HCPL314J Avago Technologies, HCPL314J Datasheet

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HCPL314J

Manufacturer Part Number
HCPL314J
Description
SOP-12
Manufacturer
Avago Technologies
Datasheet

Specifications of HCPL314J

Date_code
08+

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HCPL314J
Manufacturer:
AVAGO
Quantity:
20 000
5965-3584E
Power Bipolar Transistor
Base Drive Optocoupler
Technical Data
Features
• High Output Current
• 1.5 kV/ s Minimum Common
• Wide V
• 2 s Typical Propagation
• Recognized under UL 1577
Applications
• Isolated Bipolar Transistor
• AC and DC Motor Drives
• General Purpose Industrial
• Uninterruptable Power
THE USE OF A 0.1 F BYPASS CAPACITOR CONNECTED BETWEEN PINS 8 AND 7 IS RECOMMENDED. ALSO, CURRENT LIMITING
RESISTORS ARE RECOMMENDED (SEE FIGURE 1, NOTE 2, AND NOTE 7).
CAUTION: It is advised that normal static precautions be taken in handling and assembly of this component to
prevent damage and/or degradation which may be induced by ESD.
I
Continuous)
I
Continuous)
Mode Rejection (CMR) at
V
Volts)
Delay
for Dielectric Withstand
Proof Test Voltage of 5000
Vac, 1 Minute
Base Drive
Inverters
Supply
O2
O1
CM
(2.0 A
(1.0 A
= 600 V
CC
Peak
Peak
Range (5.4 to 13
, 0.6 A
, 0.5 A
Description
The HCPL-3000 consists of a
Silicon-doped GaAs LED optically
coupled to an integrated circuit
with a power output stage. This
optocoupler is suited for driving
power bipolar transistors and
power Darlington devices used in
motor control inverter applica-
tions. The high peak and steady
state current capabilities of the
output stage allow for direct
interfacing to the power device
without the need for an interme-
diate amplifier stage. With a CMR
Functional Diagram
CATHODE
ANODE
1
2
3
4
HCPL-3000
Q2
Q1
8
7
6
5
V
GND
V
V
CC
O2
O1
TRUTH TABLE
LED
ON
OFF
H
HCPL-3000
rating of 1.5 kV/ s this optocoup-
ler readily rejects transients found
in inverter applications.
The LED controls the state of the
output stage. Transistor Q2 in the
output stage is on with the LED
off, allowing the base of the
power device to be held low.
Turning on the LED turns off
transistor Q2 and switches on
transistor Q1 in the output stage
which provides current to drive
the base of a power bipolar
device.
OUTPUT
HIGH LEVEL
LOW LEVEL
Q1
ON
OFF
Q2
OFF
ON
1-329

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