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Hardware Resources for mSiC® Products

Silicon Carbide (SiC) Hardware Resources to Adopt SiC With Ease, Speed and Confidence


Unlock the full potential of your power systems with our cutting-edge mSiC® solutions. Our comprehensive suite of SiC reference designs, technology demonstrators and evaluation kits are meticulously engineered to streamline your development process, enhance performance and slash your time-to-market. Dive into high-efficiency power conversion with our state-of-the-art tools tailored to empower engineers and innovators in harnessing the exceptional thermal and electrical properties of SiC. Whether you're designing for automotive, industrial or energy applications, our hardware resources are your gateway to a future of unparalleled power management.

SiC Reference Designs and Technology Demonstrators


Title

Applications

Function Device Type
30 kW Vienna 3-Phase Power Factor Correction (PFC) Reference Design Automotive
Data Center
Electric Vehicles 
AC-DC MSC015SMA070B
MSC050SDA120B
45W Auxiliary Power Supply for 800V Traction Inverters Automotive
Electric Vehicles
AC-DC
DC-AC
DC-DC
MSC750SMA140SD
High-Voltage Auxiliary Electronic Fuse (E-Fuse) Demonstrator Automotive
Electric Vehicles
Aerospace and Defense
Industrial
Circuit Protection MSC035SMA070B4
MSC015SMA070B4
MSC040SMA120B4
MSC025SMA120B4
High-Voltage Bidirectional Auxiliary E-Fuse Reference Design Automotive
Electric Vehicles
Aerospace and Defense
Industrial
Grid and Microgrid
Circuit Protection MSC017SMA120B4N
High-Voltage Hardware-Based E-Fuse Reference Design Aerospace and Defense
Industrial
Grid and Microgrid
Sustainability
Data Center
Circuit Protection MSC017SMA120SD
MSC060SMA070SD
PSMT Half-Bridge Reference Design Industrial
Grid and Microgrid
Sustainability
Automotive
Electric Vehicles
DC-AC MSC080SMA120SC
1.5 kW E-2W EV Charger Reference Design

Electric Vehicles

AC-DC
DC-AC
MSC750SMA170B4
Mersen 150 kVA 3-Phase SiC Power Stack Evaluation Kit Industrial
Grid and Microgrid
Sustainability
Aerospace and Defense
Electric Vehicles
AC-DC
DC-AC
DC-DC
MSCSM120AM042CD3AG
Isolated Bias Generator for SiC Gate Drivers Reference Design Industrial
Grid and Microgrid
Appliance
Aerospace and Defense
Gate Driver  
3 kW Single-Phase Grid-Tied Inverter Reference Design Grid and Microgrid
Sustainability
Solar Generation
DC-AC MSC030SDA070BCT
MSC360SMA120B
MSC060SMA070B4N
3.8 kW/7.6 kW Totem Pole Demonstration Application Automotive
Electric Vehicles
AC-DC
DC-AC
MSC025SMA120B
11 kW Totem Pole Demonstration Application Automotive
Electric Vehicles
AC-DC
DC-AC
MSC025SMA120B4
11 kW Dual Active Bridge DC-DC Demonstration Application Automotive
Electric Vehicles
Sustainability
DC-DC MSC750SMA170B4
4 kW DC-DC Demonstration Application Automotive
Electric Vehicles
DC-DC MSC080SMA120SA

Demo and Evaluation Boards


Part Number: Quantity: Price per Unit (in USD): Total Amt:
EV84K75A

The EV84K75A Single-Channel Discrete Gate Driver Evaluation Board is a development platform designed to evaluate and demonstrate the performance of a single-channel gate driver for controlling power transistors in various switching applications.

EV39N46A

The EV39N46A Single-Channel Module Gate Driver Evaluation Board is a development platform designed to make it easy to evaluate and demonstrate the performance of a single-channel gate driver for Si, IGBT and mSiC® MOSFETs and modules.

EV40T43A

The EV40T43A Half Bridge Evaluation Board provides a ready-to-use platform for testing and evaluating half-bridge power circuit designs, simplifying development by enabling quick prototyping and performance assessment of power switching applications.

EV67D28A

The Power Motherboard (PMB) Fast Evaluation Tool (FET) is designed to provide an easy, versatile and efficient SiC MOSFET testing platform to evaluate conduction and switching losses, perform Double Pulse Testing (DPT), and analyze Buck and Boost converter performance.

MSCDR-SP6LIEVB-001

The SP6LIEVB is a development platform designed to facilitate the testing and evaluation of SP6LI mSiC® MOSFET power modules, enabling engineers to assess performance and optimize designs for high-efficiency power conversion applications.

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