MOC3052SR2M_F132 this integrated circuit is available in factory sealed anti static packs. at icwhale.com. Please read product page below detail information. including MOC3052SR2M_F132 price, data-sheet, in-stock availability, technical difficulties. Also. Quickly Enter the access of compare listing to find out replaceable electronic parts. If you want to retrieve comprehensive data for MOC3052SR2M_F132 to optimize the supply chain (including cross references, life-cycle, parametric, counterfeit risk, obsolescence managements forecasts), please contact to our Tech-supports team.
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Application Scenarios
The MOC3052SR2M_F132 is commonly used in scenarios requiring isolation and control, such as in solid-state relays, motor controllers, industrial automation systems, and power supply circuits, where it ensures safe interfacing between high-voltage circuits and low-voltage control electronics.
Parameter Features
Key features of the MOC3052SR2M_F132 include its high isolation voltage, which prevents voltage spikes from crossing from the high-voltage side to the low-voltage side, its low input LED current, which allows it to be driven by digital circuits directly, and its fast switching times, suitable for controlling AC loads.
Design Considerations
When designing circuits with the MOC3052SR2M_F132, it's important to consider:
- Isolation: Ensuring the MOC3052SR2M_F132 provides sufficient electrical isolation to protect the control circuitry.
- Input Drive Current: Calculating the appropriate current limiting resistor for the LED to prevent overdriving.
- Output Load: Choosing an appropriate external component, like a triac or thyristor, that matches the output characteristics of the MOC3052SR2M_F132.
- Thermal Management: Implementing adequate cooling for the external power components to ensure reliable operation.
Solid-State Relay (SSR) Circuit Design Example
In a typical SSR application, the MOC3052SR2M_F132 is used to control an AC load:
- Input Connection: The control signal is applied to the anode and cathode of the internal LED of the MOC3052SR2M_F132. A current-limiting resistor is connected in series to the anode to regulate the LED current, ensuring it operates within its specified range.
- Output Activation: The light from the LED activates the photodetector component (usually a phototriac, photodiode, or phototransistor), which in turn triggers an external power triac connected to the output pins of the MOC3052SR2M_F132.
- External Triac Connection: The main terminals (MT1 and MT2) of the external triac are connected to the AC load and the AC supply. The gate of the triac is connected to the output of the MOC3052SR2M_F132, enabling control of the AC load.
- Zero Crossing Detection: If the MOC3052SR2M_F132 includes a zero-crossing feature, it should be used to switch the AC load at the optimal point in the AC cycle, reducing noise and extending the life of the external triac and the load.
In designing this circuit, attention should be paid to the maximum ratings of both the MOC3052SR2M_F132 and the external triac to prevent component damage. Additionally, the choice of the current-limiting resistor for the LED and the gate resistor for the triac are critical for the reliable operation of the SSR.
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(1)Such as a deficiency in quantity, delivery of wrong items, and apparent external defects (breakage and rust, etc.), and we acknowledge such problems.
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