MX19002P51 Overview
The MX19002P51 is a high-performance semiconductor device designed for industrial and electronic applications requiring robust power management and precise signal control. Engineered with advanced process technology, this component offers reliable operation under a broad range of environmental conditions, making it suitable for demanding environments. Its optimized electrical characteristics ensure efficient energy conversion and minimized power loss, contributing to enhanced system performance and longevity. The device??s compact footprint and integration capabilities simplify design complexity while maintaining strict compliance with industry standards. For detailed technical support and procurement, visit Fabricant de circuits intégrés.
MX19002P51 Technical Specifications
Paramètres | Spécifications | Unité |
---|---|---|
Plage de tension de fonctionnement | 3.0 ?C 5.5 | V |
Maximum Continuous Current | 2.5 | A |
Power Dissipation | 1.2 | W |
Plage de température de fonctionnement | De -40 à +125 | ??C |
Input Logic Voltage | 2.7 ?C 5.5 | V |
Fréquence de commutation | 1.2 | MHz |
Type d'emballage | QFN-16 | ?C |
Thermal Resistance (Junction-to-Ambient) | 45 | ??C/W |
MX19002P51 Key Features
- High-frequency switching: Enables efficient power conversion with reduced electromagnetic interference, improving system reliability.
- Wide input voltage range: Supports diverse power sources, allowing flexible design integration across multiple applications.
- Compact QFN-16 package: Facilitates high-density PCB layouts, minimizing board space without compromising thermal performance.
- Robust thermal management: Ensures stable operation at elevated temperatures, extending device lifespan and reducing cooling requirements.
MX19002P51 Advantages vs Typical Alternatives
This device offers superior voltage and current handling capabilities combined with a compact package design, delivering enhanced power efficiency and thermal stability. Compared to typical alternatives, it provides broader operating temperature tolerance and higher switching frequencies, enabling engineers to design more compact and reliable power systems. Its integration ease and precise input logic thresholds reduce external component count, simplifying assembly and lowering overall system costs.
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Applications typiques
- Industrial power supplies: Utilized in regulated power modules where efficient voltage conversion and thermal reliability are critical for continuous operation.
- Embedded systems: Provides stable power management for microcontrollers and digital signal processors in embedded applications.
- Communication equipment: Ensures consistent power delivery for network devices requiring low noise and high efficiency.
- Consumer electronics: Suitable for battery-powered devices needing efficient energy use and compact design.
MX19002P51 Brand Info
The MX19002P51 is part of a comprehensive semiconductor portfolio offered by a leading IC Manufacturer known for its focus on innovation and quality in industrial-grade electronic components. This product line emphasizes reliability, performance, and ease of integration to support a wide array of applications in industrial automation, communications, and consumer electronics. The manufacturer provides extensive documentation and technical support to assist engineers and sourcing specialists in optimizing system design and procurement.
FAQ
What is the maximum operating temperature for the MX19002P51?
The device is specified to operate reliably within a temperature range from -40??C up to +125??C, making it suitable for harsh industrial environments and ensuring consistent performance under varying thermal conditions.
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Which package type does this device use, and how does it affect PCB design?
This component is housed in a QFN-16 package, which is a compact, low-profile surface-mount package. It allows for high-density PCB layouts and efficient heat dissipation, helping designers save space while maintaining thermal performance.
Can the MX19002P51 handle varying input voltages in my application?