2026³â 05¿ù 06ÀÏ ¼ö¿äÀÏ
 
 
  ÇöÀçÀ§Ä¡ > ´º½ºÁö´åÄÄ > Science & Technology

·£¼¶¿þ¾îºÎÅÍ µÅÁöµµ»ì±îÁö... ³ë·ÃÇØÁø »ç±âÇà°¢

 

Á¤Ä¡

 

°æÁ¦

 

»çȸ

 

»ýȰ

 

¹®È­

 

±¹Á¦

 

°úÇбâ¼ú

 

¿¬¿¹

 

½ºÆ÷Ã÷

 

ÀÚµ¿Â÷

 

ºÎµ¿»ê

 

°æ¿µ

 

¿µ¾÷

 

¹Ìµð¾î

 

½Å»óǰ

 

±³À°

 

ÇÐȸ

 

½Å°£

 

°øÁö»çÇ×

 

Ä®·³

 

Ä·ÆäÀÎ
Çѻ츲 ¡®¿ì¸®´Â ÇѽҸ²¡¯ ½Ò ¼Òºñ Ä·ÆäÀÎ ½Ã...
1000¸¸¿øÂ¥¸® Àΰø¿Í¿ì, °Ç°­º¸Çè Áö¿ø ¡®Æò...
- - - - - - -
 

Transphorm¡¯s GaN First to Hit Short Circuit Robustness Milestone Key to Motor Drive Applications

Achieved in Collaboration with Yaskawa Electric Corporation, Capability Leverages the Fundamental Advantages of Transphorm¡¯s Normally-Off Platform
´º½ºÀÏÀÚ: 2023-08-10

GOLETA, CALIF.-- August 10, 2023 -- Transphorm, Inc. (Nasdaq: TGAN), a global leader in GaN power semiconductors, the future of next generation power systems, today announced it has demonstrated up to 5 microsecond short circuit withstand time (SCWT) on a GaN power transistor with a patented technology. The achievement is the first of its kind on record, marking an important milestone for the industry as a whole. It proves Transphorm GaN’s ability to meet the required short circuit capabilities of rugged power inverters such as servo motors, industrial motors, and automotive powertrains served traditionally by silicon IGBTs or silicon carbide (SiC) MOSFETs—an over $3 billion GaN TAM over the next 5 years.

The demonstration was developed with support from Yaskawa Electric Corporation, a long-term strategic partner of Transphorm’s and a global leader in low and medium voltage drives, servo systems, machine controllers, and industrial robots. This makes GaN a highly attractive power conversion technology for servo systems, as it allows for higher efficiency and reduced size compared to incumbent solutions. To do that, GaN must pass stringent robustness tests—of which, short-circuit survivability is the most challenging. In case of short-circuit faults, the device must survive extreme conditions with both high current and high voltage. The system can take up to a few microseconds to detect the fault and shut down the operations. During this time, the device must withstand the fault on its own.

“If a power semiconductor device cannot survive short-circuit events, the system itself may fail. There was a strong perception that GaN power transistors could not meet the short circuit requirements needed for heavy-duty power applications such as ours,” said Motoshige Maeda, Department Manager of Fundamental R&D Management Department, Corporate Technology Division, Yaskawa. “Having worked with Transphorm for many years, we believed that perception to be unfounded and have been proven right today. We’re excited about what their team has accomplished and look forward to demonstrating how this new GaN feature can benefit our designs.”

The short-circuit technology has been demonstrated on a newly designed 15 mΩ 650 V GaN device. Notably, that device reaches a peak efficiency of 99.2% and a maximum power of 12 kW in hard-switching conditions at 50 kHz. The device demonstrated not only performance, but also reliability, passing high-temperature high-voltage stress requirements.

“Standard GaN devices can withstand short-circuit for only a few hundredths of nanoseconds, which is too short for fault detection and safe shut-down. However, with our cascode architecture and key patented technology, we were able to demonstrate short-circuit withstand time up to 5 microseconds with no additional external components, thus retaining low cost and high performance,” said Umesh Mishra, CTO and Co-Founder, Transphorm. “We understand the demands of high-power, high-performance inverter systems. We have a long history of strong innovation, and we’re proud to say that experience helped us bring GaN to the next level. This is yet another validation of Transphorm’s global leadership in high voltage GaN robustness and reliability and will be a gamechanger for GaN in motor drives and other high-power systems.”

The full description explaining the SCWT achievement, the demonstration analysis, and more is expected to be presented at a major power electronics conference next year.



 Àüü´º½º¸ñ·ÏÀ¸·Î

Quectel Introduces FGH200M Wi-Fi HaLow Module for massive IoT Deployments
AMOLED Smartphone Display Shipments Expected to Decline Sharply in 2026
Axelspace-Led Consortium Chosen for Japan Space Fund Project on Next-Gen Earth Observation Satellite Technology
Biocytogen and Sihuan Pharmaceutical Announce Strategic Partnership in Weight Loss and Beyond
bet365 Partners with TestMu AI to Accelerate Global Release Velocity with Agentic AI Quality Engineering
Boomi Builds Analyst Momentum Across Integration, API Management, Data Management, and Agentic AI
Quectel Expands Mid-tier 5G Portfolio with New RedCap 3GPP Release 17 Variants

 

Takeda¡¯s Zasocitinib Shows Rapid, Durable Skin Clearance in Once-Dail...
Regnology Announces Next-Generation Ascend Platform with Agentic AI, A...
SS&C Unveils WorkHQ to Power Enterprise Agentic Automation
AI Ambitions at Risk as Only 14% of Enterprises Fully Realize Cloud Va...
Boomi Named a Leader in IDC MarketScape for Worldwide API Management 2...
Global PC Shipments Grew 3% in 1Q26 as Supply Chain Impacts Emerged
NBA Bounce Brings Action-Packed Basketball Fun to LG Electronics¡¯ Sma...

 


°øÁö»çÇ×
'º£³×ÀÍ' Áß¹® Ç¥±â 宝Ò¬ìÌ, 'À̺ñÁî: ÀÌÁö' Áß¹® Ç¥±â æ¶币òª...
¿¡³ÊÀ¯ Enereu 额Òö äþÒö
¾Ë¸®¾Ë Allial Áß¹® Ç¥±â ä¹××尔 ä¹××ì³
´º½ºÁö Áß¹®Ç¥±â´Â À½Â÷ Ç¥±â¹æ½Ä '纽ÞÙó¢ ´Ï¿ì½ºÁö'
¹Ìµð¾î¾Æ¿ì¾î Mediaour ØÚ体ä²们 ØÚô÷ä²Ùú MO ¿¥¿À ØÚä² ØÚä²
¾Ë¸®À¯ºñ Alliuv ä¹备: ä¹êó备, ¾Ë¶ã Althle ä¹÷åìÌ
´ºÆÛ½ºÆ® New1st Áß¹® Ç¥±â 纽ììãæ(¹øÃ¼ Òïììãæ), N1 纽1
¿£ÄÚ½º¸ð½º : À̾¾ 'EnCosmos : EC' Áß¹® Ç¥±â ì¤ñµ
¾ÆÀ̵ð¾î·Ð Idearon Áß¹® Ç¥±â ì¤îè论 ì¤îèÖå
¾ËÇÁ·Ò Alfrom Áß¹® Ç¥±â ä¹尔ÜØ ä¹ì³ÜØ
´º½º±×·ì Á¤º¸ ¹Ìµð¾î ºÎ¹® »óÇ¥µî·Ï
¾ËÇÁ·Ò °è¿­ »óÇ¥, »óÇ¥µî·Ï ¿Ï·á

 

ȸ»ç¼Ò°³ | ÀÎÀçä¿ë | ÀÌ¿ë¾à°ü | °³ÀÎÁ¤º¸Ãë±Þ¹æÄ§ | û¼Ò³âº¸È£Á¤Ã¥ | Ã¥ÀÓÇѰè¿Í ¹ýÀû°íÁö | À̸ÞÀÏÁÖ¼Ò¹«´Ü¼öÁý°ÅºÎ | °í°´¼¾ÅÍ

±â»çÁ¦º¸ À̸ÞÀÏ news@newsji.com, ÀüÈ­ 050 2222 0002, ÆÑ½º 050 2222 0111, ÁÖ¼Ò : ¼­¿ï ±¸·Î±¸ °¡¸¶»ê·Î 27±æ 60 1-37È£

ÀÎÅͳݴº½º¼­ºñ½º»ç¾÷µî·Ï : ¼­¿ï ÀÚ00447, µî·ÏÀÏÀÚ : 2013.12.23., ´º½º¹è¿­ ¹× û¼Ò³âº¸È£ÀÇ Ã¥ÀÓ : ´ëÇ¥ CEO

Copyright ¨Ï All rights reserved..