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READ2302G - CMOS Dual Operational Amplifier

General Description

The READ2302G is input and output full range dual CMOS Operational Amplifier realizing high drivability and high slew rate.

This IC can be used in minimum operating supply voltage from 2.5V, and in wide ambient temperature range from -40oC to +105oC.

Available in ultra-small 8 pins TSSOP packages.

Key Features

  • Low voltage single supply operation.
  • Low input offset voltage.
  • Low input bias current.
  • Wide output voltage range.
  • Supply current (per channel).
  • High slew rate ( ) reference value of design VDD = 2.5V to 5.5V VIO ≤ ±6.0mV IB ≤ (1pA). VOUT : VSS+0.1V to VDD-0.1V(@Io=5mA) IDD = 0.75mA Typ. SR = 8V/μs Typ. Product Line-up Type name READ2302GSP Product type quality level Package High slew rate with Normal quality level 8 pins plastic TSSOP R03DS0097EJ0200 Rev.2.00.

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Datasheet Details

Part number READ2302G
Manufacturer Renesas
File Size 631.22 KB
Description CMOS Dual Operational Amplifier
Datasheet download datasheet READ2302G Datasheet

Full PDF Text Transcription for READ2302G (Reference)

Note: Below is a high-fidelity text extraction (approx. 800 characters) for READ2302G. For precise diagrams, and layout, please refer to the original PDF.

Data Sheet READ2302G High Drivability & High Slew Rate, Input Output Full Range, CMOS Dual Operational Amplifier R03DS0097EJ0200 VIO≤±6mV, SR=8V/μs, GBW=6MHz Rev.2.00 Apr...

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al Amplifier R03DS0097EJ0200 VIO≤±6mV, SR=8V/μs, GBW=6MHz Rev.2.00 Apr. 17, 2017 Description The READ2302G is input and output full range dual CMOS Operational Amplifier realizing high drivability and high slew rate. This IC can be used in minimum operating supply voltage from 2.5V, and in wide ambient temperature range from -40oC to +105oC. Available in ultra-small 8 pins TSSOP packages. Features  Low voltage single supply operation  Low input offset voltage  Low input bias current  Wide output voltage range  Supply current (per channel)  High slew rate ( ) reference value of design VDD = 2.5V to 5.5V VIO ≤ ±6.0mV I