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  1. MOS Technology, Inc. ("MOS" being short for Metal Oxide Semiconductor), later known as CSG (Commodore Semiconductor Group) and GMT Microelectronics, was a semiconductor design and fabrication company based in Audubon, Pennsylvania.

  2. One of the most popular MOSFET technologies available today is the Complementary MOS or CMOS technology. This is the dominant semiconductor technology for microprocessors, microcontroller chips, memories like RAM, ROM, EEPROM and application-specific integrated circuits (ASICs).

  3. MOS’ claim to fame was their development and manufacturing of the wildly successful 6500 line of microprocessors which in addition to being used in nearly all Commodore computers and floppy drives, was also what powered all pre-1984 Apples.

  4. The MOS Technology 6502 (typically pronounced "sixty-five-oh-two") is an 8-bit microprocessor that was designed by a small team led by Chuck Peddle for MOS Technology. The design team had formerly worked at Motorola on the Motorola 6800 project; the 6502 is essentially a simplified, less expensive and faster version of that design.

  5. Jun 30, 2017 · Chip Hall of Fame: MOS Technology 6502 Microprocessor. From the heroic age of 8-bit CPUs, this processor powered the Apple II, Commodore 64, BBC Micro, and more. IEEE Spectrum. 30 Jun 2017. 2 min read. Image: Computer History Museum. 6502 Micro-processor. Manufacturer: MOS Technology. Category: Processors. Year: 1975.

  6. Aug 3, 2023 · Since about 1985, MOS technologies have gained the most significant economic importance for the production of digital and also analogue integrated circuits. Simple PMOS and NMOS metal gate processes for field effect transistor integration are explained first.

  7. MOS Technology, Inc. (pronounced [ɛm-oʊ-ɛs] or em-oh-ess) was a semiconductor design and fabrication company based in Norristown, Pennsylvanisa, USA. The term MOS is an acronym for Metal Oxide Semiconductor, a 3-layered electronic construction: a silicon wafer substrate underneath a grown layer of silicon dioxide (SiO2) underneath a layer of ...