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LSC6099-TL-E

Part No LSC6099-TL-E
Manufacturer ON Semiconductor
Catalog HOT - SALES and EOL Components (L)
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Manufacturer ON Semiconductor
Win Source Part Number 92398-LSC6099-TL-E
Popularity Low
Supply and Demand Status Limited
Ultra Librarian 3D Model Ultra Librarian LSC6099-TL-E CAD Model

Description

The LSC6099-TL-E from ON Semiconductor is a high-performance Power MOSFET designed to deliver efficiency and reliability for a wide range of applications. This robust component features a low on-resistance and minimal gate charge, making it an ideal choice for power management tasks where energy efficiency is paramount.

Key Features:

  • Low On-Resistance: The LSC6099-TL-E boasts an exceptionally low on-resistance, which translates to reduced conduction losses and improved overall efficiency in circuits.
  • High-Speed Switching: Engineered for fast switching applications, this MOSFET minimizes switching losses, enhancing performance in high-frequency operations.
  • Low Gate Charge: With its low gate charge, the LSC6099-TL-E ensures that less energy is required to control the transistor's switching, contributing to the energy-saving characteristics of the device.
  • Advanced Packaging: Enclosed in a compact, surface-mount package, the LSC6099-TL-E is designed for space-constrained applications while providing excellent thermal performance.

Applications:

The LSC6099-TL-E is versatile and can be used in various applications, including:

  • DC/DC Converters
  • Power Supply Modules
  • Motor Drives
  • Switch Mode Power Supplies (SMPS)
  • Battery Management Systems
  • Load Switches

Product Specifications:

Parameter Value
Drain-Source Voltage (VDS) 60V
Continuous Drain Current (ID) 6.5A
Power Dissipation (PD) 1.25W
Operating Temperature Range -55°C to +150°C

With its combination of high efficiency, fast switching, and thermal performance, the LSC6099-TL-E from ON Semiconductor is a reliable choice for designers looking to optimize their power management systems. Its robust design and advanced features ensure that it can meet the demands of modern electronic applications.

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