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RBR2MM60BTR
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RBR2MM60BTR Description
RBR2MM60BTR Description
The RBR2MM60BTR from ROHM Semiconductor is a high-performance Schottky barrier diode designed for fast recovery and low forward voltage drop applications. With a 60V reverse voltage (Vr) and 2A average rectified current (Io), this surface-mount diode is optimized for efficiency in power conversion circuits. Its Schottky technology ensures minimal switching losses, making it ideal for high-frequency applications. Packaged in PMDU (Tape & Reel), it supports automated assembly processes while complying with ROHS3 and REACH environmental standards.
RBR2MM60BTR Features
- Fast Recovery (<500ns) for high-speed switching, reducing power loss in dynamic circuits.
- Low Forward Voltage (580mV @ 2A) enhances energy efficiency in power-sensitive designs.
- High Reverse Voltage (60V) provides robust protection in demanding environments.
- Low Leakage Current (100µA @ 60V) minimizes standby power consumption.
- Wide Operating Temperature Range (up to 150°C) ensures reliability in industrial and automotive applications.
- Compact PMDU Package enables space-saving PCB layouts while supporting high-current handling.
RBR2MM60BTR Applications
This diode excels in:
- Switch-Mode Power Supplies (SMPS) due to its fast recovery and low Vf.
- DC-DC Converters where efficiency and thermal performance are critical.
- Reverse Polarity Protection circuits in automotive and battery-powered systems.
- Freewheeling/Clamping Diodes in motor drives and inductive load applications.
- High-Frequency Rectification in RF and telecommunications equipment.
Conclusion of RBR2MM60BTR
The RBR2MM60BTR stands out for its combination of speed, efficiency, and ruggedness, making it a superior choice for modern power electronics. Its low leakage, high-temperature tolerance, and compact form factor address the needs of automotive, industrial, and consumer applications. Engineers seeking a reliable, high-performance Schottky diode with fast switching and minimal losses will find this component an optimal solution.



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