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PTH04T241WAS

TIPTH04T241WAS

Texas Instruments
Non-Isolated PoL Module DC DC Converter 1 Output 0.69 ~ 3.6V 10A 2.2V - 5.5V Input
NRND98 in stock

Overview

The PTH04T241WAS is a high-performance, non-isolated 10A point-of-load (PoL) DC-DC converter module designed for 2.2V to 5.5V input rails. It utilizes TI's TurboTrans and SmartSync technologies to optimize transient response and synchronize switching frequencies across multiple power rails. The module provides a highly adjustable output voltage from 0.69V to 3.6V with 1.5 percent accuracy, making it suitable for modern low-voltage digital ICs.

Why Choose This Part

The module features TurboTrans technology, which allows engineers to significantly reduce output capacitor requirements while maintaining excellent transient performance. Integrated SmartSync allows for frequency synchronization to eliminate beat frequencies in multi-rail designs, and Auto-Track sequencing simplifies the power-up/power-down timing requirements of complex FPGAs and ASICs.

Applications

High-End Microprocessors
Powering core and I/O rails for processors requiring fast transient response and high current delivery.
Bus Drivers and Interface Logic
Providing stable, low-noise power for high-speed signal integrity across complex backplanes.
Distributed Power Architectures
Acting as a local step-down stage from a 3.3V or 5V intermediate bus in multi-voltage systems.

Key Specifications

Type Non-Isolated PoL Module
Features Remote On/Off, OCP, OTP, UVLO
Efficiency 94%
Applications ITE (Commercial)
Mounting Type Surface Mount
Package / Case 11-SMD Module
Size / Dimension 0.87" L x 0.62" W x 0.35" H (22.1mm x 15.7mm x 8.9mm)
Number of Outputs 1
Voltage - Output 1 0.69 ~ 3.6V
Operating Temperature -40degC ~ 85degC
Voltage - Input (Max) 5.5V
Voltage - Input (Min) 2.2V
Current - Output (Max) 10A

Getting Started

To implement this module, select the Rset resistor value according to the datasheet formula to establish the desired output voltage between 0.69V and 3.6V. Design the PCB layout with short, wide traces for the input and output pins to handle the 10A load, and utilize the Differential Remote Sense pins to maintain regulation directly at the load. TurboTrans optimization should be calculated based on the specific ESR and capacitance of the ceramic output filters used in the design.

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