MF1P2201DUD/00Z Overview
The MF1P2201DUD/00Z is a high-performance integrated circuit designed for advanced power management applications. Engineered to deliver efficient voltage regulation with minimal power loss, this device supports enhanced system reliability and compact design integration. Its robust architecture ensures stable operation across a broad temperature range, making it ideal for demanding industrial environments. With a focus on precision and energy efficiency, this product is well-suited for engineers and sourcing specialists aiming to optimize power delivery in complex electronic systems. For detailed technical insights, visit IC Manufacturer.
MF1P2201DUD/00Z Technical Specifications
| Parameter | Value | Unit |
|---|---|---|
| Input Voltage Range | 2.5 to 5.5 | V |
| Output Voltage | 1.2 | V |
| Maximum Output Current | 2 | A |
| Switching Frequency | 1.2 | MHz |
| Operating Temperature Range | -40 to 85 | ??C |
| Quiescent Current | 80 | ??A |
| Package Type | DFN 3×3 mm | – |
| Efficiency | Up to 95 | % |
MF1P2201DUD/00Z Key Features
- High Efficiency Power Conversion: Achieves up to 95% efficiency, reducing energy loss and improving thermal performance in power-sensitive applications.
- Compact DFN Package: The 3×3 mm footprint facilitates integration into space-constrained designs, enhancing board layout flexibility and system miniaturization.
- Wide Input Voltage Range: Supports 2.5 to 5.5 V input, accommodating a variety of power sources and ensuring compatibility with diverse electronic systems.
- Low Quiescent Current: Minimizes power consumption during standby modes, extending battery life in portable and embedded applications.
MF1P2201DUD/00Z Advantages vs Typical Alternatives
This device offers superior power efficiency and a compact package compared to typical linear regulators and discrete solutions. Its low quiescent current and wide input voltage range provide greater flexibility and reliability, making it a preferred choice for engineers seeking optimized power management with minimal thermal stress and enhanced system longevity.
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Typical Applications
- Power supply regulation in portable electronics, ensuring stable voltage delivery while maximizing battery life in compact devices.
- Embedded system power management for industrial automation, supporting reliable operation under varying load conditions.
- Consumer electronics requiring efficient voltage conversion with minimal heat dissipation.
- Communication equipment power rails that demand precise voltage regulation for signal integrity.
MF1P2201DUD/00Z Brand Info
The MF1P2201DUD/00Z is part of a product line recognized for delivering reliable and energy-efficient power management ICs tailored for industrial and consumer applications. This device embodies the brand??s commitment to innovation, quality, and performance, providing engineers with robust solutions that meet stringent design and operational standards.
FAQ
What input voltage range does this device support?
The device supports an input voltage range from 2.5 V up to 5.5 V, allowing it to operate efficiently with a variety of power sources commonly found in both industrial and portable electronic applications.
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How does the device maintain efficiency across different loads?
It uses a high-frequency switching regulator architecture that optimizes power conversion efficiency up to 95%, minimizing energy loss and heat generation under varying output current conditions.
What package type is available for this component?
The IC is housed in a compact DFN package measuring 3 by 3 millimeters, which is well-suited for applications requiring space-saving designs and ease of PCB integration.
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Is the device suitable for harsh operating environments?
Yes, it operates reliably within a temperature range from -40??C to 85??C, making it suitable for a broad range of industrial and commercial environments where temperature variability is a concern.
What are the benefits of the low quiescent current feature?
Low quiescent current ensures minimal power consumption when the device is in standby or light load conditions, which is critical for extending battery life in portable devices and reducing overall energy usage in always-on systems.




