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LM5156HEVM-FLY - LM5156HEVM-FLY

LM5156HEVM-FLY

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Texas Instruments

EVAL BOARD FOR LM5156H

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LM5156HEVM-FLY - LM5156HEVM-FLY

LM5156HEVM-FLY

Active
Texas Instruments

EVAL BOARD FOR LM5156H

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Technical Specifications

Parameters and characteristics commom to parts in this series

SpecificationLM5156HEVM-FLYLM5156 Series
Board TypeFully PopulatedFully Populated
Clock Sync-True, False
ContentsBoard(s)Board(s)
Control Features-Current Limit, Power Good, Soft Start, Frequency Control, Enable
Current - Output4 A4 A
Duty Cycle (Max)-93 %
Frequency - Switching250 kHz250 kHz
Frequency - Switching-100 kHz
Frequency - Switching-2.2 MHz
Function-Step-Up, Step-Up/Step-Down
Grade-Automotive
Main PurposeDC/DC, Step UpDC/DC, Step Up
Mounting Type-Surface Mount
Number of Outputs-1
Operating Temperature-125 - 150 °C
Operating Temperature--40 °C
Output Configuration-Positive
Output Phases-1
Output Type-Transistor Driver
Outputs and Type1 Isolated Output, Non-Isolated1 Isolated Output, Non-Isolated
Outputs and Type11
Package / Case-12-WFDFN Exposed Pad, 14-PowerTSSOP
Package / Case-4.4 mm
Package / Case-0.173 in
Qualification-AEC-Q100
Regulator TopologyBoostBoost
Supplied ContentsBoard(s)Board(s)
Supplier Device Package-12-WSON (3x2), 14-HTSSOP
Synchronous Rectifier-False
Topology-Flyback, SEPIC, Boost
Utilized IC / PartLM5156HLM5156H
Voltage - Input [Max]36 V36 V
Voltage - Input [Min]18 V18 V
Voltage - Output5 V5 V
Voltage - Supply (Vcc/Vdd)-60 V
Voltage - Supply (Vcc/Vdd)-2.97 - 3.5 V

Pricing

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

DistributorPackageQuantity$
DigikeyBox 1$ 70.80

LM5156 Series

2.2-MHz wide VIN nonsynchronous boost, flyback, & SEPIC controller with dual random spread spectrum

PartQualificationVoltage - Supply (Vcc/Vdd) [Max]Voltage - Supply (Vcc/Vdd) [Min]Package / CaseSynchronous RectifierControl FeaturesSupplier Device PackageOperating Temperature [Max]Operating Temperature [Min]Duty Cycle (Max) [Max]Frequency - Switching [Min]Frequency - Switching [Max]GradeFunctionTopologyMounting TypeOutput ConfigurationNumber of OutputsOutput TypeOutput PhasesClock SyncPackage / Case [y]Package / Case [x]Outputs and TypeOutputs and TypeRegulator TopologyMain PurposeCurrent - OutputSupplied ContentsVoltage - Input [Max]Voltage - Input [Min]ContentsFrequency - SwitchingUtilized IC / PartBoard TypeVoltage - Output
Texas Instruments
LM5156QDSSRQ1
AEC-Q100
60 V
3.5 V
12-WFDFN Exposed Pad
Current Limit, Enable, Frequency Control, Power Good, Soft Start
12-WSON (3x2)
150 °C
-40 °C
93 %
100 kHz
2.2 MHz
Automotive
Step-Up, Step-Up/Step-Down
Boost, Flyback, SEPIC
Surface Mount
Positive
1
Transistor Driver
1
Texas Instruments
LM5156HPWPR
AEC-Q100
60 V
2.97 V
14-PowerTSSOP
Current Limit, Enable, Frequency Control, Power Good, Soft Start
14-HTSSOP
125 °C
-40 °C
93 %
100 kHz
2.2 MHz
Automotive
Step-Up, Step-Up/Step-Down
Boost, Flyback, SEPIC
Surface Mount
Positive
1
Transistor Driver
1
4.4 mm
0.173 in
Texas Instruments
LM5156DSSR
60 V
2.97 V
12-WFDFN Exposed Pad
Current Limit, Enable, Frequency Control, Power Good, Soft Start
12-WSON (3x2)
125 ¯C
-40 °C
93 %
100 kHz
2.2 MHz
Step-Up, Step-Up/Step-Down
Boost, Flyback, SEPIC
Surface Mount
Positive
1
Transistor Driver
1
Texas Instruments
LM5156HEVM-FLY
1 Isolated Output, Non-Isolated
1
Boost
DC/DC, Step Up
4 A
Board(s)
36 V
18 V
Board(s)
250 kHz
LM5156H
Fully Populated
5 V

Description

General part information

LM5156 Series

The LM5156x-Q1 (LM5156-Q1 and LM51561-Q1) device is a wide input range, non-synchronous boost controller that uses peak current mode control. The device can be used in boost, SEPIC, and flyback topologies.

The LM5156x-Q1 device can start up from a 1-cell battery with a minimum of 2.97 V if the BIAS pin is connected to the VCC pin. It can operate with the input supply voltage as low as 1.5 V if the BIAS pin is greater than 3.5 V.

The LM5156x-Q1 (LM5156-Q1 and LM51561-Q1) device is a wide input range, non-synchronous boost controller that uses peak current mode control. The device can be used in boost, SEPIC, and flyback topologies.

Documents

Technical documentation and resources

No documents available