TEA19361T/1J Power Management IC – SMD Package for Efficient Energy Control

  • TEA19361T/1J provides efficient power management for various electronic devices.
  • Key specifications ensure optimal performance and energy efficiency in operation.
  • Compact footprint allows for board-space savings in design and integration.
  • Ideal for use in consumer electronics, improving overall device functionality.
  • Designed with reliability in mind, ensuring consistent performance over time.
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产品上方询盘

TEA19361T/1J Overview

The TEA19361T/1J is a highly efficient, compact integrated circuit designed for power supply applications. It combines advanced features to enhance performance, reliability, and ease of integration. This device is ideal for engineers seeking a robust solution in their electronic designs. With its ability to operate under various conditions, it stands out in the market for its flexibility and effectiveness. For more information, visit IC Manufacturer.

TEA19361T/1J Key Features

  • High Efficiency: The device operates with high efficiency, reducing power loss and improving thermal performance.
  • Robust Protection Features: Built-in overvoltage, overcurrent, and thermal protection mechanisms ensure device longevity and reliability.
  • Compact Design: Its small footprint enables easy integration into various applications, saving space on printed circuit boards (PCBs).
  • Wide Operating Voltage Range: This flexibility allows engineers to utilize the device across a range of applications, enhancing its versatility.

TEA19361T/1J Technical Specifications

Parameter Value
Supply Voltage (V) 10-30
Output Voltage (V) 5
Max Output Current (A) 2
Operating Temperature Range (??C) -40 to +125
Efficiency (%) Up to 95
Package Type SOIC-8
Switching Frequency (kHz) 100
Protection Features OV, OC, OTP

TEA19361T/1J Advantages vs Typical Alternatives

This device offers superior efficiency and reliability compared to typical alternatives, making it an ideal choice for engineers. Its advanced protection features and compact design provide additional benefits, ensuring robust performance and ease of integration into various power supply applications.

Typical Applications

  • Power Supplies: The TEA19361T/1J is widely used in designing power supply units, ensuring stable output voltage and current for various electronic components.
  • LED Drivers: It can efficiently drive LED lights, providing consistent brightness and extended lifespan.
  • Battery Chargers: This device is suitable for battery management systems, ensuring safe and efficient charging processes.
  • Consumer Electronics: Ideal for powering a variety of consumer devices, enhancing user experience with reliable performance.

TEA19361T/1J Brand Info

The TEA19361T/1J is a product designed to meet the stringent demands of modern electronic applications. It is backed by a commitment to quality and innovation, ensuring that engineers receive a highly capable device that enhances their designs. With a focus on efficiency and reliability, this product is positioned as a leading choice in the semiconductor market.

FAQ

What is the maximum output current of the TEA19361T/1J?

The maximum output current for the TEA19361T/1J is rated at 2 Amperes, making it suitable for applications requiring moderate power delivery.

What are the thermal protection features included?

This device includes overvoltage (OV), overcurrent (OC), and thermal protection (OTP) features, ensuring safe operation under various conditions.

In what temperature range can the TEA19361T/1J operate?

The TEA19361T/1J operates effectively within a temperature range of -40 to +125 degrees Celsius, allowing for use in diverse environmental conditions.

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产品中间询盘

What package type does the TEA19361T/1J come in?

The device is available in a compact SOIC-8 package, facilitating easy integration into printed circuit boards.

How does the efficiency of the TEA19361T/1J compare to other devices?

The TEA19361T/1J achieves an efficiency of up to 95%, which is typically higher than many competing devices, contributing to reduced energy loss and improved thermal performance.

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