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Weebit Nano licenses ReRAM to DB HiTek - Vimarsana News

Weebit Nano licenses ReRAM to DB HiTek

Weebit Nano has licensed Korean foundry  DB HiTek to use Weebit ReRAM in its customers’ designs.   Weebit ReRAM will be available in DB HiTek’s 130nm BCD

New Electronics - Weebit Nano licenses ReRAM to DB HiTek - Vimarsana News

New Electronics - Weebit Nano licenses ReRAM to DB HiTek

Weebit Nano, a developer of advanced memory technologies, and DB HiTek, one of the world’s largest foundries, have signed a commercial agreement whereby DB HiTek has licensed Weebit ReRAM for its customers to integrate as embedded non-volatile memory (NVM) in their systems on chips (SoCs).

Weebit Nano licenses ReRAM to DB HiTek, a global top-10 - Vimarsana News

Weebit Nano licenses ReRAM to DB HiTek, a global top-10

Semiconductor foundry DB HiTek licensed Weebit ReRAM for customers to integrate as embedded NVM into SoCs for analog, mixed-signal and power designs....

Key Foundry Releases 0.18-micron NON-EPI BCD Process for Low Power PMICs - Vimarsana News

Key Foundry Releases 0.18-micron NON-EPI BCD Process for Low Power PMICs

SEOUL, South Korea, June 9, 2022 /PRNewswire/ --Key Foundry, the only pure-play foundry in Korea, announced today that it will release a 0.18-micron 30V NON-EPI (Epitaxy) BCD (Bipolar-CMOS-DMOS) process for low power PMICs. This new 0.18-micron 30V NON-EPI BCD process of Key Foundry shows the same level of performance compared to the existing EPI BCD process even without EPI layer. This new process is suitable for power semiconductors, which require higher voltage ratings, higher reliability and higher efficiency compared to ordinary semiconductors. It can be used in the production of low powe...

Related Topics:
Soult UkpyolsiSouth KoreaJong LeeKey FoundrySpecific On ResistanceMulti Time ProgrammableOne Time ProgrammableTae Jong LeeSouth KoreaJune 9022 Prnewswire Key FoundryHe Only Pure Play Foundry In KoreaNnounced Today That It Will Releasea 0 18 Micron 30v Non Epi Epitaxy Bcd Bipolar Cmos Dmos Process For Low Power Pmics This New Of Key Foundry Shows The Same Level Performance Compared To Existing Even Without Layer Is Suitable SemiconductorsHich Require Higher Voltage RatingsIgher Reliability And Higher Efficiency Compared To Ordinary Semiconductors It Can Be Used In The Production Of Low Power Pmics Such As Dc Ics Charger For Smartphones Smartwatches This New Process Maintains Same Rsp Specific On Resistance With Existing 0 18 Micron Epi Bcd That Are Currently Mass Key Foundry Will Support Various Semiconductor Devices Range 5v 30v Non Requires NoHe Process Efficiency Is ImprovedNd It Supports Efficient Designs By Offering 5v Ldmos Transistors For Power Blocks FurthermoreS The Logic Device Of This New 0 18 Micron 30v Non Epi Bcd Process Retains Comparable CharacteristicsHis New 0 18 Micron 30v Non Epi Bcd Process Is Compatible With Digital Libraries And Ip Of The Existing That Are Currently Used For Mass Production In Order To Promote Users 39 ConvenienceHe New Process Also Provides Mtp Multi Time Programmable And Otp One Ip Without Requiring Any Additional Steps With These MeritsHis 0 18 Micron 30v Non Epi Bcd Process Is Suitable For Diverse Types Of Applications Such As Power SemiconductorsHicha Memory Function Is Required For From The Earliest Stage Of Process DevelopmentEy Foundry Communicated Closely With Power Semiconductor Fabless Customers To Reflect What The Market Demands User Friendly Layout Options And Design Kits Which This New Process Provides Strengthen Users 39 ConvenienceHe Customer Is Able To Achievea Streamlined Process And Higher Performing Products Compared The Existing This New 0 18 Micron 30v Non Epi Bcd Satisfies Grade 1 Requirements Of Aec Q100He International Reliability Specifications Of Ics In Automotive Applications
Key Foundry Releases 0.18-micron NON-EPI BCD Process for Low Power PMICs - Vimarsana News

Key Foundry Releases 0.18-micron NON-EPI BCD Process for Low Power PMICs

SEOUL, South Korea, June 9, 2022 /PRNewswire/ -- Key Foundry, the only pure-play foundry in Korea, announced today that it will release a 0.18-mic...