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TPS40007EVM-001 - Predictive Gate Drive

TPS40007EVM-001

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Texas Instruments

EVAL MODULE FOR TPS40007-001

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TPS40007EVM-001 - Predictive Gate Drive

TPS40007EVM-001

Active
Texas Instruments

EVAL MODULE FOR TPS40007-001

Deep-Dive with AI

DocumentsDatasheet

Technical Specifications

Parameters and characteristics commom to parts in this series

SpecificationTPS40007EVM-001TPS40007 Series
Board TypeFully PopulatedFully Populated
Clock Sync-False
Control Features-Enable, Soft Start, Current Limit
Current - Output10 A10 A
Duty Cycle (Max)-94 %
Frequency - Switching300 kHz300 kHz
Function-Step-Down
Main PurposeDC/DC, Step DownDC/DC, Step Down
Mounting Type-Surface Mount
Number of Outputs-1
Operating Temperature-25 °C
Operating Temperature-85 °C
Operating Temperature--40 °C
Output Configuration-Positive
Output Phases-1
Output Type-Transistor Driver
Outputs and TypeNon-IsolatedNon-Isolated
Outputs and Type11
Package / Case-Die, 10-PowerTFSOP, 10-MSOP
Supplied ContentsBoard(s)Board(s)
Supplier Device Package-Die, 10-HVSSOP
Synchronous Rectifier-True
Topology-Buck
Utilized IC / PartTPS40007TPS40007
Voltage - Input [Max]5 V5 V
Voltage - Input [Min]3.3 V3.3 V
Voltage - Output2.5 V2.5 V
Voltage - Supply (Vcc/Vdd)-5.5 V
Voltage - Supply (Vcc/Vdd)-2.25 V

Pricing

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

TPS40007 Series

EVAL MODULE FOR TPS40007-001

PartVoltage - Input [Max]Voltage - Input [Min]Current - OutputVoltage - OutputSupplied ContentsUtilized IC / PartMain PurposeOutputs and TypeOutputs and TypeBoard TypeFrequency - SwitchingOutput TypeSynchronous RectifierOperating TemperaturePackage / CaseOutput ConfigurationClock SyncFunctionTopologySupplier Device PackageDuty Cycle (Max) [Max]Voltage - Supply (Vcc/Vdd) [Max]Voltage - Supply (Vcc/Vdd) [Min]Control FeaturesNumber of OutputsMounting TypeOperating Temperature [Max]Operating Temperature [Min]Output Phases
Texas Instruments
TPS40007EVM-001
TPS40007 Predictive Gate Drive™ DC/DC, Step Down 1, Non-Isolated Outputs Evaluation Board
5 V
3.3 V
10 A
2.5 V
Board(s)
TPS40007
DC/DC, Step Down
Non-Isolated
1
Fully Populated
300 kHz
Texas Instruments
TPS40007TDA3
Buck Regulator Positive Output Step-Down DC-DC Controller IC Die
Transistor Driver
25 °C
Die
Positive
Step-Down
Buck
Die
Texas Instruments
TPS40007DGQR
The TPS4000x are controllers for low-voltage, non-isolated synchronous buck regulators. These controllers drive an N-channel MOSFET for the primary buck switch, and an N-channel MOSFET for the synchronous rectifier switch, thereby achieving very high-efficiency power conversion. In addition, the device controls the delays from main switch off to rectifier turn-on and from rectifier turn-off to main switch turn-on in such a way as to minimize diode losses (both conduction and recovery) in the synchronous rectifier with TI’s proprietary Predictive Gate Drive™ technology. The reduction in these losses is significant and increases efficiency. For a given converter power level, smaller FETs can be used, or heat sinking can be reduced or even eliminated. The current-limit threshold is adjustable with a single resistor connected to the device. The TPS4000x controllers implement a closed-loop soft start function. Startup ramp time is set by a single external capacitor connected to the SS/SD pin. The SS/SD pin is also used for shutdown. The TPS4000x are controllers for low-voltage, non-isolated synchronous buck regulators. These controllers drive an N-channel MOSFET for the primary buck switch, and an N-channel MOSFET for the synchronous rectifier switch, thereby achieving very high-efficiency power conversion. In addition, the device controls the delays from main switch off to rectifier turn-on and from rectifier turn-off to main switch turn-on in such a way as to minimize diode losses (both conduction and recovery) in the synchronous rectifier with TI’s proprietary Predictive Gate Drive™ technology. The reduction in these losses is significant and increases efficiency. For a given converter power level, smaller FETs can be used, or heat sinking can be reduced or even eliminated. The current-limit threshold is adjustable with a single resistor connected to the device. The TPS4000x controllers implement a closed-loop soft start function. Startup ramp time is set by a single external capacitor connected to the SS/SD pin. The SS/SD pin is also used for shutdown.
300 kHz
Transistor Driver
10-MSOP, 10-PowerTFSOP
Positive
Step-Down
Buck
10-HVSSOP
94 %
5.5 V
2.25 V
Current Limit, Enable, Soft Start
1
Surface Mount
85 °C
-40 °C
1
Texas Instruments
TPS40007DGQ
The TPS4000x are controllers for low-voltage, non-isolated synchronous buck regulators. These controllers drive an N-channel MOSFET for the primary buck switch, and an N-channel MOSFET for the synchronous rectifier switch, thereby achieving very high-efficiency power conversion. In addition, the device controls the delays from main switch off to rectifier turn-on and from rectifier turn-off to main switch turn-on in such a way as to minimize diode losses (both conduction and recovery) in the synchronous rectifier with TI’s proprietary Predictive Gate Drive™ technology. The reduction in these losses is significant and increases efficiency. For a given converter power level, smaller FETs can be used, or heat sinking can be reduced or even eliminated. The current-limit threshold is adjustable with a single resistor connected to the device. The TPS4000x controllers implement a closed-loop soft start function. Startup ramp time is set by a single external capacitor connected to the SS/SD pin. The SS/SD pin is also used for shutdown. The TPS4000x are controllers for low-voltage, non-isolated synchronous buck regulators. These controllers drive an N-channel MOSFET for the primary buck switch, and an N-channel MOSFET for the synchronous rectifier switch, thereby achieving very high-efficiency power conversion. In addition, the device controls the delays from main switch off to rectifier turn-on and from rectifier turn-off to main switch turn-on in such a way as to minimize diode losses (both conduction and recovery) in the synchronous rectifier with TI’s proprietary Predictive Gate Drive™ technology. The reduction in these losses is significant and increases efficiency. For a given converter power level, smaller FETs can be used, or heat sinking can be reduced or even eliminated. The current-limit threshold is adjustable with a single resistor connected to the device. The TPS4000x controllers implement a closed-loop soft start function. Startup ramp time is set by a single external capacitor connected to the SS/SD pin. The SS/SD pin is also used for shutdown.
300 kHz
Transistor Driver
10-MSOP, 10-PowerTFSOP
Positive
Step-Down
Buck
10-HVSSOP
94 %
5.5 V
2.25 V
Current Limit, Enable, Soft Start
1
Surface Mount
85 °C
-40 °C
1
Texas Instruments
TPS40007TDA2
Buck Regulator Positive Output Step-Down DC-DC Controller IC Die
Transistor Driver
25 °C
Die
Positive
Step-Down
Buck
Die
Texas Instruments
TPS40007DGQRG4
Buck Regulator Positive Output Step-Down DC-DC Controller IC 10-HVSSOP
300 kHz
Transistor Driver
10-MSOP, 10-PowerTFSOP
Positive
Step-Down
Buck
10-HVSSOP
94 %
5.5 V
2.25 V
Current Limit, Enable, Soft Start
1
Surface Mount
85 °C
-40 °C
1

Description

General part information

TPS40007 Series

TPS40007 Predictive Gate Drive™ DC/DC, Step Down 1, Non-Isolated Outputs Evaluation Board

Documents

Technical documentation and resources