VINTAGE SILICON WAFER APPLE LISA APPLE MAC MOTOROLA 68000 68K MC68000 4”/100MM For Sale

VINTAGE SILICON WAFER APPLE LISA APPLE MAC MOTOROLA 68000 68K MC68000 4”/100MM
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VINTAGE SILICON WAFER APPLE LISA APPLE MAC MOTOROLA 68000 68K MC68000 4”/100MM:
$392.00

VINTAGE SILICON WAFER APPLE LISA APPLE MAC MOTOROLA 68000 68K MC68000 4”/100MM Notably the MC68000 was used in various applications including the Apple Lisa and Macintosh
A very, VERY rare and unusual object – this CAN be yours!!
A beautiful vintage wafer circa 1982 made by Motorola. Beautiful to view under a microscope, scanner and to take macro photos. My photos are taken with my iPhone and my office scanner so imagine how good this could look under proper lighting and a decent camera?
MC68000 MASK GN7
The Motorola 68000 (\"\'sixty-eight-thousand\'\"; also called the Motorola 68k, \"sixty-eight-k\") is a 16/32-bit[1] CISC microprocessor core designed and marketed by Motorola Semiconductor Products Sector (now Freescale Semiconductor). Introduced in 1979 with HMOS technology as the first member of the successful 32-bit m68k family of microprocessors, it is generally software forward compatible with the rest of the line despite being limited to a 16-bit wide external bus. After 30 years in production, the 68000 architecture is still in use.
The 68000 grew out of the MACSS (Motorola Advanced Computer System on Silicon) project, begun in 1976 to develop an entirely new architecture without backward compatibility. It would be a higher-power sibling complementing the existing 8-bit 6800 line rather than a compatible successor. In the end, the 68000 did retain a bus protocol compatibility mode for existing 6800 peripheral devices, and a version with an 8-bit data bus was produced. However, the designers mainly focused on the future, or forward compatibility, which gave the M68K platform a head start against later 32-bit instruction set architectures. For instance, the CPU registers are 32 bits wide, though few self-contained structures in the processor itself operate on 32 bits at a time. The MACSS team drew heavily on the influence of minicomputer processor design, such as the PDP-11 and VAX systems, which were similarly microcoded.
In the mid 1970s, the 8-bit microprocessor manufacturers raced to introduce the 16-bit generation. National Semiconductor had been first with its IMP-16 and PACE processors in 1973–1975, but these had issues with speed. Intel had worked on their advanced 16/32-bit iAPX432 (alias 8800) since 1975 and their Intel 8086 since 1976 (it was introduced in 1978 but became really widespread in the form of the almost identical 8088 in the IBM PC a few years later). Arriving late to the 16-bit arena afforded the new processor more transistors (roughly 40 000 active versus 20 000 active in the 8086), 32-bit macroinstructions, and acclaimed general ease of use.
The original MC68000 was fabricated using an HMOS process with a 3.5 µm feature size. Formally introduced in September 1979,[2] Initial samples were released in February 1980, with production chips available over the counter in November.[3] Initial speed grades were 4, 6, and 8 MHz. 10 MHz chips became available during 1981[citation needed], and 12.5 MHz chips by June 1982.[3] The 16.67 MHz \"12F\" version of the MC68000, the fastest version of the original HMOS chip, was not produced until the late 1980s. Tom Gunter, retired Corporate Vice President at Motorola, is known as the \"Father of the 68000\".
The 68000 became the dominant CPU for Unix-based workstations including Sun workstations and Apollo/Domain workstations, and also was used for mass-market computers such as the Apple Lisa, Macintosh, Amiga, and Atari ST. The 68000 was used in Microsoft Xenix systems as well as a prototype NetWare Unix-based Server (after the MC6800 series was not found to be powerful enough and before the move to Intel x86 processors). The 68000 was used in the first generation of desktop laser printers including the original Apple Inc. LaserWriter and the HP LaserJet. In 1982, the 68000 received an update to its ISA allowing it to support virtual memory and to conform to the Popek and Goldberg virtualization requirements. The updated chip was called the 68010. A further extended version which exposed 31 bits of the address bus was also produced, in small quantities, as the 68012.
To support lower-cost systems and control applications with smaller memory sizes, Motorola introduced the 8-bit compatible MC68008, also in 1982. This was a 68000 with an 8-bit data bus and a smaller (20 bit) address bus. After 1982, Motorola devoted more attention to the 68020 and 88000 projects.

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