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 DB LECTRO Inc.
Features
1. Normally Open, Single Pole Single Throw 2. Control 350VAC or DC Voltage 3. Switch 130mA Loads 4. LED control Current, 5mA 5. Low ON-Resistance 6. dv/dt, >500V/ms 7. Isolation Test Voltage, 1500VACrms
E High Voltage, Photo DMos Relay
KAQV210S
KAQV210S
UL 1577/ UL 508 (File No.E108430), FI EN60950 (File No.FI13698)
Unit : mm TOLERANCE : 0.2mm
Absolute Maximum Ratings
Emitter ( Input ) Reverse Voltage.................................5.0V Continuous Forward Current ...............50mA Peak Forward Current ...........................1A Power Dissipation ........................100mW Derate Linearly from 25C ............1.3mW/C General Characteristics Isolation Test Voltage...............1500VACrms Isolation Resistance Vio=500V, Ta=25C ........................ 10
10
(Ta=25C)
Detector ( Output ) Output Breakdown Voltage ...............350V Continuous Load Current ...............130mA Power Dissipation ........................500mW
Turn on/ Turn off time
Storage Temperature Range ...-40C to +125C Operating Temperature Range...-30C to +85C Junction Temperature........................100C Soldering Temperature, 2mm from case, 10 sec .....................260C
Total Power Dissipation ..................550mW Derate Linearly from 25C ............2.5mW/C
Electro-optical Characteristics
Parameter Emitter (Input) Forward Voltage Operation Input Current Recovery Input Current Detector (Output) Output Breakdown Voltage Output Off-State Leakage I/O Capacitance A ON Resistance Turn-On Time Turn-Off Time Connection B C TON TOFF IF =10mA, VL =20V t =10ms, IL =100mA RON IL =100mA, IF =10mA VB ITOFF CISO IB=50uA VT =100V, IF =0mA IF =0, f =1MHZ 350 0.2 6 20 10 5 0.3 0.7 30 15 7.5 1.0 1.5 1 VF IFON IFOFF IF =10mA VL =20V, IL =100mA, t =10mS VL =20V, IL 5uA 0.2 1.2 1.5 5 Symbol Conditions Min. Typ.
(Ta=25C)
Max.
Unit V mA mA V uA pF
ms ms
Mos Relay Schematic and Wiring Diagrams
Type Schematic Output configuration Load Connection Wiring Diagrams
AC/DC
A
KAQV210S
1a
DC
B
DC
C
DB LECTRO Inc.
Data Curve
Fig.1 Load current vs. ambient temperature Allowable ambient temperature: -40C to +85C Fig.2 On resistance vs. ambient temperature Across terminals 4 and 6 pin LED current: 5mA Continuous load current: 130mA(DC)
Turn on Time Msec Load Current (mA) On Resistonce ( )
KAQV210S
Fig.3 Turn on time vs. ambient temperature Across terminals 4 and 6 pin LED current: 5mA Continuous load current: 130mA(DC)
Ambient Temperature Ta (C)
Ambient Temperature Ta (C)
Ambient Temperature Ta (C)
Fig.4 Turn off time vs. ambient temperature LED current: 5mA; Load voltage: 350V(DC) Continuous load current: 130mA(DC)
Fig.5 LED operate vs. ambient temperature Load voltage 350V(DC) Continuous load current: 130mA(DC)
Fig.6 LED turn off current vs. ambient temperature Load voltage 350V(DC) Continuous load current: 130mA(DC)
LED Operate Current (mA)
Ambient Temperature Ta (C)
Ambient Temperature Ta (C)
LED Turn off Current (mA)
Tun off Time Msec
Ambient Temperature Ta (C)
Fig.7 LED dropout voltage vs. ambient temperature LED current: 5 to 50mA
Fig.8 Voltage vs. current characteristics of output at MOS FET portion Measured portion: across terminals 4 and 6 pin Ambient temperature: 25C
Fig.9 Off state leakage current Across terminals 4 and 6 pin Ambient temperature: 25C
Ambient Temperature Ta (C)
Off State Leakage Current
LED Dropout Voltage (V)
Load Voltage (V)
Fig.10 LED forward current vs. turn on time Across terminals 4 and 6 pin; Load voltage: 350V (DC); Continuous load current: 130mA (DC); Ambient temperature: 25C
Fig.11 LED forward current vs. turn off time Across terminals 4 and 6 pin; Load voltage: 350V (DC); Continuous load current: 130mA (DC); Ambient temperature: 25C
Fig.12 Applied voltage vs. output capacitance Across terminals 4 and 6 pin Frequency: 1MHz Ambient temperature: 25C
LED Forward Current (mA)
LED Forward Current (mA)
Output CapaCitance (pF)
Turn on Time Msec
Turn on Time Msec
Applied Voltage (V)
DB LECTRO Inc. 3600 boul. Matte suite i Brossard Qc J4Y-2Z2 tel:(450)-444-1424 fax:(450)-444-4714


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