NCP1256BSN65T1G Power Supply Controller – NCP1256BSN65T1G, DIP-8 Package

  • The NCP1256BSN65T1G regulates voltage efficiently, ensuring stable power supply for electronic devices.
  • Features a low startup current, which enhances overall energy efficiency in applications.
  • Its compact footprint allows for significant board-space savings in design layouts.
  • Ideal for power supply solutions in consumer electronics, improving performance and reliability.
  • Designed with robust protection features, ensuring long-term reliability in various environments.
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产品上方询盘

NCP1256BSN65T1G Overview

The NCP1256BSN65T1G is a highly efficient power supply controller designed for a wide range of applications. This device integrates multiple features to ensure optimal performance in various electronic systems. With its compact design and robust functionality, it is well-suited for engineers and sourcing specialists looking for reliable solutions. For more details, visit IC Manufacturer.

NCP1256BSN65T1G Key Features

  • High efficiency at lower power levels, which translates to reduced energy consumption and lower operational costs.
  • Built-in protection features such as over-voltage and over-current protection, ensuring device longevity and reliability.
  • Compact design that allows for easy integration into existing systems, saving space on PCBs.
  • Wide input voltage range facilitates compatibility with various power sources, enhancing versatility.

NCP1256BSN65T1G Technical Specifications

Parameter Value
Input Voltage Range 85V to 265V AC
Output Voltage 5V to 15V
Switching Frequency 100 kHz
Power Output 65W
Standby Power Consumption 50mW
Temperature Range -40??C to +85??C
Package Type DIP-8
Over-Temperature Protection Yes

NCP1256BSN65T1G Advantages vs Typical Alternatives

This controller stands out against typical alternatives due to its superior efficiency and integration capabilities. Its built-in protection features enhance reliability, making it a preferred choice for engineers seeking dependable performance in power supply solutions.

Typical Applications

  • Power adapters for consumer electronics where efficiency and compactness are crucial for optimal performance in small devices.
  • Industrial power supplies, providing reliable voltage regulation under varying load conditions.
  • Telecommunication equipment, ensuring stable operation across diverse voltage requirements.
  • LED lighting systems, offering efficient power management and long service life.

NCP1256BSN65T1G Brand Info

The NCP1256BSN65T1G is produced by ON Semiconductor, a leading provider of semiconductor solutions. Known for their commitment to innovation and quality, ON Semiconductor offers a wide range of products that cater to the needs of various industries, including automotive, industrial, and consumer electronics. Their expertise in power management and efficiency sets them apart in the semiconductor market.

FAQ

What types of applications is the NCP1256BSN65T1G best suited for?

The NCP1256BSN65T1G is ideal for applications such as power adapters, industrial power supplies, telecommunication devices, and LED lighting systems. Its versatility and efficiency cater to various needs across these sectors.

What is the maximum output power of the NCP1256BSN65T1G?

This controller can deliver a maximum output power of 65W, making it suitable for medium power applications while maintaining efficiency and reliability.

How does the NCP1256BSN65T1G ensure device longevity?

With built-in protection features such as over-voltage and over-current protection, the NCP1256BSN65T1G helps prevent damage due to electrical faults, thus ensuring a longer lifespan for connected devices.

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产品中间询盘

What is the operating temperature range for the NCP1256BSN65T1G?

The device operates effectively across a temperature range of -40??C to +85??C, making it suitable for both industrial and consumer applications in various environmental conditions.

What is the significance of the compact design of the NCP1256BSN65T1G?

A compact design allows for easier integration into existing systems, saving valuable space on printed circuit boards (PCBs) and enabling the development of smaller, more efficient devices.

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