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TPS55160Q1-EVM - TPS55160Q1-EVM

TPS55160Q1-EVM

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Texas Instruments

EVAL BOARD FOR TPS55160-Q1

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TPS55160Q1-EVM - TPS55160Q1-EVM

TPS55160Q1-EVM

Active
Texas Instruments

EVAL BOARD FOR TPS55160-Q1

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Technical Specifications

Parameters and characteristics commom to parts in this series

SpecificationTPS55160Q1-EVMTPS55160 Series
Board TypeFully PopulatedFully Populated
Current - Output1 A1 A
Frequency - Switching2 MHz2 MHz
Function-Step-Up/Step-Down
Grade-Automotive
Main PurposeStep Up or Down, DC/DCStep Up or Down, DC/DC
Mounting Type-Surface Mount
Number of Outputs-1
Operating Temperature--40 °C
Operating Temperature-125 °C
Output Configuration-Positive
Output Type-Adjustable
Outputs and TypeNon-IsolatedNon-Isolated
Outputs and Type11
Package / Case-0.173 in
Package / Case-20-PowerTSSOP
Package / Case-4.4 mm
Qualification-AEC-Q100
Regulator TopologyBuck-BoostBuck-Boost
Supplied ContentsBoard(s)Board(s)
Supplier Device Package-20-HTSSOP
Synchronous Rectifier-True
Topology-Buck-Boost
Utilized IC / PartTPS55160-Q1TPS55160-Q1
Voltage - Input (Max)-36 V
Voltage - Input (Min)-2 V
Voltage - Output8 V8 V
Voltage - Output (Max)-9 V
Voltage - Output (Min/Fixed)-5.7 V

Pricing

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

TPS55160 Series

3.6-V to 36-V, 1-A output, 2-MHz, synchronous step-up and step-down converter

PartVoltage - Output (Min/Fixed) [Min]Current - OutputMounting TypeSupplier Device PackageTopologyQualificationSynchronous RectifierVoltage - Input (Min) [Min]Output TypeFunctionOutput ConfigurationPackage / Case [custom]Package / CasePackage / Case [custom]Operating Temperature [Min]Operating Temperature [Max]Frequency - SwitchingNumber of OutputsGradeVoltage - Output (Max) [Max]Voltage - Input (Max) [Max]Outputs and TypeOutputs and TypeSupplied ContentsBoard TypeVoltage - OutputUtilized IC / PartMain PurposeRegulator Topology
Texas Instruments
TPS55160QPWPTQ1
The TPS5516x-Q1 family of devices is a high-voltage synchronous buck-boost DC-DC converter. The device provides a stable power-supply output from a wide varying input-power supply such as an automotive car battery. The buck-boost overlap control ensures automatic transition between step-down and step-up mode with optimal efficiency. The TPS55165-Q1 output voltage can be set to a fixed level of 5 V or 12 V. The TPS55160-Q1 and TPS55162-Q1 devices have a configurable output voltage ranging from 5.7 V to 9 V that is set by an external resistive divider. Output currents can be as high as 1 A for a normal car battery voltage, and can be maintained at 0.4 A for lower input voltages, such as those for common battery-cranking profiles. The buck-boost converter is based on a fixed-frequency, pulse-width-modulation (PWM) control circuit using synchronous rectification to obtain maximum efficiency. The switching frequency is set to 2 MHz (typical) which allows for the usage of a small inductor that uses less board space. The TPS5516x-Q1 family of devices is a high-voltage synchronous buck-boost DC-DC converter. The device provides a stable power-supply output from a wide varying input-power supply such as an automotive car battery. The buck-boost overlap control ensures automatic transition between step-down and step-up mode with optimal efficiency. The TPS55165-Q1 output voltage can be set to a fixed level of 5 V or 12 V. The TPS55160-Q1 and TPS55162-Q1 devices have a configurable output voltage ranging from 5.7 V to 9 V that is set by an external resistive divider. Output currents can be as high as 1 A for a normal car battery voltage, and can be maintained at 0.4 A for lower input voltages, such as those for common battery-cranking profiles. The buck-boost converter is based on a fixed-frequency, pulse-width-modulation (PWM) control circuit using synchronous rectification to obtain maximum efficiency. The switching frequency is set to 2 MHz (typical) which allows for the usage of a small inductor that uses less board space.
5.7 V
1 A
Surface Mount
20-HTSSOP
Buck-Boost
AEC-Q100
2 V
Adjustable
Step-Up/Step-Down
Positive
0.173 in
20-PowerTSSOP
4.4 mm
-40 °C
125 °C
2 MHz
1
Automotive
9 V
36 V
Texas Instruments
TPS55160Q1-EVM
TPS55160-Q1 - DC/DC, Step Up or Down 1, Non-Isolated Outputs Evaluation Board
1 A
2 MHz
Non-Isolated
1
Board(s)
Fully Populated
8 V
TPS55160-Q1
DC/DC, Step Up or Down
Buck-Boost
Texas Instruments
TPS55160QPWPRQ1
The TPS5516x-Q1 family of devices is a high-voltage synchronous buck-boost DC-DC converter. The device provides a stable power-supply output from a wide varying input-power supply such as an automotive car battery. The buck-boost overlap control ensures automatic transition between step-down and step-up mode with optimal efficiency. The TPS55165-Q1 output voltage can be set to a fixed level of 5 V or 12 V. The TPS55160-Q1 and TPS55162-Q1 devices have a configurable output voltage ranging from 5.7 V to 9 V that is set by an external resistive divider. Output currents can be as high as 1 A for a normal car battery voltage, and can be maintained at 0.4 A for lower input voltages, such as those for common battery-cranking profiles. The buck-boost converter is based on a fixed-frequency, pulse-width-modulation (PWM) control circuit using synchronous rectification to obtain maximum efficiency. The switching frequency is set to 2 MHz (typical) which allows for the usage of a small inductor that uses less board space. The TPS5516x-Q1 family of devices is a high-voltage synchronous buck-boost DC-DC converter. The device provides a stable power-supply output from a wide varying input-power supply such as an automotive car battery. The buck-boost overlap control ensures automatic transition between step-down and step-up mode with optimal efficiency. The TPS55165-Q1 output voltage can be set to a fixed level of 5 V or 12 V. The TPS55160-Q1 and TPS55162-Q1 devices have a configurable output voltage ranging from 5.7 V to 9 V that is set by an external resistive divider. Output currents can be as high as 1 A for a normal car battery voltage, and can be maintained at 0.4 A for lower input voltages, such as those for common battery-cranking profiles. The buck-boost converter is based on a fixed-frequency, pulse-width-modulation (PWM) control circuit using synchronous rectification to obtain maximum efficiency. The switching frequency is set to 2 MHz (typical) which allows for the usage of a small inductor that uses less board space.
5.7 V
1 A
Surface Mount
20-HTSSOP
Buck-Boost
AEC-Q100
2 V
Adjustable
Step-Up/Step-Down
Positive
0.173 in
20-PowerTSSOP
4.4 mm
-40 °C
125 °C
2 MHz
1
Automotive
9 V
36 V

Description

General part information

TPS55160 Series

The TPS5516x-Q1 family of devices is a high-voltage synchronous buck-boost DC-DC converter. The device provides a stable power-supply output from a wide varying input-power supply such as an automotive car battery. The buck-boost overlap control ensures automatic transition between step-down and step-up mode with optimal efficiency. The TPS55165-Q1 output voltage can be set to a fixed level of 5 V or 12 V. The TPS55160-Q1 and TPS55162-Q1 devices have a configurable output voltage ranging from 5.7 V to 9 V that is set by an external resistive divider.

Output currents can be as high as 1 A for a normal car battery voltage, and can be maintained at 0.4 A for lower input voltages, such as those for common battery-cranking profiles. The buck-boost converter is based on a fixed-frequency, pulse-width-modulation (PWM) control circuit using synchronous rectification to obtain maximum efficiency. The switching frequency is set to 2 MHz (typical) which allows for the usage of a small inductor that uses less board space.

The TPS5516x-Q1 family of devices is a high-voltage synchronous buck-boost DC-DC converter. The device provides a stable power-supply output from a wide varying input-power supply such as an automotive car battery. The buck-boost overlap control ensures automatic transition between step-down and step-up mode with optimal efficiency. The TPS55165-Q1 output voltage can be set to a fixed level of 5 V or 12 V. The TPS55160-Q1 and TPS55162-Q1 devices have a configurable output voltage ranging from 5.7 V to 9 V that is set by an external resistive divider.

Documents

Technical documentation and resources