Details
BUY LM6132BIM https://www.utsource.net/itm/p/12604235.html
| Parameter | Symbol | Min | Typical | Max | Unit | Conditions |
|---|---|---|---|---|---|---|
| Supply Voltage | VCC | 2.7 | - | 5.5 | V | - |
| Input Voltage Range | VIN | 0 | - | VCC - 1.2 | V | - |
| Output Voltage Swing | VOUT | 0 | - | VCC - 1.5 | V | Load = 10 k惟 |
| Input Offset Voltage | VOS | -0.5 | 0.1 | 0.5 | mV | - |
| Input Bias Current | IB | - | 0.01 | - | nA | - |
| Slew Rate | SR | - | 2.0 | - | V/渭s | - |
| Bandwidth | BW | - | 1.0 | - | MHz | - |
| Quiescent Current | IQ | - | 400 | - | 渭A | - |
| Common-Mode Rejection Ratio | CMRR | - | 80 | - | dB | - |
| Power Supply Rejection Ratio | PSRR | - | 80 | - | dB | - |
| Operating Temperature Range | TA | -40 | - | 125 | 掳C | - |
Instructions for Use
Supply Voltage:
- Ensure the supply voltage (VCC) is within the range of 2.7V to 5.5V.
- Connect the supply voltage to the VCC pin and ground (GND) pin.
Input Voltage:
- The input voltage (VIN) should be within the range of 0V to VCC - 1.2V to avoid damage to the device.
Output Voltage:
- The output voltage (VOUT) can swing from 0V to VCC - 1.5V with a load resistance of 10 k惟.
Biasing:
- The input bias current (IB) is very low, typically around 0.01 nA, which minimizes the need for large input resistors.
Slew Rate:
- The typical slew rate is 2.0 V/渭s, which affects the maximum rate of change of the output voltage.
Bandwidth:
- The typical bandwidth is 1.0 MHz, which limits the frequency range over which the op-amp can operate effectively.
Quiescent Current:
- The quiescent current (IQ) is typically 400 渭A, which should be considered in power-sensitive applications.
Common-Mode Rejection Ratio (CMRR):
- The CMRR is typically 80 dB, indicating good rejection of common-mode signals.
Power Supply Rejection Ratio (PSRR):
- The PSRR is typically 80 dB, indicating good rejection of power supply noise.
Operating Temperature:
- The device can operate over a temperature range of -40掳C to 125掳C.
Layout and Handling
- Ensure proper PCB layout to minimize noise and parasitic effects.
- Handle the device with care to avoid electrostatic discharge (ESD) damage.
Applications
- General-purpose operational amplifier applications.
- Low-power analog circuits.
- Battery-powered devices.
- Signal conditioning and filtering.
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