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Home > Semiconductors & Component Parts > Integrated Circuits - OP Amps (Operational Amplifiers) > LMC6482 Quad CMOS Rail-to-Rail Op-Amp 8-Pin DIP (D99B)

LMC6482 Quad CMOS Rail-to-Rail Op-Amp 8-Pin DIP (D99B)

SKU: VUPN8266
Regular price $7.39
Unit price
per
manufacturer: Texas Instruments
manufacturer part number: LMC6482AEN
The LMC6482 is a single or dual supply operational amplifier (op-amp) that is well suited for operation over a wide temperature range (-40°C~+125°C).



A unique design topology enables the LMC6892 common-mode voltage range to accommodate input signals beyond the rails. This eliminates non-linear output errors due to input signals exceeding a traditionally limited common-mode voltage range. The LMC6482 signal range has a high CMRR of 82 dB for excellent accuracy in non-inverting circuit configurations.



The LMC6482 rail-to-rail input is complemented by rail-to-rail output swing. This assures maximum dynamic signal range which is particularly important in 5V systems.



Ultra-low input current of 150 fA and 120 dB open loop gain provide high accuracy and direct interfacing with high impedance sources.

Documentation Links

LMC6482 Quad CMOS Rail-to-Rail Op-Amp 8-Pin DIP (D99B)

SKU: VUPN8266
Regular price $7.39
Unit price
per
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manufacturer: Texas Instruments
manufacturer part number: LMC6482AEN
The LMC6482 is a single or dual supply operational amplifier (op-amp) that is well suited for operation over a wide temperature range (-40°C~+125°C).



A unique design topology enables the LMC6892 common-mode voltage range to accommodate input signals beyond the rails. This eliminates non-linear output errors due to input signals exceeding a traditionally limited common-mode voltage range. The LMC6482 signal range has a high CMRR of 82 dB for excellent accuracy in non-inverting circuit configurations.



The LMC6482 rail-to-rail input is complemented by rail-to-rail output swing. This assures maximum dynamic signal range which is particularly important in 5V systems.



Ultra-low input current of 150 fA and 120 dB open loop gain provide high accuracy and direct interfacing with high impedance sources.

Documentation Links