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LM5160DNTFBKEVM
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LM5160DNTFBKEVM

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Texas Instruments

EVAL BOARD FOR LM5160

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LM5160DNTFBKEVM
Development Boards, Kits, Programmers

LM5160DNTFBKEVM

Active
Texas Instruments

EVAL BOARD FOR LM5160

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DocumentsDatasheet

Technical Specifications

Parameters and characteristics for this part

SpecificationLM5160DNTFBKEVM
Board TypeFully Populated
Current - Output2 A
Frequency - Switching300 kHz
Main PurposeDC/DC, Step Down
Outputs and Type1, 1
Regulator TopologyBuck
Supplied ContentsBoard(s)
Utilized IC / PartLM5160
Voltage - Input [Max]32 V
Voltage - Input [Min]18 V
Voltage - Output12 V, 8 V

Pricing

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

DistributorPackageQuantity$
DigikeyBox 1$ 58.80

Description

General part information

LM5160-Q1 Series

The LM5160/A is a 65-V, 2-A synchronous step-down converter with integrated high-side and low-side MOSFETs. The adaptive constant on-time control scheme requires no loop compensation and supports high step-down ratios with fast transient response. An internal feedback amplifier maintains ±1% output voltage regulation over the entire operating temperature range. The on-time varies inversely with input voltage resulting in nearly constant switching frequency.

Peak and valley current limit circuits protect against overload conditions. The undervoltage lockout (EN/UVLO) circuit provides independently adjustable input undervoltage threshold and hysteresis. The LM5160/A is programmed through the FPWM pin to operate in continuous conduction mode (CCM) from no load to full load or to automatically switch to discontinuous conduction mode (DCM) at light load for higher efficiency. Forced CCM operation supports multiple-output and isolated Fly-Buck applications using a coupled inductor.

The LM5160A shares the same features and pin configuration as the LM5160. An external bias supply can be connected to the VCC pin of the LM5160A in Buck and Fly-Buck applications. This additional capability lowers IC power dissipation and improves efficiency at high input voltages.

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Technical documentation and resources