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 PRODUCT SPECIFICATION
DATE03/01/2005
cosmo
ELECTRONICS CORPORATION
SOLID STATE RELAY - MOSFET OUTPUT
KAQV212H
REV. 0 SHEET 1 OF 7
Preliminary
OUTSIDE DIMENSION
V212H XXX
Date Code
7.62 6.50 7.3
6.9 2.7 0.2540.05 0.5
2.54
3.5
13.0
13.0
Unitmm Tolerance0.2mm
Turn On / Turn Off time
Input 90% 10% TON TOFF
1 2 3 6 5 4 1 FORM A NORMALLY OPEN 5,6 4
Output
Absolute Maximum Ratings
EmitterInput
Reverse Voltage .................................... Continuous Forward Current .................. Power Dissipation .............................. Derate Linearly from 25 ...............
Ta=25 DetectorOutput
60V 500mW
5.0V Output Breakdown Voltage ..................... 50mA Continuous Load Current ..................
400mA
Peak Forward Current ................................. 1A Power Dissipation .............................. 100mW 1.3mW/
General Characteristics
Isolation Test Voltage .................. Isolation Resistance 5000VACrms Storage Temperature Range ...... -40 to +125 Operating Temperature Range ... -40 to +85 100 260
Vio=500VTa=25 ........................... 1010 Junction Temperature ........................... Total Power Dissipation ........................ 550mW Soldering Temperature Derate Linearly from 25 ............... 2.5mW/ 2mm from case10 sec ........................
PRODUCT SPECIFICATION
DATE03/01/2005
cosmo
ELECTRONICS CORPORATION
SOLID STATE RELAY - MOSFET OUTPUT
KAQV212H
Symbol
VF IFON IFOFF VB ITOFF CISO A B C RON TON TOFF
REV. 0 SHEET 2 OF 7
Ta=25
Preliminary
Electro-optical Characteristics
Parameter
EmitterInput Forward Voltage Operation Input Current Recovery Input Current DetectorOutput Output Breakdown Voltage Output Off-State Leakage I/O Capacitance ON Resistance Connection Turn-On Time Turn-Off Time IB=50A VT=100VIF=0mA IF=0f=1MHz IL=100mAIF=10mA IF=10mAVL=20V t=10msIL=100mA 60 0.2 6 IF=10mA VL=20VIL=100mAt=10ms VL=20VIL5A 0.2 1.2
Conditions
Min. Typ. Max. Unit.
1.5 5.0 V mA mA V 1 A pF ms ms
0.83 2.50 0.44 1.25 0.25 0.63 0.2 0.3 1.5 1.5
Schematic and Wiring Diagrams
Schematic Output Configuration Load Connection Wiring Diagrams
AC/DC
A
IN V
IF
1 2 3
6 5 4 IL La od CC VL (A ,D )
6 IL 4
La od VL (A ,D ) CC
1
6
IN V
IF
1 2
6 5 4 6 5
IL
Load
+ C VL (D ) -
6 5
IL
Load
+ C VL (D ) -
2
5
1a
DC
B
IN V
3 IF 1 2 3
3
4
IL 4
Load
C VL (D ) +
5 4
IL
Load
C VL (D ) +
IN V
DC
C
IF
1 2 3
6 5 4
La od IL
+ VL (D ) C -
6 5 4
IL La od
+ VL (D ) C -
PRODUCT SPECIFICATION
DATE03/01/2005
cosmo
ELECTRONICS CORPORATION
SOLID STATE RELAY - MOSFET OUTPUT
KAQV212H
REV. 0 SHEET 3 OF 7
Preliminary
Data Curve
Load current vs. ambient temperature Allowable ambient Temperature -40 to +85 On resistance vs. ambient temperature across terminals 4 and 6 pin LED current5mA Continuous load current400mADC
5
700
Load currentmA
600 500 400 300 200 100 0 -40 -20 0 20 40 60 80 100
On resistance
4 3 2 1
0
-40 -20 0 20 40 60 80
Ambient temperature Ta
Ambient temperature Ta
Turn On Time vs. ambient temperature Load voltage 60VDC LED current5mA Continuous load current400mADC
1.0
Turn Off Time vs. ambient temperature Load voltage 60VDC LED current5mA Continuous load current400mADC
1.0
Turn Off Timems
Turn On Timems
0.8 0.6 0.4 0.2 0 -40 -20 0 20 40 60 80
0.8 0.6 0.4 0.2 0 -40 -20
0
20
40
60
80 100
Ambient temperature Ta
Ambient temperature Ta
PRODUCT SPECIFICATION
DATE03/01/2005
cosmo
ELECTRONICS CORPORATION
SOLID STATE RELAY - MOSFET OUTPUT
KAQV212H
REV. 0 SHEET 4 OF 7
Preliminary
LED operate current vs. ambient temperature Load Voltage60VDC Continuous load current400mADC LED Turn Off currentmA LED operate currentmA
5 4 3 2 1 0 -40 -20 0 20 40 60 80
LED Turn Off current vs. ambient temperature Load Voltage60VDC Continuous load current400mADC
5 4 3 2 1 0 -40 -20 0 20 40 60 80
Ambient temperature Ta
Ambient temperature Ta
LED dropout voltage vs. ambient temperature LED current5 to 50mA
1.9
Voltage vs. current characteristics of output at MOSFET portion Measured portionacross terminals 4 and 6 pin Ambient temperature25
Current mA
600 500 400 300 200
LED dropout voltageV
50mA 1.5 30mA 20mA 1.3 10mA 5mA
Voltage VS. Current Characteristics
1.7
100 -1.0 -0.8 -0.6 -0.4 -0.2 0.2 0.4 -100 -200 -300 -400 -500 -600
1.1 0.9 0 -40 -20 0 20 40 60 80 100
Voltage V
0.6 0.8 1.0
Ambient temperature Ta
Ambient temperature25
PRODUCT SPECIFICATION
DATE03/01/2005
cosmo
ELECTRONICS CORPORATION
SOLID STATE RELAY - MOSFET OUTPUT
KAQV212H
REV. 0 SHEET 5 OF 7
Preliminary
LED forward current vs. Turn On Time Across terminals 4 and 6pin Load voltage60VDC Continuous load current400mADC Ambient temperature25 Off state leakage current
2.0
Off state leakage current Across terminals 4and 6 pin Ambient temperature25
10 10 10 10
-3
Turn On Timems
1.5 1.0 0.5 0
-6
-9
-12
0
10
20
30
40
50
60
0
20
40
60
80
100
LED forward currentmA
Load voltageV
LED forward current vs. reverse(ON) time Across terminals 4 and 6 pin Load voltage60VDC Continuous load current400mADC Ambient temperature25 Output capacitancepF
0.5
Applied voltage vs. output capacitance Across terminals 4 and 6 pin Frequency1MHz Ambient temperature25
Turn Off Timems
0.4 0.3 0.2 0.1 0 10 20 30 40 50 60
250 200 150 100 50 0 0 10 20 30 40 50 60
LED forward currentmA
Applied voltageV
PRODUCT SPECIFICATION
DATE03/01/2005
cosmo
ELECTRONICS CORPORATION
SOLID STATE RELAY - MOSFET OUTPUT
KAQV212H
REV. 0 SHEET 6 OF 7
Preliminary
USING METHODS
Examples of resistance value to control LED forward currentIF SSR-MOSFET OUTPUT IF=5mA
R E
1 2 3
6 5 4
E 3.3V 5V 12V 15V 24V
R Approx. 330 Approx. 640 Approx. 1.9K Approx. 2.5K Approx. 4.1K
1 LED forward current must be more than 5mAat E min. 2 LED forward current must be less than 50mAat E max.
Emax. Emin.
PRODUCT SPECIFICATION
DATE03/01/2005
cosmo
ELECTRONICS CORPORATION
SOLID STATE RELAY - MOSFET OUTPUT
KAQV212H
REV. 0 SHEET 7 OF 7
Preliminary
USING METHODS
Regulate the spike voltage generated on the inductive load as follows
1 2 3
6 5 4 Load
1 2 3
6 5 4 Load
R-C Snubber


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