Manufacturers
- Abracon
- Adam Tech
- Aerospace, Defense & Marine
- Agastat
- AIC
- AKM Semiconductor
- Alcoswitch
- Allegro
- Alps Electric
- Altera
- AMI Semiconductor
- AMP
- ams
- Analog Devices (ADI)
- Aptina Imaging
- Atmel
- Avago / Broadcom
- AVX
- Axicom
- Bccomponents
- Beyschlag
- BI Technologies
- Bourns Inc.
- Bowei Integrated Circuits
- Bridgelux
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- California Micro Devices
- Catalyst Semiconductor
- CGS
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- Citizen Electronics
- CML Microcircuits
- Coiltronics
- Cooper Bussmann
- Corcom
- Core Logic
- Cree
- CSR PLC
- CTS
- Cypress Semiconductor
- Dale
- Data Image
- Deutsch
- Diodes Incorporated
- DOMINANT Opto Technologies
- E-T-A
- Eaton
- ECS
- Edison Opto
- Elcon
- EPCOS
- Epistar
- Epson
- Everlight Electronics
- Exar
- Fairchild Semiconductor
- FCI
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- Fremont Micro Devices (FMD)
- Fujitsu Semiconductor
- Fulltech Electric
- General Semiconductor
- Harvatek
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- IDT
- Infineon Technologies
- Innolux
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- Intersil
- IRC
- ISSI
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- JRC / NJR
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- Maxim Integrated
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- OEG
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- Pulse Electronics
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- RFMD
- Richtek Technology
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- Samsung Electro-Mechanics
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- Schaffner
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- Semtech
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- Weidmuller
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- Xilinx
- Yageo
- Zetex Semiconductors
- ZJPT / Maojwei
News
Toshiba Develops Industry’s First 2200V Dual Silicon Carbide (SiC) MOSFET Module That Contributes to High Efficiency and Downsizing of Industrial Equipment
2023-08-29 | ReturnIndustrial applications like those mentioned above generally use DC1000V or lower power, and their power devices are mostly 1200V or 1700V products. However, anticipating widespread use of DC1500V in coming years, Toshiba has released the industry’s first 2200V product.
MG250YD2YMS3 offers low conduction loss with a low drain-source on-voltage (sense) of 0.7V (typ.)[2]. It also offers lower turn-on and turn-off switching loss of 14mJ (typ.)[3] and 11mJ (typ.)[3] respectively, an approximately 90% reduction[4] against a typical silicon (Si) IGBT. These characteristics contribute to higher equipment efficiency. Realizing low switching loss also allows the conventional three-level circuit to be replaced with a two-level circuit with a lower module count, contributing to equipment miniaturization.
Toshiba will continue to meet the market needs for high efficiency and the downsizing of industrial equipment.
Notes:
[1] Among dual SiC MOSFET modules. Toshiba survey, as of August 2023.
[2] Test condition: ID=250A, VGS=+20V, Tch=25°C
[3] Test condition: VDD=1100V, ID=250A, Tch=150°C
[4] Toshiba comparison of switching loss for a 2300V Si module and MG250YD2YMS3, the new all SiC MOSFET module, as of August 2023 (performance values for the 2300V Si module is a Toshiba estimate based on papers published in or before March 2023.)
Applications
Industrial Equipment
>Renewable energy power generation systems (photovoltaic power systems, etc.)
>Energy storage systems
>Motor control equipment for industrial equipment
>High frequency DC-DC converter, etc.
Features
>Low drain-source on-voltage (sense):
VDS(on)sense=0.7V (typ.) (ID=250A, VGS=+20V, Tch=25°C)
>Low turn-on switching loss:
Eon=14mJ (typ.) (VDD=1100V, ID=250A, Tch=150°C)
>Low turn-off switching loss:
Eoff=11mJ (typ.) (VDD=1100V, ID=250A, Tch=150°C)
>Low stray inductance:
LsPN=12nH (typ.)
Follow the link below for more on the new product.
MG250YD2YMS3
Follow the link below for more on Toshiba’s SiC Power Devices.
SiC Power Devices
* Company names, product names, and service names may be trademarks of their respective companies.
* Information in this document, including product prices and specifications, content of services and contact information, is current on the date of the announcement but is subject to change without prior notice.
Source: https://www.global.toshiba