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AMS1117L - 1A Adiustable / Fixed Low Dropout Linear Requlator

Download the AMS1117L datasheet PDF. This datasheet also covers the AMS1117 variant, as both devices belong to the same 1a adiustable / fixed low dropout linear requlator family and are provided as variant models within a single manufacturer datasheet.

Features

  • The AMS1117 is a series of low dropout voltage.
  • Low Dropout Voltage regulators which can provide up to 1A of output.
  • Load regulation:0.5% Max current. The AMS1117 is available in six fixed.
  • Optimized for Low Voltage voltage, 1.2, 1.8, 2.5, 3.3 and 5.0V. Additionally it is.
  • On-chip thermal limiting. also available in adjustable version. On chip.
  • Maximum Input Voltage : 30V precision trimming adjusts the reference/ output.
  • Adjustable Output Voltage or Fixed 1.2V.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (AMS1117-HOTCHIP.pdf) that lists specifications for multiple related part numbers.

Datasheet Details

Part number AMS1117L
Manufacturer HOTCHIP
File Size 874.02 KB
Description 1A Adiustable / Fixed Low Dropout Linear Requlator
Datasheet download datasheet AMS1117L Datasheet

Full PDF Text Transcription (Reference)

The following content is an automatically extracted verbatim text from the original manufacturer datasheet and is provided for reference purposes only.

View original datasheet text
AMS1117(L) 1A Adiustable / Fixed Low Dropout Linear Requlator Description Features The AMS1117 is a series of low dropout voltage  Low Dropout Voltage regulators which can provide up to 1A of output  Load regulation:0.5% Max current. The AMS1117 is available in six fixed  Optimized for Low Voltage voltage, 1.2, 1.8, 2.5, 3.3 and 5.0V. Additionally it is  On-chip thermal limiting. also available in adjustable version. On chip  Maximum Input Voltage : 30V precision trimming adjusts the reference/ output  Adjustable Output Voltage or Fixed 1.2V, 1.8V, voltage to within ± 2%. On-chip thermal limiting provides protection against any combination of overload and ambient temperatures that would create excessive junction temperatures.
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