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10-VSSOP
Integrated Circuits (ICs)

TPS61016DGSRG4

Unknown
Texas Instruments

IC REG BOOST 3.3V 1.07A 10VSSOP

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10-VSSOP
Integrated Circuits (ICs)

TPS61016DGSRG4

Unknown
Texas Instruments

IC REG BOOST 3.3V 1.07A 10VSSOP

Deep-Dive with AI

DocumentsDatasheet

Technical Specifications

Parameters and characteristics for this part

SpecificationTPS61016DGSRG4
Current - Output1.07 A
Frequency - Switching500 kHz
FunctionStep-Up
Mounting TypeSurface Mount
Number of Outputs1
Operating Temperature [Max]85 °C
Operating Temperature [Min]-40 °C
Output ConfigurationPositive
Output Type1.81 mOhm
Package / Case10-MSOP, 10-TFSOP
Package / Case [x]3 mm
Package / Case [x]0.118 in
Supplier Device Package10-VSSOP
Synchronous RectifierTrue
TopologyBoost
Voltage - Input (Max) [Max]3.3 V
Voltage - Input (Min) [Min]0.8 V
Voltage - Output (Min/Fixed)3.3 V

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyTape & Reel (TR) 2500$ 1.66
5000$ 1.60

Description

General part information

TPS61016 Series

The TPS6101x devices are boost converters intended for systems that are typically operated from a single- or dual-cell nickel-cadmium (NiCd), nickel-metal hydride (NiMH), or alkaline battery.

The converter output voltage can be adjusted from 1.5 V to a maximum of 3.3 V, by an external resistor divider or, is fixed internally on the chip. The devices provide an output current of 200 mA with a supply voltage of only 0.9 V. The converter starts up into a full load with a supply voltage of only 0.9 V and stays in operation with supply voltages down to 0.8 V.

The converter is based on a fixed frequency, current mode, pulse-width-modulation (PWM) controller that goes automatically into power save mode at light load. It uses a built-in synchronous rectifier, so, no external Schottky diode is required and the system efficiency is improved. The current through the switch is limited to a maximum value of 1300 mA. The converter can be disabled to minimize battery drain. During shutdown, the load is completely isolated from the battery.

Documents

Technical documentation and resources