STPS3L60UY STMicroelectronics Schottky Diode 60V 3A SMA Package

  • Schottky diode rectifier provides efficient low forward voltage drop, reducing power loss in circuits.
  • Supports a maximum repetitive peak reverse voltage suitable for protecting components in power supplies.
  • Compact DO-214AC package enables board-space savings and simplifies thermal management in dense layouts.
  • Ideal for use in power conversion systems where fast switching and high efficiency improve overall performance.
  • Built to meet industry standards ensuring consistent operation under varying electrical and thermal conditions.
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STPS3L60UY Overview

The STPS3L60UY is a high-performance ultrafast diode designed for efficient rectification in power electronics applications. Offering a low forward voltage drop and rapid recovery time, it significantly reduces switching losses and improves overall system efficiency. With its robust design and reliable operation, it is ideal for use in power supplies, inverters, and motor drives where fast switching and thermal stability are critical. This device meets the demanding requirements of modern industrial electronics, providing engineers and sourcing specialists with a trusted solution for enhancing power conversion performance. For more details, visit IC Üreticisi.

STPS3L60UY Technical Specifications

Parametre Değer Birim
Maksimum Tekrarlayan Tepe Ters Gerilim (VRRM) 60 V
Ortalama İleri Akım (IF(AV)) 3 A
Surge Forward Current (IFSM) 80 A
Forward Voltage Drop (VF) at IF = 3A 0.45 (typical) V
Tersine Kurtarma Süresi (trr) 35 ns
Junction Temperature Range (Tj) -65 to +150 ??C
Thermal Resistance Junction to Ambient (RthJA) 75 ??C/W
Paket Tipi DO-214AB (SMC)

STPS3L60UY Key Features

  • Ultrafast Recovery: Minimizes switching losses by providing rapid reverse recovery, enhancing efficiency in high-frequency power conversion.
  • Low Forward Voltage Drop: Reduces conduction losses, improving thermal performance and energy savings in power circuits.
  • High Surge Current Capability: Supports transient current peaks up to 80A, ensuring reliability under demanding load conditions.
  • Wide Operating Temperature Range: Maintains stable operation from -65??C to 150??C, suitable for harsh industrial environments.

Tipik Uygulamalar

  • Switch mode power supplies (SMPS) requiring fast switching diodes to improve conversion efficiency and reduce electromagnetic interference.
  • Freewheeling diodes in motor control circuits, providing reliable commutation and protecting power transistors during inductive load switching.
  • Output rectification in DC-DC converters where low forward voltage and ultrafast recovery enhance overall system performance.
  • Inverter circuits for renewable energy systems such as solar and wind power, where efficient and robust diodes contribute to better energy management.

STPS3L60UY Advantages vs Typical Alternatives

This ultrafast diode offers superior switching speed and lower forward voltage compared to standard recovery diodes, resulting in reduced power losses and improved thermal management. Its ability to handle high surge currents and operate reliably over a wide temperature range makes it a more robust choice than typical rectifiers. These advantages translate into increased system efficiency, longer device lifespan, and better integration into compact power electronics designs.

STPS3L60UY Brand Info

The STPS3L60UY is manufactured by STMicroelectronics, a global leader in semiconductor solutions. Renowned for innovation and quality, STMicroelectronics offers this diode as part of its extensive portfolio of power semiconductors engineered for industrial, automotive, and consumer applications. The STPS3L60UY reflects the brand??s commitment to delivering reliable, high-efficiency components that meet the rigorous demands of modern electronic systems.

SSS

What is the maximum repetitive peak reverse voltage of the STPS3L60UY?

The device supports a maximum repetitive peak reverse voltage of 60V, making it suitable for applications that require reliable blocking capability under reverse voltage conditions.

How does the forward voltage drop affect system efficiency?

A lower forward voltage drop reduces conduction losses during diode operation, which

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