• 40 pin Variant The 8086 (also called iAPX 86 ) is a chip designed by between early 1976 and June 8, 1978, when it was released. The, released July 1, 1979, is a slightly modified chip with an external 8-bit (allowing the use of cheaper and fewer supporting ), and is notable as the processor used in the original design, including the widespread version called.
September 1990 Order Number: 231455-005 8086 16-BIT HMOS MICROPROCESSOR 8086/8086-2/8086-1 Y Direct Addressing Capability 1 MByte of Memory Y Architecture Designed for Powerful Assembly Language and Efficient High Level Languages.
The 8086 gave rise to the, which eventually became Intel's most successful line of processors. On June 5, 2018, Intel released a limited edition CPU celebrating the anniversary of the Intel 8086, called the Intel Core i7-8086K.
Contents • • • • • • • • • • • • • • • • • • • • • • History [ ] Background [ ] In 1972, Intel launched the, the first 8-bit microprocessor. It implemented an designed by corporation with programmable in mind, which also proved to be fairly general-purpose. The device needed several additional to produce a functional computer, in part due to it being packaged in a small 18-pin 'memory package', which ruled out the use of a separate address bus (Intel was primarily a manufacturer at the time). Two years later, Intel launched the, employing the new 40-pin originally developed for ICs to enable a separate address bus. It has an extended instruction set that is (not ) with the 8008 and also includes some instructions to make programming easier.
The 8080 device, was eventually replaced by the -based (1977), which sufficed with a single +5 V power supply instead of the three different operating voltages of earlier chips. Other well known 8-bit microprocessors that emerged during these years are (1974), (1975), (1975), (1976), and (1978). The first x86 design [ ]. Intel 8086 CPU die image The 8086 project started in May 1976 and was originally intended as a temporary substitute for the ambitious and delayed project. It was an attempt to draw attention from the less-delayed 16- and 32-bit processors of other manufacturers (such as,, and ) and at the same time to counter the threat from the (designed by former Intel employees), which became very successful. Both the architecture and the physical chip were therefore developed rather quickly by a small group of people, and using the same basic elements and physical implementation techniques as employed for the slightly older (and for which the 8086 also would function as a continuation).
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Hp laserjet 1100 printer drivers for windows 7 download. Marketed as, the 8086 was designed to allow for the 8008, 8080, or 8085 to be automatically converted into equivalent (suboptimal) 8086 source code, with little or no hand-editing. The programming model and instruction set is (loosely) based on the 8080 in order to make this possible.
However, the 8086 design was expanded to support full 16-bit processing, instead of the fairly limited 16-bit capabilities of the 8080 and 8085. New kinds of instructions were added as well; full support for signed integers, base+offset addressing, and self-repeating operations were akin to the design but were all made slightly more general in the 8086.
Instructions directly supporting -family languages such as and were also added. According to principal architect, this was a result of a more software-centric approach than in the design of earlier Intel processors (the designers had experience working with compiler implementations). Other enhancements included multiply and divide instructions and a bus structure better adapted to future coprocessors (such as and ) and multiprocessor systems. The first revision of the instruction set and high level architecture was ready after about three months, and as almost no CAD tools were used, four engineers and 12 layout people were simultaneously working on the chip. The 8086 took a little more than two years from idea to working product, which was considered rather fast for a complex design in 1976–1978. The 8086 was sequenced using a mixture of and and was implemented using depletion-load nMOS circuitry with approximately 20,000 active (29,000 counting all and sites). It was soon moved to a new refined nMOS manufacturing process called (for High performance MOS) that Intel originally developed for manufacturing of fast products.