ACPL-W456-520E Avago Technologies US Inc., ACPL-W456-520E Datasheet - Page 8

OPTOCOUPLER IPM GATE DRV 6-SOIC

ACPL-W456-520E

Manufacturer Part Number
ACPL-W456-520E
Description
OPTOCOUPLER IPM GATE DRV 6-SOIC
Manufacturer
Avago Technologies US Inc.
Datasheets

Specifications of ACPL-W456-520E

Output Type
Open Collector
Package / Case
SO-6
Voltage - Isolation
5000Vrms
Number Of Channels
1, Unidirectional
Current - Output / Channel
15mA
Propagation Delay High - Low @ If
200ns @ 10mA
Current - Dc Forward (if)
25mA
Input Type
DC
Mounting Type
Surface Mount
Logic Gate Type
Power Module and Gate Drive Interface Optocouplers
Configuration
1 Channel
Isolation Voltage
3750 Vrms
Current Transfer Ratio
44 %
Maximum Propagation Delay Time
550 ns
Maximum Forward Diode Voltage
0.8 V
Minimum Forward Diode Voltage
- 5 V
Maximum Forward Diode Current
20 mA
Maximum Continuous Output Current
15 mA
Maximum Power Dissipation
145 mW
Maximum Operating Temperature
+ 100 C
Minimum Operating Temperature
- 40 C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Figure 6. CMR Test Circuit and Waveforms.
Figure 7. Propagation Delay with External 20 kΩ RL vs. Temperature.
Figure 9. Propagation Delay vs. Load Capacitance.
8
V
FF
B
500
400
300
200
100
+
1400
1200
1000
-
800
600
400
200
-40
0
0
I
F
A
V
I
I
V
R
C
R
T
F
F
CC
L
CC
L
L
A
= 10 mA
= 10 mA
-20
= 100 pF
= 20 KΩ
= 20 kΩ (EXTERNAL)
= 25 C
= 15 V
= 15 V
100
1
2
3
t
t
PHL
PLH
0
CL – LOAD CAPACITANCE – pF
T
A
– TEMPERATURE – C
200
V
20
CM
SHIELD
= 1500V
40
300
60
0.1 μF
t
t
PHL
400
6
5
4
PLH
* 100 pF TOTAL
CAPACITANCE
80
100
500
20 kΩ
100 pF *
V
OUT
+
-
V
CC
= 15
Figure 8. Propagation Delay vs. Load Resistance.
Figure 10. Propagation Delay vs. Supply Voltage.
1400
1200
1000
800
600
400
200
800
600
400
200
V
OV
V
V
SWITCH AT A: I
SWITCH AT B: I
0
CM
O
O
0
5
I
V
C
T
F
L
CC
A
= 10 mA
= 100 pF
= 25 C
= 15 V
10
10
Δt
F
F
= 10 mA
= 0 mA
RL – LOAD RESISTANCE – kΩ
V
CC
– SUPPLY VOLTAGE – V
20
15
30
20
C
I
R
T
40
F
t
t
L
25
L
A
PLH
PHL
= 10 mA
= 100 pF
= 20 kΩ
= 25 C
t
t
PHL
PLH
δV
δt
50
30
=
V
CM
Δt
V
V
CC
OL

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