TPS60110 Regulated Charge-Pump Step-Up Converter

Texas Instruments Power_Management — specifications, applications, sourcing support and RFQ.

TPS60110 Regulated Charge-Pump Step-Up Converter

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Part Number
TPS60110
Manufacturer
Texas Instruments
Package
20-pin TSSOP PowerPAD (PWP)
Category
Power Management
Product Type
LDO Regulator

Quick Sourcing Note

TPS60110 from Texas Instruments is a Power_Management regulated charge-pump step-up converter in a 20-pin TSSOP PowerPAD (PWP) package. It provides a regulated 5 V output with ±4% accuracy over specified operating ranges and supports up to 300 mA output current from a 3-V input. The device operates from a recommended 2.7 to 5.4 V input range, uses a 300 kHz internal clock, and can operate with external synchronization. Key parameters include less than 10 mVpp output ripple, up to 90% efficiency, 60 µA quiescent current in pulse-skip/light-load operation, and 0.05 µA shutdown current when ENABLE is low.

Specifications

TypeDescription
Part NumberTPS60110
ManufacturerTexas Instruments
Product TypeLDO Regulator
CategoryPower Management
Package / Case20-pin TSSOP PowerPAD (PWP)
Output Voltage5 V ±4% | Condition: Regulated output
Input Voltage Range2.7 to 5.4 V | Condition: Recommended operating range
Maximum Output Current300 mA | Condition: From 3-V input
Output Voltage RippleLess than 10 mVpp | Condition: Low-noise operation
Quiescent Supply Current60 µA | Condition: Pulse-skip mode / light-load operation
Shutdown Current0.05 µA | Condition: ENABLE logic low
EfficiencyUp to 90% | Condition: Typical operation
Switching Frequency300 kHz | Condition: Internal clock operation
External Components Required4 capacitors | Condition: Complete dc/dc converter implementation
Input Voltage Absolute Maximum-0.3 to 5.5 V | Condition: IN, OUT, ENABLE, SKIP, COM, CLK, FB, SYNC
C1+/C2+ Differential Input Voltage Absolute Maximum-0.3 V to VO + 0.3 V | Condition: C1+, C2+ to GND
C1-/C2- Differential Input Voltage Absolute Maximum-0.3 V to VIN + 0.3 V | Condition: C1-, C2- to GND
Continuous Output Current Absolute Maximum400 mA | Condition: Absolute maximum rating
Storage Temperature Range-55 to 150 °C | Condition: Absolute maximum rating
Lead Temperature260 °C | Condition: 1.6 mm from case for 10 s
Maximum Junction Temperature150 °C | Condition: Absolute maximum rating
Package Power Rating3 W | Condition: PWP package, TA ≤ 25°C
Package Derating Factor30.3 mW/°C | Condition: PWP package, above TA = 25°C
Package Power Rating1.66 W | Condition: PWP package, TA = 70°C
Package Power Rating1.21 W | Condition: PWP package, TA = 85°C
Thermal Resistance Junction-to-Ambient33 °C/W | Condition: 20-pin TSSOP PowerPAD, soldered PowerPAD using thermal vias
Input Voltagemin 2.7 V, max 5.4 V | Condition: Electrical characteristics
Maximum Output Current300 mA | Condition: Electrical characteristics
Output Voltagemin 4.8 V, typ 5 V, max 5.2 V | Condition: 2.7 V < VIN < 3 V, 0 < IO < 150 mA, VO(start-up)=5 V, TC=25°C
Output Voltagemin 4.8 V, typ 5 V, max 5.2 V | Condition: 3 V < VIN < 5 V, 0 < IO < 300 mA
Output Voltagemin 4.8 V, typ 5 V, max 5.25 V | Condition: 5 V < VIN < 5.4 V, 0 < IO < 300 mA
Output Voltage Ripple10 mVpp | Condition: IO=300 mA, V(SKIP)=0 V, CO=22 µF + 10 µF X5R ceramic
Output Leakage Currentmax 1 µA | Condition: VIN=3.6 V, V(ENABLE)=0 V
Quiescent Currenttyp 60 µA, max 90 µA | Condition: No-load input current, V(SKIP)=VIN=3.6 V
Quiescent Currenttyp 2.8 mA | Condition: No-load input current, V(SKIP)=0 V, VIN=3.6 V
Shutdown Supply Currenttyp 0.05 µA, max 1 µA | Condition: VIN=3.6 V, V(ENABLE)=0 V
Internal Switching Frequencymin 200 kHz, typ 300 kHz, max 400 kHz | Condition: VIN=3.6 V
External Clock Frequencymin 400 kHz, typ 600 kHz, max 800 kHz | Condition: V(SYNC)=VIN, VIN=2.7 V to 5.4 V
External Clock Duty Cycle20% to 80% | Condition: V(SYNC)=VIN, VIN=2.7 V to 5.4 V
Efficiency80% | Condition: IO=150 mA
Logic Input Low Voltagemax 0.3 × VIN | Condition: ENABLE, SKIP, COM, CLK, SYNC; VIN=2.7 V
Logic Input High Voltagemin 0.7 × VIN | Condition: ENABLE, SKIP, COM, CLK, SYNC; VIN=5.4 V
Input Leakage Currenttyp 0.01 µA, max 0.1 µA | Condition: ENABLE, SKIP, COM, CLK, SYNC inputs at GND or VIN
Output Load Regulation0.002 %/mA | Condition: VO=5 V, 1 mA < IO < 300 mA, TC=25°C
Output Line Regulation0.6 %/V | Condition: 3 V < VIN < 5 V, VO=5 V, IO=150 mA, TC=25°C
Short-Circuit Current150 mA | Condition: VIN=3.6 V, VO=0 V, TC=25°C
Input Capacitor15 µF | Condition: Typical operating circuit and electrical characteristics test condition
Flying Capacitors2.2 µF each | Condition: C1F and C2F; use ceramic X5R or X7R dielectric
Output Capacitor33 µF | Condition: Typical operating circuit and electrical characteristics test condition
Datasheet Statusrequest_only

Product Overview

The TPS60110 is a Texas Instruments regulated charge-pump step-up converter for Power_Management designs requiring a regulated 5 V rail from a 2.7 to 5.4 V input. It is specified for up to 300 mA output current from a 3-V input, with 5 V ±4% regulation and low-noise output ripple below 10 mVpp under the listed operating condition.

The converter uses an internal 300 kHz clock, with an electrical-characteristics range of 200 kHz to 400 kHz at VIN = 3.6 V. It also supports an external clock from 400 kHz to 800 kHz with a 20% to 80% duty cycle when synchronized. Light-load pulse-skip operation is specified with 60 µA typical quiescent current.

The device is supplied in a 20-pin TSSOP PowerPAD (PWP) package. Thermal and assembly data include 33 °C/W junction-to-ambient resistance with the PowerPAD soldered using thermal vias, 3 W package power rating at TA ≤ 25°C, and 260°C lead temperature for 10 seconds at 1.6 mm from the case. A complete dc/dc converter implementation requires four capacitors.

Key Features

  • Regulated 5 V output with ±4% accuracy
  • 2.7 V to 5.4 V recommended input range
  • 300 mA output current from 3 V input
  • Less than 10 mVpp low-noise output ripple
  • 60 µA pulse-skip light-load quiescent current
  • 0.05 µA shutdown current with ENABLE low
  • Up to 90% typical operating efficiency
  • 300 kHz internal switching clock operation
  • External synchronization from 400 kHz to 800 kHz
  • Complete converter implementation uses four capacitors
  • 20-pin TSSOP PowerPAD package with thermal vias

Typical Applications

  • 5 V rails from 3 V inputs
  • Battery-powered power conversion
  • Low-ripple regulated supply rails
  • Light-load pulse-skip power systems
  • Externally synchronized converter designs
  • Compact four-capacitor dc/dc converters
  • 300 mA regulated output supplies

Procurement Notes

When requesting a quote for TPS60110, buyers should confirm the manufacturer, package or case, required quantity, target date code, compliance documents, packing method, destination country and expected delivery schedule.

If alternatives are acceptable, buyers should share the approved vendor list, required electrical or optical limits, package constraints and qualification requirements. Any alternative part should be reviewed by the buyer's engineering team before production use.

For power IC and power device sourcing, voltage rating, current rating, power dissipation, package thermal performance, protection features, qualification grade and application conditions should be reviewed before approval.

FAQ

What output voltage does the TPS60110 regulate?

The TPS60110 regulates a 5 V output with ±4% accuracy. Electrical characteristics list 4.8 V minimum and 5 V typical output, with maximum values of 5.2 V or 5.25 V depending on the VIN operating range.

What input voltage range is specified for TPS60110 operation?

The recommended operating input range is 2.7 V to 5.4 V. The electrical characteristics also list VIN as minimum 2.7 V and maximum 5.4 V for operation.

How much output current can the TPS60110 provide?

The device supports 300 mA maximum output current from a 3 V input, and the electrical characteristics also specify 300 mA maximum output current. Continuous output current absolute maximum is listed as 400 mA.

What external components are required for the converter?

The datasheet facts specify four capacitors for a complete dc/dc converter implementation. The typical circuit data lists a 15 µF input capacitor, two 2.2 µF flying capacitors, and a 33 µF output capacitor.

Technical Review & Sourcing Note

Prepared by LDeepAI Component Sourcing Team. Reviewed for RFQ, documentation and alternative sourcing use. Last updated: July 25, 2026.

This page is based on manufacturer datasheet information and LDeepAI sourcing review. Specifications should be verified against the official manufacturer datasheet before final procurement or design approval. Final electrical, optical and reliability approval should be confirmed by the buyer's engineering team.

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