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Application Scenario: Surge Protection for a Microcontroller Input:
In this scenario, we want to protect a microcontroller input pin from voltage spikes generated by external sources, such as electrostatic discharge (ESD) or lightning-induced transients. We will use the SM15T36CAHM3_A/H TVS diode for this purpose.
Circuit Connection:
1. TVS Diode Connection: Connect the cathode (marked with a band on the diode body) of the SM15T36CAHM3_A/H to the microcontroller input pin (e.g., GPIO) and the anode to ground (GND).
2. Decoupling Capacitor: Place a decoupling capacitor (e.g., 100nF ceramic capacitor) between the microcontroller's VCC (power supply) and GND pins to filter out high-frequency noise.
3. Series Resistor (Optional): Depending on the specific application and requirements, you may add a series resistor (e.g., 330 ohms) between the microcontroller input pin and the TVS diode's cathode. This resistor limits the current flowing through the TVS diode during transient events and can provide additional protection.
4. Power Supply Connection: Connect the microcontroller's VCC pin to the power supply voltage and the GND pin to the ground reference.
Parameters and Features of SM15T36CAHM3_A/H:
- Breakdown Voltage: The SM15T36CAHM3_A/H has a breakdown voltage of 36V, meaning it clamps the voltage at this level or below during transient events.
- Peak Pulse Power: It can handle a peak pulse power of up to 1500W, dissipating energy from surges.
- Reverse Standoff Voltage: The reverse standoff voltage is typically slightly below the breakdown voltage, ensuring protection against lower-voltage transients as well.
- Low Leakage Current: The diode should have low leakage current when operated within its specified voltage range.
Design Considerations:
When designing a surge protection circuit using the SM15T36CAHM3_A/H, consider the following key points:
1. Voltage Levels: Ensure that the breakdown voltage of the TVS diode is suitable for your application and provides adequate protection.
2. Current Limiting: Consider using a series resistor to limit the current through the TVS diode during transient events, preventing excessive stress on the diode.
3. Placement: Position the TVS diode as close as possible to the protected input pin to minimize the length of unprotected trace.
4. Decoupling: To reduce noise and stabilize the microcontroller's power supply, add decoupling capacitors.
To sum up, the TVS diode SM15T36CAHM3_A/H is an essential part in shielding delicate electronic circuits from sudden spikes in voltage and overvoltages. When designing a surge protection circuit, it's essential to consider voltage levels, current limiting, component placement, and decoupling for robust and reliable protection.
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