IEEE-695 - определение. Что такое IEEE-695
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Что (кто) такое IEEE-695 - определение

YEAR
695 (year); Year 695; AD 695; 695 CE; 695 AD; Events in 695; Births in 695; Deaths in 695
  • Byzantium]] (695–698)
Найдено результатов: 357
802.3         
COLLECTION OF STANDARDS FOR WIRED ETHERNET
802.3; IEE 802.3; IEEE 802.3-2002; IEEE 802.3-2005; IEEE 802.3-2008; IEEE 802.3 standard; IEEE 802·3; Ieee802.3; IEEE 802.3-1998; IEEE 802.3-2012; IEEE 802.3-2015; IEEE 802.3-1983; 802.3c; IEEE 802.3c; 802.3q; IEEE 802.3q
IEEE 802.3         
COLLECTION OF STANDARDS FOR WIRED ETHERNET
802.3; IEE 802.3; IEEE 802.3-2002; IEEE 802.3-2005; IEEE 802.3-2008; IEEE 802.3 standard; IEEE 802·3; Ieee802.3; IEEE 802.3-1998; IEEE 802.3-2012; IEEE 802.3-2015; IEEE 802.3-1983; 802.3c; IEEE 802.3c; 802.3q; IEEE 802.3q
<networking> The IEEE standard defining the hardware layer and transport layer of (a varient of) Ethernet. The maximum segment length is 500m and the maximum total length is 2.5km. The maximum number of hosts is 1024. The maximum packet size is 1518 bytes. If the upper layer protocol submits a PDU less than 64 bytes, 802.3 will pad the LLC Info field to achieve the minimum 64 bytes. Although it is not technically correct, the terms "packet" and frame are used interchangeably. The ISO/IEC 8802-3 ANSI/IEEE 802.3 Standards refer to MAC sub-layer frames consisting of the Destination Address, Source Address, Length, LLC Info., and FCS fields. The Preamble and SFD are (usually) considered a header to the MAC Frame. This header plus the MAC Frame constitute a "Packet". (1995-07-09)
IEEE 754-2008 revision         
SECOND EDITION OF THE IEEE 754 STANDARD FOR FLOATING-POINT ARITHMETIC
IEEE 754r; IEEE 754-2008; IEEE 754 revision
IEEE 754-2008 (previously known as IEEE 754r) was published in August 2008 and is a significant revision to, and replaces, the IEEE 754-1985 floating-point standard, while in 2019 it was updated with a minor revision IEEE 754-2019. The 2008 revision extended the previous standard where it was necessary, added decimal arithmetic and formats, tightened up certain areas of the original standard which were left undefined, and merged in IEEE 854 (the radix-independent floating-point standard).
IEEE 802.3         
COLLECTION OF STANDARDS FOR WIRED ETHERNET
802.3; IEE 802.3; IEEE 802.3-2002; IEEE 802.3-2005; IEEE 802.3-2008; IEEE 802.3 standard; IEEE 802·3; Ieee802.3; IEEE 802.3-1998; IEEE 802.3-2012; IEEE 802.3-2015; IEEE 802.3-1983; 802.3c; IEEE 802.3c; 802.3q; IEEE 802.3q
IEEE 802.3 is a working group and a collection of Institute of Electrical and Electronics Engineers (IEEE) standards produced by the working group defining the physical layer and data link layer's media access control (MAC) of wired Ethernet.
IEEE 2030         
PROJECT OF THE STANDARDS ASSOCIATION OF THE INSTITUTE OF ELECTRICAL AND ELECTRONICS ENGINEERS
IEEE P2030
IEEE 2030 was a project of the standards association of the Institute of Electrical and Electronics Engineers (IEEE) that developed a "Guide for Smart Grid Interoperability of Energy Technology and Information Technology Operation with the Electric Power System (EPS), and End-Use Applications and Loads".
IEC 559         
  • none
  • Precision of binary32 and binary64 in the range 10<sup>−12</sup> to 10<sup>12</sup>
  • [[William Kahan]]. A primary architect of the Intel [[80x87]] floating-point coprocessor and IEEE 754 floating-point standard.
IEEE STANDARD FOR FLOATING-POINT ARITHMETIC
IEEE Floating Point Standard; Ieee float; IEEE floating-point arithmetic; IEEE floating-point; IEC 60559; IEC 559; IEEE floating point number; IEEE floating-point number; IEEE-754; IEEE floating point standard; IEEE754; IEEE floating-point standard; Ieee floating point; IEEE float; IEEE floats; IEEE floating points; ISO/IEC/IEEE 60559:2011; IEEE arithmetic; Octuple-precision floating-point; ISO/IEC/IEEE 60559:2011-06; ISO/IEC/IEEE 60559; IEEE 754 format; IEEE floating point; IEEE 754-2019; IEEE 754-2019 revision; IEEE augmented arithmetic operation; IEEE 754 augmented arithmetic operation; IEEE 754 recommended operations; IEEE 754 recommended operation; ISO/IEC 60559; IEEE 754 standard
IEEE 754         
  • none
  • Precision of binary32 and binary64 in the range 10<sup>−12</sup> to 10<sup>12</sup>
  • [[William Kahan]]. A primary architect of the Intel [[80x87]] floating-point coprocessor and IEEE 754 floating-point standard.
IEEE STANDARD FOR FLOATING-POINT ARITHMETIC
IEEE Floating Point Standard; Ieee float; IEEE floating-point arithmetic; IEEE floating-point; IEC 60559; IEC 559; IEEE floating point number; IEEE floating-point number; IEEE-754; IEEE floating point standard; IEEE754; IEEE floating-point standard; Ieee floating point; IEEE float; IEEE floats; IEEE floating points; ISO/IEC/IEEE 60559:2011; IEEE arithmetic; Octuple-precision floating-point; ISO/IEC/IEEE 60559:2011-06; ISO/IEC/IEEE 60559; IEEE 754 format; IEEE floating point; IEEE 754-2019; IEEE 754-2019 revision; IEEE augmented arithmetic operation; IEEE 754 augmented arithmetic operation; IEEE 754 recommended operations; IEEE 754 recommended operation; ISO/IEC 60559; IEEE 754 standard
IEEE Floating Point Standard         
  • none
  • Precision of binary32 and binary64 in the range 10<sup>−12</sup> to 10<sup>12</sup>
  • [[William Kahan]]. A primary architect of the Intel [[80x87]] floating-point coprocessor and IEEE 754 floating-point standard.
IEEE STANDARD FOR FLOATING-POINT ARITHMETIC
IEEE Floating Point Standard; Ieee float; IEEE floating-point arithmetic; IEEE floating-point; IEC 60559; IEC 559; IEEE floating point number; IEEE floating-point number; IEEE-754; IEEE floating point standard; IEEE754; IEEE floating-point standard; Ieee floating point; IEEE float; IEEE floats; IEEE floating points; ISO/IEC/IEEE 60559:2011; IEEE arithmetic; Octuple-precision floating-point; ISO/IEC/IEEE 60559:2011-06; ISO/IEC/IEEE 60559; IEEE 754 format; IEEE floating point; IEEE 754-2019; IEEE 754-2019 revision; IEEE augmented arithmetic operation; IEEE 754 augmented arithmetic operation; IEEE 754 recommended operations; IEEE 754 recommended operation; ISO/IEC 60559; IEEE 754 standard
<standard, mathematics> (IEEE 754) "IEEE Standard for Binary Floating-Point Arithmetic (ANSI/IEEE Std 754-1985)" or IEC 559: "Binary floating-point arithmetic for microprocessor systems". A standard, used by many CPUs and FPUs, which defines formats for representing floating-point numbers; representations of special values (e.g. infinity, very small values, NaN); five exceptions, when they occur, and what happens when they do occur; four rounding modes; and a set of floating-point operations that will work identically on any conforming system. IEEE 754 specifies formats for representing floating-point values: single-precision (32-bit) is required, double-precision (64-bit) is optional. The standard also mentions that some implementations may include single-extended precision (80-bit) and double-extended precision (128-bit) formats. [On-line document?] (2003-06-17)
IEEE 754         
  • none
  • Precision of binary32 and binary64 in the range 10<sup>−12</sup> to 10<sup>12</sup>
  • [[William Kahan]]. A primary architect of the Intel [[80x87]] floating-point coprocessor and IEEE 754 floating-point standard.
IEEE STANDARD FOR FLOATING-POINT ARITHMETIC
IEEE Floating Point Standard; Ieee float; IEEE floating-point arithmetic; IEEE floating-point; IEC 60559; IEC 559; IEEE floating point number; IEEE floating-point number; IEEE-754; IEEE floating point standard; IEEE754; IEEE floating-point standard; Ieee floating point; IEEE float; IEEE floats; IEEE floating points; ISO/IEC/IEEE 60559:2011; IEEE arithmetic; Octuple-precision floating-point; ISO/IEC/IEEE 60559:2011-06; ISO/IEC/IEEE 60559; IEEE 754 format; IEEE floating point; IEEE 754-2019; IEEE 754-2019 revision; IEEE augmented arithmetic operation; IEEE 754 augmented arithmetic operation; IEEE 754 recommended operations; IEEE 754 recommended operation; ISO/IEC 60559; IEEE 754 standard
The IEEE Standard for Floating-Point Arithmetic (IEEE 754) is a technical standard for floating-point arithmetic established in 1985 by the Institute of Electrical and Electronics Engineers (IEEE). The standard addressed many problems found in the diverse floating-point implementations that made them difficult to use reliably and portably.
FireWire         
  • 1394c]]
  • A 9-pin FireWire 800 connector
  • FireWire 800 port (center)
  • 4-conductor (left) and 6-conductor (right) FireWire 400 alpha connectors
  • A 9-conductor bilingual connector
  • A PCI [[expansion card]] that contains four FireWire 400 connectors.
  • The 6-conductor and 4-conductor alpha FireWire 400 socket
SERIAL BUS INTERFACE STANDARD
High Performance Serial Bus; High performance serial bus; I-Link; ILink; Ilink; IEEE1394; Firewireless; I.Link; IEEE-1394; I.link; IEEE 1934; IEEE 1394b; IIDC; FireWire 400; FireWire 800; Firewire port; IEEE1394b; IEEE P1394; IEEE 1394a; 1394a; 1394b; Firewire800; HPSB; Firewire 800; I.LINK; IEEE 1394c; IEEE 1394 coding system; FireWire (coding); FireWire; IEEE 1394 Firewire; Coding system of FireWire; Firewire pci card; FW 400; FW 800; 1394a High Speed AV Port; 1394d; IEEE 1394 (interface); IEEE 1394 interface; Firewire; FireWire security issue; IEEE 1394 security issue; IDB-1394; P1394; IEEE 1394 FireWire

Википедия

695

Year 695 (DCXCV) was a common year starting on Friday (link will display the full calendar) of the Julian calendar. The denomination 695 for this year has been used since the early medieval period, when the Anno Domini calendar era became the prevalent method in Europe for naming years.