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TPS2011A - POWER-DISTRIBUTION SWITCHES

Download the TPS2011A datasheet PDF. This datasheet also covers the TPS2010A variant, as both devices belong to the same power-distribution switches family and are provided as variant models within a single manufacturer datasheet.

General Description

The TPS201xA family of power distribution switches is intended for applications where heavy capacitive loads and short circuits are likely to be encountered.

These devices are 50-mΩ N-channel MOSFET high-side power switches.

Key Features

  • 1.
  • 33-mΩ (5-V Input) High-Side MOSFET Switch.
  • Short-Circuit and Thermal Protection.
  • Operating Range . . . 2.7 V to 5.5 V.
  • Logic-Level Enable Input.
  • Typical Rise Time. . . 6.1 ms.
  • Undervoltage Lockout.
  • Maximum Standby Supply Current. . . 10 μA.
  • No Drain-Source Back-Gate Diode.
  • Available in 8-pin SOIC and 14-Pin TSSOP Packages.
  • Ambient Temperature Range,.
  • 40°C to 85°C.
  • 2-kV Human-Body-Model,.

📥 Download Datasheet

Note: The manufacturer provides a single datasheet file (TPS2010A-etcTI.pdf) that lists specifications for multiple related part numbers.

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
www.ti.com TPS2010A, TPS2011A TPS2012A, TPS2013A SLVS189C – DECEMBER 1998 – REVISED SEPTEMBER 2007 POWER-DISTRIBUTION SWITCHES FEATURES 1 • 33-mΩ (5-V Input) High-Side MOSFET Switch • Short-Circuit and Thermal Protection • Operating Range . . . 2.7 V to 5.5 V • Logic-Level Enable Input • Typical Rise Time. . . 6.1 ms • Undervoltage Lockout • Maximum Standby Supply Current. . . 10 μA • No Drain-Source Back-Gate Diode • Available in 8-pin SOIC and 14-Pin TSSOP Packages • Ambient Temperature Range, –40°C to 85°C • 2-kV Human-Body-Model, 200-V Machine-Model ESD Protection DESCRIPTION The TPS201xA family of power distribution switches is intended for applications where heavy capacitive loads and short circuits are likely to be encountered.