Test Procedure
1. Establish setup as described in the figure above.
2. Connect the DUT HDMI (in port) to the QD882EA HDMI generator (out1 port) and the GU HDMI (out port) to a monitor.
3. Connect HDBT link with short cable.
4. Set the QD882EA to transmit 1080P60 with HDCPprod image.
5. Monitor the screen and verify no HDCP test failed. Monitor at least 10 HDCP transactions.
Pass/Fail Criteria
HDCP test pass and all transactions pass.
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5.1.1.6 External HDMI-SRC CEC
Test Overview
Test Purpose To verify DUT HDMI-SRC external pass through CEC functionality over HDBaseT
Test References HDBaseT Specification 2.0 section 7
Test Setup Figure 9: External HDMI SRC test setup
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX) GU
QD882EA with network connection and configured IP
HDBaseT cable CFG#5 for class A,B,C,D or 600m OM3 for class E
2 x 2 m HDMI 1.4 cable as specified in Section 2.1.2.
Test Procedure
1. Establish setup as described in the figure above.
2. Connect the DUT HDMI (in port) to the QD882EA HDMI generator (out-1 port) and the GU HDMI (out port) to the QD882EA analyzer (in-1 port).
3. Connect HDBT link.
4. Set CEC out-1 port address to 0x4 and CEC in-1 port address to 0x0.
5. Send 10 echo requests from address 00 to CEC1 (out-1 port).
6. Send 10 echo requests from address 04 to CEC3 (in-1 port).
Pass/Fail Criteria
All echo requests gut response successfully.
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5.1.2 Embedded HDMI Source interface
5.1.2.1 Embedded HDMI-SRC Data reliability Test
Test Overview
Test Purpose To verify DUT Embedded HDMI-SRC Video data reliability over HDBaseT
Test References HDBaseT Specification 2.0 section 7
Test Setup Figure 10: Embedded HDMI SRC test setup
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX) GU
QD882EA with network connection and configured IP
HDBaseT cable CFG#5 for class A,B,C,D or 600m OM3 for class E
2 x 2 m HDMI 1.4 cable as specified in Section 2.1.2.
CAT5
cable
DUT
HDMI
cable
HDMI
Out
HDBaseT HDBaseT RX
GUHDBT
Tx
Net
HDMI
In-1/
RX
LAN
QD882EA/
980 GEN3
HDBT
RX
Figure 10: Embedded HDMI SRC test setup
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Test Procedure
1. Establish setup as described in the figure above.
2. Connect the GU HDMI (out port) to the QD analyzer (in port).
3. Connect HDBT link.
4. Set the DUT Video format to the highest format supported.
5. Set the DUT to transmit a still image.
6. Set the QD to PIXERR test 2000 sequences with auto reference.
7. Start PIXERR test.
Pass/Fail Criteria
PIXERR test BER needs to be less than 1 per billion.
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5.1.2.2 Embedded HDMI-SRC CEC Test
Test Overview
Test Purpose To verify DUT Embedded HDMI-SRC CEC functionality over HDBaseT
Test References HDBaseT Specification 2.0 section 7
Test Setup Figure 10: Embedded HDMI SRC test setup
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX) GU
QD882EA with network connection and configured IP
HDBaseT cable CFG#5 for class A,B,C,D or 600m OM3 for class E
1x 2 m HDMI 1.4 cable as specified in Section 2.1.2
Test Procedure
1. Establish setup as described in the figure above.
2. Connect the GU HDMI (out port) to the QD882EA analyzer (in-1 port).
3. Connect HDBT link.
4. Set CEC in-1 port address to 0x0.
5. Send one command supported by the DUT to address 0x4. Supported command available in CDF.
Pass/Fail Criteria
CEC Command get acknowledge from the DUT and command function performed successfully.
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5.1.3 External HDMI Sink interface
5.1.3.1 External HDMI-SNK Data reliability Test
Test Overview
Test Purpose To verify External HDMI-SNK DUT video data pixel reliability
Test References HDBaseT Specification 2.0 section 7
Test Setup
Figure 11: External HDMI SNK test setup
Test Resources
PC/Laptop with HDBaseT CTS SW
TX GU
QD 882EA/980 GEN3
HDBaseT cable CFG#5 for class A,B,C,D or 600m OM3 for class E
1x 2 m HDMI 1.4 cable as specified in Section 2.1.2
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QD882EA/
980GEN3
CAT5E
cable
DUT
HDMI
cable
HDMI
In-1/RX
HDMI
Out
HDMI
cable
HDBaseT
HDMI
in
HDMI
Out1/
TX1/2
HDBaseT
TX GU
HDBT
Tx
NET
LAN
HDBT
RX
Figure 11: External HDMI SNK test setup
Test Procedure
1. Establish setup as described in the figure above.
2. Connect the GU HDMI (in port) to the QD HDMI generator (out-1 port) and the DUT HDMI (out port) to the QD analyzer (in-1 port). If using the QD980 then connect both (GU and DUT) to the analyzer.
3. Connect HDBT link.
4. Set the QD to the highest format supported.
5. Set the QD to transmit 2000 sequences.
6. Start PRN test.
Pass/Fail Criteria
PRN test BER needs to be less than 1 per billion.
5.1.3.2 External HDMI-SNK 5V Test
Test Overview
Test Purpose To verify External HDMI-SNK DUT ability to provide 5Vsiganl to a native HDMI sink
Test References HDBaseT Specification 2.0 section 7
Test Setup
Figure 11: External HDMI SNK test setup
Test Resources
PC/Laptop with HDBaseT CTS SW
TRX GU
QD 882EA/980 GEN3
HDBaseT cable CFG#5 for class A,B,C,D or 600m OM3 for class E
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Test Procedure
1. Establish setup as described in the figure above.
2. Connect the GU HDMI (in port) to the QD882EA HDMI generator (out1 port) and the DUT HDMI (out port) to the QD882EA analyzer (in1 port).
3. Connect HDBT link.
4. Open the ACA (Auxiliary Channel Application) and monitor port in-1.
5. Disconnect HDMI cable from the GU to the QD882EA and verify 5V to sink is down.
6. Reconnect the HDMI cable and verify 5V is up.
Pass/Fail Criteria
5V is down when HDMI cable from GU is disconnected. 5V is up when HDMI cable is connected
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5.1.3.3 External HDMI-SNK pass-through EDID Test
Test Overview
Test Purpose To verify that DUT External HDMI-SNK pass-through EDID transactions over The
HDBaseT link.
Test References HDBaseT Specification 2.0 section 7
Test Setup
Figure 11: External HDMI SNK test setup
Test Resources
PC/Laptop with HDBaseT CTS SW
TX GU
QD 882EA/980 GEN3
HDBaseT cable CFG#5 for class A,B,C,D or 600m OM3 for class E
Test Procedure
1. Connect to the QD882EA and open the EDID comparison tool
2. Connect the QD882EA HDMI generator (out1 port) to the QD882EA HDMI analyzer (in1 port) using HDMI cable.
3. Capture the reference EDID.
4. Establish setup as described in the figure above.
5. Connect the GU HDMI (in port) to the QD882EA HDMI generator (out1 port) and
the DUT HDMI (out port) to the QD882EA analyzer (in1 port).
6. Connect HDBT link with short cable.
7. Open the ACA (Auxiliary Channel analyzer) and monitor port in-1.
8. Start monitoring the EDID transactions on the ACA tool, and compare EDID to the reference. Repeat this step 10 times.
Pass/Fail Criteria
The comparison should pass with no errors on EDID transactions monitored on the ACA tool.
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5.1.3.4 External HDMI-SNK internal EDID Test
Test Overview
Test Purpose To verify DUT External HDMI-SNK internal EDID compliancy
Test References HDBaseT Specification 2.0 section 7
VESA EDID 1.3
Test Setup
Figure 11: External HDMI SNK test setup
Test Resources
PC/Laptop with HDBaseT CTS SW
TRX GU
QD 882EA/980 GEN3
HDBaseT cable CFG#5 for class A,B,C,D or 600m OM3 for class E
Test Procedure
1. Connect to the QD882EA and open the EDID comparison tool
2. Establish setup as described in the figure above.
3. Connect the GU HDMI (in port) to the QD882EA HDMI generator (out1 port) and the DUT HDMI (out port) to the QD882EA analyzer (in1 port).
4. Connect HDBT link.
5. Open the ACA (Auxiliary Channel analyzer) and monitor port in-1.
6. Capture the reference EDID.
7. Start monitoring the EDID transactions on the ACA tool, and compare EDID to the reference. Repeat this step 10 times.
8. Open the compliance controller of the QD882EA.
9. Set auto CDF. And press USE.
10. Perform EDID compliance test.
Pass/Fail Criteria
The comparison should pass with no errors on EDID transactions monitored on the ACA tool.
Compliance should pass with no failures.
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5.1.3.5 External HDMI-SNK HDCP Test
Test Overview
Test Purpose To verify that DUT External HDMI-SNK pass-through HDCP transactions over HDBaseT
Test References HDBaseT Specification 2.0 section 7
Test Setup
Figure 11: External HDMI SNK test setup
Test Resources
PC/Laptop with HDBaseT CTS SW
TX GU
QD 882EA/980 GEN3
HDBaseT cable CFG#5 for class A,B,C,D or 600m OM3 for class E
Test Procedure
1. Establish setup as described in the figure above.
2. Connect the GU HDMI (in port) to the QD882EA HDMI generator (out1 port) and the DUT HDMI (out port) to a monitor.
3. Connect HDBT link.
4. Set the QD882EA to transmit 1080P60 with HDCPprod image.
5. Monitor the screen and verify no HDCP test failed. Monitor at least 10 HDCP transactions.
Pass/Fail Criteria
HDCP test pass and all transactions pass.
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5.1.3.6 External HDMI-SNK CEC Test
Test Overview
Test Purpose To verify DUT External HDMI-SNK CEC over HDBaseT
Test References HDBaseT Specification 2.0 section 7
Test Setup
Figure 11: External HDMI SNK test setup
Test Resources
PC/Laptop with HDBaseT CTS SW
TX GU
QD 882EA/980 GEN3
HDBaseT cable CFG#5 for class A,B,C,D or 600m OM3 for class E
Test Procedure
1. Establish setup as described in the figure above.
2. Connect the GU HDMI (in port) to the QD882EA HDMI generator (out-1 port) and the DUT HDMI (out port) to the QD882EA analyzer (in-1 port).
3. Connect HDBT link.
4. Set CEC out-1 port address to 0x4 and CEC in-1 port address to 0x0.
5. Send 10 echo requests from address 00 to CEC1 (out-1 port).
6. Send 10 echo requests from address 04 to CEC3 (in-1 port).
Pass/Fail Criteria
All echo requests gut response successfully.
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5.1.4 Embedded HDMI Sink interface
5.1.4.1 Embedded HDMI-SNK Data reliability Test
Test Overview
Test Purpose To verify Embedded HDMI-SNK DUT video data pixel reliability
Test References HDBaseT Specification 2.0 section 7
Test Setup Figure 12: Embedded HDMI SNK test setup
Test Resources
PC/Laptop with HDBaseT CTS SW
TX GU
QD 882EA/980 GEN3
HDBaseT cable CFG#5 for class A,B,C,D or 600m OM3 for class E
CAT5
cable
DUT
HDMI
cable
HDMI
Out-1/
TX1/2
HDBaseTHDBaseT TX
GUHDBT
Tx
NET
HDMI
In
LAN
QD882EA/
QD980GEN3
HDBT
RX
Figure 12: Embedded HDMI SNK test setup
Test Procedure
1. Establish setup as described in the figure above.
2. Connect the GU HDMI (in port) to the QD882EA HDMI generator (out-1 port).
3. Connect HDBT link.
4. Set the QD to transmit the highest format available in DUT EDID according to CDF.
5. Set the image to color bar.
6. Perform visual inspection for 1 minute.
Pass/Fail Criteria
If the visual inspection is error free then the test PASS
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5.1.4.2 Embedded HDMI-SNK EDID Test
Test Overview
Test Purpose To verify DUT Embedded HDMI-SNK EDID compliancy with VESA EDID 1.3
Test References HDBaseT Specification 2.0 section 7
Test Setup Figure 12: Embedded HDMI SNK test setup
Test Resources
PC/Laptop with HDBaseT CTS SW
TX GU
QD 882EA/980 GEN3
HDBaseT cable CFG#5 for class A,B,C,D or 600m OM3 for class E
Test Procedure
1. Connect to the QD882EA and open the EDID comparison tool
2. Establish setup as described in the figure above.
3. Connect the GU HDMI (in port) to the QD882EA HDMI generator (out1 port).
4. Connect HDBT link.
5. Open the ACA (Auxiliary Channel analyzer) and monitor port out-1.
6. Capture the reference EDID.
7. Start monitoring the EDID transactions on the ACA tool, and compare EDID to the reference. Repeat this step 10 times.
8. Open the compliance controller of the QD882EA.
9. Set auto CDF. And press USE.
10. Perform EDID compliance test.
Pass/Fail Criteria
The comparison should pass with no errors on EDID transactions monitored on the ACA tool.
Compliance should pass with no failures.
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5.1.4.3 Embedded HDMI-SNK HDCP Test
Test Overview
Test Purpose To verify that DUT Embedded HDMI-SNK DUT provide a High HPD indication only when
its EDID is available
Test References HDBaseT Specification 2.0 section 7
Test Setup Figure 12: Embedded HDMI SNK test setup
Test Resources
PC/Laptop with HDBaseT CTS SW
TX GU
QD 882EA/980 GEN3
HDBaseT cable CFG#5 for class A,B,C,D or 600m OM3 for class E
Test Procedure
1. Establish setup as described in the figure above.
2. Connect the GU HDMI (in port) to the QD882EA HDMI generator (out-1 port).
3. Connect HDBT link.
4. Set the QD to transmit the highest format available in DUT EDID according to CDF.
5. Set the image to HDCPprod.
6. Verify all HDCP test pass successfully and monitor HDCP transaction for at least 10
transactions.
Pass/Fail Criteria
All tests pass successfully. No errors in HDCP transactions.
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5.1.4.4 Embedded HDMI-SNK CEC Test
Test Overview
Test Purpose To verify DUT Embedded HDMI-SNK CEC functionality over HDBaseT
Test References HDBaseT Specification 2.0 section 7
Test Setup Figure 12: Embedded HDMI SNK test setup
Test Resources
PC/Laptop with HDBaseT CTS SW
TX GU
QD 882EA/980 GEN3
HDBaseT cable CFG#5 for class A,B,C,D or 600m OM3 for class E
Test Procedure
1. Establish setup as described in the figure above.
2. Connect the GU HDMI (in port) to the QD882EA HDMI generator (out-1 port).
3. Connect HDBT link.
4. Set CEC out-1 port address to 0x4.
5. Send one command supported by the DUT to address 0x0. Supported command available in CDF.
Pass/Fail Criteria
Command requests get acknowledge and the command action is performed successfully.
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5.2 USB
5.2.1 USBH
5.2.1.1 External USBH Test
Test Overview
Test Purpose To verify DUT Embedded USBH interface interoperability with the GU USBD External
interface when the Golden device are attached to the GU USBD port interface and
when the DUT External USBH interface is connected to the Golden Host
Test References HDBaseT Specification 2.0 section 8
Test Setup Figure 13: USBH External
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX/TX) GU
HDBaseT cable CFG#6 for Class C ,CFG#8 for class D or 600m OM3 for class E
D-link USB HUB 7
Microsoft Keyboard 200
Microsoft Optical Mouse 200
SanDisk Cruiser blade Disk on Key
DUT
USBH
USB
storageHost
GU
USBDExternal
Hub
Figure 13: USBH External
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Test Procedure
1. Establish setup as described in the figure above.
2. Connect all USB devices to GU external HUB
3. Connect HDBT link.
4. Connect DUT to the HOST computer
5. Test basic functionality of every device.
6. Read USBH of DUT actual speed (Full speed or High Speed)
7. Perform Host reset
8. Read USBH of DUT actual speed (Full speed or High Speed)
Pass/Fail Criteria
All USB devices function ok, USBH speed of DUT is according to CDF.
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5.2.1.2 Embedded USBH Test
Test Overview
Test Purpose To verify DUT Embedded USBH interface interoperability with the GU USBD External
interface when the Golden device are attached to the GU USBD port interface
Test References HDBaseT Specification 2.0 section 8
Test Setup Figure 14: USBH Embedded
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX/TX) GU
HDBaseT cable CFG#6 for Class C ,CFG#8 for class D or 600m OM3 for class E
D-link USB HUB 7
Microsoft Keyboard 200
Microsoft Optical Mouse 200
SanDisk Cruiser blade Disk on Key
DUT
USBH
USB
storage
GU
USBDExternal
Hub
Figure 14: USBH Embedded
Test Procedure
1. Establish setup as described in the figure above.
2. Connect all USB devices to GU external HUB. In case that the DUT support special USB device use the special devices.
3. Connect HDBT link.
4. Test basic functionality of every device.
5. Read USBH of DUT actual speed (Full speed or High Speed)
6. Perform Host reset
7. Read USBH of DUT actual speed (Full speed or High Speed)
Pass/Fail Criteria
All USB devices function ok, USBH speed of DUT is according to CDF.
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5.2.2 USBD
5.2.2.1 External USBD Test
Test Overview
Test Purpose To verify DUT External USBD interface interoperability with the GU USBH External
interface when the GU USBH interface is connected to the Golden USB host and the
golden USB devices are attached to the DUT external USBD interface port
Test References HDBaseT Specification 2.0 section 8
Test Setup Figure 15: USB External Device Connect Through External Hub
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX/TX) GU
HDBaseT cable CFG#6 for Class C ,CFG#8 for class D or 600m OM3 for class E
USB golden Host
D-link USB HUB 7
Microsoft Keyboard 200
Microsoft Optical Mouse 200
SanDisk Cruiser blade Disk on key
Figure 15: USB External Device Connect Through External Hub
Test Procedure
1. Establish setup as described in the figure above.
2. Connect USB HUB to DUT
3. Connect all USB devices to DUT external HUB.
4. Connect HDBT link.
5. Connect GU to the HOST computer
GU
USBH
USB
storageHost
DUT
USBDExternal
Hub
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6. Test basic functionality of every device.
7. Read USBD of DUT actual speed (Full speed or High Speed)
8. Perform Host reset
9. Read USBD of DUT actual speed (Full speed or High Speed)
Pass/Fail Criteria
All USB devices function ok, USBD speed of DUT is according to CDF.
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5.2.2.2 Embedded USBD Test
Test Overview
Test Purpose To verify DUT Embedded USBD interface interoperability with the GU USBH External
interface when the GU USBH interface is connected to the Golden USB host .
Test References HDBaseT Specification 2.0 section 8
Test Setup Figure 16: Embedded USBD
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX/TX) GU
HDBaseT cable CFG#6 for Class C ,CFG#8 for class D or 600m OM3 for class E
USB golden Host
D-link USB HUB 7
Microsoft Keyboard 200
Microsoft Optical Mouse 200
SanDisk Cruiser blade Disk on Key
GU
USBH
Host
DUT
USBD
Figure 16: Embedded USBD
Test Procedure
1. Establish setup as described in the figure above.
2. Connect HDBT link.
3. Connect GU to the HOST computer
4. Test basic functionality of DUT
Pass/Fail Criteria
DUT basic functionality ok.
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5.3 SPDIF
5.3.1 SPDIF TX
5.3.1.1 External SPDIF TX Test
Test Overview
Test Purpose To verify DUT SPDIF TX External interface functionality over HDBaseT
Test References HDBaseT Specification 2.0 clause 10.3
Test Setup
Figure 17: SPDIF TX External
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX/TX) GU
HDBaseT cable CFG#6 for Class C ,CFG#8 for class D or 600m OM3 for class E
Dscope
Digital
In
HDBaseT
GU
dScope
SPDIF generator
DUT
Digital
out
SPDIF in SPDIF out
USB
Figure 17: SPDIF TX External
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Test Procedure
1. Establish setup as described in the figure above.
2. Configure the highest available clock rate supported by the dScope & DUT (32K<->192K)
3. Configure highest bits available (16 ,20,24 bits)
4. Verify clock rate as configured (dScope output vs dScope Input )
5. Verify ‘lock’ indication on the ChA /ChB (green led)
6. Verify No errors indication on the ‘Log’ file.
7. Reset DUT and verify clock recovery
8. Disconnect HDBST LAN cable and verify recovery
NOTE
Test should be done with the available SPDIF interface (TOS link / BNC).
Pass/Fail Criteria
Clock rate as configured, indication at dScope is ’locked’ (Channel A/B green led) and no errors in ‘Log’ file.
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5.3.1.2 Embedded SPDIF TX Test
Test Overview
Test Purpose To verify DUT SPDIF TX Embedded interface functionality over HDBaseT
Test References HDBaseT Specification 2.0 clause 10.3
Test Setup Figure 18: SPDIF TX Embedded
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX/TX) GU
HDBaseT cable CFG#6 for Class C ,CFG#8 for class D or 600m OM3 for class E
Dscope
Digital
In
HDBaseT
GU
dScope
SPDIF generator
DUT
SPDIF out
USB
SPDIF TX
Figure 18: SPDIF TX Embedded
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Test Procedure
1. Establish setup as described in the figure above.
2. Configure the highest available clock rate supported by the DUT, the SPDIF generator (32K<->192K)
3. Configure highest bits available by the DUT, the SPDIF generator, (16 ,20,24 bits)
4. Push SPDIF data toward the HDBaseT link.
5. Verify in dScope that the clock rate indication is as configured by DUT.
6. Verify ‘lock’ indication on the ChA /ChB (green led)
7. Verify No errors indication on the ‘Log’ file.
8. Reset DUT and verify clock recovery
9. Disconnect HDBST LAN cable and verify recovery
Pass/Fail Criteria
Clock rate as configured, indication at dScope is ’locked’ (Channel A/B green led) and no errors in ‘Log’ file.
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5.3.2 SPDIF RX
5.3.2.1 External SPDIF RX Test
Test Overview
Test Purpose To verify DUT SPDIF RX External interface functionality over HDBaseT
Test References HDBaseT Specification 2.0 clause 10.3
Test Setup
Figure 19: SPDIF RX External
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX/TX) GU
HDBaseT cable CFG#6 for Class C ,CFG#8 for class D or 600m OM3 for class E
Dscope
Digital
In
HDBaseT
DUT
dScope
SPDIF generator
GU
Digital
out
SPDIF in SPDIF out
USB
Figure 19: SPDIF RX External
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Test Procedure
1. Establish setup as described in the figure above.
2. Configure the highest available clock rate supported by the dScope &DUT (32K<->192K)
3. Configure highest bits available (16 ,20,24 bits)
4. Verify clock rate as configured (dScope output vs dScope Input )
5. Verify ‘lock’ indication on the ChA /ChB (green led)
6. Verify No errors indication on the ‘Log’ file.
7. Reset DUT and verify clock recovery
8. Disconnect HDBST LAN cable and verify recovery
NOTE
Test should be done with the available SPDIF interface (TOS link / BNC).
Pass/Fail Criteria
Clock rate as configured, indication at dScope is ’locked’ (Channel A/B green led) and no errors in ‘Log’ file.
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5.3.2.2 Embedded SPDIF RX Test
Test Overview
Test Purpose To verify DUT SPDIF RX Embedded interface functionality over HDBaseT
Test References HDBaseT Specification 2.0 clause 10.3
Test Setup Figure 20: SPDIF RX embedded
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX/TX) GU
HDBaseT cable CFG#6 for Class C ,CFG#8 for class D or 600m OM3 for class E
Dscope
DUT Speakers
HDBaseT
DUT
dScope
SPDIF
generator
GU
Digital
out
SPDIF in
USB
Figure 20: SPDIF RX embedded
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Test Procedure
1. Establish setup as described in the figure above.
2. Configure the highest available clock rate supported by the dScope & DUT (32K<->192K)
3. Configure highest bits available (16 ,20,24 bits)
4. Connect DUT’s SPDIF output to an external speakers
5. Verify Audio sounds as expected.
6. Reset DUT and verify Audio recovery
7. Disconnect HDBST LAN cable and verify Audio recovery
Pass/Fail Criteria
Continuously, clear, quality Audio for a human hearing sense.
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5.4 Ethernet
5.4.1 Ethernet
5.4.1.1 External Ethernet Test
Test Overview
Test Purpose To verify DUT External Ethernet interface functionality over HDBaseT
Test References HDBaseT Specification 2.0 section 6
Test Setup Figure 21: Ethernet External
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX/TX) GU
HDBaseT cable CFG#2 for Class A & Class C/600m OM3 for Class E
PC station 1# ,2#
Ethernet
DUTHDBTGU
EthernetTest station#1 Test station#2
HDBT
Figure 21: Ethernet External
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Test Procedure
1. Establish setup as described in the figure above.
2. Configure static IP address on both Station#1 and Station#2 (Ethernet port) ,Use same subnet mask for both ( i.e. 192.168.1.1 and 192.168.1.2 )
3. Send 100 ICMP echo packets, 1280 bytes/packet (ping) from Station#1 to Station#2
4. Verify ping reply.
5. Verify no Link disconnection during the test.
6. Reset DUT and verify Ping recovery
7. Disconnect HDBST LAN cable and verify Ping recovery.
Pass/Fail Criteria
Continuous Ping between the stations, no link disconnection and no packet request time out.
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5.4.1.2 Embedded Ethernet Test
Test Overview
Test Purpose To verify DUT Embedded Ethernet interface functionality over HDBaseT
Test References HDBaseT Specification 2.0 section 6
Test Setup Figure 22: Ethernet Embedded Test Setup
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX/TX) GU
HDBaseT cable CFG#2 for Class A & Class C/600m OM3 for Class E
PC station 1#
DUTHDBTGU
EthernetTest station#1
HDBT
Figure 22: Ethernet Embedded Test Setup
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Test Procedure
1. Establish setup as described in the figure above.
2. Configure static IP address on both Station#1 and DUT , Use same subnet mask for both ( i.e. 192.168.1.1 and 192.168.1.2 )
3. Send 100 ICMP echo packets, 1280 bytes/packet (ping) from Station#1 to Station#2
4. Verify ping reply.
5. Verify no Link disconnection during the test.
6. Reset DUT and verify Ping recovery
7. Disconnect HDBST LAN cable and verify Ping recovery.
Pass/Fail Criteria
Continuous Ping between the stations, no link disconnection and no packet request time out.
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5.5 CIR
5.5.1 CIR TX (Receiver)
5.5.1.1 CIR TX (Receiver) Class C, D, E Test
Test Overview
Test Purpose To verify DUT CIR TX (Receiver) interface functionality over HDBaseT and to verify that
the DUT maintain a valid CIR T-adaptor info which reflect his actual CIR type A or B
Test References HDBaseT Specification 2.0 clause 10.1
Test Setup Figure 23: CIR TX (Reciever)
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX/TX) GU
HDBaseT cable CFG#8 for class C,D/600m OM3 for class E
GU external transmitter CIR adapter
DUT CIR receiver external DUT adaptor
TV with IR remote control 38kHz IR carrier frequency
DUTHDBaseT HDBaseT
GU
T.V Remote
Integrated IR
Receiver
External IR
Receiver
External IR
Transmitter
Type A&B
T.V
Figure 23: CIR TX (Reciever)
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Test Procedure
1. Establish setup as described in the figure above.
2. Verify that the DUT’s CIR T adaptor info is according to the CDF (IR Transmitter/Receiver types)
3. Verify that the TV’s remote control is pointing to the DUT receiver IR and not directly to the TV
4. Verify that the GU’s IR transmitter is pointing the TV.
5. Try to control the TV (power, volume, Menu etc…) while pointing the RC toward the DUT
6. Verify the TV is being controlled remotely via HDBT link.
Pass/Fail Criteria
If the CIR T-adaptor info matches to the CDF and the TV CIR control function without any error through HDBaseT then the test PASS.
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5.5.1.2 CIR TX (Receiver) Class A, B Test
Test Overview
Test Purpose To verify that DUT which has an IR receiver transmits the received IR signal correctly
over the HDBaseT link and maintains a valid HDCD Entity ID 0x414.
Test References HDBaseT Specification 2.0 clause 10.1
Test Setup Figure 23: CIR TX (Reciever)
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX/TX) GU
HDBaseT cable CFG#5 for Class A,B
GU external transmitter CIR adapter
DUT CIR receiver external DUT adaptor
TV with IR remote control 38kHz IR carrier frequency
Test Procedure
1. Connect the DUT HDBaseT port to the HDBaseT port on the HDBT GU using Cable CFG#5
2. Verify that the HDBT link is established.
3. Verify that the DUT Local IR configuration HDCD entity ID 0x414 bits 0 and 2 matches the CDF IR parameters.
4. If the DUT has an External IR receiver plug in DUT’s IR receiver and perform steps 5-7
5. Verify that the DUT local IR configuration HDCD entity ID 0x414 bit 8 and GU remote IR configuration HDCD 0x415 bit 8 are set as follow :
Equal to 1 in Case that the DUT External IR receiver defined as Type B.
Equal to 0 in Case that the DUT External IR receiver defined as Type A.
6. Test the following control functions on the TV’s remote control:
Power up
Volume control
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7. If DUT has an Integrated IR receiver perform steps 8- 10
8. In case that DUT supports both integrated and External IR receiver plug out the external IR receiver.
9. Verify that the DUT local IR configuration HDCD entity ID 0x414 bit 8 and GU remote IR configuration HDCD 0x415 bit 8 are set as follows:
a. Equal to 1 in Case that the DUT External IR receiver defined as Type B.
b. Equal to 0 in Case that the DUT External IR receiver defined as Type A.
10. Test the following control functions on the TV’s remote control:
a. Power up
b. Volume control
Pass/Fail Criteria
If the TV CIR control function without any error over HDBaseT and Entity ID 0x414 bits 0 and 2 matches the CDF and Entity ID 0x414 bit 8 and GU Entity ID 0x415 bit 8 equals to the expected value as defined in steps 5 and 9 the test Pass.
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5.5.2 CIR RX (Transmitter)
5.5.2.1 External CIR RX (Transmitter) Class C, D, E Test
Test Overview
Test Purpose To verify DUT’s external CIR RX (transmitter) interface functionality over HDBaseT and
to verify that the DUT maintain a valid CIR T-adaptor info which reflect his actual CIR
type A or B
Test References HDBaseT Specification 2.0 clause 10.1
Test Setup Figure 24: CIR RX (Transmitter)
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX/TX) GU
HDBaseT cable CFG#8 for class C,D or 600m OM3 for class E
TV with IR remote control 38kHz IR carrier frequency
GU
HDBaseT
DUT
External
IR
Transmiter
Host
I/F
AARDVARK
Integrated
IR Receiver
IR Receiver
External
Integrated
IR
Decoder
IR
Figure 24: CIR RX (Transmitter)
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Test Procedure
1. Establish setup as described in the figure above.
2. Verify that the DUT’s CIR T adaptor info is according to the CDF (IR Transmitter/Receiver types)
3. Set the GU’s CIR type according to the GU’s CIR type.
4. Verify that the TV’s remote control is pointing to the GU receiver IR and not directly to the TV
5. Verify that the DUT’s IR transmitter is pointing the TV.
6. Try to control the TV (power, volume, Menu etc…) while pointing the RC toward the GU
7. Verify the TV is being controlled remotely via HDBT link.
Pass/Fail Criteria
If the CIR T-adaptor info matches to the CDF and the TV CIR control function without any error through HDBaseT then the test Pass.
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5.5.2.2 External CIR RX (Transmitter) Class A, B Test
Test Overview
Test Purpose To verify that DUT which has an external IR transmitter handles properly the received
IR signal from HDBaseT link and maintain a valid HDCD Entity ID 0x414
Test References HDBaseT Specification 2.0 clause 10.1
Test Setup Figure 24: CIR RX (Transmitter)
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX/TX) GU
HDBaseT cable CFG#5
TV with IR remote control 38kHz IR carrier frequency
Test Procedure
1. Connect the DUT HDBaseT port to the HDBaseT port on the HDBT GU using a short CAT5E UTP cable.
2. Verify the HDBT link is established.
3. Verify the DUT Local IR configuration HDCD entity ID 0x414 bits 1, 3, and 4 through 7 match the CDF IR parameters.
4. If the CDF external IR transmitter type is Ext IR transmitter pass-through (Type B)/both(Type A&B) perform the following steps:
a. Plug in the DUT IR Transmitter blaster.
b. Plug in the GU External IR receiver cable type B.
c. Test the following control functions on the TV’s remote control:
i. Power up
ii. Volume control
5. If the CDF External IR Transmitter type is Ext IR transmitter modulated(Type A)/both(Type A&B), perform the following steps:
a. Plug in the DUT IR Transmitter blaster.
b. Plug in the GU External IR receiver cable type A or verify that the GU External IR receiver is unplugged and use the GU integrated IR receiver.
6. Test the following control functions on the TV’s remote control through the GU integrated IR receiver:
Power up
Volume control
Pass/Fail Criteria
If the TV CIR control function without any error over HDBaseT and Entity ID 0x414 bits 1, 3, and 4 through 7 matches the CDF then the test Pass.
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5.5.2.3 Integrated (Embedded) CIR RX (Transmitter) Class C, D, E Test
Test Overview
Test Purpose To verify DUT Embedded CIR RX (transmitter) interface functionality over HDBaseT and
to verify that the DUT maintain a valid CIR T-adaptor info which reflect his actual CIR
type A or B
Test References HDBaseT Specification 2.0 clause 10.1
Test Setup Figure 24: CIR RX (Transmitter)
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX/TX) GU
HDBaseT cable CFG#8 for class C,D/600m OM3 for class E
TV with IR remote control 38kHz IR carrier frequency
Test Procedure
1. Establish setup as described in the figure above.
2. Verify that the DUT’s CIR T adaptor info is according to the CDF (IR Transmitter/Receiver types)
3. Set the GU’s CIR type according to the GU’s CIR type.
4. Try to control the DUT (power, volume, menu etc…) while pointing the DUT’s RC toward the GU’s IR Receiver.
5. Verify that the DUT’s IR transmitter is pointing the TV.
6. Try to control the TV (power, volume, Menu etc…) while pointing the RC toward the GU.
7. Verify the TV is being controlled remotely via HDBT link.
Pass/Fail Criteria
If the CIR T-adaptor info matches to the CDF and the TV CIR control function without any error through HDBaseT then the test Pass.
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5.5.2.4 Integrated (Embedded) CIR RX (Transmitter) Class A, B Test
Test Overview
Test Purpose To verify that DUT with an integrated IR Transmitter properly handles the received IR
signal from the HDBaseT link and maintains a valid HDCD Entity ID 0x414
Test References HDBaseT Specification 2.0 clause 10.1
Test Setup Figure 24: CIR RX (Transmitter)
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX/TX) GU
HDBaseT cable CFG#5 for Class A, B
DUT’s IR remote control
Test Procedure
1. Connect the DUT HDBaseT port to the HDBaseT port on the HDBT GU using cable CFG#5
2. Verify that the HDBT link is established.
3. Verify the DUT Local IR configuration HDCD entity ID 0x414 bits 1, 3, and 4 through 7 match the CDF IR parameters.
4. If the CDF Integrated IR decoder type is LPF (type B)/both( type A&B), perform the following steps:
a. Plug in the GU IR receiver cable type B.
b. Try to control the DUT with its remote control, according to the supported control functions which are specified in the CDF.
5. If the CDF integrated IR Transmitter type is pass-through (Type A)/both Type A&B), perform the following steps:
a. Verify the GU IR Receiver cable is unplugged or Plug GU External IR receiver Type A.
b. Try to control the DUT with its remote control, according to the supported control functions which are specified in the CDF.
Pass/Fail Criteria
If the TV CIR control functions without any error over HDBaseT and Entity ID 0x414 bits 1, 3, and 4 through 7 matches the CDF then the test Pass.
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5.6 UART
5.6.1.1 External UART Test
Test Overview
Test Purpose To verify DUT External UART interface functionality over HDBaseT
Test References HDBaseT Specification 2.0 clause 10.2
Test Setup Figure 25: External UART test setup
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX/TX) GU
HDBaseT cable CFG#5 class A,B, C,D/600m OM3 for class E
UART loop
HDBaseT
DUTHDBaseT
GU
HDBaseT
RS
-23
2
RS232 Loop
Rif
UART
Figure 25: External UART test setup
Test Procedure
1. Establish setup as described in the figure above.
2. Open Serial session with every legal Serial configuration (Baud Rate , Parity, Cross/Straight cable etc…)
3. Connect the RS232 ‘loopback connector’ on the DUT’s serial port.
4. Disable automatic ‘Echo’
5. Verify all serial commands are echoed back.
6. Reset DUT and verify Echo recovery.
7. Disconnect HDBaseT LAN cable and verify echo recovery
Pass/Fail Criteria
All Serial commands are echoed back.
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5.6.1.2 Embedded UART Test
Test Overview
Test Purpose To verify DUT Embedded UART interface functionality over HDBaseT
Test References HDBaseT Specification 2.0 clause 10.2
Test Setup Figure 26: Embedded UART test setup
Test Resources
PC/Laptop with HDBaseT GU CTS SW
HDBaseT (RX/TX) GU
HDBaseT cable CFG#5 for class A, B C,D/600m OM3 for class E
UART loop
HDBaseT
DUTHDBaseT
GU
HDBaseT
RS
-23
2
Rif
UART
Figure 26: Embedded UART test setup
Test Procedure
1. Establish setup as described in the figure above.
2. Open Serial session according to the customer’s configuration instructions (Baud
Rate, Parity, Cross/Straight cable etc…)
3. Enable automatic ‘Echo’
4. Type Serial commands string as given by the customer (power on/off ,volume etc..)
5. Verify all serial commands are functioning.
6. Reset DUT and verify serial commands recovery.
7. Disconnect HDBST LAN cable and verify serial commands recovery.
Pass/Fail Criteria
All Serial commands are echoed back.
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6 HDBaseT Recommended Cable
6.1.1.1 HDBaseT Recommended Cable Test
Test Overview
Test Purpose To verify GU Active mode performance with 80 meterCAT5E/90 meterCAT6 Cable
under test +2xCat5E 5 meter patches.
Test References HDBaseT Specification 2.0
Test Setup Figure 27: HDBaseT Recommended Cable Test Setup
Test Resources
PC/Laptop with HDBaseT CTS SW
TX&RX GU
2xCat5E 5 meter patches
90 meter un-terminated cable under test
HDBaseT
RX
GU
RS
-23
2HDBaseT
TX
GU
HDBaseT LAN cable
Figure 27: HDBaseT Recommended Cable Test Setup
Test Procedure
1. Connect TX GU HDBaseT port to RX GU HDBaseT port using 80 meter CAT5E or 90 meter CAT6/6A/7 Cable under test and 2x5 meter Cat 5E patches.
2. Set GU to mode 500 and Verify that the HDBaseT link is active.
3. GU enables TOKD16 protected BIST traffic on the DUT TX port according to table 9.
4. GU monitor retransmission rate.
5. Enable BIST traffic on the GU RX port ,clear statistic and run the BIST for 5
6. GU retrieves Main and Aux BIST BER.
Pass/Fail Criteria
If the Cable under test passes criteria as defined in table 15 then the cable is recommended for HDBaseT
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Table 13: Recommended Cable Pass Criteria
Active Mode Main BIST Token type Main Retransmission Rate
Pass criteria
Main BIST BER
Pass criteria
Aux BIST BER
Pass criteria
1 500 TokD16 Retransmission rate
<1/500
(1 Error per 500
packets)
BER<10E-9 BER<10E-12
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7 HDBaseT Recommended Fiber Optic SFP
Test Purpose To verify Fiber optic SFP module under test HDBaseT performance over OM3 600m and
OM4 800m
Test References HDBaseT Specification 2.0
Test Setup Figure 28: HDBaseT Recommended Fiber Optic SFP Test Setup
Test Resources
PC/Laptop with HDBaseT CTS SW
TX&RX GU
OM3 600 meter cable
OM4 800 meter cable
Fiber optic Attenuator
HDBaseT
RX
GU
RS
-23
2
HDBaseT
TX
GU SFP SFP
Fiber
Optic
attenuator
Figure 28: HDBaseT Recommended Fiber Optic SFP Test Setup
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Test Procedure
1. Connect GU RX fiber to GU TX fiber port using the SFP under test and 600 meter OM3 cable through the Fiber optic Attenuator
2. Verify that the HDBaseT link is active.
3. Set Fiber Attenuator to -2db
4. Set BIST Packets HDCD as define in Table 8: BIST HDCD values.
5. Enable protected BIST TokD16 packets transmission on Both GU RX port and GU TX port.
6. Clear BIST packet count and Bit Error count.
7. Run BIST traffic for 30 min and retrieves Bit error count on both RX port and TX
port.
8. Repeat steps 1 to 7 using the OM4 800 meter cable
Pass/Fail Criteria
If Both TX port and RX port BIST Bit error counters are less than 10E-12 and no link error events occur during the test then test Pass.
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8 Test Report
8.1 Device Test Report
Test report includes 2 sections: Informative section and Results section.
Informative section describes general information about the tested product:
RTF Name
Valens Semiconductor
TSC
01yyyymmdd01
Test Completion Date
dd/mm/yyyy
Overall Result
PASS/FAIL
RTF Contact
Peretz Ben-Haviv
Contact Phone
+97297626900
Contact Email
Reporter
Email of reporter
Approver
Vendor Name
Name of company
Product Name
Name of product
Device Vendor ID
Vendor ID from CDF
Product HW revision
Product HDBaseT transceiver FW version
HDBaseT Class A/B/C/D/E
Device Category
Device capabilities
100BaseTX Supported /Not supported
PoH PSE Type Not supported /Type1/2/3/4/Twin
PoH PD class Not supported /Class 1/2/3/4
100BaseTX Supported /Not supported
Ethernet over HDBaseT Supported /Not supported
UART Supported /Not supported
IR-Receiver Supported /Not supported
CEC Supported /Not supported
USB-H Supported /Not supported
USB-D Supported /Not supported
SPDIF RX Supported /Not supported
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SPDIF TX Supported /Not supported
MAX supported TMDS clock number of MHz
Test ID - Title Non-Conformant Behavior Description
Test ID: #
For HDBaseT Alliance Use Only
Date Results Received
Date Vendor Application Received
Date Admin Fee Received Date Certification Awarded
Notice emailed to vendor
Product posted on web TSC Closed
Results section describes expected results for the various test configurations as well as typical formats of the test results.
Table 14: Test Report Table
x.x.x.x: Title Result Pass/Fail
Note
3 HDBaseT Port
3.1 HDBaseT Link performance
3.1.1.1 HDSBI ClassA,B Tests
3.1.1.2 HDSBI ClassC,D Tests
3.1.2.1 HDBaseT ClassA,B Tx Phy downstream performance Test
3.1.2.2 HDBaseT ClassA,B Tx Phy upstream perfromanceTest
3.1.2.3 HDBaseT ClassC,D Tx Phy performance Test
3.1.2.4 HDBaseT ClassA,B Rx Phy upstream performance Test
3.1.2.5 HDBaseT ClassA,B Rx phy downstream performance Test
3.1.3.1 HDBaseT fiber (ClassE )TX Phy performance Test
3.1.3.2 HDBaseT fiber (ClassE) RX Phy performance Test
3.2 PoE
3.2.1.1 PSE detection output voltage Test
3.2.1.2 PSE feeding voltage Test
3.2.1.3 Non PoE output voltage test
3.3 HDCD
3.3.1.1 Vendor ID Test
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3.3.1.2 ClassA,B Feature list Test
4 Network
4.1 Discovery
4.1.1.1 ClassC,D,E Feature list Test
5 Interfaces over HDBaseT
5.1 HDMI
5.1.1.2 External HDMI-SRC HPD Test
5.1.1.3 External HDMI-SRC pass-through EDID Test
5.1.1.4 External HDMI-SRC internal EDID Test
5.1.1.5 External HDMI-SRC HDCP Test
5.1.1.6 External HDMI-SRC CEC
5.1.2.1 Embedded HDMI-SRC Data reliability Test
5.1.2.2 Embedded HDMI-SRC CEC Test
5.1.3.1 External HDMI-SNK Data reliability Test
5.1.3.2 External HDMI-SNK 5V Test
5.1.3.3 External HDMI-SNK pass-through EDID Test
5.1.3.4 External HDMI-SNK internal EDID Test
5.1.3.5 External HDMI-SNK HDCP Test
5.1.3.6 External HDMI-SNK CEC Test
5.1.4.1 Embedded HDMI-SNK Data reliability Test
5.1.4.2 Embedded HDMI-SNK EDID Test
5.1.4.3 Embedded HDMI-SNK HDCP Test
5.1.4.4 Embedded HDMI-SNK CEC Test
5.2 USB
5.2.1.1 External USBH Test
5.2.1.2 Embedded USBH Test
5.2.2.1 External USBD Test
5.2.2.2 Embedded USBD Test
5.3 SPDIF
5.3.1.1 External SPDIF TX Test
5.3.1.2 Embedded SPDIF TX Test
5.3.2.1 External SPDIF RX Test
5.3.2.2 Embedded SPDIF RX Test
5.4 Ethernet
5.4.1.1 External Ethernet Test
5.4.1.2 Embedded Ethernet Test
5.5 CIR
5.5.1.1 CIR TX (Receiver) Class C, D, E Test
5.5.1.2 CIR TX (Receiver) Class A, B Test
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Table 15: Class C/D HDBaseT performance test result
5.5.2.1 External CIR RX (Transmitter) Class C, D, E Test
5.5.2.2 External CIR RX (Transmitter) Class A, B Test
5.5.2.4 Integrated (Embedded) CIR RX (Transmitter) Class A, B Test
5.5.2.4 Integrated (Embedded) CIR RX (Transmitter) Class A, B Test
5.6 UART
5.6.1.1 External UART Test
5.6.1.2 Embedded UART Test
# Cable HDBaseT mode
Main TokD Pass Criteria Measured value
Pass/ Fail
1 CFG#1 500 ToKD12
Main Retransmission rate <1/10000000
Main BER <10E-12
Aux BER <10E-12
2 CFG#1 250 TokD16
Main Retransmission rate <1/10000000
Main BER <10E-12
Aux BER <10E-12
3 CFG#2 500 TokD16
Main Retransmission rate <1/500
Main BER <10E-9
Aux BER <10E-12
4 CFG# 3 500 TokD16
Main Retransmission rate <1/500
Main BER <10E-12
Aux BER <10E-12
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Table 16: Class A/B HDBaseT Performance Test Result
TMDS Clock
Cable Cfg Parameter Unit Spec Result PASS / FAIL
Notes
Min Max ChA ChB ChC ChD W.C.
#1 (Cat6A
100 m)
#DS Packet MPkt 1000
#DS CRC Error Pkt 10
#Ethernet Bit Error Pkt 0
DownStream MSE dB -14.00
MAX 1.8
UpStream MSE dB -19.25
MAX 0.75
#2 (Cat5E
90 m +
2x5 m)
#DS Packet MPkt 1000
#DS CRC Error Pkt 10
#Ethernet Bit Error Pkt 0
DownStream MSE dB -10.00
MAX 2.00
UpStream MSE dB -19.00
MAX 0.80
#3 (Cat5E
55 m + 1
m + 5 m)
#DS Packet MPkt 1000
#DS CRC Error Pkt 10
#Ethernet Bit Error Pkt 0
DownStream MSE dB -16.50
MAX 1.8
UpStream MSE dB -19.50
MAX 0.70
#4 (Cat6A
20m)
#DS Packet MPkt 1000
#DS CRC Error Pkt 10
#Ethernet Bit Error Pkt 0
DownStream MSE dB -20.00
MAX 1.8
UpStream MSE dB -20.00
MAX 0.60
#5 (Cat5E
0.5m)
#DS Packet MPkt 1000
#DS CRC Error Pkt 10
#Ethernet Bit Error Pkt 0
DownStream MSE dB -19.00
MAX 1.8
UpStream MSE dB -20.50
MAX 0.55
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HDBaseT Compliance Test Specification 2.0a
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Table 17: Video Data Reliability Test Result
CEA code
Format Name
QD Format Name
Bits Per Color
TMDS Clock [MHz]
Spec Range BER
Measure Value
Result
1
EDID Compliance Report
Test ID 8-1: EDID Readable
PASS->Block 0 header
PASS->Block 0 checksum
PASS->Number of extension blocks is 1
PASS->Block 1 checksum
Test ID 8-2: EDID VESA Structure
PASS->Correct EDID version
PASS->Correct Video Information Byte
PASS->Correct Preferred Timing Bit
PASS->Preferred Timing descriptor
PASS->Monitor Range Limits header
PASS->Monitor Name header
PASS->Monitor Descriptor follows DTD
Test ID 8-3: CEA Timing Extension Structure
PASS->CEA T.E. in EDID block 1
PASS->Correct CEA T.E. version in EDID block 1
PASS->Legal Data Block types in EDID block 1
PASS->Basic Audio claimed in CDF matches EDID
PASS->Basic Audio and Audio Data Block are found in EDID block 1
PASS->Audio Block length is a multiple of 3 in EDID block 1
PASS->Short Audio Descr. Rsvd bits are zeros in EDID block 1
PASS->Short Audio Descr. Rsvd byte is zero in EDID block 1
PASS->One Speaker Alloc. Data Block is present in EDID block 1
PASS->Legal Speaker Alloc Block length in EDID block 1
PASS->Speaker Alloc Descr. Rsvd bits zero in EDID block 1
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PASS->Speaker Alloc rsvd bytes zeros in EDID block 1
PASS->d points to correct location in EDID block 1
PASS->HDMI VSDB is present in EDID block 1
PASS->HDMI VSDB has correct length in EDID block 1
PASS->Physical address in HDMI VSDB is 1.0.0.0
PASS->Correct Support_AI field in block 1
PASS->VSDB byte 6 reserved field set to zero in block 1
PASS->Valid max TMDS clock value in block 1
PASS->Zero Reserved Extension Fields in block 1 VSDB
PASS->Only one HDMI VSDB is present in EDID block 1
PASS->3D/4Kx2K video formats support not indicated in EDID and not declared in CDF.
PASS->3D video formats support not indicated in EDID and 3D video format support
not declared in CDF.
PASS->Additional 3D video format support not indicated in EDID and additional 3D video format support not declared in CDF.
PASS->Correct number of native DTDs
Test ID 8-17: Basic Format Support Requirements
NATIVE DETAILED TIMING # 1:
PASS->DTD matches an 861B format with VIC = 5
PASS->SVD that matches the VIC of the 861 format is found
PASS->Pixel clock of DTD exactly matches that of the 861 format
PASS->Pixel rate within HDMI specifications.
DETAILED TIMING # 2:
PASS->DTD matches an 861B format with VIC = 2
PASS->SVD that matches the VIC of the 861 format is found
PASS->Pixel clock of DTD exactly matches that of the 861 format
PASS->Pixel rate within HDMI specifications.
Test ID 8-18: HDMI Format Support Requirements
PASS->CDF field Sink_60Hz matches information in EDID
PASS->CDF fields Sink_60Hz and Sink_HDTV matches information in EDID
PASS->CDF field Sink_50Hz matches information in EDID
PASS->CDF fields Sink_50Hz and Sink_HDTV matches information in EDID
PASS->CDF field 720x480p/60 4:3 (VIC = 2) matches information in EDID
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PASS->CDF field 720x480p/60 16:9 (VIC = 3) matches information in EDID
PASS->CDF field 1280x720p/60 16:9 (VIC = 4) matches information in EDID
PASS->CDF field 1920x1080i/60 16:9 (VIC = 5) matches information in EDID
PASS->CDF field 1440x480i/60 4:3 (VIC = 6) matches information in EDID
PASS->CDF field 1440x480i/60 16:9 (VIC = 7) matches information in EDID
PASS->CDF field 1920x1080p/60 16:9 (VIC = 16) matches information in EDID
PASS->CDF field 720x576p/50 4:3 (VIC = 17) matches information in EDID
PASS->CDF field 720x576p/50 16:9 (VIC = 18) matches information in EDID
PASS->CDF field 1280x720p/50 16:9 (VIC = 19) matches information in EDID
PASS->CDF field 1920x1080i/50 16:9 (VIC = 20) matches information in EDID
PASS->CDF field 1440x576i/50 4:3 (VIC = 21) matches information in EDID
PASS->CDF field 1440x576i/50 16:9 (VIC = 22) matches information in EDID
PASS->CDF field 1920x1080p/50 16:9 (VIC = 31) matches information in EDID
Test ID 8-19: Pixel Encoding Requirements
PASS->HDMI Supports either YCbCr 4:2:2 or YCbCr 4:4:4 then both shall be
supported
Test ID 8-20: Video Format Timing
PASS->No VIC greater than 64 found
PASS->All VICs are non-zero
HDBaseT Compliance Test Specification 2.0a
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8.2 Recommended CATx Cable Test Report
RTF Name
Valens Semiconductor
TSC
01yyyymmdd01
Test Completion Date
dd/mm/yyyy
Overall Result
PASS/FAIL
RTF Contact
Peretz Ben-Haviv
Contact Phone
+97297626900
Contact Email
Reporter
Email of reporter
Approver
Vendor Name
Name of company
Product Name
Name of product
Cable Type
HDBaseT mode
Pass Criteria Measured value
Pass/Fail
500 Main Retransmission rate <1/500
Main BER <10E-9
Aux BER <10E-12
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8.3 Recommended SFP Test Report
RTF Name
Valens Semiconductor
TSC
01yyyymmdd01
Test Completion Date
dd/mm/yyyy
Overall Result
PASS/FAIL
RTF Contact
Peretz Ben-Haviv
Contact Phone
+97297626900
Contact Email
Reporter
Email of reporter
Approver
Vendor Name
Name of company
Product Name
Name of product
SFP type
# HDBaseT mode OMX
Pass Criteria Measured value Pass /Fail
1 500 OM3
Main Retransmission rate <1/500
Main BER <10E-12
Aux BER <10E-12
Link Error event 0
2 500 OM4
Main Retransmission rate <1/500
Main BER <10E-12
Aux BER <10E-12
Link Error Event 0
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9 Capabilities Declaration Form (CDF)
0 Initial Information Description Value
0.1 Request Type New certification or certification based on similarity? New Certification,
Similarity Request
0.2 Insert role model name For similarity request, insert name of the already certified product
0.3 Product/Cable/SFP Certification for a product or a cable? Product,
Cable
0.4 Cable Type What is the cable type? CAT5e,
CAT6,
CAT6A,
CAT7,
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1 General information Description Value
1.1 Product/Cable Vendor Name:
1.2 Product/Cable Name(s)/Model Name(s):
1.3 Vendor ID DUT Vendor ID as defined by HDBaseT LLC
1.4 Product revision DUT HW revision
1.5 HDBaseT class DUT HDBaseT Class for HDBaseT Copper port type Class A(VS100): *Supports Full HD Video up to 100 meter CAT5E *Support s video Ultra HD video up to 90 meter CAT6 Class B(VS010): *Support Full HD to 30 meter CAT6A Class C (VS2310): *Supports Full HD Video up to 100 meter CAT5E *Support s video Ultra HD video up to 90 meter CAT6 Class D (VS2110): *Support Full HD to 30 meter CAT6A Class E(VS2310+VS2311GF): DUT HDBaseT Class for HDBaseT Fiber port type Support video Ultra HD video up to 600 meter OM3 or 800 meter OM4.
Class A(VS100), Class B(VS010), Class C (VS2310), Class D (VS2110), Class E(VS2310+VS2311GF):
1.6 Product Category DUT consumer electronics category Display /Projector
AV Receiver/ Bluray Player/ Matrix
Extender/
Camera-Receiver/
Camera-Transmitter/
Cable/SFP
Repeater/Fiber Extender
1.7 Notes/Remarks:
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2 Port configuration Description Value
2.1 HDBaseT Tx port number Number of HDBaseT TX ports 0,1,2-N 0-N
2.2 HDBaseT Rx port number Number of HDBaseT RX ports 0,1,2-N 0-N
2.3 Port similarity declaration
In case port number>1 declare which ports are similar ,in case that
ports are not similar for each Group of ports CDF should be filled.
*Similarity is defined as HW similarity and functionality similarity
* If a ports functionality is a subset with less functionality options it
would be counted as a similar port
If all ports are similar specify : All
else specify the group of the similar ports which are specified in the
CDF :1,2 ,N 0-N
2.4 POE declaration Description Value
2.4.1 PoE
Does DUT supplies power over the HDBaseT line or powered from
the HDBaseT line
No
PsE
PD
2.4.2 PoE compliancy
Does DUT comply with HDBaeT1.1PoH clause 6 ? Yes
No
2.4.3 PSE Type
PSE Type N/A
Type1
Type2
Type3
Type2-TWIN
Type3-TWIN
2.4.4 PD class PD class
NOTE
Section 2.4 is N/A for fiber port type
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3 Operation mode support Description Values
3.1 Active mode Which Active HDBaseT operation
mode is supported?
*HDBaseT mode 500(Normal mode &
Long Reach) &250
*HDBaseT mode 250(Long Reach)
HDBaseT mode 500&250,
Mode 250,
Mode 500
3.2 LPPF mode *Which LPPF mode is supported?
*LPPF1
*LPPF1&LPPF2
LPPF1,
LPPF1&LPPF2
3.3 Fall Back mode (100BaseTX mode) Does DUT support Ethernet
100BaseTX port operation mode?
Not supported,
Supported
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4 Supported Interfaces over HDBaseT
4.2 HDMI over HDBaseT
4.2.1 HDMI -Source type
HDMT-Source type: *External-Pass-through: -DUT has an External HDMI input port -DUT pass through the HDMI format as is to the HDBaseT *Embedded: -DUT does not have a native/External HDMI input port. -DUT has an internal HDMI source *External&Scaler: -DUT has an External HDMI input port -DUT perform scaling on the input HDMI format before transmitting it over HDBaseT *External&Scaler&Embedded -DUT has an External HDMI input port -DUT perform scaling on the input HDMI format before transmitting it over HDBaseT - DUT has an internal HDMI source
External-pass-through,
Embedded,
External & Scaler,
External&Scaler&Embedded
4.2.2 HDMI-Sink type
HDMT-sink type *External-Pass-through: -DUT has an External HDMI output port -DUT pass through the HDMI format as is from HDBaseT to the HDMI out *External&Scaler -DUT has an External HDMI output port -DUT perform scaling on the HDMI format which is received from HDBaseT *Embedded -DUT does not have an External HDMI native output port. -DUT has a built video display which displayed the received video from HDBaseT
External-pass-through,
Embedded,
External&Scaler
4.3 Ethernet interface type Dose Ethernet interface over HDBaseT is supported?
Not supported,
Pass through,
Termination,
Termination&Passthrough
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4.4 SPDIF
Not Supported,
Passthrough,
Termination&Passthrough
4.4.1 SPDIF TX interface type
External -DUT Pass-through the SPDIF frame to HDBaseT from an External SPDIF input. Embedded -DUT generate SPDIF frame from an Embedded SPDIF source and pass-through it to HDBaseT. Not supported
Not supported,
External,
Embedded
4.4.2 SPDIF RX interface type
External -DUT Pass-through the SPDIF frame to HDBaseT from an External SPDIF input. Embedded -DUT generate SPDIF frame from an Embedded SPDIF source and pass-through it to HDBaseT. Not supported
Not supported,
External,
Embedded
4.4.3 SPDIF RX maximum supported frame rate
Please specify DUT maximum supported frame rate in Hertz
32K,
44.1K,
48K,
192K
4.4.4 SPDIF TX maximum supported frame rate
Please specify DUT maximum supported frame rate in Hertz
32K,
44.1K,
48K,
192K
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4.5 USB over HDBaseT
Supported,
Not Supported
4.5.1 USB-H interface type Dose DUT support USB-H interface
Embedded,
External,
Not Supported
4.5.2 USB-D interface type Dose DUT support USB-D interface
Embedded,
External,
Not Supported
4.5.3 USBH Embedded USB interface support
Does DUT Embedded USBH support USB devices?
Supported,
Not Supported
4.5.3.1 USBH Embedded Interrupt support
Does DUT Embedded USBH supports interrupt USB devices? (Mouse/keyboard)
Supported,
Not Supported
4.5.3.2 USB Bulk support Does DUT Embedded USBH device supports interrupt USB devices?
Supported,
Not Supported
4.5.3.3 USB ISO support Does DUT Embedded device supports ISO USB devices?
Supported,
Not Supported
4.5.4 USBH Embedded device general description
Please describe USBH Embedded device functionality
4.5.5 USBD Embedded device general description
Please describe USBD Embedded device functionality
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4.6 CIR Does IR over HDBaseT function supported?
Not Supported,
Transmitter,
Receiver,
Transmitter & Receiver
4.6.1 Integrated IR Receiver Type (CIR-TX)
None - DUT does not contain an Integrated IR receiver. Type A - • The IR receiver is mounted on the product's closure • Supports 38KHz CIR • IR receiver demodulates and sends un-modulated signal over HDBaseT Type B - • Supports 0 – 60KHz CIR signal • IR receiver sends the received CIR signal over HDBaseT AS IS (i.e. modulated)
None,
Type A,
Type B
4.6.2 External IR Receiver Type (CIR-TX)
None - DUT does not contain an External IR Receiver Type A - • Supports 38KHz CIR • IR receiver demodulates and sends un-modulated signal over HDBaseT Type B - • Supports 0 – 60KHz CIR signal • IR receiver sends the received CIR signal over HDBaseT AS IS (i.e. modulated)
None,
Type A,
Type B
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4.6.3 External IR Transmitter Type (CIR-RX)
None - DUT Does not contain an External IR Transmitter Pass-through /Type B - Product has an IR TX 3.5 mm Jack and the IR signal from HDBaseT drives the light emitter directly. Modulated/Type A - DUT has an IR TX 3.5 mm jack; The IR signal from HDBaseT is modulated with 38K clock before driving the light emitter. Both /Type A&B - The device can multiplex between two paths of IR signal: either sends the IR signal to the emitter as is or modulate it with 38KHz. The selection between the options is :
None,
Pass-through/Type B,
Modulated/Type A,
Both/ Type A&B
4.6.4 Integrated IR Transmitter type (CIR-RX)
None - DUT Does not contain an External IR Transmitter Pass-through/Type A - The device receives the signal from HDBaseT link as is and decodes the IR message as-is. LPF /Type B - The device filters the 38KHz carrier to create a baseband signal prior to decoding the message. Both Type A&B - The device can select between two options: filtered or non-filtered IR signal. The selection is done using a dedicated GPIO.
None,
Pass-through/Type A,
LPF/Type B,
Both/ Type A&B
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4.7 UART
4.7.1 UART interface Type
Does DUT supports UART over HDBaseT? *Embedded UART -DUT has an Embedded UART interface -The UART Data is pass-through between DUT controller and the HDBaseT UART interface *External UART -DUT has an External UART interface -The UART Data is pass-through between the External UART interface and the HDBaseT UART interface *Not Supported
Not Supported,
External,
Embedded
4.7.2 UART max baud rate
DUT maximum supported Baud rate 9600,
19200,
57600,
115200
4.7.3 Embedded interface UART command description
Please specify set of commands + response which are supported over the UART interface or provide instruction & application in order to operate DUT over UART
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Embedded_Source_HDMI CDF
4.2.1.1 TMDS clock(MHz) What is the MAX supported TMDS clock (25 - 300)
4.2.1.2 HDMI Input Max format supported
Which of the following format supported?
1920X1080p/60Hz 16:9
1920x1080p/50Hz 16:9
4Kx2K/24Hz
4Kx2K/30Hz
other
4.2.1.3 HDMI Input Other Max format supported
If max supported format is other please specify it
4.2.1.4 Max supported bit per color Supported Bit per color on Max format 8,10,12,16
4.2.1.5 CEC Does the DUT support CEC function Supported,
Not Supported
4.2.1.6 CEC operation instruction Operation instruction for one supported CEC command
4.2.1.7 HDCP Does the product support HDCP?
Supported,
Not Supported
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Embedded_Sink_HDMI CDF
4.2.1.1 TMDS clock(MHz) What is the MAX supported TMDS clock (25 - 300)
4.2.1.2 HDMI Output Max format supported
Which of the following format supported?
1920X1080p/60Hz 16:9,
1920x1080p/50Hz 16:9,
4Kx2K/24Hz,
4Kx2K/30Hz,
Other
4.2.1.3 HDMI Output Other Max format supported
If max supported format is other please specify it
4.2.1.4 Max supported bit per color Supported Bit per color on Max format 8,10,12,16
4.2.1.5 CEC Does the DUT support CEC function Supported,
Not Supported
4.2.1.6 CEC operation instruction Operation instruction for one supported CEC command
4.2.1.7 HDCP Does the product support HDCP?
Supported,
Not Supported
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External_HDMI_Source CDF
4.2.1.8 TMDS clock(MHz) What is the MAX supported TMDS clock (25 - 300)
4.2.1.9 HDMI Input Max format supported
Which of the following format supported?
1920X1080p/60Hz 16:9,
1920x1080p/50Hz 16:9,
4Kx2K/24Hz,
4Kx2K/30Hz,
Other
4.2.1.10 HDMI Input Other Max format supported
If max supported format is other please specify it
4.2.1.11 Max Supported Bit per color Max supported bit per color on Max supported format 8,10,12,16
4.2.1.12 Scaler Does the DUT perform HDMI format scaling Yes, No
4.2.1.13 HDMI Scaler Max out format supported
Which of the following format supported ?
1920X1080p/60Hz 16:9,
1920x1080p/50Hz 16:9,
4Kx2K/24Hz,
4Kx2K/30Hz,
Other
4.2.1.14 HDMI Scaler Max out -other format
If max supported format is other please specify it
4.2.1.15 CEC support Does the DUT support CEC function Supported,
Not Supported
4.2.1.16 Internal EDID Does the product Has an Internal EDID Supported,
Not Supported
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External_HDMI_source CDF
4.2.1.8 TMDS clock(MHz) What is the MAX supported TMDS clock (25 - 300)
4.2.1.9 HDMI Output Max format supported
Which of the following format supported?
1920X1080p/60Hz 16:9,
1920x1080p/50Hz 16:9,
4Kx2K/24Hz,
4Kx2K/30Hz,
Other
4.2.1.10 HDMI Output Other Max format supported
If max supported format is other please specify it
4.2.1.11 Max Supported Bit per color Max supported bit per color on Max supported format 8,10,12,16
4.2.1.12 CEC support Does the DUT support CEC function Supported,
Not Supported
4.2.1.13 Internal EDID Does the product Has an Internal EDID Supported,
Not Supported
END OF DOCUMENT