232-15933-PVY117-HEXFET® Power MOSFET Photovoltaic RelaySingle-Pole, Normally-Open, 0-40V ACDC,...
Transcript of 232-15933-PVY117-HEXFET® Power MOSFET Photovoltaic RelaySingle-Pole, Normally-Open, 0-40V ACDC,...
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Data Sheet No. PD 10063
Series PVY117Microelectronic Power ICHEXFET Power MOSFET Photovoltaic Relay
Single-Pole, Normally-Open, 0-40V AC/DC, 470mA
General DescriptionThe PVY117 Series Photovoltaic Relay is a single-pole, normally-open solid-state relay that can replacedry and Mercury-wetted reed relays in many appli-cations. It utilizes International Rectifiers proprietaryHEXFET power MOSFET as the output switch,
driven by an integrated circuit photovoltaic generatorof novel construction. The output switch is controlledby radiation from a GaAlAs light emitting diode (LED),which is optically isolated from the photovoltaicgenerator.
The PVY117 is ideally suited for use as matrix relay
in low voltage ATE applications and general
instrumentation applications involving high frequency
test signals. This can be accomplished thanks to the
extremely low Figure Of Merit (FOM = Coff * Ron),
which is the product of the relays off-state output
capacitance and on-state resistance.
The PVY117 is packaged in a 4-pin, molded smalloutline package (SOP-4) with surface mount (gull
wing) terminals. It is available in plastic shipping
tubes or on tape-and-reel. Please refer to Part
Identification information.
Applications
Automated Test Equipment
Instrumentation
Data Acquisition
(HEXFET is the registered trademark for International Rectifiers power MOSFETs)
Part Identification
PVY117 surface-mount
PVY117-T surface-mount, tape-and-reel
Features
Low signal distortion at high frequencies
Low Coff * Ron Figure Of Merit
High off-state resistance
1,500 VRMS
I/O isolation
Long operational life Solid-State Reliability
ESD Tolerance 2000V Human Body Model
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Electrical Specifications(-40C TA +85C unless otherwise specified)
INPUT CHARACTERISTICS Units Min Typ Max
Minimum control current (see Figure 1) mA 2.0
Control current for off-state resistance @TA = +25C mA 0.2
Control current range (caution: current limit input LED, see Figure 8) mA 2.0 20.0
Reverse voltage V 7.0
Connection Diagram
GENERAL CHARACTERISTICS Units Min Typ Max
Dielectric strength, Input to Output VRMS 1500
Insulation Resistance, Input to Output 1012
CI-O (Input to Output Capacitance), Vd = 0V, f = 1MHz pF 0.8
Max. pin soldering temperature (10 seconds max.) oC +260
Ambient temperature range: Operating oC -40 +85
Storage oC -40 +100
OUTPUT CHARACTERISTICS Units Min Typ Max
Operating voltage range V peak 40
Continuous load current @ 40C, 5mA control (see Figure 1) mA 470
Pulsed load current @ 25C, 5mA control (see Figures 2 and 3) mA 85010ms on, 10% duty cycle
Off-state leakage @ 40V, 25C, (see Figure 4) nA 0.05 1.0
On-state resistance @ 5mA control, IL =100mA (see Figures 2 and 3) 0.74 0.95
Output capacitance Vd=0V, f=1MHz (Cout, see Figure 7) pF 10.1 14.5
C * R (Cout x RDDon) pF * 7.5
Turn-on time, 5mA control, 100, 20V (Ton, see Figure 5) S 110 200
1ms on, 50% duty cycle
Turn-off time, 5mA control, 100, 20V (Toff, see Figure 5) S 30 100
1ms on, 50% duty cycle
International Rectifier does not recommend the useof this product in aerospace, avionics, military or lifesupport applications. Users of this International Rec-tifier product in such applications assume all risksof such use and indemnify International Rectifieragainst all damages resulting from such use.
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Figure 2. Typical On Characteristics
Figure 3. Typical On Characteristics Figure 4. Typical Leakage Characteristics
Figure 1. Current Derating Curves
0
100
200
300
400
500
600
0 20 40 60 80 100
Ambient Temperature (C)
M
axLoadCurrent(mA)
ILED=2mA
ILED = 5mA
-1500.0
-1000.0
-500.0
0.0
500.0
1000.0
1500.0
-1.5 -1.0 -0.5 0.0 0.5 1.0 1.5
Voltage Drop (VDD)
LoadCurrent(A)
0
200
400
600
800
1000
1200
0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4
VDD (Volts)
LoadCurrent(A
Pulsed, 25C
I LED = 5mA
25C
40C
60C
85C
1.0E-12
1.0E-11
1.0E-10
1.0E-09
1.0E-08
1.0E-07
1.0E-06
20 30 40 50 60 70 80 90 100
Temperature (C)
LeakageCurrent(A)
40V
32V
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Figure 5. Typical Delay Times
Figure 7. Output Capacitance
Figure 6. Delay Time Definitions
Figure 8. Input Characteristics (Current Controlled)
10
100
1000
0 5 10 15ILED (mA)
DelayTime(uS
TonTdly
Toff
0
2
4
6
8
1012
14
16
0 5 10 15 20 25 30 35 40
VDD Drain to Drain Voltage
TypicalCapacitanc
e(pF)
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IR WORLD HEADQUARTERS: 233 Kansas Street, El Segundo, California 90245 Tel: (310) 252-7105
This product has been designed and qualified for the Industrial Market
Data and specifications subject to change without notice. 11/6/2004
01-2027 01
Case Outlines - 4 Lead SOP