New 2A DPAK diode delivers zero Qrr, 175°C operation, and simplified thermal management for demanding power applications
MCC is excited to introduce the SICU02120G4J, a next-generation 1200V, 2A Silicon Carbide (SiC) Schottky Barrier Rectifier in a compact DPAK package. Designed to meet the demands of high-voltage, high-frequency power systems, this device addresses key design challenges including reverse-recovery losses, thermal stress, EMI, and parallel current sharing.
With zero reverse recovery charge (Qrr ≈ 0), the SICU02120G4J-TP minimizes turn-off losses and significantly reduces EMI. Its ultra-fast switching capability enables higher operating frequencies and smaller magnetics, while the 175°C maximum junction temperature ensures reliable performance under heavy thermal loads.
A positive temperature coefficient of forward voltage supports natural current sharing in parallel configurations, and the DPAK package with exposed thermal pad simplifies heat dissipation and layout design. The result is a robust, efficient solution that enhances system reliability and streamlines design across multiple applications.
Features & Benefits:
- 1200V / 2A SiC Schottky Rectifier Delivers high-voltage performance in a compact footprint, ideal for demanding power conversion applications.
- Zero Reverse Recovery Charge (Qrr ≈ 0) Virtually eliminates switching losses and significantly improves efficiency in fast-switching environments.
- Ultra-Fast Switching Capability Enables higher operating frequencies, reducing magnetic component size and overall system footprint.
- Positive Temperature Coefficient of Forward Voltage (Vf) Supports natural current sharing in parallel configurations, enhancing thermal stability and simplifying design.
- High Junction Temperature Rating (Tj max = 175°C) Reduces cooling requirements and improves reliability under high thermal stress.
- Lower EMI Compared to Silicon Diodes Minimizes electromagnetic interference in high-speed switching applications, improving system compliance and performance.
- Thermally Efficient DPAK Package with Exposed Pad Enhances heat dissipation and simplifies PCB layout with a standard footprint for easy design-in.
- Compact DPAK Package with Standard Footprint Streamlined for easy design-in, the DPAK format offers efficient thermal performance and compatibility with common PCB layouts.
Product Highlights
1200V Schottky Barrier Diode
1
Higher Efficiency
Zero reverse recovery charge (Qrr ≈ 0) and ultra-fast switching minimize turn-off and conduction losses, improving efficiency in high-frequency power stages.
1200V Schottky Barrier Diode
2
Smaller, Lighter Systems
Fast switching supports higher operating frequencies, allowing for reduced magnetic component size and smaller heat sinks, resulting in a more compact and lightweight system design.
1200V Schottky Barrier Diode
3
Improved Thermal Robustness
175°C maximum junction temperature and DPAK with exposed thermal pad enhance heat dissipation, reducing cooling requirements and increasing reliability under thermal stress.
1200V Schottky Barrier Diode
4
Simplified Parallel Operation
Positive temperature coefficient of forward voltage (Vf) enables natural current sharing, making it easier to parallel devices without complex balancing circuitry.
Applications
The SICU02120G4J-TP supports high-frequency, high-efficiency rectification across a wide range of power conversion systems. Its zero reverse recovery and high-temperature capability make it a strong fit from industrial power fronts to renewable and data center infrastructure.
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Industrial Power and Automation |
Data Center and IT Infrastructure |
Renewable Energy and Energy Storage |
Consumer and Commercial Electronics |
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Product Attributes, Parametrics & Datasheet
|
Product |
Type |
Package |
Average Forward Current IF(AV)(A) |
Peak Repetitive Reverse Voltage VRRM (V) |
Forward Voltage VF (V) [max]@IF(A) |
Mounting Type |
Datasheet |
|
SiC SBD |
DPAK |
2 |
1200 |
1.6 |
Surface mount |
Now available, purchase directly from MCC or through our authorized distributors.
Use the MCC chatbot to quickly request a sample or ask a question.
For a deeper dive into rectifier diode types, selection, and real-world applications, check out our comprehensive engineer’s guide.


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