NCP1252BDR2G – High-Efficiency Power Supply Controller, SOIC-8 Package

  • The NCP1252BDR2G is designed for efficient power conversion, enhancing energy management in devices.
  • It features a high switching frequency, which allows for smaller passive components and reduced overall size.
  • This device comes in a compact package, saving valuable board space in electronic designs.
  • Ideal for adapter applications, it ensures reliable power delivery to consumer electronics.
  • Built with robust protections, it offers enhanced reliability and operational stability in various environments.
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NCP1252BDR2G Overview

The NCP1252BDR2G is a highly efficient, integrated power supply controller designed for demanding applications. It offers a compact solution for offline flyback converters, making it ideal for a range of power supply designs. With features that enhance performance and reliability, this device meets the needs of modern electronic applications, providing a robust foundation for energy-efficient designs. For detailed specifications, visit IC-Hersteller.

NCP1252BDR2G Key Features

  • Hoher Wirkungsgrad: The device is engineered to provide high efficiency at various loads, reducing overall energy consumption and thermal output.
  • Integrated Control Features: With built-in protections like over-voltage and over-current, the NCP1252BDR2G enhances system reliability and minimizes the risk of damage.
  • Kompakte Bauweise: Its small footprint allows for easy integration into space-constrained applications, facilitating the development of compact power supply solutions.
  • Breiter Eingangsspannungsbereich: Supports a broad input voltage range, making it suitable for diverse applications and ensuring stable performance across varying conditions.

NCP1252BDR2G Technical Specifications

Parameter Wert
Eingangsspannungsbereich 85V bis 265V AC
Ausgangsspannung Einstellbar
Schalthäufigkeit 100kHz
Maximale Ausgangsleistung 20W
Betriebstemperatur -40° C bis 125° C
Paket Typ SOIC-8
Wirkungsgrad Up to 85%
Schutzfunktionen Over-voltage, Over-current, Thermal Shutdown

NCP1252BDR2G Advantages vs Typical Alternatives

The NCP1252BDR2G stands out against typical alternatives due to its superior Effizienz und integrated protection features. This combination not only enhances performance but also improves reliability, making it a preferred choice for engineers seeking robust power solutions.

Typische Anwendungen

  • Telekommunikationseinrichtungen: Ideal for powering devices in telecommunications, ensuring reliable operation under varying load conditions.
  • Unterhaltungselektronik: Commonly used in power adapters for consumer electronics, providing efficient power conversion.
  • Industrielle Automatisierung: Suitable for industrial control systems where efficiency and reliability are paramount.
  • Medizinische Geräte: Supports medical equipment requiring stringent performance and safety standards.

NCP1252BDR2G Brand Info

The NCP1252BDR2G is manufactured by ON Semiconductor, a leader in the semiconductor industry known for delivering innovative solutions in energy efficiency and performance. Their commitment to quality and reliability makes this device an excellent choice for engineers and designers.

FAQ

What is the maximum output power of the NCP1252BDR2G?

The maximum output power of this device is 20W, making it suitable for various applications where moderate power is required.

What type of protection features does the NCP1252BDR2G include?

This device includes several protection features such as over-voltage protection, over-current protection, and thermal shutdown, ensuring safe operation under various conditions.

What is the operating temperature range for the NCP1252BDR2G?

The operating temperature range is from -40??C to 125??C, allowing it to function effectively in demanding environments.

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In what package type is the NCP1252BDR2G available?

The device is available in a compact SOIC-8 package, facilitating integration into space-constrained designs.

How efficient is the NCP1252BDR2G?

This device can achieve efficiencies of up to 85%, which helps in reducing energy consumption and thermal output in power supply applications.

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