• 00-130-547  A power supply that can be mounted directly onto the printed circuit board
  • 00-130-547  A power supply that can be mounted directly onto the printed circuit board
  • 00-130-547  A power supply that can be mounted directly onto the printed circuit board
  • 00-130-547  A power supply that can be mounted directly onto the printed circuit board
  • 00-130-547  A power supply that can be mounted directly onto the printed circuit board
  • 00-130-547  A power supply that can be mounted directly onto the printed circuit board
  • 00-130-547  A power supply that can be mounted directly onto the printed circuit board
  • 00-130-547  A power supply that can be mounted directly onto the printed circuit board
  • 00-130-547  A power supply that can be mounted directly onto the printed circuit board
  • 00-130-547  A power supply that can be mounted directly onto the printed circuit board

00-130-547 A power supply that can be mounted directly onto the printed circuit board

00-130-547  A power supply that can be mounted directly onto the printed circuit board

A power supply module is a power supply that can be mounted directly on a printed circuit board and is characterized by providing power for application-specific integrated circuits (ASics), digital signal processors (DSPS), microprocessors, memory, field programmable gate arrays (FPgas), and other digital or analog loads. The input voltage range of the power module is generally 85~265V AC or 100~370V DC, and the frequency is 47~400Hz, which is generally 50/60Hz. Due to its small size, high integration, high cost performance and the best performance indicators, only the simplest peripheral circuit is required, with a small number of discrete components can be used. When the product design needs to be changed, just parallel or replace the power module.
  • 00-130-547  A power supply that can be mounted directly onto the printed circuit board
  • 00-130-547  A power supply that can be mounted directly onto the printed circuit board
  • 00-130-547  A power supply that can be mounted directly onto the printed circuit board
  • 00-130-547  A power supply that can be mounted directly onto the printed circuit board
  • 00-130-547  A power supply that can be mounted directly onto the printed circuit board
Desciption
The future development trend of power modules is mainly reflected in the following aspects:

Digitalization: 00-130-547 With the advent of the digital era, the power module will gradually realize digitalization, including the visual, manageable, and superior equipment, to achieve data visualization and remote intelligent management, and improve the reliability of the entire power supply system.
Miniaturization: Due to the sinking of network equipment and the continuous improvement of power consumption and computing power, the high-density miniaturization of power supplies has become inevitable. Based on high frequency, magnetic integration, packaging, modular and other technologies, the power module will be miniaturized to meet the high density needs of the device.
Chip: With the development of semiconductor packaging technology and high-frequency magnetic integration technology, power modules will gradually develop in the direction of chip. The onboard power module has gradually evolved from the original PCBA form to the plastic-sealed form. 00-130-547 In the future, the power module will be developed from an independent hardware to a software-software coupling direction, improving device reliability and environmental adaptability.
Full link efficiency: The power module will achieve full link efficiency, including intelligent management from component level to device level and network level, and realize remote intelligent management such as energy efficiency AI optimization to improve the reliability of the entire power supply system.

00-130-547 Secure and trusted: Power modules pay more attention to security, including data encryption, access control, and security audit, to ensure device security and trust.
Super fast charge: With the popularity of electric vehicles and other applications, super fast charge technology will become an important development direction of power modules to achieve faster charging speed and higher charging efficiency.
Diversification and customization: With the diversification of application scenarios, power modules will gradually achieve diversification and customization to meet the needs of different fields. For example, power modules can be customized to meet the special requirements of different industries and application scenarios.
High efficiency and green: 00-130-547 With the improvement of energy shortage and environmental awareness, power modules will pay more attention to high efficiency and green. High efficiency power supply can reduce energy waste and improve energy utilization efficiency; Green power can reduce the impact on the environment and achieve sustainable development.
In short, the future development of power modules will be more digital, miniaturized, chip-based, high-efficiency, safe and reliable, diversified and customized to meet the needs of different areas and promote the sustainable development of the power electronics industry.