SemiMedia SemiMedia
  • Breaking News
  • MarketWatch
  • Distribution
  • Manufacturer
  • Video
  • About us
Home › Manufacturer › Nexperia launches new high-performance silicon carbide (SiC) diode
  • 0

Nexperia launches new high-performance silicon carbide (SiC) diode

SemiMediaEdit
November 9, 2021

Nexperia today announced its entry into the high-power Silicon Carbide (SiC) diodes market with the introduction of 650 V, 10 A SiC Schottky diodes. This is a strategic move for Nexperia, already a trusted supplier of efficient power Gallium Nitride (GaN) FETs, to expand its high-voltage wide bandgap semiconductor device offering.

Nexperia’s first SiC Schottky diode is an industrial-grade device with 650 V repetitive peak reverse voltage (VRRM) and 10 A continuous forward current (IF), designed to combine ultra-high performance and high efficiency with low energy loss in power conversion applications. Providing the added benefit of a high-voltage compliant real 2-pin (R2P) package with higher creepage distance, it is available in a choice of surface mount (DPAK R2P and D2PAK R2P) or through-hole (TO-220-2, TO-247-2) devices. Engineering samples are available on request with a full product release planned for the second quarter of 2022. Nexperia plans to continuously increase its portfolio of SiC diodes, which will lead to a total of 72 products operating at voltage levels of 650 V and 1200 V and with currents in the range of 6-20 A.

In an increasingly energy-conscious world, there is a burgeoning demand for high power applications with superior efficiency and power-density. In this regard, Silicon is fast approaching its physical limits. According to Mark Roeloffzen, General Manager of the Bipolar Discretes Group at Nexperia “Wide bandgap semiconductors like Gallium Nitride and Silicon Carbide are now well placed to meet the stringent needs of high-volume applications, bringing the promise of higher efficiency, greater power density, lower system cost and reduced operating costs for original equipment manufacturers. Nexperia’s diverse portfolio of SiC diodes will bring greater choice and availability to this market.”

The PSC1065H (-J/-K/-L) is the first in a portfolio of SiC Schottky diodes that Nexperia is developing to address the automotive and industrial markets. More information on the new PSC1065x, including product specs and datasheet is available at www.nexperia.com/sic_diodes.

Related

electronic components news Nexperia PSC1065H
Nikkei: Toshiba to split into 3 companies
Previous
Nikkei: Shortage of automotive semiconductors is improving
Next

All Comments (0)

Back
No Comment.

Top Post

Mouser Electronics expands to the Philippines with local customer service center
Fire broke out at AKM factory in Japan
Qualcomm ranked first in the world's top ten IC design companies
Analyze the key factors and prospects of electronic components shortage from the perspective of wafer industry
TSMC’s CoWoS capacity to reach 75,000 wafers/month by end-2025
onsemi expects to produce 200mm SiC wafers by 2025

Subscribe SemiMedia

Please check your E-mail to confirm the subscribtion.

Related posts

Western Digital speeds deleveraging with SanDisk share sale

Western Digital speeds deleveraging with SanDisk share sale

February 19, 2026
0
UK chip startup Fractile to invest £100m to scale AI hardware production

UK chip startup Fractile to invest £100m to scale AI hardware production

February 18, 2026
0
Winbond expects up to 95% DRAM price jump as DDR4 shortage deepens

Winbond expects up to 95% DRAM price jump as DDR4 shortage deepens

February 18, 2026
0
TrendForce sees memory market topping foundry revenue in 2026 on AI server demand

TrendForce sees memory market topping foundry revenue in 2026 on AI server demand

February 17, 2026
0
Copyright © 2017-2026 SemiMedia. Designed by nicetheme.
  • Please set up your first menu at [Admin -> Appearance -> Menus]
  • electronic components news
  • Electronic components supplier
  • Electronic parts supplier
  • Infineon
  • Electronic component news
  • Renesas
  • Vishay
  • STMicroelectronics
  • NXP
  • TDK

SemiMediaEdit

Administrator