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| Parameter | Symbol | Conditions | Min | Typ | Max | Unit |
|---|---|---|---|---|---|---|
| Supply Voltage | Vcc | Operating | 2.7 | - | 5.5 | V |
| Input Offset Voltage | VIO | Ta = 25掳C | - | 2.0 | - | mV |
| Input Bias Current | IB | VIP = VI- = 0 to Vcc | - | 45 | - | nA |
| Input Voltage Range | VIP,VI- | Vcc = 3.3V | 0 | - | Vcc-1.5 | V |
| Output Short-Circuit Duration | tSC | Io = 16mA | Continuous | - | - | - |
| Output Current (Sink) | ISNK | Vo = 0.1V | - | 16 | - | mA |
| Output Current (Source) | ISRC | Vo = Vcc-0.1V | - | 6 | - | mA |
| Slew Rate | SR | RL = 1k惟 | - | 0.3 | - | V/渭s |
| Unity Gain Bandwidth | GBP | Vo = Vcc/2 | - | 1.1 | - | MHz |
| Large Signal Voltage Gain | AV | RL = 1k惟 | - | 98 | - | dB |
| Quiescent Current | IQ | Vcc = 3.3V | - | 160 | - | 渭A |
Instructions for LM321LVIDCKR:
Supply Voltage:
- Operate within the specified range of 2.7V to 5.5V to ensure reliable performance.
Input Configuration:
- Keep input voltages within the valid range from 0V to Vcc-1.5V to prevent damage or unpredictable behavior.
- Ensure that the input bias current does not exceed typical values to avoid loading effects on the signal source.
Output Protection:
- The output can withstand short circuits indefinitely under specified conditions. However, limit the output current to protect external components.
Output Current Limitation:
- Do not exceed the sink and source current ratings to prevent overheating or damage to the device.
Frequency Response:
- For applications requiring high-frequency response, consider the unity gain bandwidth and slew rate limitations.
Power Consumption:
- Monitor the quiescent current, especially in low-power applications, to manage overall power consumption effectively.
Gain and Bandwidth:
- Use the large signal voltage gain and unity gain bandwidth specifications to design circuits that meet your performance requirements.
Handling and Installation:
- Handle with care to avoid electrostatic discharge (ESD) damage. Follow proper soldering techniques to ensure a good connection without damaging the component.
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