The STPS10L25G-TR is a high-performance Schottky diode manufactured by STMicroelectronics. This single diode is designed for applications that require fast recovery times and high current handling capabilities. With a maximum forward voltage of 460 mV at 10 A and a reverse leakage current of just 800 µA at 25 V, the STPS10L25G-TR offers excellent efficiency and reliability in demanding power electronic systems.
STPS10L25G-TR Features
Fast Recovery Time: The STPS10L25G-TR boasts a fast recovery time of less than 500 ns, ensuring minimal power loss and improved efficiency in high-speed switching applications.
High Current Handling: Capable of handling up to 10 A of average rectified current, this diode is ideal for applications requiring high current capabilities.
Low Forward Voltage: With a maximum forward voltage of 460 mV at 10 A, the STPS10L25G-TR provides high efficiency and low power dissipation.
Robust Reverse Voltage Rating: The diode can withstand a maximum reverse voltage of 25 V, making it suitable for a wide range of applications.
Surface Mount Technology: The D2PAK package allows for easy integration into surface mount printed circuit boards, reducing overall system size and improving reliability.
Compliance with Regulations: The STPS10L25G-TR is REACH unaffected, RoHS3 compliant, and classified under EAR99, ensuring compliance with international standards and regulations.
STPS10L25G-TR Applications
The STPS10L25G-TR is an ideal choice for various applications where high efficiency, fast switching, and high current handling are required. Some specific use cases include:
Power Supplies: In switching power supplies, the STPS10L25G-TR's low forward voltage and fast recovery time contribute to high efficiency and reduced power loss.
Automotive Electronics: The diode's ability to handle high currents and withstand high reverse voltages makes it suitable for automotive applications, such as alternators and battery management systems.
Renewable Energy Systems: In solar power inverters and wind turbine converters, the STPS10L25G-TR's performance characteristics help maximize energy conversion efficiency.
Conclusion of STPS10L25G-TR
The STPS10L25G-TR from STMicroelectronics is a high-performance Schottky diode that offers a combination of fast recovery time, high current handling, and low forward voltage. Its compliance with international standards and regulations, along with its robust performance characteristics, make it an excellent choice for a wide range of power electronic applications. Whether used in power supplies, automotive electronics, or renewable energy systems, the STPS10L25G-TR delivers reliable performance and efficiency.
Tech Specifications
Configuration
PPAP
Product Status
Automotive
Supplier Package
Package / Case
Peak Forward Voltage (V)
Technology
REACH Status
Voltage - DC Reverse (Vr) (Max)
Peak Non-Repetitive Surge Current (A)
EU RoHS
Maximum Continuous Forward Current (A)
Current - Average Rectified (Io)
Operating Temperature - Junction
Moisture Sensitivity Level (MSL)
Capacitance @ Vr, F
ECCN
Supplier Temperature Grade
Mounting Type
Standard Package Name
Current - Reverse Leakage @ Vr
Pin Count
Mounting
Lead Shape
SVHC
HTSUS
Package
PCB changed
HTS
ECCN (US)
Supplier Device Package
Minimum Operating Temperature (°C)
Maximum Operating Temperature (°C)
Package Height
Mfr
RoHS Status
Speed
SVHC Exceeds Threshold
Peak Reverse Current (uA)
Peak Reverse Repetitive Voltage (V)
Package Length
Series
Type
Tab
Voltage - Forward (Vf) (Max) @ If
Part Status
Package Width
Base Product Number
Mounting Style
Unit Weight
Vrrm - Repetitive Reverse Voltage
Product
Ir - Reverse Current
RoHS
Minimum Operating Temperature
Vf - Forward Voltage
Ifsm - Forward Surge Current
Length
Height
Maximum Operating Temperature
If - Forward Current
USHTS
Width
STPS10L25G-TR Documents
Download datasheets and manufacturer documentation for STPS10L25G-TR
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Shipping Rate
Shipments are made once a day around 5pm, excluding Sundays. Once shipped, the estimated delivery time is usually 5-7 business days, depending on the courier you choose.
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