Details
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| Parameter | Symbol | Min | Typ | Max | Unit | Conditions |
|---|---|---|---|---|---|---|
| Supply Voltage | VCC | 2.7 | - | 36 | V | - |
| Quiescent Current | IQ | - | 50 | - | 渭A | VCC = 2.7V to 36V |
| Input Offset Voltage | VIO | - | 15 | 45 | 渭V | VCC = 5V |
| Input Bias Current | IB | - | 2 | 10 | pA | VCC = 5V |
| Input Voltage Range | VIN | - | - | - | V | VCC - 1.5V to 1.5V |
| Output Voltage Swing | VOUT | - | - | - | V | 0.2V from rails, VCC = 5V |
| Slew Rate | SR | - | 0.6 | - | V/渭s | VCC = 5V |
| Bandwidth (Unity Gain) | fU | - | 1.1 | - | MHz | VCC = 5V |
| Large Signal Voltage Gain | AV | - | 1000 | - | V/mV | VCC = 5V |
| Common-Mode Rejection Ratio | CMRR | - | 120 | - | dB | VCC = 5V |
| Power Supply Rejection Ratio | PSRR | - | 100 | - | dB | VCC = 5V |
Instructions for Use:
Supply Voltage:
- Ensure the supply voltage is within the range of 2.7V to 36V.
- For optimal performance, use a stable power supply.
Input Signals:
- The input signals should be within the input voltage range, typically 1.5V below and above the supply rails.
- Avoid exceeding the input voltage limits to prevent damage to the device.
Output Load:
- The output can swing within 0.2V of the supply rails at VCC = 5V.
- Ensure the load impedance is compatible with the output current capability of the op-amp.
Biasing and Feedback:
- Use appropriate biasing and feedback networks to achieve desired gain and stability.
- For unity gain applications, ensure the feedback resistor is correctly chosen to avoid oscillations.
Temperature Considerations:
- The device is designed to operate over a wide temperature range, but performance parameters may vary slightly with temperature.
- Refer to the datasheet for detailed temperature characteristics.
PCB Layout:
- Use proper PCB layout techniques to minimize noise and parasitic effects.
- Place bypass capacitors close to the power pins to filter out high-frequency noise.
Storage and Handling:
- Store the device in a dry environment to prevent moisture damage.
- Handle with care to avoid static discharge, which can damage the sensitive components.
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