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Comparing Inverter Solutions: Silicon vs. Wide
This article explores the differences between inverters based on silicon power devices and those utilizing WBG technologies,
A Very High Frequency dc-dc Converter Based on a Class
Abstract— This paper introduces a new dc-dc converter suitable for operation at very high frequencies under on-off control. The converter power stage is based on a resonant inverter
(PDF) Review on Silicon Carbide based High
This article provides a comprehensive review of Silicon Carbide (SiC) based inverters designed for High-Speed (HS) drive applications,
Review on Silicon Carbide-Based High-Fundamental Frequency Inverters
This article provides a comprehensive review of Silicon Carbide (SiC) based inverters designed for High-Speed (HS) drive applications, which require higher outp
Review on Silicon Carbide based High-Fundamental
Recent research and development efforts in SiC inverters for electric drive applications highlight a strong focus on achieving high power density, high efficiency, and high-frequency...
Digital Functional Blocks Implementation of PWM and Control for
This paper is about the development and demonstration of a motor drive for e-transport applications based on an innovative hybrid Si-SiC dual switching frequency
600 kW XM3 High Performance Dual Three-Phase
With half the weight and volume of a standard 62mm module; the XM3 footprint maximizes power density while minimizing loop inductance for
Digital Functional Blocks Implementation of PWM and Control for a High
This paper is about the development and demonstration of a motor drive for e-transport applications based on an innovative hybrid Si-SiC dual switching frequency
(PDF) Review on Silicon Carbide based High-Fundamental Frequency
This article provides a comprehensive review of Silicon Carbide (SiC) based inverters designed for High-Speed (HS) drive applications, which require higher output
Viper Inverter Power Switch
Viper is the first 800-Volt inverter to use an innovative, double-side cooled silicon carbide (SiC)-based power switch that delivers the higher power densities and efficiencies needed to extend
Comparing Inverter Solutions: Silicon vs. Wide Bandgap Power
This article explores the differences between inverters based on silicon power devices and those utilizing WBG technologies, evaluating their advantages, disadvantages,
600 kW XM3 High Performance Dual Three-Phase Inverter
With half the weight and volume of a standard 62mm module; the XM3 footprint maximizes power density while minimizing loop inductance for low-loss; high-frequency operation with simple
Viper Inverter Power Switch
Viper is the first 800-Volt inverter to use an innovative, double-side cooled silicon carbide (SiC)-based power switch that delivers the higher power
IPG5 800V Silicon Carbide Integrated Inverter
Our Silicon Carbide inverter has the highest frequency switching rate that is currently possible and is 800V compatible. This means faster power transfer and a lighter system compared to 400V
Review on Silicon Carbide-Based High-Fundamental Frequency
This article provides a comprehensive review of Silicon Carbide (SiC) based inverters designed for High-Speed (HS) drive applications, which require higher outp
Input-parallel output-series Si-SiC hybrid inverter with fractional
This topology combines the strong current carrying capability of Si devices with the low switching loss of SiC devices at high frequency and achieves high quality power