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MOC3020M
+BOMOPTOISOLATOR 5KV TRIAC 1CH 6-DIP
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ManufacturerLite-On Inc.
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Mfr. Part #MOC3020M
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Datasheet MOC3020M DataSheet
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In Stock29503
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Specifications
| Attribute | Value |
| Series | MOC302x |
| PartStatus | Active |
| OutputType | Triac |
| ZeroCrossingCircuit | No |
| NumberofChannels | 1 |
| Voltage-Isolation | 5000Vrms |
| Voltage-OffState | 400 V |
| StaticdV/dt(Min) | 1kV/µs |
| Current-LEDTrigger(Ift)(Max) | 30mA |
| Current-Hold(Ih) | 250µA (Typ) |
| Voltage-Forward(Vf)(Typ) | 1.15V |
| Current-DCForward(If)(Max) | 50 mA |
| OperatingTemperature | -40°C ~ 100°C |
| MountingType | Through Hole |
| Package/Case | 6-DIP (0.400", 10.16mm) |
| SupplierDevicePackage | 6-DIP |
| ApprovalAgency | CQC, CSA, TUV, UL, VDE |
| BaseProductNumber | MOC302 |
Overview
Description
Key features of the MOC3020M include:
1. Input and Output Isolation: Provides a high degree of electrical isolation between input and output, typically rated at 5300 Vrms.
2. Low Input Current: Requires minimal current to activate the photodetector, improving energy efficiency.
3. Non-zero Crossing Triac Driver: Suitable for controlling AC loads by driving triacs without zero-crossing detection, allowing phase control for dimming lights or speed control in motors.
4. Compact Package: Available in a small 6-pin DIP package, making it easy to integrate into circuits.
5. Applications: Commonly used in industrial control systems, home appliances, and light dimmer circuits.
The MOC3020M is valued for its reliability, isolation capabilities, and ease of use in various electronic applications.
Equivalent
1. MOC3021
2. MOC3022
3. MOC3023
4. IL301
5. TLP3021
6. EL302X series (like EL3021, EL3022)
7. PC302X series
These equivalents generally share similar electrical characteristics, but always check specific datasheets to ensure compatibility with your application.
Features
1. Optoisolation: It provides electrical isolation between its input and output, protecting microcontrollers or other low-voltage devices from high-voltage spikes.
2. Phototransistor Output: The device uses a phototransistor output to control the load.
3. LED Input: An internal LED is used to trigger the phototransistor, typically requiring a current of around 5-10 mA to operate.
4. Zero-Crossing Detection: Some variants in the MOC3020 series include zero-crossing detection, which helps reduce EMI by switching at the zero-voltage point of the AC waveform.
5. High Noise Immunity: It is designed to withstand a high level of electrical noise, making it suitable for industrial environments.
6. Compatibility: The MOC3020M is compatible with various loads, including motors, relays, and lamps, often used in dimming and speed control applications.
7. Package Type: It typically comes in a 6-pin DIP package, which simplifies integration into designs.
Pinout
1. Pin 1 (Anode): The anode of the internal infrared LED.
2. Pin 2 (Cathode): The cathode of the internal infrared LED.
3. Pin 3 (NC - No Connection): Typically not used in the circuit.
4. Pin 4 (Cathode): The cathode for the photodiode.
5. Pin 5 (Anode): The anode for the photodiode.
6. Pin 6 (NC - No Connection): Another pin that is not used, similar to Pin 3.
The MOC3020M is primarily used to isolate low-power logic signals from high-power TRIAC-based circuits, providing electrical isolation and allowing for safe interfacing between different voltage levels. It is commonly used in applications like lamp dimmers, motor control circuits, and other AC switching applications.
Manufacturer
Application
1. AC Motor Control: It provides isolation in motor drive circuits, enhancing safety and performance.
2. Solid-State Relays: It helps in switching AC loads by interfacing low-voltage control circuits with high-voltage AC power.
3. Industrial Equipment: Provides isolation in industrial control systems to protect low-voltage microcontrollers.
4. Lighting Controls: Used in dimmers and phase control systems for lighting applications.
5. Home Appliances: Facilitates safe interfacing between microcontrollers and high-voltage AC loads.
These applications leverage the optoisolator's ability to provide electrical isolation and signal transmission.