HCPL-5301#300 Avago Technologies US Inc., HCPL-5301#300 Datasheet - Page 13

ISOLAT 1.5KVDC 1CH OPEN 8SMD GW

HCPL-5301#300

Manufacturer Part Number
HCPL-5301#300
Description
ISOLAT 1.5KVDC 1CH OPEN 8SMD GW
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HCPL-5301#300

Output Type
Open Collector
Package / Case
8-SMD Gull Wing
Voltage - Isolation
1500VDC
Number Of Channels
1, Unidirectional
Current - Output / Channel
15mA
Data Rate
2MBd
Propagation Delay High - Low @ If
180ns @ 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
Current Transfer Ratio
90 %
Maximum Propagation Delay Time
750 ns
Maximum Forward Diode Voltage
1.8 V
Minimum Forward Diode Voltage
1 V
Maximum Reverse Diode Voltage
5 V
Maximum Forward Diode Current
20 mA
Maximum Continuous Output Current
15 mA
Maximum Power Dissipation
145 mW
Maximum Operating Temperature
+ 125 C
Minimum Operating Temperature
- 55 C
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
HCPL-5301#300HCPL-5301
Manufacturer:
TI
Quantity:
14
Figure 17. AC equivalent circuit for Figure 16 during common
mode transients
Figure 19. Not recommended open collector LED drive circuit
Figure 21. Recommended LED drive circuit for ultra high CMR
13
* THE ARROWS INDICATE THE DIRECTION OF CURRENT
FLOW FOR +dV
+5 V
300
Q1
+5 V
I
TOTAL*
1
3
2
4
CM
1
2
3
4
I
/dt TRANSIENTS.
I
C
CLEDP
F
LEDN
1
2
3
4
C
SHIELD
LEDP
I
SHIELD
CLED01
V
+
C
CM
SHIELD
LED02
20 k
C
20
k
LED01
20 k
8
7
6
5
8
7
6
5
8
7
6
5
V
OUT
20 k
100 pF
Figure 18. AC equivalent circuit for Figure 13 during common
mode transients
Figure 20. AC equivalent circuit for Figure 19 during common
mode transients
* THE ARROWS INDICATE THE DIRECTION OF CURRENT
FLOW FOR +dV
** OPTIONAL CLAMPING DIODE FOR IMPROVED CMH
PERFORMANCE. V
+ V
* THE ARROWS INDICATE THE DIRECTION OF CURRENT
FLOW FOR +dV
Q1
300
R
** –
1
2
3
4
1
2
3
4
CM
CM
/dt TRANSIENTS.
I
I
CLEDN*
/dt TRANSIENTS.
R
CLEDN*
C
C
< V
LEDP
LEDP
C
C
SHIELD
SHIELD
F (OFF)
LEDN
LEDN
V
V
+
+
C
CM
CM
C
LED02
LED02
DURING +dV
C
C
20
k
20
k
LED01
LED01
CM
/dt.
8
7
6
5
8
7
6
5
V
V
OUT
OUT
20 k
20 k
100 pF
100 pF

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