Image shown is a representation only. Exact specifications should be obtain- ed from the product data sheet.

Microchip Technology MIC2206-1.2YML-TR

Valmistaja Osa numero : MIC2206-1.2YML-TR
Valmistaja : Microchip Technology
Kuvaus : IC REG DL BUCK/LINEAR SYNC 10MLF
Lyijytön tila / RoHS-tila : Lead free / RoHS Compliant
Datasheet : MIC2206-1.2YML-TR.PDF MIC2206-1.2YML-TR PDF
Download Datasheet : MIC2206-1.2YML-TR Details.PDF MIC2206-1.2YML-TR PDF
EDA / CAD Models : MIC2206-1.2YML-TR by SnapEDA
Määrä:
1 153 4012388 Microchip-Technology/MIC2206-1-2YML-TR 4012388

Request for Quotation

Technical Parameters of MIC2206-1.2YML-TR

Topology:Step-Down (Buck) Synchronous (1), Linear (LDO) (1)
Function:Any Function
Frequency - Switching:2MHz
Voltage/Current - Output 1:1.2V, 1A
Voltage/Current - Output 2:1V, 120mA
Voltage/Current - Output 3:-
w/LED Driver:No
w/Supervisor:No
w/Sequencer:No
Voltage - Supply:2.7 V ~ 5.5 V
Operating Temperature:-40~C ~ 125~C
Mounting Type:Surface Mount
Package / Case:10-VFDFN Exposed Pad, 10-MLF?
Supplier Device Package:10-MLF? (3x3)

tuotteen yksityiskohdat

Overview

Unleash unparalleled power efficiency with the MIC2206-1.2YML-TR, an engineering marvel from Microchip Technology, classified under the Power Management IC (PMIC) category as a Voltage Regulator - Linear + Switching. This advanced solution seamlessly blends linear and switching technologies, redefining precision and performance in power regulation.

Features

1. Adaptive Hybrid Architecture: The MIC2206-1.2YML-TR boasts an adaptive hybrid architecture, intelligently combining the strengths of linear and switching voltage regulation for optimal power delivery, ensuring a harmonious balance between efficiency and precision.

2. Programmable Soft-Start: Experience a controlled power-up sequence with programmable soft-start functionality, preventing voltage spikes and ensuring a smooth and reliable initialization of your power delivery system.

3. Ultra-Low Dropout Voltage: Elevate power efficiency with an ultra-low dropout voltage, minimizing power loss and maximizing system performance, even in scenarios with challenging voltage differentials.

4. Dynamic Frequency Scaling: Benefit from dynamic frequency scaling, an innovative feature that adjusts the operating frequency based on load conditions, optimizing power efficiency and minimizing unnecessary energy consumption.

5. Compact and Robust Design: Designed with a compact footprint, the MIC2206-1.2YML-TR ensures spatial efficiency without compromising on robustness, making it an ideal choice for applications where space optimization is paramount.

Applications

1. Embedded Systems: Tailored for embedded applications, the MIC2206-1.2YML-TR delivers impeccable power regulation for compact and space-sensitive designs, ensuring precision in diverse electronic systems.

2. Consumer Electronics: Elevate the performance of your consumer electronic devices with the MIC2206-1.2YML-TR, ensuring consistent and reliable power delivery for an enhanced user experience in smartphones, tablets, and other devices.

3. Automotive Power Management: The MIC2206-1.2YML-TR meets the rigorous demands of automotive electronics, providing precise and efficient power regulation for various vehicle systems, from engine control units (ECUs) to infotainment systems.

4. Telecommunications Infrastructure: Power your communication networks with confidence. The MIC2206-1.2YML-TR is an essential component for telecommunications infrastructure, delivering stable and efficient voltage regulation for uninterrupted connectivity.

5. Industrial Control Systems: Ensure stability in dynamic industrial environments with the MIC2206-1.2YML-TR, providing reliable power management for industrial automation, robotics, and control systems.

MIC2206-1.2YML-TR Related Products

Kuuma myynti

Elektronisten osien hakemisto
Lisää
# 0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z

We value your privacy

Our website uses cookies to ensure you are getting the best browsing experience, serve personalized content, and analyze our traffic.
By clicking "Accept Cookies", you consent to our use of cookies. Privacy Policy