LH2108A

DescriptionThe LH2108A series of precision operational amplifiers is particularly well suited for high source impedance applications requiring low offset and bias currents, as well as low power dissipation. Unlike FET input amplifiers, the offset and bias currents of the LH2108A do not change sign...

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SeekIC No. : 004394111 Detail

LH2108A: DescriptionThe LH2108A series of precision operational amplifiers is particularly well suited for high source impedance applications requiring low offset and bias currents, as well as low power diss...

floor Price/Ceiling Price

Part Number:
LH2108A
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/12/25

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Product Details

Description



Description

The LH2108A series of precision operational amplifiers is particularly well suited for high source impedance applications requiring low offset and bias currents, as well as low power dissipation. Unlike FET input amplifiers, the offset and bias currents of the LH2108A do not change significantly with temperature variations. Advanced design, processing and testing techniques make Linear's LH2108A a superior choice over previous devices. For higher performance dual amplifiers, see the LT1024, LT1002, and LT1013 data sheets. It can be used in lntegrators, transducer amplifiers, analog memories, light meters.

The features of LH2108A can be summarized as (1)guaranteed 2nA Max. input bias current; (2)guaranteed 600A supply current; (3)guaranteed 0.5mV offset voltage; (4)guaranteed 5V/°C Max. drift; (5)wide supply voltage range: ±2V to ±20V; (6)interchangeable with other manufacturers' LH2108.

The absolute maximum ratings of LH2108A are (1)supply voltage: ±20V; (2)differential input current (note 1): ±10mA; (3)input voltage (Note 2): ±15V; (4)output short circuit duration: indefinite; (5)operating temperature range: - 55°C to 125°C; (6)storage temperature range: -65°C to 150°C; (7)lead temperature (soldering, 10 sec.): 300°C.




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