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IBM moves toward post-silicon transistor

2013-03-21 22:44:32| InfoWorld: Top News

Exploring methods of computing without silicon, IBM has found a way to make transistors that could be fashioned into virtual circuitry that mimics how the human brain operates. The proposed transistors would be made from strongly correlated materials, which researchers have found to posses characteristics favorable for building more powerful, less power-hungry computation circuitry.

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Richardson RFPD Introduces New 75W Freescale LDMOS RF Transistor For Land Mobile Radio

2013-03-20 03:07:11| rfglobalnet News Articles

Richardson RFPD, Inc. today announces immediate availability and full design support capabilities for a new laterally diffused metal oxide semiconductor (LDMOS) transistor targeting land mobile radio from Freescale Semiconductor, Inc. (Freescale).

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Richardson RFPD Introduces New 75W Freescale LDMOS RF Transistor For Land Mobile Radio

2013-03-20 03:07:11| wirelessdesignonline News Articles

Richardson RFPD, Inc. today announces immediate availability and full design support capabilities for a new laterally diffused metal oxide semiconductor (LDMOS) transistor targeting land mobile radio from Freescale Semiconductor, Inc. (Freescale).

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Richardson RFPD Introduces New 75W Freescale LDMOS RF Transistor For Land Mobile Radio

2013-03-20 03:07:11| wirelessdesignonline News Articles

Richardson RFPD, Inc. recently announces immediate availability and full design support capabilities for a new laterally diffused metal oxide semiconductor (LDMOS) transistor targeting land mobile radio from Freescale Semiconductor, Inc. (Freescale).

Tags: land mobile radio introduces

 

Researchers create CMOS-compatible, 30nm programmable graphene transistor

2013-02-26 14:36:52| Extremetech

Electronic engineers at Japan's GNC and AIST research centers have successfully created graphene transistors that are constructed and operated in a way that redefines 50 years of transistor development. These graphene transistors can be built using conventional CMOS processes, and could potentially be many times smaller, hundreds of times faster, and consume much less power than silicon transistors.

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