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  Datasheet File OCR Text:
 BSI
pending
RF (Radio Frequency) Type Low C and R
PhotoMOS RELAYS
TYPICAL APPLICATIONS
Measuring and testing equipment 1. Testing equipment for semiconductor performance IC tester, Liquid crystal driver tester, semiconductor performance tester 2. Board tester Bear board tester, In-circuit tester, function tester 3. Medical equipment Ultrasonic wave diagnostic machine 4. Multi-point recorder (warping, thermo couple)
FEATURES
8.80.05 .346.002 6.40.05 .252.002 3.60.2 .142.008 8.80.05 .346.002 6.40.05 .252.002 3.90.2 .154.008
mm inch
1 2 3
6 5 4
1. Low output capacitance between output terminals and low ON-resistance 2. High speed switching (Turn on time: typ. 200s) 3. High sensitivity Control loads up to 250mA with input current 5mA 4. Low-level off state leakage current The SSR has an off state leakage current of several milliamperes, where as this PhotoMOS relay has only 20pA (typical) even with the rated load voltage 5. Controls low-level analog signals PhotoMOS relays features extremely lowclosed-circuit offset voltage to enable control of low-level analog signals without distortion 6. Low thermal electromotive force (Approx. 1 V)
TYPES
Part No. Output rating* Type Load voltage Load current Through hole terminal Tube packing style Surface-mount terminal Tape and reel packing style Picked from the Picked from the 1/2/3-pin side 4/5/6-pin side AQV221NAX AQV221NAZ Packing quantity
Tube 1 tube contains 50 pcs. 1 batch contains 500 pcs.
Tape and reel
AC/DC type
40 V
150 mA
AQV221N
AQV221NA
1,000 pcs.
*Indicate the peak AC and DC values. Note: For space reasons, the package type indicator "X" and "Z" are omitted from the seal.
RATING
1. Absolute maximum ratings (Ambient temperature: 25C 77F)
Item LED forward current LED reverse voltage Peak forward current Power dissipation Load voltage (peak AC) Continuous load current Type of Symbol connection IF VR IFP Pin VL A IL B C Ipeak Pout PT Viso Topr Tstg AQV221N(A) 50 mA 3V 1A 75 mW 40 V 0.15 A 0.18 A 0.25 A 0.45 A 360 mW 410 mW 1,500 V AC -40C to +85C -40F to +185F -40C to +100C -40F to +212F Remarks
Input
f = 100 Hz, Duty factor = 0.1%
Output
A connection: Peak AC, DC B, C connection: DC A connection: 100 ms (1 shot), VL = DC
Peak load current Power dissipation Total power dissipation I/O isolation voltage Operating Temperature limits Storage
Non-condensing at low temperatures
145
AQV221N
2. Electrical characteristics (Ambient temperature: 25C 77F)
Item LED operate current Input LED turn off current LED dropout voltage Typical Maximum Minimum Typical Typical Maximum Typical Ron Maximum Typical On resistance # Maximum Output Typical Ron Maximum Typical Output capacitance # Maximum Off state leakage current Turn on time* Switching speed Transfer characteristics Turn off time* I/O capacitance Initial I/O isolation resistance Typical Maximum Typical Maximum Typical Maximum Typical Maximum Minimum ILeak Ton Toff Ciso Riso -- -- -- -- -- Cout A 5 pF 20 pA 10 nA 0.2 ms 0.5 ms 0.08 ms 0.2 ms 0.8 pF 1.5 pF 1,000 M C Ron B A Type of Symbol connection** IFon IFoff VF -- -- -- AQV221N(A) 0.90 mA 3.0 mA 0.4 mA 0.85 mA 1.14 V (1.25 V at IF = 50 mA) 1.5 V 9.8 15 5 7.5 2.5 3.8 3.9 pF Remarks IL = Max. IL = Max. IF = 5 mA IF = 0 mA IL = Max. Within 1 s on time IF = 5 mA IL = Max. Within 1 s on time IF = 5 mA IL = Max. Within 1 s on time IF = 0 VB = 0V f = 1 MHz IF = 0 VL = Max. IF = 5 mA IL = Max. IF = 5 mA IL = Max. f = 1 MHz VB = 0 500 V DC **For type of connection, see Page 31.
Note: Recommendable LED forward current IF = 5mA *Turn on/Turn off time
Input
90% Output Ton Toff 10%
# Other types of products than the Cout (typ. 3.9pF) and Ron (A connection typ. 9.8) combinations carried in this catalog are also available. (There is a trade-off between Ron and Cout both cannot be reduced at the same time.) For more information, please contact our sales office in your area.
s For Dimensions, see Page 27. s For Schematic and Wiring Diagrams, see Page 31. s For Cautions for Use, see Page 36.
REFERENCE DATA
1. Load current vs. ambient temperature characteristics
Allowable ambient temperature: -40C to +85C -40F to +185F Type of connection: A
250
2. On resistance vs. ambient temperature characteristics
Measured portion: between terminals 4 and 6; LED current: 5 mA; Load voltage: Max. (DC); Continuous load current: Max. (DC)
16.0 14.0
3. Turn on time vs. ambient temperature characteristics
LED current: 5 mA; Load voltage: Max. (DC); Continuous load current: Max. (DC)
1.0
Load current, mA
On resistance,
12.0 10.0 8.0 6.0 4.0
Turn on time, ms -40 -20 0 20 40 60 8085 Ambient temperature, C
200
0.8
150
0.6
100
0.4
50
0.2 2.0
0 -40
-20
0
20 40 60 8085 100 Ambient temperature, C
0
0
-40
-20
0 20 40 60 8085 Ambient temperature, C
146
AQV221N
4. Turn off time vs. ambient temperature characteristics
LED current: 5 mA; Load voltage: Max. (DC); Continuous load current: Max. (DC)
0.5 LED operate current, mA
5. LED operate current vs. ambient temperature characteristics
Load voltage: Max. (DC); Continuous load current: Max. (DC)
5
6. LED turn off current vs. ambient temperature characteristics
Load voltage: Max. (DC); Continuous load current: Max. (DC)
5 LED turn off current, mA
Turn off time, ms
0.4
4
4
0.3
3
3
0.2
2
2
0.1
1
1
0
-40
-20
8085 0 20 40 60 Ambient temperature, C
0
-40 -20
0 20 40 60 8085 Ambient temperature, C
0
-40
-20
0 20 40 60 8085 Ambient temperature, C
7. LED dropout voltage vs. ambient temperature characteristics
LED current: 5 to 50 mA
1.5
8. Voltage vs. current characteristics of output at MOS portion
Measured portion: between terminals 4 and 6; Ambient temperature: 25C 77F
150 Current, mA 100 50
9. Off state leakage current
Measured portion: between terminals 4 and 6; Ambient temperature: 25C 77F
10-6 Off state leakage current, A
LED dropout voltage, V
1.4 1.3 1.2 1.1 1.0 0 -40 -4 50mA 30mA 20mA 10mA 5mA -3 -2
-1 1 -50 -100 -150 2 3 4 Voltage, V
10-9
10-12 0 40 Load voltage, V 100
-20
0
20 40 60 8085 Ambient temperature, C
10. LED forward current vs. turn on time characteristics
Measured portion: between terminals 4 and 6; Load voltage: Max. (DC); Continuous load current: Max. (DC); Ambient temperature: 25C 77F
1.4 1.2 Turn on time, ms 1.0 0.8 0.6 0.4
11. LED forward current vs. turn off time characteristics
Measured portion: between terminals 4 and 6; Load voltage: Max. (DC); Continuous load current: Max. (DC); Ambient temperature: 25C 77F
0.22
12. Applied voltage vs. output capacitance characteristics
Measured portion: between terminals 4 and 6; Frequency: 1 MHz, 30 mVrms; Ambient temperature: 25C 77F
10 Output capacitance, pF
Turn off time, ms
0.18
8
0.14
6
0.10
4
0.06 0.2 0 0 10 20 30 40 50 LED forward current, mA 0 0 10 20 30 40 50 LED forward current, mA
2
0
0
10
20 30 40 Applied voltage, V
50
13. Isolation characteristics (50 impedance)
Measured portion: between terminals 4 and 6; Ambient temperature: 25C 77F
100
14. Insertion loss characteristics (50 impedance)
Measured portion: between terminals 4 and 6; Ambient temperature: 25C 77F
5
15. On resistance distribution
Measured portion: between terminals 4 and 6 Continuous load current: 150mA(DC) Quantity, n=50; Ambient temperature: 25C 77F
25
Insertion loss, dB
80 Isolasion, dB
4 Quantity, n
20
60
3
15
40
2
10
20
1
5
0
104
105
106 Frequency, Hz
107
0
104
105
106 Frequency, Hz
107
0
0
9.2
9.4 9.6 9.8 On resistance,
10
147
AQV221N
16. Turn on time distribution
Load voltage: 40V(DC) Continuous load current: 150mA(DC) Quantity, n=50; Ambient temperature: 25C 77F
35 30 40 Quantity, n Quantity, n Quantity, n 0 0.07 0.09 0.11 0.13 Turn off time, ms 0.15 25 20 15 10 5 0 10 25 20 15 10 5 0
17. Turn off time distribution
Load voltage: 40V(DC) Continuous load current: 150mA(DC) Quantity, n=50; Ambient temperature: 25C 77F
50
18. LED operate current distribution
Load voltage: 40V(DC) Continuous load current: 150mA(DC) Quantity, n=50; Ambient temperature: 25C 77F
35 30
30
20
0
0.15
0.2 0.25 0.3 Turn on time, ms
0.35
0
0
0.7
0.8 0.9 1 1.1 LED operate current, mA
5/7/2001 148
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