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AZV832 - Low Voltage Rail-to-Rail Input/Output CMOS Operational Amplifiers

Download the AZV832 datasheet PDF (AZV831 included). The manufacturer datasheet provides complete specifications, pinout details, electrical characteristics, and typical applications for low voltage rail-to-rail input/output cmos operational amplifiers.

Description

The AZV831/AZV832 is single/dual channels rail-to-rail input and output amplifier, which provides a wide input common-mode voltage range and output voltage swing capability for maximum signal swings in low supply voltage applications.

Features

  • very low supply current dissipation 70µA per channel, which is well suitable for today's low-voltage and/or portable systems. The AZV831/AZV832 features optimal performance in very low bias current of 1pA, which enables the IC to be used for integrators, photodiode amplifiers, and piezoelectric sensors etc. The device has typical 0.5mV input offset voltage and provides 1MHz bandwidth. The AZV831/AZV832 adopts the latest packaging technology to meet the most d.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (AZV831-BCD.pdf) that lists specifications for multiple related part numbers.

Datasheet Details

Part number AZV832
Manufacturer BCD
File Size 758.00 KB
Description Low Voltage Rail-to-Rail Input/Output CMOS Operational Amplifiers
Datasheet download datasheet AZV832 Datasheet
Other Datasheets by BCD

Full PDF Text Transcription

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Preliminary Datasheet Single/Dual Low Bias Current, Low Voltage, Rail-to-Rail Input/Output CMOS Operational Amplifiers MOS OpAeZraVti8o3n1a/2l General Description The AZV831/AZV832 is single/dual channels rail-to-rail input and output amplifier, which provides a wide input common-mode voltage range and output voltage swing capability for maximum signal swings in low supply voltage applications. The device is fully specified to operate from 1.6V to 5.0V single supply, or ±0.8V and ±2.5V dual supply applications. It features very low supply current dissipation 70µA per channel, which is well suitable for today's low-voltage and/or portable systems.
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