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TPS61256A
  • TPS61256A
  • TPS61256A

TPS61256A

ACTIVE

3.5-MHz, 5-V, 1-A load boost converter in 1.2-mm x 1.3-mm WCSP

Texas Instruments TPS61256A Product Info

1 April 2026 0

Parameters

Rating

Catalog

Topology

Boost

Vin (max) (V)

5.5

Vin (min) (V)

2.5

Vout (max) (V)

5

Vout (min) (V)

5

Switch current limit (typ) (A)

2.4

Features

Enable, Light-load efficiency, Load Disconnect, Synchronous rectification

Operating temperature range (°C)

-40 to 125

Iq (typ) (A)

0.000033

Duty cycle (max) (%)

90

Package

DSBGA (YFF)-9-1.96000000000000028000000000000001 mm² 1.4000000000000001 x 1.4000000000000001

Features

  • 93% Efficiency at 3.5MHz Operation
  • 36µA Quiescent Current
  • Wide VIN Range From 2.5V to 5.5V
  • IOUT ≥1000mA at VOUT = 5.0V, VIN ≥3.3V
  • ±2% Total DC Voltage Accuracy
  • Light-Load PFM Mode
  • True Load Disconnect During Shutdown
  • Thermal Shutdown and Overload Protection
  • Only Three Surface-Mount External Components Required
  • Total Solution Size <35mm2
  • 9-Pin NanoFreeTM (CSP) Packaging
  • 93% Efficiency at 3.5MHz Operation
  • 36µA Quiescent Current
  • Wide VIN Range From 2.5V to 5.5V
  • IOUT ≥1000mA at VOUT = 5.0V, VIN ≥3.3V
  • ±2% Total DC Voltage Accuracy
  • Light-Load PFM Mode
  • True Load Disconnect During Shutdown
  • Thermal Shutdown and Overload Protection
  • Only Three Surface-Mount External Components Required
  • Total Solution Size <35mm2
  • 9-Pin NanoFreeTM (CSP) Packaging

Description

The TPS61256A device provides a power supply solution for battery-powered portable applications. Intended for low-power applications, the TPS61256A supports up to 800-mA load current from a battery discharged as low as 2.7V and allows the use of low cost chip inductor and capacitors.

With a wide input voltage range of 2.5V to 5.5V, the device supports applications powered by Li-Ion batteries with extended voltage range and delivers a fixed 5.0V output voltage.

The TPS61256A operates at a regulated 3.5-MHz switching frequency and enters power-save mode operation at light load currents to maintain high efficiency over the entire load current range. The PFM mode extends the battery life by reducing the quiescent current to 36µA (typ) during light load operation. Input current in shutdown mode is less than 5µA, which maximizes battery life.

The TPS61256A offers a very small solution size due to minimum amount of external components. It allows the use of small inductors and input capacitors to achieve a small solution size. During shutdown, the load is completely disconnected from the battery.

These devices have limited built-in ESD protection. The leads should be shorted together or the device placed in conductive foam during storage or handling to prevent electrostatic damage to the MOS gates.

The TPS61256A device provides a power supply solution for battery-powered portable applications. Intended for low-power applications, the TPS61256A supports up to 800-mA load current from a battery discharged as low as 2.7V and allows the use of low cost chip inductor and capacitors.

With a wide input voltage range of 2.5V to 5.5V, the device supports applications powered by Li-Ion batteries with extended voltage range and delivers a fixed 5.0V output voltage.

The TPS61256A operates at a regulated 3.5-MHz switching frequency and enters power-save mode operation at light load currents to maintain high efficiency over the entire load current range. The PFM mode extends the battery life by reducing the quiescent current to 36µA (typ) during light load operation. Input current in shutdown mode is less than 5µA, which maximizes battery life.

The TPS61256A offers a very small solution size due to minimum amount of external components. It allows the use of small inductors and input capacitors to achieve a small solution size. During shutdown, the load is completely disconnected from the battery.

These devices have limited built-in ESD protection. The leads should be shorted together or the device placed in conductive foam during storage or handling to prevent electrostatic damage to the MOS gates.

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