STMicroelectronics STBR1508B2Y-TR Schottky Rectifier Diode, DO-214AB (SMA) Package

  • This device provides efficient rectification, improving power conversion in electronic circuits.
  • Its maximum repetitive peak reverse voltage ensures safe operation under high-voltage conditions.
  • The compact package reduces board space, facilitating design in size-constrained applications.
  • Ideal for power supply modules, it enhances system reliability by minimizing energy loss.
  • Manufactured to meet strict quality standards, ensuring consistent performance over time.
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STBR1508B2Y-TR Overview

The STBR1508B2Y-TR is a high-performance ultrafast rectifier diode designed for industrial and automotive power applications requiring efficient switching and low conduction losses. Featuring a maximum repetitive peak reverse voltage of 80V and a forward current rating of 15A, this device offers robust performance in demanding environments. Its ultrafast recovery time reduces switching losses, enhancing overall system efficiency. Packaged in a compact SOD-123F form factor, it supports high-density PCB layouts. For engineers and sourcing specialists evaluating power rectification components, the STBR1508B2Y-TR presents a reliable and cost-effective solution available from IC Manufacturer.

STBR1508B2Y-TR Technical Specifications

ParameterValueUnit
Maximum Repetitive Peak Reverse Voltage (VRRM)80V
Average Forward Current (IF(AV))15A
Non-Repetitive Peak Surge Current (IFSM)150A
Forward Voltage Drop (VF) at IF = 15A0.95V
Reverse Recovery Time (trr)35ns
Junction Temperature Range (Tj)-65 to +175??C
Storage Temperature Range (Tstg)-65 to +175??C
Package TypeSOD-123F

STBR1508B2Y-TR Key Features

  • Ultrafast recovery time: Minimizes switching losses, improving efficiency in high-frequency power conversion applications.
  • Low forward voltage drop: Reduces conduction losses, resulting in better thermal performance and energy savings.
  • High surge current capability: Withstands transient current spikes, ensuring reliability under demanding load conditions.
  • Wide operating temperature range: Supports robust performance across industrial and automotive temperature extremes.
  • Compact SOD-123F package: Enables space-saving PCB design with excellent thermal dissipation.

Typical Applications

  • Power supplies for industrial automation equipment, where fast switching and low losses are critical for efficient energy management.
  • Automotive onboard chargers and DC-DC converters requiring reliable rectification in harsh environments.
  • Switch mode power supplies (SMPS) used in telecommunications and computing systems to maintain stable voltage regulation.
  • Inverters and motor drives demanding high surge current tolerance and ultrafast recovery characteristics.

STBR1508B2Y-TR Advantages vs Typical Alternatives

This ultrafast diode offers superior switching speed and lower forward voltage drop compared to standard rectifiers, enabling enhanced energy efficiency and reduced heat dissipation. Its high surge current rating and wide temperature range provide increased reliability in challenging industrial and automotive settings. Additionally, the compact SOD-123F package supports high-density PCB layouts, making it a competitive choice versus bulkier or slower alternatives.

STBR1508B2Y-TR Brand Info

The STBR1508B2Y-TR is manufactured by STMicroelectronics, a global leader in semiconductor solutions. STMicroelectronics specializes in power semiconductor devices that deliver high efficiency, performance, and reliability for automotive, industrial, and consumer applications. This ultrafast diode is part of ST??s extensive portfolio of rectifiers designed to optimize power conversion and enhance system robustness.

FAQ

What is the maximum repetitive peak reverse voltage of this diode?

The device supports a maximum repetitive peak reverse voltage (VRRM) of 80 volts, making it suitable for applications operating within this voltage range.

How does the forward voltage drop affect device performance?

A lower forward voltage drop reduces conduction

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