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Parameter | Symbol | Conditions | Min | Typ | Max | Unit |
---|---|---|---|---|---|---|
Supply Voltage | Vcc | Operating | 3.0 | 24 | V | |
Input Offset Voltage | Vos | -5 | 0 | +5 | mV | |
Input Bias Current | Ib | V差=10mV | 10 | nA | ||
Input Offset Current | Ios | V差=10mV | 2 | nA | ||
Open Loop Gain | Avo | RTI, f=0Hz | 100 | dB | ||
Slew Rate | SR | 0.5 | V/μs | |||
Bandwidth (-3dB) | BW | G=+1 | 60 | kHz | ||
Quiescent Current | IQ | Vcc=5V | 150 | μA | ||
Output Voltage Swing | Vout | RL=10kΩ | Vcc-1.5 | V |
Instructions for Use:
- Power Supply: Ensure the supply voltage (Vcc) is within the specified range of 3.0V to 24V.
- Input Signals: Keep input bias and offset currents in mind when designing input circuits to minimize errors.
- Gain Configuration: The open-loop gain is specified at 100dB; adjust external components for desired closed-loop gain.
- Frequency Response: Be aware of the bandwidth limitations, especially for higher frequency applications.
- Output Considerations: The output voltage swing is limited by the supply voltage, typically reaching up to Vcc - 1.5V.
- Power Consumption: The quiescent current is relatively low, making it suitable for battery-operated devices.
- Slew Rate Limitation: For fast transient responses, consider the slew rate limitation which might affect signal fidelity.
Note: Always refer to the official datasheet from Linear Technology (now part of Analog Devices) for the most accurate and detailed information.
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