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Original MOC3010 Optocoupler DIP-6 Fairchild

Original MOC3010 Optocoupler DIP-6 Fairchild
Original MOC3010 Optocoupler DIP-6 Fairchild
3.45RON
Ex Tax: 3.45RON
  • Stock: In Stock
  • Model: A0436.MOC3010
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Original MOC3010 Optocoupler DIP-6 Fairchild

  The Fairchild MOC3010 is an optocoupler (optoisolator) that consists of a GaAs infrared LED and an NPN phototransistor in a 6-pin DIP package. It’s designed to electrically isolate two sections of a circuit, making it highly useful for applications where low-level signals control high-power circuits. Here’s a detailed overview:

 

1. Structure and Working Principle

  • Infrared LED and Phototransistor: The MOC3010 contains an infrared LED on the input side and a phototransistor on the output side. When a small input current activates the LED, it emits light that triggers the phototransistor, enabling the current to pass through the output circuit.
  • Electrical Isolation: This optocoupler provides significant electrical isolation between the input and output, with an isolation voltage rating of up to 5000 V. This makes it suitable for safely interfacing different sections of circuits without direct electrical connection.

 

2. Key Specifications

  • Trigger LED Current: The LED inside the MOC3010 typically requires 10 mA or less to activate the phototransistor, which is relatively low, allowing it to be triggered by low-power controllers or microcontrollers.
  • Maximum Collector-Emitter Voltage: The phototransistor on the output side can handle a maximum collector-emitter voltage of 30V, making it suitable for interfacing with moderate DC voltages.
  • Current Transfer Ratio (CTR): The MOC3010 offers a moderate current transfer ratio, meaning it can effectively transfer input signals to the output circuit while maintaining electrical isolation.

 

3. Applications

  • Signal Isolation: The MOC3010 is widely used in circuits to transfer signals between different voltage levels or control systems, especially when isolation is crucial.
  • Data Communication: Due to its reliable isolation, it’s used in serial and parallel data communication systems, protecting sensitive low-voltage devices from high-voltage circuits.
  • Microcontroller Interfaces: It is commonly used in interfacing low-power microcontrollers with higher voltage loads in applications where electrical isolation is necessary.
  • Switching DC Loads: While it’s primarily designed for low-power applications, it can control moderate DC loads, such as relays, transistors, or MOSFETs.

 The MOC3010 is often chosen for its durability, high isolation voltage, and ability to interface between circuits with minimal power requirements.

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