Typical
Maximum3.0 mA
Minimum
Typical0.9 mA
Typical
Maximum1.5 V
Typical
Maximum0.18 Ω 0.34 Ω
Typical
Maximum5.0 ms
Typical5.64 ms5.65 ms2.57 ms3.88 ms
I
Fon
Foff
I
V
R
Leak
F
on
1.16 V (1.25 V at I
0.11 Ω 0.23 Ω
2.46 ms2.40 ms1.12 ms1.65 ms
T
on
Maximum10.0 ms
Typical
Maximum3.0 ms
Typical
Maximum1.5 pF
MinimumR
0.22 ms0.21 ms0.10 ms0.08 ms
T
off
C
iso
iso
Maximum—1.0 cps
Input
Output
Transfer
characteristics
LED operate current
LED turn off current
LED dropout voltage
On resistance
Off state leakage current MaximumI
Turn on time*
Switching
speed
Turn off time*
I/O capacitance
Initial I/O isolation
resistance
Maximum operating
frequency
Vibration resistanceMinimum—10 to 55 Hz at double amplitude of 3 mm2 hours for 3 axes
Shock resistanceMinimum—4,900 m/s
3) Internal varistor characteristics
ItemAQZ202VAQZ205VAQZ207VAQZ204V
Varistor voltage27 V47 V100 V220 V
Maximum energy0.5 J1.0 J2.0 J4.5 J
Note: When using the relay to absorb the reverse voltage during inductive load switching, make sure the load is within the inductance range given in the internal varistor
characteristics data below, rather than the energy resistance range for the internal varistor. Note, the inductance range will differ if the switching frequency is higher
than the rate given for the characteristics data conditions.
Note: Recommendable LED forward current I
*Turn on/off time
= 5 to 10 mA. For type of connection, see page 35.
F
1.0 mA
0.4 mA
1 mA
0.8 pF
1,000 M Ω
F
= 50 mA)
0.7 Ω
1.1 Ω
2.1 Ω
3.2 Ω
L
I
= 100 mA
L
V
= 10 V
L
I
= 100 mA
L
V
= 10 V
F
I
= 10 mA
F
I
= 10 mA
L
I
= Max.
Within 1 s on time
F
I
= 0
= Max. DC
L
V
I
F
= 10 mA
= 100 mA
L
I
V
= 10 V
L
I
F
= 5 mA
= 100 mA
L
I
V
= 10 V
L
I
F
= 5 mA or 10 mA
= 100 mA
L
I
V
= 10 V
L
f = 1 MHz
V
= 0
B
500 V DC
I
= 10 mA
F
Duty factor = 50%
I
= Max., V
L
2
{500 G}1 ms3 times for 3 axes
= Max.
L
Input
Output10%
Ton
Toff
90%
For Dimensions, see Page 29.
For Schematic and Wiring Diagrams, see Page 35.
For Cautions for Use, see Page 40.
REFERENCE DATA
1. Load current vs. ambient temperature characteristics
Allowable ambient temperature: –40°C to +85°C
3.5
3.0
2.5
2.0
Load current, A
1.5
1.0
0.5
0
AQZ204V
0-40 -20204060 8085 100
Ambient temperature, °C
–40°F to +185°F
AQZ202V
AQZ205V
AQZ207V
2. Load current vs. ambient temperature characteristics in adjacent mounting
L
I
: Load current;
(max.): Maximum continuous load current
L
I
120
100
80
60
(max.)×100,%
L
/I
L
I
40
20
= Adjacent mounting pitch
0
0-20-40204060100
Ambient temperature, °C
= 20mm
= 10mm
= 5mm
8085
3.-(1) On resistance vs. ambient temperature
characteristics
LED current: 10 mA;
Continuous load current: 3.0 A (DC) (AQZ202V),
2.0 A (DC) (AQZ205V),
211
AQZ20 ❍ V
3.-(2) On resistance vs. ambient temperature
characteristics
LED current: 10 mA;
Continuous load current: 3.0 A (DC) (AQZ202V),
2.0 A (DC) (AQZ205V),
5.0
4. Turn on time vs. ambient temperature characteristics
LED current: 10 mA;
Load voltage: 10 V (DC)
Continuous load current: 100 mA (DC)
10
5. Turn off time vs. ambient temperature characteristics
LED current: 10 mA;
Load voltage: 10 V (DC)
Continuous load current: 100 mA (DC)
1.0
4.0
3.0
On resistance, Ω
2.0
1.0
0
AQZ204V
AQZ207V
0-40 -20204060 8085
Ambient temperature, °C
6. LED operate vs. ambient temperature characteristics
Load voltage: 10 V (DC);
Continuous load current: 100 mA (DC)
5
4
3
2
LED operate current, mA
1
0
0-40 -2020 40 60
Ambient temperature, °C
AQZ204V
AQZ205V
AQZ202V
AQZ207V
8085
8
6
Turn on time, ms
4
2
0
0-40 -2020 40 60
Ambient temperature, °C
AQZ202V
AQZ205V
AQZ204V
AQZ207V
8085
7. LED turn off current vs. ambient temperature
characteristics
Load voltage: 10 V (DC)
Continuous load current: 100 mA (DC)
5
4
3
AQZ204V
2
LED turn off current, mA
1
0
AQZ202V
AQZ207V
AQZ205V
0-40 -2020 40 60
Ambient temperature, °C
8085
0.8
0.6
Turn off time, ms
0.4
0.2
AQZ207V
AQZ202V
AQZ204V
0
0-40 -2020 40 60
Ambient temperature, °C
AQZ205V
8085
8. LED dropout voltage vs. ambient temperature characteristics
Sample: all types; LED current: 5 to 50 mA
1.5
1.4
1.3
1.2
LED dropout voltage, V
1.1
1.0
0
0-40 -2020 40 60
Ambient temperature, °C
50mA
30mA
20mA
10mA
5mA
1008085
9. Voltage vs. current characteristics of output
at MOS portion
Ambient temperature: 25°C 77°F
4.0
AQZ202V
3.0
AQZ205V
2.0
Current, A
-2.0 -1.5 -1.0 -0.5
1.0
0
-1.0
-2.0
-3.0
-4.0
AQZ207V
0.5
1.0 1.5 2.0
Voltage, V
AQZ204V
12. LED forward current vs. turn off time characteristics
Load voltage: 10 V (DC); Continuous load current:
100 mA (DC); Ambient temperature: 25°C 77°F
0.5
0.4
0.3
AQZ207V
AQZ205V
AQZ202V
Turn off time, ms
0.2
0.1
0
10203040500
AQZ204V
LED forward current, mA
10. Off state leakage current
Ambient temperature: 25°C 77°F
-3
10
AQZ202V
-6
10
-9
10
Off state leakage current, A
-12
10
020406080100
AQZ205V
Load voltage, V
AQZ207V
AQZ204V
13. Maximum operating frequency vs . load voltage/current characteristics
LED current: 10 mA
Ambient temperature: 25°C 77°F
10
9
8
7
6
5
4
3
2
Maximum operating frequency, time/s
1
0
0255075100
Load voltage, V× load current, A
duty = 50%
11. LED forward current vs. turn on time characteristics
Load voltage: 10 V (DC); Continuous load current:
100 mA (DC); Ambient temperature: 25°C 77°F
20
18
16
14
12
10
Turn on time, ms
8
6
4
2
0
AQZ202V
AQZ205V
AQZ204V
AQZ207V
10203040500
LED forward current, mA
14. Applied voltage vs. output capacitance
characteristics
Frequency: 1 MHz;
Ambient temperature: 25°C 77°F
2000
1800
1600
1400
1200
1000
800
Output capacitance, pF
600
400
200
0
AQZ202V
AQZ205V
AQZ207V
AQZ204V
020406080100
Applied voltage, V
212
15. Data for internal varistor characteristic
Operating frequency: 1 Hz
No. of operations: 10
6
max.
AQZ20❍V
4
10
3
10
2
10
AQZ202V
AQZ205V
Inductance, mH
10
1
0
123
Load currnt, A
ACCESSORY
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