TPS60501 Step-Down Charge Pump Converter

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

TPS60501 Step-Down Charge Pump Converter

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Part Number
TPS60501
Manufacturer
Texas Instruments
Package
DGS VSSOP-10, 3.05 mm x 4.98 mm
Category
Power Management
Product Type
LDO Regulator

Quick Sourcing Note

TPS60501 is a Texas Instruments Power_Management Power_IC and step-down charge pump converter supplied in a DGS VSSOP-10 package measuring 3.05 mm x 4.98 mm. The TPS60501 fixed-output version provides 3.3 V output and operates from a 1.8-6.5 V input range. Recommended output current reaches 250 mA, with condition-dependent limits from 50 mA to 250 mA across input and output voltage ranges. Key parameters include 40 uA typical quiescent current, 0.05 uA typical shutdown supply current, 600 kHz to 1200 kHz internal switching frequency, open-drain power-good output, and -40 to 125 °C operating junction temperature.

Specifications

TypeDescription
Part NumberTPS60501
ManufacturerTexas Instruments
Product TypeLDO Regulator
Component TypePower_IC
CategoryPower Management
Package / CaseDGS VSSOP-10, 3.05 mm x 4.98 mm
Output Voltage3.3 V; TPS60501 fixed-output version
Minimum Input Voltage for IOUT=150mAVIN > 4.3 V; TPS60501DGS
Input Voltage Range1.8-6.5 V; recommended operating condition at VIN
Maximum Output Current250 mA; recommended operating condition at OUT
Input Capacitor2.2 uF; recommended CIN
Flying Capacitors1 uF; recommended C1F and C2F
Output Capacitor4.7 uF; IOUT <= 150 mA
Output Capacitor22 uF; 150 mA < IOUT < 250 mA
Operating Junction Temperature-40 to 125 °C; recommended operating condition
Absolute Maximum VIN/EN/PG Voltage-0.3 to 7 V; voltage at VIN, EN, PG to GND
Absolute Maximum OUT/FB Voltage-0.3 to 3.6 V; voltage at OUT, FB to GND
Absolute Maximum Flying Capacitor Pin Voltage-0.3 to 7 V; voltage at C1F+, C1F-, C2F+, C2F- to GND
Absolute Maximum Output Current300 mA; output current at OUT
Maximum Junction Temperature150 °C; absolute maximum rating
Storage Temperature-55 to 150 °C; absolute maximum rating
ESD Rating HBM±2000 V; human body model per ANSI/ESDA/JEDEC JS-001
ESD Rating CDM±500 V; charged-device model per JEDEC JESD22-C101
Junction-to-Ambient Thermal Resistance157 °C/W; DGS VSSOP-10 package
Junction-to-Case Top Thermal Resistance53 °C/W; DGS VSSOP-10 package
Junction-to-Board Thermal Resistance76 °C/W; DGS VSSOP-10 package
Supply Voltage1.8-6.5 V; TA=-40°C to 85°C, VIN=5V, EN=GND unless otherwise noted
Maximum Output Current50 mA; VIN=1.8V to 2.7V, VIN - VOUT > 1V
Maximum Output Current150 mA; VIN >= 2.7V, VIN - VOUT > 1V
Maximum Output Current250 mA; VOUT=1.5V, VIN >= 3.1V
Maximum Output Current250 mA; VIN >= 3.7V, 1.8V <= VOUT <= 2.5V
Maximum Output Current250 mA; VOUT > 2.5V, VIN > VOUT + 1.2V
Output Voltage Tolerance-4% to 3%; TPS60501, IOUT=0mA to 150mA, COUT=47uF
Output Voltage Ripple30 mVpp; IOUT=150mA, VOUT=1.5V
Quiescent Current40 uA typ, 75 uA max; no-load input current, IOUT=0mA
Thermal Shutdown Temperature150 °C; electrical characteristics
Shutdown Supply Current0.05 uA typ, 0.5 uA max; EN=VIN
Internal Switching Frequency600 kHz min, 800 kHz typ, 1200 kHz max; internal oscillator
EN Input Low Voltage0.3 x VIN max; enable input low threshold
EN Input High Voltage0.7 x VIN min; enable input high threshold
EN Input Leakage Current0.01 uA typ, 0.1 uA max; EN=0V or VIN
Short-Circuit Current100 mA min, 300 mA typ; start-up current, VIN=6.5V, VOUT=0V
Output Current Limit500 mA; VOUT > 0.6V
No-Load Start-Up Time80 us; no-load condition
Power Good Trip VoltageVml - 2%; Vml is output voltage at maximum load current
Power Good Delay Time Rising100 us typ, 200 us max; VOUT ramping positive
Power Good Delay Time Falling50 us typ, 100 us max; VOUT ramping negative
Power Good Output Low Voltage0.3 V max; VOUT=0V, IPG=1mA
Power Good Leakage Current0.01 uA typ, 0.1 uA max; VOUT=3.3V, PG=3.3V
Power Good Output TypeOpen-drain; PG pin function
Enable LogicEN high disables, EN low enables; device-enable input
Power Good ThresholdApproximately 97% of nominal output voltage; PG goes high when OUT reaches threshold
Datasheet Statusrequest_only

Product Overview

The TPS60501 from Texas Instruments is a Power_Management Power_IC implemented as a step-down charge pump converter. The TPS60501 fixed-output version provides a 3.3 V output, with recommended VIN operation from 1.8 V to 6.5 V and a recommended OUT current up to 250 mA. For TPS60501DGS operation at IOUT = 150 mA, the extracted datasheet condition specifies VIN > 4.3 V.

The device uses recommended external capacitors of 2.2 uF at the input, 1 uF for each flying capacitor position C1F and C2F, and output capacitance selected by load current: 4.7 uF for IOUT <= 150 mA or 22 uF for 150 mA < IOUT < 250 mA. The package is DGS VSSOP-10, 3.05 mm x 4.98 mm, with junction-to-ambient thermal resistance of 157 °C/W.

Control and monitoring functions include enable logic where EN high disables and EN low enables the device, plus an open-drain PG output. PG goes high when OUT reaches approximately 97% of nominal output voltage, with specified rising and falling delay times.

Key Features

  • 3.3 V fixed-output TPS60501 version
  • 1.8-6.5 V recommended input voltage range
  • 250 mA recommended maximum output current at OUT
  • 40 uA typical no-load quiescent current
  • 0.05 uA typical shutdown supply current with EN=VIN
  • 600 kHz to 1200 kHz internal switching frequency
  • Open-drain power-good output with delay timing
  • EN high disables and EN low enables operation
  • Output voltage tolerance of -4% to 3%
  • 30 mVpp output ripple at 150 mA condition
  • -40 to 125 °C operating junction temperature
  • DGS VSSOP-10 package, 3.05 mm x 4.98 mm

Typical Applications

  • 3.3 V fixed-output power rails
  • Step-down charge pump conversion
  • Low-current no-load supply designs
  • Power rails requiring power-good indication
  • Enable-controlled power management circuits
  • VSSOP-10 compact board layouts
  • Systems using 1.8-6.5 V inputs

Procurement Notes

When requesting a quote for TPS60501, 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 TPS60501 fixed version provide?

The TPS60501 fixed-output version provides a 3.3 V output. The extracted datasheet facts also specify an output voltage tolerance of -4% to 3% for TPS60501 with IOUT from 0 mA to 150 mA and COUT of 47 uF.

What input voltage range is recommended for TPS60501?

The recommended operating input voltage range is 1.8 V to 6.5 V. A separate TPS60501DGS condition states that VIN must be greater than 4.3 V for IOUT = 150 mA.

What capacitors are recommended around the TPS60501?

The extracted facts specify 2.2 uF for CIN, 1 uF for each flying capacitor C1F and C2F, 4.7 uF output capacitance for IOUT <= 150 mA, and 22 uF for 150 mA < IOUT < 250 mA.

How does the TPS60501 enable input work?

The device-enable logic is active low. EN high disables the converter, while EN low enables it. The EN input thresholds are 0.3 x VIN maximum for low and 0.7 x VIN minimum for high.

What type of power-good output does TPS60501 use?

The PG pin function is open-drain. PG goes high when OUT reaches approximately 97% of the nominal output voltage, with specified delay times for positive and negative VOUT ramp conditions.

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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