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AQV251 Ver la hoja de datos (PDF) - Panasonic Corporation

Número de pieza
componentes Descripción
Lista de partido
AQV251 Datasheet PDF : 4 Pages
1 2 3 4
HE 1 Form A (AQV25)
2. Electrical characteristics (Ambient temperature: 25°C 77°F)
Item
Sym-
bol
Type of
con- AQV251(A) AQV252(A) AQV255(A) AQV257(A) AQV253(A) AQV254(A) AQV259(A) AQV258(A) AQV253H(A) AQV254H(A) AQV256H(A)
nection
Condition
Typical
LED operate current
IFon
Maximum
0.9 mA
3 mA
1.4 mA
IL = Max.
Minimum
LED turn off current
IFoff
Typical
0.8 mA
0.4 mA
1.3 mA
IL = Max.
Typical
LED dropout voltage
VF
Maximum
1.25 V (1.14 V at IF = 5 mA)
1.5 V
IF = 50 mA
On resistance
Typical
Ron
Maximum
A
0.6 0.74 1.8
1 1.4 2.5
2.6
4
5.5 12.4 85 345
8 16 200 500
5.5 12.4
8 16
20
30
IF = 5 mA
IL = Max.
Within 1 s
on time
Typical
0.30.37 0.9 1.4 2.7 6.2 60 345 2.7 6.2 15 IF = 5 mA
Ron
Maximum
B
0.5 0.7 1.25 2
4
8 100 500 4
IL = Max.
8
20
Within 1 s
on time
Typical
Ron
Maximum
0.15 0.18 0.45 0.7 1.4 3.1 30 160 1.4 3.1 7.5 IF = 5 mA
C
0.25 0.35 0.63 1
2
4 50 250 2
IL = Max.
4
10
Within 1 s
on time
Off state leakage
current
Turn on time*
Maximum ILeak
Typical
Ton
Maximum
1 µA
1.7 ms 1.4 ms 0.9 ms 1.5 ms
3 ms
2 ms 3 ms
0.8 ms
2 ms
10 µA
0.6 ms 0.35 ms
1 ms
2.4 ms
4 ms
1 µA
1.8 ms 1.2 ms
3ms
IF = 0 mA
VL = Max.
IF = 5 mA
IL = Max.
Turn off time*
Typical
Toff
Maximum
0.07 ms
0.09 ms 0.1 ms 0.06 ms 0.05 ms
0.2 ms
0.04 ms
0.06 ms 0.05 ms 0.06 ms IF = 5 mA
IL = Max.
I/O capacitance
Typical
Ciso
Maximum
1.3 pF
3 pF
f = 1 MHz
VB = 0 V
Initial I/O isolation
resistance
Minimum Riso
1,000 M
500 V DC
*Turn on/Turn off time
Input
Output
Ton
90%
10%
Toff
RECOMMENDED OPERATING CONDITIONS
Please obey the following conditions to ensure proper device operation and resetting.
Item
Symbol
Recommended value
Unit
Input LED current
IF
Standard type: 5
Reinforced insulation type: 5 to 10
mA
For Dimensions.
For Schematic and Wiring Diagrams.
For Cautions for Use.
These products are not designed for automotive use.
If you are considering to use these products for automotive applications, please contact your local Panasonic Corporation
technical representative.
For more information.
Continual DC bias (for AQV258❇❇, AQV259❇❇)
In cases in which a continual DC bias is applied between the input and output, the output-side MOS-FET may deteriorate
due to the voltage. Therefore, please verify operation of the actual design before using. An example of a circuit that might
undergo MOS-FET deterioration due to voltage is given below.
ASCTB143E 201201-T
Panasonic Corporation Automation Controls Business Unit industrial.panasonic.com/ac/e

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