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XCL206A333CR-G

XCL206A333CR-G

Torex Semiconductor Ltd
Non-Isolated PoL Module DC DC Converter 1 Output 3.3V 600mA 2V - 6V Input
Active5,891 in stock

Overview

The XCL206A333CR-G is a synchronous step-down DC/DC micro DC/DC converter with an integrated inductor in a compact CL-2025 package. It provides a fixed 3.3V output at 600mA from an input range of 2V to 6V, simplifying PCB layouts by eliminating the need for an external inductor. The module utilizes a switchable PWM/PFM control scheme to maintain high efficiency across both light and heavy load conditions.

Why Choose This Part

The integrated inductor design significantly reduces EMI noise and minimizes the overall solution footprint to just 2.5mm x 2.0mm. It features a high efficiency of 90% and includes built-in protection circuits such as UVLO, soft-start, and a current limiter for robust system operation.

Applications

Mobile Handsets
Ideal for point-of-load regulation in smartphones and mobile devices where PCB real estate is extremely limited.
Bluetooth Accessories
Provides efficient power for wireless headsets and wearables requiring a small 3.3V rail.
Portable Imaging
Used in digital cameras and camcorders to convert battery voltages down to 3.3V for internal logic and sensors.
Handheld Gaming
Supports compact power delivery for portable game consoles with high efficiency to extend battery life.

Key Specifications

Type Non-Isolated PoL Module
Efficiency 90%
Applications ITE (Commercial)
Mounting Type Surface Mount
Size / Dimension 0.10" L x 0.08" W x 0.04" H (2.5mm x 2.0mm x 1.0mm)
Number of Outputs 1
Voltage - Output 1 3.3V
Operating Temperature -40degC ~ 85degC
Voltage - Input (Max) 6V
Voltage - Input (Min) 2V
Current - Output (Max) 600mA
Supplier Device Package CL-2025-02

Getting Started

Implementation requires only two external ceramic capacitors to complete the circuit. Engineers should ensure the CL-2025-02 package landing pattern follows the manufacturer's thermal guidelines, as the internal inductor and IC share the same substrate for heat dissipation.