STPS5H100B-TR STMicroelectronics Schottky Diode 5A 100V Dual SMD Package

  • Provides efficient Schottky diode rectification, reducing power loss in switching applications.
  • Features a high current rating that ensures robust performance under demanding electrical loads.
  • Designed in a compact package, it offers board-space savings for dense circuit layouts.
  • Suitable for power supply circuits where fast recovery and low forward voltage improve overall efficiency.
  • Manufactured to meet industry reliability standards, supporting long-term stable operation.
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STPS5H100B-TR Overview

The STPS5H100B-TR is a high-efficiency, dual Schottky rectifier designed for industrial power applications requiring fast switching and low conduction losses. Featuring a 5 A forward current rating and 100 V maximum repetitive peak reverse voltage, this component ensures reliable performance in power supplies, converters, and motor drives. Its robust construction and low forward voltage drop improve system efficiency and thermal management, making it ideal for demanding environments. The IC Manufacturer provides this device in a compact package suitable for automated assembly and high-density circuit designs.

STPS5H100B-TR Technical Specifications

Parameter Value Unit
Maximum Repetitive Peak Reverse Voltage (VRRM) 100 V
Maximum Average Forward Current (IF(AV)) 5 A
Non-Repetitive Peak Forward Surge Current (IFSM) 75 A
Maximum Forward Voltage Drop (VF) @ IF=5A 0.55 V
Junction Temperature Range (Tj) -55 to 150 ??C
Storage Temperature Range (Tstg) -55 to 150 ??C
Reverse Recovery Time (trr) 35 ns
Package Type TO-220AB

STPS5H100B-TR Key Features

  • Low Forward Voltage Drop: Reduces conduction losses, enhancing overall system efficiency and thermal performance.
  • Fast Recovery Time: Minimizes switching losses and electromagnetic interference, benefiting high-frequency power applications.
  • Robust Surge Current Capability: Supports peak currents up to 75 A, ensuring reliable operation during transient events.
  • Wide Operating Temperature Range: Enables use in harsh industrial environments with temperatures from -55??C to 150??C.

Typical Applications

  • Power supply rectification in AC-DC converters where efficiency and thermal management are critical for industrial automation systems.
  • Free-wheeling diode in DC-DC converters, providing fast recovery and low losses to improve overall converter performance.
  • Motor control circuits requiring reliable, low forward voltage diodes to optimize power handling and reduce heat dissipation.
  • Battery charging systems benefiting from the low forward voltage drop to increase charging efficiency and reduce power wastage.

STPS5H100B-TR Advantages vs Typical Alternatives

This device offers superior efficiency through its low forward voltage and fast recovery characteristics compared to standard diodes. Its high surge current rating ensures enhanced reliability under transient conditions. The compact TO-220AB package supports effective heat dissipation, facilitating system integration and reducing thermal stress. These advantages make it a preferred choice for engineers focusing on power efficiency and system robustness in industrial applications.

STPS5H100B-TR Brand Info

The STPS5H100B-TR is a product of STMicroelectronics, a global leader in semiconductor manufacturing renowned for innovation in power management solutions. This dual Schottky rectifier reflects ST??s commitment to delivering high-quality, efficient components that meet the demanding requirements of industrial, automotive, and consumer electronics markets. It embodies ST??s expertise in combining performance, reliability, and ease of integration for optimized power electronic designs.

FAQ

What is the maximum current handling capability of the STPS5H100B-TR?

The device supports a maximum average forward current of 5 A continuously, with the ability to withstand non-repetitive peak surge currents up to 75 A, making it suitable for handling transient load conditions common in industrial power circuits.

How does the low forward voltage drop benefit my application?

A low forward voltage drop reduces conduction losses, which translates into less

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