HCPL-7611 Avago Technologies US Inc., HCPL-7611 Datasheet - Page 11

Optocoupler

HCPL-7611

Manufacturer Part Number
HCPL-7611
Description
Optocoupler
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HCPL-7611

No. Of Channels
1
Isolation Voltage
3.75kV
Optocoupler Output Type
Transistor
Input Current
10mA
Output Voltage
7V
Opto Case Style
DIP
No. Of Pins
8
Propagation Delay Low-high
100ns
Common Mode Voltage Vcm
1000V
Voltage - Isolation
3750Vrms
Number Of Channels
1, Unidirectional
Current - Output / Channel
50mA
Data Rate
10MBd
Propagation Delay High - Low @ If
57ns @ 4mA
Current - Dc Forward (if)
20mA
Input Type
DC
Output Type
Open Collector
Mounting Type
Through Hole
Package / Case
8-DIP (0.300", 7.62mm)
Number Of Elements
1
Baud Rate
10Mbps
Forward Voltage
1.85V
Forward Current
20mA
Output Current
50mA
Package Type
PDIP
Operating Temp Range
-40C to 85C
Power Dissipation
250mW
Propagation Delay Time
100ns
Pin Count
8
Mounting
Through Hole
Reverse Breakdown Voltage
3V
Operating Temperature Classification
Industrial
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant, Contains lead / RoHS non-compliant
Other names
516-1099-5

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Figure 12. Pulse width distortion vs. input
current.
Figure 7. Test circuit for t
Figure 9. t
temperature.
11
MONITORING
PULSE GEN.
t
f
Z
= t
O
100
-10
-20
-30
-40
-50
-60
-70
90
80
70
60
50
40
30
30
20
10
= 50
r
0
-50
= 5 ns
INPUT
*C
NODE
0
OUTPUT
L
PHL
V
R
T
INPUT
-30
IS APPROXIMATELY 15 pF WHICH INCLUDES
PROBE AND STRAY WIRING CAPACITANCE.
A
CC
L
T
– Propagation delay vs.
I
= 350 – 4 k
= 25° C
I
I
2
I
V
F
F
F
F
A
= 5 V
O
R
– INPUT CURRENT – mA
= 2 mA
= 4 mA
I
F
-10
– TEMPERATURE – °C
M
4
0
10
t
PHL
1
2
3
4
PHL
6
R
R
R
V
T
30
L
L
L
A
and t
CC
= 350
= 1 k
= 4 k
= 25° C
8
= 5 V
50
PLH
.
10
70
GND
V
CC
12
t
90
PLH
8
7
6
5
Figure 10. Propagation delay vs. input
current.
Figure 13. Rise and fall time vs. temperature.
120
110
100
330
320
310
300
290
90
80
70
60
50
40
30
60
40
20
0.1µF
BYPASS
0
-60 -40 -20
1
1.5 V
I
50% I
F
V
I
2
F
*C
CC
T
T
T
PLH
PLH
= 2 – 4 mA
I
R
R
R
R
F
L
PHL
+5 V
3
= 5.0 V
F
L
L
L
L
– INPUT CURRENT – mA
T
= 4 k
= 1 k
= 350
= 350 , 1 k , 4 k
A
@ R
@ R
@ R
4
R
– TEMPERATURE – °C
L
0
L
L
5
L
OUTPUT V
MONITORING
NODE
= 4 k
= 350
= 350 – 4 k
20
6
T
PLH
7
40
t
t
FALL
RISE
@ R
O
8
V
T
60
A
CC
L
9
= 25° C
= 1 k
= 5 V
80 100
10
11
Figure 8. t
temperature.
Figure 11. Pulse width distortion vs.
temperature.
120
110
100
-30
-15
-45
-60
90
80
70
60
50
40
30
30
15
0
-50
-50
PLH
I
I
I
V
T
F
F
F
-30 -10
-30
A
CC
= 2 mA, R
= 4 mA, R
= 4 mA, R
– Propagation delay vs.
T
I
I
I
T
F
F
F
A
A
= 25° C
= 2-4 mA, R
= 2-4 mA, R
= 2-4 mA, R
= 5 V
– TEMPERATURE – °C
-10
– TEMPERATURE – °C
I
I
F
F
0
0
= 2 mA, R
= 2 mA, R
L
L
L
10
10
I
= 1 k
F
= 1 k
= 4 k
= 4 mA, R
L
L
L
30
30
= 4 k
= 1 k
= 350
L
L
= 4 k
= 350
50
50
L
= 350
70
70
90
90

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