5962-8957101PC Avago Technologies US Inc., 5962-8957101PC Datasheet - Page 8

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5962-8957101PC

Manufacturer Part Number
5962-8957101PC
Description
OPTOCOUPLER GATE HERM SEAL 8DIP
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of 5962-8957101PC

Package / Case
8-DIP (0.300", 7.62mm)
Voltage - Isolation
1500VDC
Number Of Channels
2, Unidirectional
Current - Output / Channel
25mA
Data Rate
20MBd
Propagation Delay High - Low @ If
33ns
Current - Dc Forward (if)
10mA
Input Type
DC
Output Type
Push-Pull, Totem-Pole
Mounting Type
Through Hole
Maximum Continuous Output Current
25 mA
Maximum Fall Time
10 ns
Maximum Forward Diode Current
10 mA
Maximum Rise Time
15 ns
Minimum Forward Diode Voltage
1 V
Output Device
Logic Gate Photo IC
Configuration
2 Channel
Maximum Baud Rate
40 MBps
Maximum Forward Diode Voltage
1.85 V
Maximum Reverse Diode Voltage
3 V
Maximum Power Dissipation
200 mW
Maximum Operating Temperature
+ 125 C
Minimum Operating Temperature
- 55 C
Number Of Elements
2
Baud Rate
40Mbps
Forward Voltage
1.85V
Forward Current
10mA
Output Current
25mA
Package Type
PDIP
Operating Temp Range
-55C to 125C
Power Dissipation
200mW
Propagation Delay Time
60ns
Pin Count
8
Mounting
Through Hole
Reverse Breakdown Voltage
3V
Operating Temperature Classification
Military
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
5962-8957101PC
Manufacturer:
AVAGO
Quantity:
1 400
Part Number:
5962-8957101PC
Manufacturer:
AVAGO
Quantity:
154
Notes:
Figure 1. Typical logic low output voltage vs. logic
low output current
Figure 3. Typical output voltage vs. input
forward current
8
1. Not to exceed 5% duty factor, not to exceed 50 sec pulse width.
2. All devices are considered two-terminal devices: measured
3. This is a momentary withstand test, not an operating condition.
4. t
5. CM
6. Duration of output short circuit time not to exceed 10 ms.
7. Power Supply Noise Immunity is the peak to peak amplitude of
between all input leads or terminals shorted together and all
output leads or terminals shorted together.
rising edge of the input current pulse to the 1.5 V point on the
falling edge of the output pulse. The t
measured from the 50% point on the falling edge of the input
current pulse to the 1.5 V point on the rising edge of the output
pulse. Pulse Width Distortion, PWD = |t
can be sustained with the output voltage in the logic low state
(V
mode voltage that can be sustained with the output voltage in
the logic high state (V
PHL
O(MAX)
L
propagation delay is measured from the 50% point on the
is the maximum slew rate of the common mode voltage that
< 0.8 V). CM
H
O(MIN)
is the maximum slew rate of the common
> 2.0 V).
PHL
PLH
- t
PLH
propagation delay is
|.
10. Standard parts receive 100% testing at 25 C (Subgroups 1 and 9).
11. Parameters are tested as part of device initial characterization and
12. Propagation delay skew is defined as the difference between the
13. The HCPL-6430, HCPL-6431, and HCPL-643K dual channel parts
Figure 2. Typical logic high output voltage vs.
logic high output current
Figure 4. Typical diode input forward current
characteristic
8. Measured between adjacent input pairs shorted together for each
9. Each channel.
the ac ripple voltage on the V
and still remain in the desired logic state. For desired logic high
state, V
multichannel device.
SMD, Class H and Class K parts receive 100% testing at 25, 125,
and –55 C (Subgroups 1 and 9, 2 and 10, 3 and 11, respectively).
after design and process changes. Parameters are guaranteed to
limits specified for all lots not specifically tested.
minimum and maximum propagation delays for any given group
of optocouplers with the same part number that are all switching
at the same time under the same operating conditions.
function as two independent single channel units. Use the single
channel parameter limits.
OH(MIN)
> 2.0 V, and for desired logic low state, V
CC
line that the device will withstand
OL(MAX)
< 0.8 V.

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