Product details

Number of channels 1 Vin (min) (V) 1.4 Vin (max) (V) 5.5 Imax (A) 2 Ron (typ) (mΩ) 61 Shutdown current (ISD) (typ) (µA) 10 Quiescent current (Iq) (typ) (µA) 2 Soft start Fixed Rise Time Current limit type None Features Quick output discharge, Reverse current protection, Under voltage lock out Rating Catalog Operating temperature range (°C) -40 to 85 FET Internal Device type Load switches Function Inrush current control, Reverse current blocking
Number of channels 1 Vin (min) (V) 1.4 Vin (max) (V) 5.5 Imax (A) 2 Ron (typ) (mΩ) 61 Shutdown current (ISD) (typ) (µA) 10 Quiescent current (Iq) (typ) (µA) 2 Soft start Fixed Rise Time Current limit type None Features Quick output discharge, Reverse current protection, Under voltage lock out Rating Catalog Operating temperature range (°C) -40 to 85 FET Internal Device type Load switches Function Inrush current control, Reverse current blocking
DSBGA (YZV) 4 1.5625 mm² 1.25 x 1.25
  • Integrated Single Load Switch
  • Four Pin Wafer-Chip-Scale Package (Nom)
    • 0.9 mm × 0.9 mm, 0.5-mm Pitch, 0.5-mm Height (YZV)
  • Input Voltage Range: 1.4 V to 5.5 V
  • Low ON-Resistance
    • rON = 60 mΩ at VIN = 5 V
    • rON = 61 mΩ at VIN = 3.3 V
    • rON = 74 mΩ at VIN = 1.8 V
    • rON = 84 mΩ at VIN = 1.5 V
  • 2-A Maximum Continuous Switch Current
  • Low Threshold Control Input
  • Controlled Slew-rate
  • Under-Voltage Lock Out
  • Full-Time Reverse Current Protection
  • Quick Output Discharge Transistor (TPS22913B/C Devices)
  • Integrated Single Load Switch
  • Four Pin Wafer-Chip-Scale Package (Nom)
    • 0.9 mm × 0.9 mm, 0.5-mm Pitch, 0.5-mm Height (YZV)
  • Input Voltage Range: 1.4 V to 5.5 V
  • Low ON-Resistance
    • rON = 60 mΩ at VIN = 5 V
    • rON = 61 mΩ at VIN = 3.3 V
    • rON = 74 mΩ at VIN = 1.8 V
    • rON = 84 mΩ at VIN = 1.5 V
  • 2-A Maximum Continuous Switch Current
  • Low Threshold Control Input
  • Controlled Slew-rate
  • Under-Voltage Lock Out
  • Full-Time Reverse Current Protection
  • Quick Output Discharge Transistor (TPS22913B/C Devices)

The TPS22910A, TPS22912C, and TPS22913B/C are small, low rON load switches with controlled turn on. The device contains a P-channel MOSFET that can operate over an input voltage range of 1.4 V to 5.5 V. The switch is controlled by an on/off input (ON), which is capable of interfacing directly with low-voltage GPIO control signals.

The TPS22910A, TPS22912C, and TPS22913B/C devices provide reverse current protection in ON and OFF states. An internal reverse voltage comparator disables the power-switch when the output voltage (VOUT) is driven higher than the input voltage (VIN), by VRCP, to quickly (10 µs typ) stop the flow of current towards the input side of the switch. Reverse current protection is always active, even when the power-switch is disabled. Additionally, under-voltage lockout (UVLO) protection turns the switch off if the input voltage is too low.

The TPS22913B/C contains a 150-Ω on-chip load resistor for quick output discharge when the switch is turned off.

This family of devices have various slew rate options to avoid inrush current (see for details), are available in an ultra-small, space-saving 4-pin WCSP packages, and are characterized for operation over the free-air temperature range of –40°C to 85°C.

The TPS22910A, TPS22912C, and TPS22913B/C are small, low rON load switches with controlled turn on. The device contains a P-channel MOSFET that can operate over an input voltage range of 1.4 V to 5.5 V. The switch is controlled by an on/off input (ON), which is capable of interfacing directly with low-voltage GPIO control signals.

The TPS22910A, TPS22912C, and TPS22913B/C devices provide reverse current protection in ON and OFF states. An internal reverse voltage comparator disables the power-switch when the output voltage (VOUT) is driven higher than the input voltage (VIN), by VRCP, to quickly (10 µs typ) stop the flow of current towards the input side of the switch. Reverse current protection is always active, even when the power-switch is disabled. Additionally, under-voltage lockout (UVLO) protection turns the switch off if the input voltage is too low.

The TPS22913B/C contains a 150-Ω on-chip load resistor for quick output discharge when the switch is turned off.

This family of devices have various slew rate options to avoid inrush current (see for details), are available in an ultra-small, space-saving 4-pin WCSP packages, and are characterized for operation over the free-air temperature range of –40°C to 85°C.

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Technical documentation

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Type Title Date
* Data sheet TPS2291xx Ultra-small, Low On Resistance Load Switch With Controlled Turn-on datasheet (Rev. F) PDF | HTML 07 Jan 2015
Technical article How innovative packaging can drive higher power density in load switches 23 Feb 2022
E-book 11 Ways to Protect Your Power Path 03 Jul 2019
More literature Load Switch Thermal Considerations (Rev. A) 11 Oct 2018
More literature Basics of Load Switches (Rev. A) 05 Sep 2018
Selection guide Power Management Guide 2018 (Rev. R) 25 Jun 2018
Technical article How can a load switch extend your device’s battery life? 20 Mar 2018
Technical article How and why you should use load switches for power sequencing 06 Feb 2018
Technical article How to use load switches and eFuses in your set-top box design 23 Nov 2017
More literature Selecting a Load Switch to Replace a Discrete Solution 30 Apr 2017
More literature Timing of Load Switches 27 Apr 2017
More literature Reverse Current Protection in Load Switches 19 May 2016
More literature Managing Inrush Current (Rev. A) 28 May 2015
EVM User's guide TPS22910-13 EVM User's Guide (Rev. A) 09 Jan 2012

Design & development

For additional terms or required resources, click any title below to view the detail page where available.

Evaluation board

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Development kit

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Development kit

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Simulation model

TPS22913B Unencrytped PSpice Transient Model Package (Rev. A)

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Simulation model

TPS22913C Unencrypted PSpice Transient Model Package (Rev. A)

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Schematic

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SPRR233.PDF (1366 KB)
Simulation tool

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Reference designs

TIDEP0081 — Wideband Receiver Design Using 66AK2L06 JESD204B Attach to ADC32RF80 Reference Design

For wideband receiver system developers currently using FPGA or ASIC to connect High Speed data converters to a baseband processor, who need faster time to market with increased performance and significant reduction in cost, power, and size. This reference design includes the first widely available (...)
Design guide: PDF
Schematic: PDF
Package Pins Download
DSBGA (YZV) 4 View options

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