STPSC6H065BY-TR STMicroelectronics 650V Schottky Diode, TO-220AB Package

  • This device functions as a high-efficiency power MOSFET, improving energy management in electronic circuits.
  • Featuring a low on-resistance, it minimizes power loss and enhances overall device performance under load.
  • The compact SOT-23 package reduces board space, enabling more streamlined and lightweight designs.
  • Ideal for use in DC-DC converters where efficient switching and thermal performance are critical.
  • Manufactured with strict quality controls to ensure consistent operation and long-term reliability.
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STPSC6H065BY-TR Overview

The STPSC6H065BY-TR is a high-performance, robust dual Schottky diode designed for industrial power supply applications. This device provides low forward voltage drop and high surge current capability, ensuring efficient power conversion and reduced energy losses. With a maximum repetitive peak reverse voltage of 60 V and a continuous forward current rating of 6 A, it supports reliable protection and rectification functions in demanding environments. Its compact surface-mount package facilitates easy integration in automated assembly processes. Ideal for engineers and sourcing specialists seeking dependable diode solutions, the product is supported by detailed technical data from IC Manufacturer.

STPSC6H065BY-TR Technical Specifications

Parameter Value Unit
Maximum Repetitive Peak Reverse Voltage (VRRM) 60 V
Maximum Average Forward Rectified Current (IF(AV)) 6 A
Surge Non-Repetitive Forward Current (IFSM) 80 A
Forward Voltage Drop (VF) at IF=6A 0.55 (typical) V
Operating Junction Temperature Range (TJ) -65 to +150 ??C
Storage Temperature Range (Tstg) -65 to +150 ??C
Reverse Current (IR) at VR=60V 500 ??A (max)
Package Type DO-214AB (SMA)

STPSC6H065BY-TR Key Features

  • Dual Schottky diode configuration: Enables efficient rectification in compact circuits, reducing component count and saving board space.
  • Low forward voltage drop (0.55 V typical): Minimizes power dissipation and improves energy efficiency in power supplies.
  • High surge current capability (80 A peak): Supports transient conditions without damage, enhancing circuit reliability under load spikes.
  • Wide operating temperature range: Suitable for harsh industrial environments, ensuring consistent performance from -65??C to +150??C.

Typical Applications

  • High-frequency switching power supplies requiring fast recovery and low conduction losses for efficient power conversion.
  • Freewheeling diodes in DC-DC converters to reduce voltage spikes and enhance switching efficiency.
  • Reverse polarity protection circuits to safeguard sensitive electronics from incorrect power connections.
  • Battery charger circuits where low forward voltage drop helps maintain power efficiency and thermal performance.

STPSC6H065BY-TR Advantages vs Typical Alternatives

This dual Schottky diode offers superior low forward voltage drop and high surge current capability compared to typical silicon diodes, resulting in improved efficiency and reliability. Its compact DO-214AB package simplifies PCB integration, and its excellent thermal tolerance supports operation in demanding industrial environments. These advantages translate into reduced power losses, enhanced system robustness, and lower cooling requirements, making it a preferred choice over traditional rectifiers and discrete diode solutions.

STPSC6H065BY-TR Brand Info

The STPSC6H065BY-TR is manufactured by STMicroelectronics, a global leader in semiconductor solutions with a strong portfolio in power management components. STMicroelectronics specializes in delivering high-quality Schottky diodes optimized for industrial power applications, combining reliability with advanced manufacturing processes. This product exemplifies their commitment to innovation and performance, serving a broad range of markets including industrial automation, power supplies, and automotive electronics.

FAQ

What is the maximum continuous forward current rating of this diode?

The diode supports a maximum continuous forward rectified current of 6 A, making it suitable for medium-power applications and ensuring reliable operation under typical load conditions.

Can the device handle high surge currents during transient events?

Yes, it

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