LMC6482 Quad CMOS Rail-to-Rail Op-Amp 8-Pin DIP (D99B)
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Quad CMOS Rail-to-Rail Operational Amplifier – Texas Instruments LMC6482High Precision Rail-to-Rail Input/Output Operational Amplifier
The Texas Instruments LMC6482 is a quad CMOS rail-to-rail operational amplifier (op-amp) engineered for applications requiring superior signal accuracy and dynamic range. Featuring rail-to-rail input and output capability, this op-amp ensures maximum signal swing, an essential factor for 5V and other low-voltage systems demanding full utilization of supply range.
Key Performance Features
- CMPOS Rail-to-Rail Input and Output: Accommodates input signals beyond the voltage rails, eliminating non-linear output errors typically seen in conventional op-amps.
- High Common-Mode Rejection Ratio (CMRR): 82 dB for excellent accuracy, particularly in non-inverting configurations.
- Ultra-Low Input Bias Current: 150 fA (typical), supporting direct interface with high impedance sources.
- Exceptional Open Loop Gain: 120 dB, supporting precision signal amplification and minimal error.
- Wide Operating Temperature Range: -40°C to +125°C, suitable for industrial and advanced electronic designs.
- Single or Dual Supply Operation: Flexible power supply options for a variety of design requirements.
- Package: 8-pin DIP for straightforward through-hole PCB mounting and prototyping.
- Manufacturer: Texas Instruments
- Manufacturer Part Number: LMC6482AEN
Applications
- Sensor signal conditioning
- Data acquisition systems
- Battery-powered instrumentation
- Precision analog signal amplification
Usage Instructions
The LMC6482 quad CMOS op-amp is ideal for circuits where rail-to-rail performance and low input bias currents are critical. For optimal accuracy in non-inverting amplifier setups, the high CMRR ensures signal integrity, even in challenging environments. Compatible with both single and dual supply voltage configurations, installation is straightforward in 8-pin DIP through-hole layouts. Refer to the official datasheet for complete design and application guidelines.
LMC6482 Quad CMOS Rail-to-Rail Op-Amp 8-Pin DIP (D99B)
- Unit price
- / per
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Quad CMOS Rail-to-Rail Operational Amplifier – Texas Instruments LMC6482High Precision Rail-to-Rail Input/Output Operational Amplifier
The Texas Instruments LMC6482 is a quad CMOS rail-to-rail operational amplifier (op-amp) engineered for applications requiring superior signal accuracy and dynamic range. Featuring rail-to-rail input and output capability, this op-amp ensures maximum signal swing, an essential factor for 5V and other low-voltage systems demanding full utilization of supply range.
Key Performance Features
- CMPOS Rail-to-Rail Input and Output: Accommodates input signals beyond the voltage rails, eliminating non-linear output errors typically seen in conventional op-amps.
- High Common-Mode Rejection Ratio (CMRR): 82 dB for excellent accuracy, particularly in non-inverting configurations.
- Ultra-Low Input Bias Current: 150 fA (typical), supporting direct interface with high impedance sources.
- Exceptional Open Loop Gain: 120 dB, supporting precision signal amplification and minimal error.
- Wide Operating Temperature Range: -40°C to +125°C, suitable for industrial and advanced electronic designs.
- Single or Dual Supply Operation: Flexible power supply options for a variety of design requirements.
- Package: 8-pin DIP for straightforward through-hole PCB mounting and prototyping.
- Manufacturer: Texas Instruments
- Manufacturer Part Number: LMC6482AEN
Applications
- Sensor signal conditioning
- Data acquisition systems
- Battery-powered instrumentation
- Precision analog signal amplification
Usage Instructions
The LMC6482 quad CMOS op-amp is ideal for circuits where rail-to-rail performance and low input bias currents are critical. For optimal accuracy in non-inverting amplifier setups, the high CMRR ensures signal integrity, even in challenging environments. Compatible with both single and dual supply voltage configurations, installation is straightforward in 8-pin DIP through-hole layouts. Refer to the official datasheet for complete design and application guidelines.
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