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LM25085AMYE
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LM25085AMYEEVAL/NOPB

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Texas Instruments

EVAL BOARD FOR LM25085A

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LM25085AMYE
Development Boards, Kits, Programmers

LM25085AMYEEVAL/NOPB

Active
Texas Instruments

EVAL BOARD FOR LM25085A

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Technical Specifications

Parameters and characteristics for this part

SpecificationLM25085AMYEEVAL/NOPB
ContentsBoard(s)
Current - Output5 A
Frequency - Switching200 kHz
Main PurposeDC/DC, Step Down
Outputs and Type1 Non-Isolated Output
Regulator TopologyBuck
Utilized IC / PartLM25085A
Voltage - Output1 V

Pricing

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

DistributorPackageQuantity$
DigikeyBox 1$ 118.80

Description

General part information

LM25085-Q1 Series

The LM25085A is a functional variant of the LM25085 COT PFET Buck Switching Controller. The functional differences of the LM25085A are: The feedback reference voltage is 0.9V, the forced off-time after current limit detection is longer, and the soft-start time is shorter (1.8 ms).

The LM25085A is a high efficiency PFET switching regulator controller that can be used to quickly and easily develop a small, efficient buck regulator for a wide range of applications. This high voltage controller contains a PFET gate driver and a high voltage bias regulator which operates over a wide 4.5V to 42V input range. The constant on-time regulation principle requires no loop compensation, simplifies circuit implementation, and results in ultra-fast load transient response. The operating frequency remains nearly constant with line and load variations due to the inverse relationship between the input voltage and the on-time. The PFET architecture allows 100% duty cycle operation for a low dropout voltage. Either the RDS(ON)of the PFET or an external sense resistor can be used to sense current for over-current detection.

The LM25085A is a functional variant of the LM25085 COT PFET Buck Switching Controller. The functional differences of the LM25085A are: The feedback reference voltage is 0.9V, the forced off-time after current limit detection is longer, and the soft-start time is shorter (1.8 ms).

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