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TPS56339EVM - TPS56339EVM

TPS56339EVM

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Texas Instruments

EVAL BOARD FOR TPS56339

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TPS56339EVM - TPS56339EVM

TPS56339EVM

Active
Texas Instruments

EVAL BOARD FOR TPS56339

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DocumentsDatasheet

Technical Specifications

Parameters and characteristics commom to parts in this series

SpecificationTPS56339EVMTPS56339 Series
ContentsBoard(s)Board(s)
Current - Output3 A3 A
Frequency - Switching500 kHz500 kHz
Function-Step-Down
Main PurposeDC/DC, Step DownDC/DC, Step Down
Mounting Type-Surface Mount
Number of Outputs-1
Operating Temperature-125 ¯C
Operating Temperature--40 °C
Output Configuration-Positive
Output Type-Adjustable
Outputs and Type1 Non-Isolated Output1 Non-Isolated Output
Package / Case-TSOT-23-6, SOT-23-6 Thin
Supplier Device Package-SOT-23-THIN
Synchronous Rectifier-True
Topology-Buck
Utilized IC / PartTPS56339TPS56339
Voltage - Input (Max)-24 V
Voltage - Input (Min)-4.5 V
Voltage - Input [Max]24 V24 V
Voltage - Input [Min]5.5 V5.5 V
Voltage - Output5 V5 V
Voltage - Output (Max)-16 V
Voltage - Output (Min/Fixed)-0.8 V

Pricing

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

TPS56339 Series

4.5-V to 24-V input, 3-A output synchronous buck converter

PartTopologyFunctionOutput ConfigurationOutput TypeVoltage - Output (Min/Fixed)Synchronous RectifierVoltage - Input (Min) [Min]Mounting TypeOperating Temperature [Max]Operating Temperature [Min]Voltage - Output (Max) [Max]Current - OutputSupplier Device PackageNumber of OutputsPackage / CaseVoltage - Input (Max) [Max]Frequency - SwitchingVoltage - OutputContentsMain PurposeUtilized IC / PartVoltage - Input [Min]Voltage - Input [Max]Outputs and Type
Texas Instruments
TPS56339DDCR
The TPS56339 is a 4.5-V to 24-V input voltage range, 3-A synchronous buck converter. The device includes two integrated switching MOSFETs, internal loop compensation and 5-ms internal soft-start to reduce component count. By employing the SOT-23 (6) package, the device achieves the high power density and offers small footprint on PCB. The TPS56339 employs Advanced Emulated Current Mode (AECM) control that can get fast transient response with fixed frequency. The internal adaptive loop adjustment eliminates the need for external compensation over a wide voltage output range. Cycle-by-cycle current limit on the high-side protects the device in current overload conditions and is enhanced by a low-side sourcing current limit which prevents current runaway. Hiccup protection will be triggered under undervoltage and thermal shutdown protections. The TPS56339 is a 4.5-V to 24-V input voltage range, 3-A synchronous buck converter. The device includes two integrated switching MOSFETs, internal loop compensation and 5-ms internal soft-start to reduce component count. By employing the SOT-23 (6) package, the device achieves the high power density and offers small footprint on PCB. The TPS56339 employs Advanced Emulated Current Mode (AECM) control that can get fast transient response with fixed frequency. The internal adaptive loop adjustment eliminates the need for external compensation over a wide voltage output range. Cycle-by-cycle current limit on the high-side protects the device in current overload conditions and is enhanced by a low-side sourcing current limit which prevents current runaway. Hiccup protection will be triggered under undervoltage and thermal shutdown protections.
Buck
Step-Down
Positive
Adjustable
0.8 V
4.5 V
Surface Mount
125 ¯C
-40 °C
16 V
3 A
SOT-23-THIN
1
SOT-23-6 Thin, TSOT-23-6
24 V
500 kHz
Texas Instruments
TPS56339DDCT
The TPS56339 is a 4.5-V to 24-V input voltage range, 3-A synchronous buck converter. The device includes two integrated switching MOSFETs, internal loop compensation and 5-ms internal soft-start to reduce component count. By employing the SOT-23 (6) package, the device achieves the high power density and offers small footprint on PCB. The TPS56339 employs Advanced Emulated Current Mode (AECM) control that can get fast transient response with fixed frequency. The internal adaptive loop adjustment eliminates the need for external compensation over a wide voltage output range. Cycle-by-cycle current limit on the high-side protects the device in current overload conditions and is enhanced by a low-side sourcing current limit which prevents current runaway. Hiccup protection will be triggered under undervoltage and thermal shutdown protections. The TPS56339 is a 4.5-V to 24-V input voltage range, 3-A synchronous buck converter. The device includes two integrated switching MOSFETs, internal loop compensation and 5-ms internal soft-start to reduce component count. By employing the SOT-23 (6) package, the device achieves the high power density and offers small footprint on PCB. The TPS56339 employs Advanced Emulated Current Mode (AECM) control that can get fast transient response with fixed frequency. The internal adaptive loop adjustment eliminates the need for external compensation over a wide voltage output range. Cycle-by-cycle current limit on the high-side protects the device in current overload conditions and is enhanced by a low-side sourcing current limit which prevents current runaway. Hiccup protection will be triggered under undervoltage and thermal shutdown protections.
Buck
Step-Down
Positive
Adjustable
0.8 V
4.5 V
Surface Mount
125 ¯C
-40 °C
16 V
3 A
SOT-23-THIN
1
SOT-23-6 Thin, TSOT-23-6
24 V
500 kHz
Texas Instruments
TPS56339EVM
TPS56339 - 1 Non-Isolated Output DC/DC, Step Down Evaluation Board
3 A
500 kHz
5 V
Board(s)
DC/DC, Step Down
TPS56339
5.5 V
24 V
1 Non-Isolated Output

Description

General part information

TPS56339 Series

The TPS56339 is a 4.5-V to 24-V input voltage range, 3-A synchronous buck converter. The device includes two integrated switching MOSFETs, internal loop compensation and 5-ms internal soft-start to reduce component count. By employing the SOT-23 (6) package, the device achieves the high power density and offers small footprint on PCB.

The TPS56339 employs Advanced Emulated Current Mode (AECM) control that can get fast transient response with fixed frequency. The internal adaptive loop adjustment eliminates the need for external compensation over a wide voltage output range.

Cycle-by-cycle current limit on the high-side protects the device in current overload conditions and is enhanced by a low-side sourcing current limit which prevents current runaway. Hiccup protection will be triggered under undervoltage and thermal shutdown protections.

Documents

Technical documentation and resources