MCXW716CMFTAT Overview
The MCXW716CMFTAT is a high-performance integrated circuit designed for efficient power management and control in industrial electronics applications. This device combines advanced semiconductor technology with robust electrical characteristics to deliver reliable operation under demanding conditions. Its compact footprint and optimized thermal performance make it suitable for space-constrained environments, while its versatile input/output configurations support seamless integration into complex systems. Engineers and sourcing specialists will appreciate its balance of power efficiency, precision control, and operational stability. For more detailed information, visit the IC Manufacturer.
MCXW716CMFTAT Technical Specifications
| Parameter | Specification |
|---|---|
| Operating Voltage Range | 2.7 V to 5.5 V |
| Maximum Operating Temperature | +125 ??C |
| Package Type | Compact 16-pin QFN |
| Input/Output Pins | 16 |
| Maximum Switching Frequency | 1 MHz |
| Quiescent Current | 45 ??A |
| Output Current Capability | Up to 1.5 A |
| ESD Protection Level | ??4 kV Human Body Model |
MCXW716CMFTAT Key Features
- Wide input voltage range: Supports 2.7 V to 5.5 V, enabling compatibility with various power sources and enhancing design flexibility.
- High switching frequency up to 1 MHz: Allows for reduced external component size, lowering overall system footprint and improving efficiency.
- Low quiescent current: Minimizes power consumption during standby, extending battery life in portable and low-power industrial applications.
- Robust thermal performance: The advanced packaging design ensures reliable operation up to +125 ??C, suitable for harsh industrial environments.
MCXW716CMFTAT Advantages vs Typical Alternatives
This device offers superior integration and power efficiency compared to typical alternatives, with a high switching frequency and low quiescent current that reduce system complexity and energy consumption. Its wide operating voltage range and robust thermal tolerance ensure reliable performance even under variable industrial conditions, making it a reliable choice for demanding applications.
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Typical Applications
- Industrial automation control systems requiring efficient power management and precise voltage regulation for reliable machine operation.
- Battery-powered portable equipment where low quiescent current extends operational runtime and enhances energy efficiency.
- Embedded systems needing compact, high-frequency power converters to minimize board space and component count.
- Telecommunications infrastructure devices that demand stable power supply under varying temperature and load conditions.
MCXW716CMFTAT Brand Info
Manufactured by a leading semiconductor supplier, this integrated circuit embodies the company??s commitment to quality, innovation, and reliability. The product line emphasizes high efficiency and adaptable power management solutions for industrial and embedded applications. With rigorous testing and adherence to international standards, this device supports engineers in delivering robust and scalable electronic designs.
FAQ
What is the maximum operating temperature of this device?
The device supports operation up to +125 ??C, making it suitable for high-temperature industrial environments and ensuring reliable performance under thermal stress.
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What package type does the device use?
It is housed in a compact 16-pin QFN package, which offers excellent thermal dissipation and a small footprint ideal for space-constrained applications.
Can this device operate from a low-voltage power source?
Yes, its wide operating voltage range from 2.7 V to 5.5 V allows it to function efficiently with various power supply configurations, including low-voltage sources.
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What is the significance of the device??s switching frequency?
The maximum switching frequency of 1 MHz enables the use of smaller external components, reducing the overall system size and improving power conversion efficiency.
How does the device ensure low power consumption during standby?
With a quiescent current of only 45 ??A, the device minimizes power draw in standby modes, which is critical for prolonging battery life in portable and low-power industrial applications.





