Home Energiemanagement DC/DC-Schaltregler DC/DC-Wandler

TPS61088

AKTIV

Produktdetails

Rating Catalog Topology Boost Vin (max) (V) 12 Vin (min) (V) 2.7 Vout (max) (V) 12.6 Vout (min) (V) 4.5 Switch current limit (typ) (A) 11.9 Features Adjustable current limit, Enable, Light-load efficiency, Synchronous rectification Control mode Peak current mode Operating temperature range (°C) -40 to 125 Iq (typ) (A) 0.00011 Duty cycle (max) (%) 90
Rating Catalog Topology Boost Vin (max) (V) 12 Vin (min) (V) 2.7 Vout (max) (V) 12.6 Vout (min) (V) 4.5 Switch current limit (typ) (A) 11.9 Features Adjustable current limit, Enable, Light-load efficiency, Synchronous rectification Control mode Peak current mode Operating temperature range (°C) -40 to 125 Iq (typ) (A) 0.00011 Duty cycle (max) (%) 90
  • 2.7-V to 12-V input voltage range
  • 4.5-V to 12.6-V output voltage range
  • 10-A switch current
  • Up to 91% efficiency at VIN = 3.3 V, VOUT = 9 V, and IOUT = 3 A
  • Mode selection between PFM mode and forced PWM mode at light load
  • 1.0-µA current into the VIN pin during shutdown
  • Resistor-programmable switch peak current limit
  • Adjustable switching frequency: 200 kHz to 2.2 MHz
  • Programmable soft start
  • Output overvoltage protection at 13.2 V
  • Cycle-by-cycle overcurrent protection
  • Thermal shutdown
  • 4.50-mm × 3.50-mm 20-pin VQFN package
  • Create a custom design using the TPS61088 with the WEBENCH Power Designer
  • 2.7-V to 12-V input voltage range
  • 4.5-V to 12.6-V output voltage range
  • 10-A switch current
  • Up to 91% efficiency at VIN = 3.3 V, VOUT = 9 V, and IOUT = 3 A
  • Mode selection between PFM mode and forced PWM mode at light load
  • 1.0-µA current into the VIN pin during shutdown
  • Resistor-programmable switch peak current limit
  • Adjustable switching frequency: 200 kHz to 2.2 MHz
  • Programmable soft start
  • Output overvoltage protection at 13.2 V
  • Cycle-by-cycle overcurrent protection
  • Thermal shutdown
  • 4.50-mm × 3.50-mm 20-pin VQFN package
  • Create a custom design using the TPS61088 with the WEBENCH Power Designer

The TPS61088 is a high-power density, fully-integrated synchronous boost converter with a 11-mΩ power switch and a 13-mΩ rectifier switch to provide a high efficiency and small size solution in portable systems. The TPS61088 has a wide input voltage range from 2.7 V to 12 V to support applications with single-cell or two-cell Lithium batteries. The device has 10-A switch current capability and is capable of providing an output voltage up to 12.6 V.

The TPS61088 uses adaptive constant off-time peak current control topology to regulate the output voltage. In moderate to heavy load condition, the TPS61088 works in pulse width modulation (PWM) mode. In light load condition, the device has two operation modes selected by the MODE pin. One is the pulse frequency modulation (PFM) mode to improve the efficiency and another one is forced PWM mode to avoid application problems caused by low switching frequency. The switching frequency in PWM mode is adjustable, ranging from 200 kHz to 2.2 MHz by an external resistor. The TPS61088 also implements a programmable soft-start function and an adjustable switching peak current limit function. In addition, the device provides 13.2-V output overvoltage protection, cycle-by-cycle overcurrent protection, and thermal shutdown protection.

The TPS61088 is available in a 4.50-mm × 3.50-mm 20-pin VQFN package.

The TPS61088 is a high-power density, fully-integrated synchronous boost converter with a 11-mΩ power switch and a 13-mΩ rectifier switch to provide a high efficiency and small size solution in portable systems. The TPS61088 has a wide input voltage range from 2.7 V to 12 V to support applications with single-cell or two-cell Lithium batteries. The device has 10-A switch current capability and is capable of providing an output voltage up to 12.6 V.

The TPS61088 uses adaptive constant off-time peak current control topology to regulate the output voltage. In moderate to heavy load condition, the TPS61088 works in pulse width modulation (PWM) mode. In light load condition, the device has two operation modes selected by the MODE pin. One is the pulse frequency modulation (PFM) mode to improve the efficiency and another one is forced PWM mode to avoid application problems caused by low switching frequency. The switching frequency in PWM mode is adjustable, ranging from 200 kHz to 2.2 MHz by an external resistor. The TPS61088 also implements a programmable soft-start function and an adjustable switching peak current limit function. In addition, the device provides 13.2-V output overvoltage protection, cycle-by-cycle overcurrent protection, and thermal shutdown protection.

The TPS61088 is available in a 4.50-mm × 3.50-mm 20-pin VQFN package.

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Technische Dokumentation

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Top-Dokumentation Typ Titel Format-Optionen Neueste englische Version herunterladen Datum
* Datenblatt TPS61088 10-A Fully-Integrated Synchronous Boost Converter datasheet (Rev. D) PDF | HTML 12.08.2021
Anwendungshinweis QFN and SON PCB Attachment (Rev. C) PDF | HTML 06.12.2023
Anwendungshinweis Basic Calculation of a Boost Converter's Power Stage (Rev. D) PDF | HTML 28.10.2022
Anwendungshinweis Using External Bias to Broaden Input Voltage Range of Boost Converters PDF | HTML 08.11.2021
Anwendungshinweis Measuring and Understanding the Output Voltage Ripple of a Boost Converter PDF | HTML 22.02.2021
Anwendungshinweis Reducing Radiated EMI in TPS61088 Boost Converter (Rev. A) 04.11.2019
Anwendungshinweis Performing Accurate PFM Mode Efficiency Measurements (Rev. A) 11.12.2018
Anwendungshinweis Negative to Positive Conversion Made Simple with TPS61089 Boost Converter 11.10.2018
Anwendungshinweis Charging Supercapacitor Banks from USB Type C Port With Boost Converter 17.07.2018
Anwendungshinweis Output Short-Circuit Protection Solution for the TPS61088 22.09.2016
Anwendungshinweis Five Steps to a Good PCB Layout of the Boost Converter PDF | HTML 03.05.2016
Technischer Artikel When discharging a super capacitor, drain it all the way! PDF | HTML 17.09.2015
Anwendungshinweis AN-2020 Thermal Design By Insight, Not Hindsight (Rev. C) 23.04.2013
Analog Design Journal Design considerations for a resistive feedback divider in a DC/DC converter 26.04.2012
Anwendungshinweis Minimizing Ringing at the Switch Node of a Boost Converter 15.09.2006

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