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MURHB860CTT4G
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MURHB860CTT4G Description
MURHB860CTT4G Description
The MURHB860CTT4G from onsemi is a high-performance diode array designed for general-purpose rectification applications. This surface-mount device (D2PAK package) features a 1 Pair Common Cathode configuration, offering a 600V maximum reverse voltage (Vr) and 4A average rectified current (Io) per diode. With a fast recovery time of ≤500ns and a reverse recovery time (trr) of just 35ns, it ensures efficient switching performance in high-frequency circuits. The diode operates with a forward voltage (Vf) of 2.8V at 4A, minimizing power losses. Its low reverse leakage current (10µA @ 600V) enhances reliability in demanding environments.
MURHB860CTT4G Features
- Fast Recovery Technology: Optimized for ≤500ns recovery, ideal for high-speed switching.
- High Voltage & Current Handling: 600V Vr and 4A Io support robust power applications.
- Low Power Dissipation: 2.8V Vf reduces thermal stress.
- Surface-Mount D2PAK Package: Compact design for space-constrained PCBs.
- RoHS3 & REACH Compliant: Environmentally friendly and meets global standards.
- Common Cathode Configuration: Simplifies circuit design in bridge rectifiers.
MURHB860CTT4G Applications
This diode array excels in:
- Switch-Mode Power Supplies (SMPS): Efficient rectification in AC-DC converters.
- Motor Drives & Inverters: Fast recovery minimizes switching losses.
- Industrial Power Systems: High-voltage tolerance for rugged environments.
- Automotive Electronics: Reliable performance under high-temperature conditions.
- Renewable Energy Systems: Solar inverters benefit from low leakage and high efficiency.
Conclusion of MURHB860CTT4G
The MURHB860CTT4G stands out for its fast recovery, high voltage rating, and compact packaging, making it a superior choice for power rectification in industrial, automotive, and energy systems. While marked as obsolete, its MEGAHERTZ™ series pedigree ensures proven performance. Engineers seeking a balance of speed, efficiency, and durability in diode arrays will find this model highly effective for demanding applications.





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