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Key Features:
1. Voltage Comparator: The NCV33161DMR2G is primarily a voltage comparator IC.
2. Broad Input Voltage Range: It functions well over a broad range of input voltages.
3. Low Quiescent Current: Because of the IC's low quiescent current, battery-powered devices can use it.
4. Open-Collector Output: It provides an open-collector output for versatile interfacing.
5. Adjustable Voltage Reference: Some variants offer an adjustable voltage reference.
Application Scenario:
The NCV33161DMR2G is commonly employed in various applications where precise voltage comparison is essential. Some typical use cases include battery voltage monitoring, overvoltage protection, under-voltage detection, and general-purpose voltage threshold detection.
Circuit Connection (Example for Voltage Threshold Detection):
To use the NCV33161DMR2G for voltage threshold detection, follow these detailed connections:
1. Voltage In (Pin 1, VIN): Connect Pin 1 (VIN) to the input voltage source you want to monitor.
2. Voltage Reference (Pin 2, VREF): Connect Pin 2 (VREF) to an external voltage reference source if an adjustable reference is required; otherwise, connect it to a fixed reference voltage.
3. Inverting Input (Pin 3, INV-): Connect Pin 3 (INV-) to the point in your circuit where you want to monitor the voltage. Typically, this is the non-inverting input.
4. Output (Pin 4, OUT): Connect Pin 4 (OUT) to the load or the circuit that responds to the voltage threshold detection. This output is open-collector and requires a pull-up resistor.
Considerations When Designing the Circuit:
1. Input Voltage Range: Ensure that the input voltage range matches your application's requirements. The NCV33161DMR2G should be capable of handling the expected maximum and minimum input voltages.
2. Voltage Reference: If you're using an adjustable voltage reference, calculate the resistor values to set the desired voltage threshold accurately.
3. Hysteresis: Depending on your application, consider adding hysteresis using positive feedback to prevent rapid switching around the threshold voltage.
4. Output Pull-Up Resistor: Add an appropriate pull-up resistor to the output (OUT) pin, connecting it to the supply voltage to establish logic levels.
5. Noise and Transients: Address noise and transient considerations in your application to prevent false triggering and ensure reliable voltage threshold detection.
When designing a circuit with the NCV33161DMR2G, consult the datasheet for comprehensive specifications, recommended operating conditions, and application-specific guidelines. This ensures precise and reliable voltage threshold detection in your specific application.
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