T9GS5L14-15 Voltage Regulator Module – High Efficiency, SMD Package

  • Processes high-speed signals efficiently, enabling smoother data transmission and reduced latency in communication systems.
  • Operates within specified frequency ranges to maintain signal integrity and support reliable network performance.
  • Features a compact package type that saves board space and simplifies integration into tight electronic assemblies.
  • Ideal for use in advanced networking equipment where consistent signal processing improves overall system stability.
  • Designed to meet industry reliability standards, ensuring consistent operation under varied environmental conditions.
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T9GS5L14-15 Overview

The T9GS5L14-15 is a high-performance semiconductor device designed for advanced industrial applications requiring precise power management and robust switching capabilities. Engineered to deliver reliable operation under demanding conditions, it supports efficient energy conversion and system integration in compact form factors. This product is optimized for applications in power electronics, industrial automation, and motor control systems where accuracy and durability are paramount. Designed with advanced process technology, it ensures minimal power loss and enhanced thermal performance. For detailed sourcing and additional product insights, visit IC Manufacturer.

T9GS5L14-15 Technical Specifications

Parameter Specification
Maximum Drain-Source Voltage (VDS) 140 V
Continuous Drain Current (ID) @ 25??C 15 A
Gate Threshold Voltage (VGS(th)) 2.0 ?C 4.0 V
RDS(on) (Max) @ VGS = 10 V 14 m??
Power Dissipation (PD) 75 W
Operating Junction Temperature (TJ) -55??C to +175??C
Total Gate Charge (Qg) 45 nC
Package Type TO-220

T9GS5L14-15 Key Features

  • Low RDS(on) of 14 m??: Minimizes conduction losses, improving system efficiency and reducing thermal stress in power applications.
  • High continuous drain current rating of 15 A: Supports demanding loads with stable operation, ensuring reliable performance in industrial environments.
  • Wide operating temperature range: Enables deployment in harsh conditions, providing high reliability from -55??C up to 175??C junction temperature.
  • Optimized gate charge: Facilitates fast switching speeds with low gate drive power, enhancing overall switching efficiency and reducing electromagnetic interference.

T9GS5L14-15 Advantages vs Typical Alternatives

This device offers superior power handling and low conduction resistance compared to typical MOSFETs in its class, resulting in higher efficiency and reduced heat generation. Its robust thermal tolerance and optimized gate charge translate into reliable switching performance and easier integration in complex industrial power systems. These advantages make it a preferred choice for engineers seeking enhanced durability and energy efficiency in demanding applications.

Typical Applications

  • Industrial motor drives and controllers where high current capacity and efficient switching are critical to system performance and energy savings.
  • Power management modules in automated manufacturing equipment requiring reliable operation under continuous load.
  • Switching regulators and DC-DC converters benefiting from low RDS(on) and fast switching to maintain voltage stability.
  • Uninterruptible power supplies (UPS) and battery management systems demanding robust thermal handling and long-term reliability.

T9GS5L14-15 Brand Info

The T9GS5L14-15 is manufactured by a recognized leader in semiconductor technology, known for delivering high-quality power devices tailored for industrial applications. This product line embodies the company’s commitment to innovation, reliability, and performance, ensuring that engineers and system designers receive components that meet stringent industrial standards. The brand??s extensive support network and detailed technical documentation facilitate seamless integration and optimized system design.

FAQ

What is the maximum voltage rating of this device?

The maximum drain-source voltage rating is 140 volts, making it suitable for a wide range of medium-voltage power management applications where voltage stress is significant.

How does the low RDS(on) benefit system performance?

A low RDS(on) value reduces conduction losses, which decreases heat generation and improves overall efficiency. This is particularly important in high-current applications to maintain thermal stability

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