STPSC20065DY Overview
The STPSC20065DY is a high-performance power semiconductor device designed for efficient AC/DC conversion and power management in industrial and consumer electronics. This device integrates a dual Schottky barrier diode configuration optimized for low forward voltage drop and fast recovery, ensuring minimal power loss and enhanced thermal stability. Suitable for applications requiring high reliability and compact design, it supports operation at high switching frequencies with excellent surge current handling. Engineered to meet demanding electrical specifications, the STPSC20065DY offers a robust solution for engineers focused on power efficiency and system durability. For sourcing and detailed technical support, visit IC Manufacturer.
STPSC20065DY Technical Specifications
| Parameter | Value | Unit | 
|---|---|---|
| Maximum Repetitive Peak Reverse Voltage (VRRM) | 60 | V | 
| Average Forward Current (IF(AV)) | 20 | A | 
| Surge Non-Repetitive Forward Current (IFSM) | 150 | A | 
| Forward Voltage Drop (VF) at IF=20A | 0.55 | V | 
| Maximum Reverse Current (IR) at VR=60V | 0.5 | mA | 
| Operating Junction Temperature (Tj) | -55 to 150 | ??C | 
| Package Type | TO-220AB | ?C | 
| Junction to Ambient Thermal Resistance (RthJA) | 62 | ??C/W | 
STPSC20065DY Key Features
- Dual Schottky Barrier Diodes: Enables low forward voltage drop, reducing conduction losses and improving power efficiency in rectification circuits.
 - High Surge Current Capability: Supports surge currents up to 150A, ensuring robust performance during transient overloads and enhancing device reliability.
 - Wide Operating Temperature Range: Operates reliably from -55??C to 150??C, suitable for harsh industrial environments and elevated thermal conditions.
 - Compact TO-220AB Package: Facilitates easy mounting with efficient heat dissipation, simplifying thermal management in power electronic assemblies.
 
Typical Applications
- Power supply rectification for industrial and consumer electronic devices, where efficient AC/DC conversion and low power loss are critical for system performance.
 - Battery chargers requiring high current handling and fast switching capability to optimize charging efficiency and reduce heat generation.
 - Freewheeling diodes in DC motor drives and inverters, providing reliable conduction during switching events and protecting against voltage spikes.
 - Switch mode power supplies (SMPS) where compact design and thermal performance support high-frequency operation and long-term reliability.
 
STPSC20065DY Advantages vs Typical Alternatives
This device delivers lower forward voltage drop and faster switching speed compared to standard silicon diodes, resulting in improved efficiency and reduced power dissipation. The high surge current capability and broad temperature tolerance provide enhanced reliability under demanding operating conditions. Its integrated dual diode configuration simplifies circuit design and reduces component count, offering a compact and cost-effective solution for power conversion applications.
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STPSC20065DY Brand Info
The STPSC20065DY is manufactured by STMicroelectronics, a global leader in semiconductor technology renowned for innovation in power management and discrete components. STMicroelectronics designs this product to meet stringent industrial standards, combining advanced Schottky diode technology with proven manufacturing quality. The brand??s commitment to reliability and performance ensures that this diode is a trusted choice for engineers worldwide in power electronics and energy-efficient systems.
FAQ
What is the maximum current rating for this diode?
The device supports an average forward current of 20A and can handle surge currents up to 150A non-repetitively, making it suitable for applications with transient overload conditions.
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Which package type does the STPSC20065DY use, and how does it affect thermal management?
It is housed in a TO-220AB package, which provides efficient heat dissipation due to its metal tab. This package allows for easy mounting on heat sinks, improving thermal performance in high power applications.
Can this diode operate in high-temperature environments?
Yes, the device is






