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AQW216AX Просмотр технического описания (PDF) - Panasonic Corporation

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AQW216AX Datasheet PDF : 15 Pages
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PhotoMOS GU 2 Form A
RATING
Absolute maximum ratings (Ambient temperature: 25°C)
Item
Symbol AQW212(A) AQW215(A) AQW217(A) AQW210(A) AQW214(A) AQW216(A)
Remarks
LED forward current
IF
50 mA
LED reverse voltage
VR
5V
Peak forward current
IFP
1A
f = 100 Hz,
Duty Ratio = 0.1%
Power dissipation
Pin
75 mW
Load voltage (peak AC)
VL
60 V
100 V
200 V
350 V
400 V
600 V
Continuous load current
IL
0.50 A
(0.60 A)
0.30 A
(0.35 A)
0.16 A
(0.2 A)
0.12 A
(0.14 A)
0.10 A
(0.13 A)
0.04 A
(0.05 A)
Peak AC, DC
( ): in case of using only
1 channel
Peak load current
Ipeak
1.5 A
0.9 A
0.48 A
0.36 A
0.3 A
0.12 A
A connection:
100 ms (1 shot), VL = DC
Power dissipation
Pout
800 mW
Total power dissipation
PT
850 mW
I/O isolation voltage
Viso
1,500 Vrms
Ambient temperature (Operating) Topr
-40 to +85°C
(Avoid icing and condensation)
Ambient temperature (Storage)
Tstg
-40 to +100°C
Electrical characteristics (Ambient temperature: 25°C)
Item
Symbol AQW212(A) AQW215(A) AQW217(A) AQW210(A) AQW214(A) AQW216(A)
Condition
LED operate
current
Typical
IFon
Maximum
0.9 mA
3 mA
IL = Max.
LED turn off
current
Minimum
IFoff
Typical
0.4 mA
0.8 mA
IL = Max.
LED dropout
voltage
Typical
VF
Maximum
1.25 V (1.14 V at IF = 5 mA)
1.5 V
IF = 50 mA
On resistance
Typical
Ron
Maximum
0.83 Ω
2.5 Ω
2.3 Ω
4.0 Ω
11 Ω
15 Ω
23 Ω
35 Ω
30 Ω
50 Ω
70 Ω
120 Ω
IF = 5 mA
IL = Max.
Within 1 s
Off state leakage
current
Maximum
ILeak
1 μA
IF = 0 mA
VL = Max.
Turn on time*
Typical
Ton
Maximum
0.65 ms
0.60 ms
2 ms
0.25 ms
1.0 ms
0.31 ms
0.5 ms
0.28 ms
IF = 5 mA
IL = Max.
Turn off time*
Typical
Toff
Maximum
0.08 ms
0.06 ms
0.05 ms
0.2 ms
0.04 ms
IF = 5 mA
IL = Max.
Typical
I/O capacitance
Ciso
Maximum
0.8 pF
1.5 pF
f = 1 MHz
VB = 0 V
Initial I/O isolation
resistance
Minimum
Riso
1,000
500 V DC
*Turn on/Turn off time
Input
Output
Ton
90%
10%
Toff
Panasonic Corporation Electromechanical Control Business Division
industrial.panasonic.com/ac/e/
ー2ー
Panasonic Corporation 2019
ASCTB50E 201912

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