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Application Scenario: Low-Pass Active Filter
1. Amplifier Inputs (Pins 2 and 5):
- Connect the non-inverting input of the first op-amp (Pin 2) to the input signal you want to filter.
- Attach Pin 5 of the first op-amp to ground (0V) for its inverting input.
2. Feedback Network (Pins 1 and 3):
- Connect Pin 1 (output of the first op-amp) to the inverting input of the first op-amp (Pin 5) to create negative feedback.
- Connect a resistor (R1) from Pin 1 (output) to Pin 3 (inverting input of the second op-amp).
A capacitor (C1) should be connected to ground (0V) from Pin 3, the second op-amp's inverting input.
3. Output (Pin 7):
- The filtered output signal is obtained from Pin 7.
4. Power Supply (Pins 8 and 4):
- Connect Pin 8 (V+) to the positive supply voltage (+Vcc).
- Connect Pin 4 (V-) to the negative supply voltage (-Vcc) or ground if single supply is used.
Design Considerations:
When designing a low-pass active filter circuit using the NJU39610FM2 op-amp, you should consider the following key points:
1. Filter Frequency Calculation: Choose the values of R1 and C1 to set the desired cutoff frequency for your low-pass filter. The cutoff frequency (Fc) is determined by Fc = 1 / (2 * π * R1 * C1).
2. Power Supply Voltage: Ensure that the supply voltage levels applied to Pins 8 and 4 (+Vcc and -Vcc) are within the specified operating range mentioned in the datasheet.
3. Input Impedance: The resistor R1 affects the op-amp circuit's input impedance, which means that the input signal source shouldn't be overloaded.
4. Output Load: Ensure that the output load connected to Pin 7 does not exceed the maximum output current capabilities of the NJU39610FM2 op-amp.
5. Op-Amp Biasing and Compensation: Consider biasing and compensation components if necessary to optimize the performance of the op-amp in your specific application.
In summary, the NJU39610FM2 is a dual op-amp chip that can be used in various analog signal processing applications, including low-pass active filters. When designing a circuit using this op-amp, carefully select component values, verify power supply voltage, manage input and output impedance, and address any op-amp biasing and compensation requirements to achieve the desired filter characteristics.
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