4-Channel Optocoupler Isolation Module
4-Channel Optocoupler Isolation Module
4-Channel Optocoupler Isolation Module

4-Channel Optocoupler Isolation Module

New
-+
2 available
R45.48
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Free collection from Century City, Cape Town
The seller allows collection for this item and will be in contact with the full collection address once the order is ready. Ready for collection by Monday, 20 May.
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Main centres:  1-3 business days
Regional areas: 3-4 business days
Remote areas: 3-5 business days
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Product details

Condition
New
Location
South Africa
Product code
COM-007368
Bob Shop ID
603886271

Features:
This board is helpful for connecting digital systems (like a 5V microcontroller) to a high-voltage or noisy system. This board electrically isolates a controller from the high-power system by use of an opto-isolator IC. This IC has four LEDs and four photodiodes built-in. This allows the low-voltage side to control a high voltage side.
We often use this board to allow a microcontroller control servos or other motors that use a higher voltage than the TTL logic on the (3.3V or 5V) micro, and may cause electromagnetic interferance with our system as the motors turn on and off. This board will isolate the systems, creating a type of electrical noise barrier between devices.
This breakout board uses the TLP281 optoisolator and discrete transistors to correct the logic. Comes with four channels. Great for use in noisy circuits where signal lines require electrical isolation.
A normal LED opto-isolator will invert the logic of a signal. We threw some transistors on this compact board to correct the inversion. What you put into the IN pins, will be replicated on the the OUT pins, but at the higher voltage (HV).

Input and output instructions:
Inputs: IN1 / IN2 / IN3 / IN4, connected to IO port of MCU or Arduino, GND connected to GND of MCU or Arduino development board. IN1 / IN2 / IN3 / IN4 controls OUT1 / OUT2 / OUT3 / OUT4, respectively.
Outputs: OUT1 / OUT2 / OUT3 / OUT4.
Output: HVCC (not more than 24V): connected to the high voltage positive pole to be controlled, HGND connected to the high voltage negative pole to be controlled.
Use:
When IN1 is high level, the voltage of the corresponding OUT1 is equal to HVCC.
When IN1 is low level, the voltage of OUT1 is equal to HGND.

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