DiodesZetex AP63201WU-7, 1-Channel Buck, Voltage Regulator, 2 A, 3.3 V 500 kHz, TSOT-26 6-Pin

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SGD1.78

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SGD1.94

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1 - 24SGD1.78
25 - 99SGD1.18
100 - 499SGD0.86
500 - 999SGD0.77
1000 +SGD0.67

*price indicative

RS Stock No.:
719-551
Mfr. Part No.:
AP63201WU-7
Manufacturer:
DiodesZetex
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Brand

DiodesZetex

Product Type

Voltage Regulator

Regulator Type

Buck

Output Voltage

3.3 V

Number of Outputs

1

Switching Frequency

500kHz

Mount Type

Surface Mount

Quiescent Current

258μA

Package Type

TSOT-26

Pin Count

6

Output Current

2A

Output Type

Current, Voltage

Series

AP63201

Width

1.7 mm

Length

3mm

Height

1mm

Maximum Operating Temperature

85°C

Minimum Input Voltage

3.8V

Maximum Input Voltage

32V

Minimum Operating Temperature

-40°C

Automotive Standard

No

COO (Country of Origin):
CN
The DiodesZetex Synchronous buck converter designed to provide a stable step-down voltage from a wide input range of 3.8V to 32V, delivering an output current of 2A. This product utilises a Peak current mode control for enhanced performance and efficiency. It integrates a high-side and low-side power MOSFET with an on-resistance of 125mΩ and 68mΩ respectively, allowing for high-efficiency DC/DC conversion. With built-in features aimed at reducing electromagnetic interference (EMI), this converter is suitable for various applications including flat screen TVs, power tools, and consumer electronics, all while ensuring that the device remains Compact within a low-profile TSOT26 package.

Supports input voltages from 3.8V to 32V, accommodating diverse power supply requirements

Delivers a continuous output current of 2A, making it suitable for demanding applications

Offers a low quiescent current of just 22μA, enhancing energy efficiency during light load operation

Features a frequency spread spectrum design to minimise EMI, promoting compliance with stringent standards

Incorporates a built-in soft-start function to mitigate output voltage overshoot during power-up, ensuring device protection

Provides cycle-by-cycle Peak current limit, overvoltage protection, and thermal shutdown for robust operational safety

Maintains an adjustable output voltage, facilitating flexibility in design without compromising performance

Integrated components reduce the need for external parts, simplifying circuit design and minimising footprint

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