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MOC3062M
+BOMOPTOISOLTR 4.17KV TRIAC 1CH 6DIP
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Manufactureronsemi
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Mfr. Part #MOC3062M
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Datasheet MOC3062M DataSheet
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In Stock8518
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Specifications
| Attribute | Value |
| Part Status | Active |
| Output Type | Triac |
| Zero Crossing Circuit | Yes |
| Number of Channels | 1 |
| Voltage - Isolation | 4170Vrms |
| Voltage - Off State | 600 V |
| Static dV/dt (Min) | 600V/µs |
| Current - LED Trigger (Ift) (Max) | 10mA |
| Current - Hold (Ih) | 500µA (Typ) |
| Voltage - Forward (Vf) (Typ) | 1.3V |
| Current - DC Forward (If) (Max) | 60 mA |
| Operating Temperature | -40°C ~ 85°C |
| Mounting Type | Through Hole |
| Package / Case | 6-DIP (0.300", 7.62mm) |
| Supplier Device Package | 6-DIP |
| Approval Agency | UL |
| Base Product Number | MOC306 |
Overview
Description
Key features of the MOC3062M include zero-crossing detection, which helps minimize electrical noise by switching the TRIAC only at the AC waveform's zero-voltage point. This reduces electromagnetic interference and wear on the connected components. It's commonly used in applications like motor control, lamp dimming, and solid-state relays.
The MOC3062M is valued for its ability to handle a wide range of input currents and voltages, making it versatile for various industrial and consumer electronic applications. With its compact design, it enables efficient and reliable interfacing in power control systems.
Equivalent
1. MOC3063 – Similar specifications with slight variations.
2. TLP3062 – Offers similar functionality and pin configuration.
3. LTV-3062 – Another compatible optoisolator with similar characteristics.
4. EL3062 – Provides equivalent operation in zero-crossing applications.
Ensure to verify specific parameters such as isolation voltage and current ratings to match your application's requirements.
Features
1. Zero-Crossing Triac Driver: It incorporates a zero-crossing circuit to minimize electrical noise and provide smoother load switching, making it ideal for AC applications.
2. Isolation Voltage: Offers a high isolation voltage, typically around 5300 VRMS, ensuring effective separation between input and output circuits to protect sensitive components.
3. Triggering: The device can handle a wide range of input currents, typically requiring a minimum LED trigger current of 5 mA.
4. Compatibility: Suitable for interfacing with microcontrollers and other logic circuits due to its wide input-output isolation.
5. Package Type: Available in a standard 6-pin DIP package, which is easy to mount on a PCB.
6. Temperature Range: Operates efficiently within a wide range of temperatures, usually from -40°C to 85°C.
These features make the MOC3062M suitable for controlling AC loads, such as motors, lamps, or heaters, in consumer appliances and industrial equipment.
Pinout
1. Pin 1 (Anode): This is the anode of the LED. It is used to activate the internal LED by connecting it to a suitable current-limiting resistor and power source.
2. Pin 2 (Cathode): This is the cathode of the LED. It is connected to ground or the negative side of the power supply.
3. Pin 3 (NC or Not Connected): This pin is often not connected internally and generally left unconnected in circuit designs.
4. Pin 4 (Main Terminal 1): Connects to one of the TRIAC’s main terminals, used in conjunction with pin 6 to control the load.
5. Pin 5 (Gate): This pin is often not connected externally in this type of optoisolator. Internally, it serves to trigger the TRIAC.
6. Pin 6 (Main Terminal 2): Connects to the other main terminal of the TRIAC.
The MOC3062M is used for interfacing low-voltage DC control signals to AC loads, providing electrical isolation and enabling the safe control of AC devices.
Manufacturer
Application
1. AC Load Control: Used in solid-state relays for controlling AC loads like motors, lamps, and heaters.
2. Home Appliances: Implemented in appliances for efficient power management and noise reduction.
3. Industrial Automation: Facilitates isolated control of AC loads in automated systems.
4. Light Dimmers and Fan Speed Controls: Allows smooth control of lighting and fan speed by modulating power delivery.
5. Phase Control: Useful for controlling power delivery by adjusting the phase angle of AC power in various applications.
These applications benefit from the device's ability to provide electrical isolation and reliable switching.