TEA1521T/N2,518 High-Performance Power Management IC – 8-DIP Package

  • TEA1521T/N2,518 provides efficient power management for various electronic devices.
  • Features a high-performance output capability, ensuring stable operation under load.
  • Le boîtier compact permet d'utiliser efficacement l'espace disponible sur la carte.
  • Ideal for use in consumer electronics, enhancing device performance and longevity.
  • Designed with reliability in mind, promoting consistent quality in applications.
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TEA1521T/N2,518 Overview

The TEA1521T/N2,518 is a highly efficient integrated circuit designed for power management applications. Featuring advanced functionality, it provides reliable performance in a compact form factor. This device is ideal for various electronic applications where efficiency and reliability are paramount. Its versatility allows engineers to implement it in diverse systems, ensuring optimal power usage and system longevity. For more information, visit Fabricant de circuits intégrés.

TEA1521T/N2,518 Key Features

  • Enhanced power efficiency leads to reduced energy consumption and lower operational costs.
  • Robust thermal management capabilities ensure stable operation across varying environmental conditions.
  • Integrated fault detection enhances system reliability, minimizing downtime and maintenance costs.
  • Compact design allows for easy integration into space-constrained applications, improving overall system design.

TEA1521T/N2,518 Technical Specifications

ParamètresValeur
Tension d'alimentation4.5V to 36V
Courant de sortieUp to 1A
Plage de température de fonctionnementDe -40°C à +125°C
Fréquence de commutation100kHz à 1MHz
EfficacitéUp to 90%
Type d'emballageDIP-8
Caractéristiques de protectionOvervoltage, undervoltage, and thermal shutdown
Control MethodVoltage mode control

TEA1521T/N2,518 Advantages vs Typical Alternatives

This integrated circuit stands out against typical alternatives due to its superior power efficiency and thermal management. Enhanced protection features and adaptability for various applications further elevate its reliability, making it a preferred choice for engineers focusing on performance and longevity in their designs.

Applications typiques

  • Power supply units in consumer electronics, where efficiency and reliability are critical to ensure device longevity and user satisfaction.
  • Industrial automation systems, providing robust performance under varying load conditions.
  • Telecommunication equipment, supporting stable power delivery for communication reliability.
  • Automotive electronics, ensuring reliable operation in demanding environments.

TEA1521T/N2,518 Brand Info

The TEA1521T/N2,518 is part of a well-established line of power management ICs renowned for their efficiency and reliability. Designed to meet the rigorous demands of modern electronic applications, this device is a testament to quality and innovation in the semiconductor industry. It addresses the needs of engineers seeking effective power solutions across various sectors.

FAQ

What is the maximum output current for the TEA1521T/N2,518?

The maximum output current for this integrated circuit is up to 1A, making it suitable for a wide range of applications that require reliable power delivery.

What is the operating temperature range of the TEA1521T/N2,518?

This device operates effectively within a temperature range of -40??C to +125??C, ensuring performance stability in various environmental conditions.

How does the TEA1521T/N2,518 ensure system reliability?

It features integrated protections against overvoltage, undervoltage, and thermal shutdown, significantly enhancing overall system reliability and minimizing maintenance costs.

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What types of applications is the TEA1521T/N2,518 suitable for?

This integrated circuit is well-suited for applications in consumer electronics, industrial automation, telecommunication equipment, and automotive electronics, among others.

What package type does the TEA1521T/N2,518 come in?

The device is available in a DIP-8 package type, facilitating easy integration into various electronic designs while optimizing space utilization.

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