IC-integrated circuit - translation to arabic
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IC-integrated circuit - translation to arabic

ENGINEERING PROCESS FOR ELECTRONIC HARDWARE
Integrated circuit development; IC design; Integrated Circuit Development; Digital circuit design; IC Design; IC Design Engineer; Microchip design
  • Physical design steps within the digital design flow
  • Major steps in the IC design flow
  • Engineer using an early IC-designing workstation to analyze a section of a circuit design cut on [[rubylith]], circa 1979
  • Layout view]] of a simple CMOS Operational Amplifier (inputs are to the left and the compensation capacitor is to the right). The metal layer is coloured blue, green and brown are N- and P-doped Si, the polysilicon is red and vias are crosses.

IC-integrated circuit      
دائرة متكاملة
smart card         
  • Giesecke & Devrient]] in 1979, already with the finally standardized dimension (ID-1) and a contact area with eight pads (initially on the upper left corner)
  • A hybrid smart card, which clearly shows the antenna connected to the main chip
  • A false smart card, with two 8-bit [[CMOS]] [[microcontroller]]s, used in the 1990s to decode the signals of Sky Television.
  • SIMs]].
  • Smart-card reader on a laptop
  • One of the first smart card prototypes, created by its inventor [[Roland Moreno]] around 1975. The chip has not yet been miniaturized. On this prototype, one can see how each pin of the microchip (center) is connected to the exterior world by a copper connector.
  • 4 by 4 mm silicon chip in a SIM card, which was peeled open. Note the thin gold bonding wires and the regular, rectangular digital-memory areas.
  • Ground]] (reference voltage). '''VPP''': ISO/IEC 7816-3:1997 designated this as a programming voltage: an input for a higher voltage to program persistent memory (e.g., [[EEPROM]]). ISO/IEC 7816-3:2006 designates it SPU, for either standard or proprietary use, as input and/or output. '''I/O''': Serial input and output ([[half-duplex]]). '''C4, C8''': The two remaining contacts are AUX1 and AUX2 respectively and are used for [[USB]] interfaces and other uses.<ref>[http://www.iso.org/iso/iso_catalogue/catalogue_ics/catalogue_detail_ics.htm?csnumber=36576 ISO/IEC 7816-2:1999/Amd 1:2004 ''Assignment of contacts C4 and C8''].</ref> However, the usage defined in ISO/IEC 7816-2:1999/Amd 1:2004 may have been superseded by ISO/IEC 7816-2:2007.<ref>[http://www.iso.org/iso/home/store/catalogue_ics/catalogue_detail_ics.htm?csnumber=45989 ISO/IEC 7816-2:2007. Identification cards – Integrated circuit cards – Part 2: Cards with contacts – Dimensions and location of the contacts].</ref>
  • Illustration of smart-card structure and packaging
  • SmartRider smart card (Transperth)
POCKET-SIZED CARD WITH EMBEDDED INTEGRATED CIRCUITS FOR SECURITY-RELATED FUNCTIONS
Integrated circuit card; Chip card; Smart cards; SmartCard; Smartcards; Integrated chip card; Integrated circuit(s) card; Smartcard; Intergrated circuit card; IC card; Integrated Chip Card; Smart Card; Smart-card; ERIDANE; IC Card; Smartchip; Chipcard; Chipped card; Blink technology; Smart chips; Smart card security; Smart Card Web Server; Smart Kartela; Complex smart card
بطاقة ذكية
chip card         
  • Giesecke & Devrient]] in 1979, already with the finally standardized dimension (ID-1) and a contact area with eight pads (initially on the upper left corner)
  • A hybrid smart card, which clearly shows the antenna connected to the main chip
  • A false smart card, with two 8-bit [[CMOS]] [[microcontroller]]s, used in the 1990s to decode the signals of Sky Television.
  • SIMs]].
  • Smart-card reader on a laptop
  • One of the first smart card prototypes, created by its inventor [[Roland Moreno]] around 1975. The chip has not yet been miniaturized. On this prototype, one can see how each pin of the microchip (center) is connected to the exterior world by a copper connector.
  • 4 by 4 mm silicon chip in a SIM card, which was peeled open. Note the thin gold bonding wires and the regular, rectangular digital-memory areas.
  • Ground]] (reference voltage). '''VPP''': ISO/IEC 7816-3:1997 designated this as a programming voltage: an input for a higher voltage to program persistent memory (e.g., [[EEPROM]]). ISO/IEC 7816-3:2006 designates it SPU, for either standard or proprietary use, as input and/or output. '''I/O''': Serial input and output ([[half-duplex]]). '''C4, C8''': The two remaining contacts are AUX1 and AUX2 respectively and are used for [[USB]] interfaces and other uses.<ref>[http://www.iso.org/iso/iso_catalogue/catalogue_ics/catalogue_detail_ics.htm?csnumber=36576 ISO/IEC 7816-2:1999/Amd 1:2004 ''Assignment of contacts C4 and C8''].</ref> However, the usage defined in ISO/IEC 7816-2:1999/Amd 1:2004 may have been superseded by ISO/IEC 7816-2:2007.<ref>[http://www.iso.org/iso/home/store/catalogue_ics/catalogue_detail_ics.htm?csnumber=45989 ISO/IEC 7816-2:2007. Identification cards – Integrated circuit cards – Part 2: Cards with contacts – Dimensions and location of the contacts].</ref>
  • Illustration of smart-card structure and packaging
  • SmartRider smart card (Transperth)
POCKET-SIZED CARD WITH EMBEDDED INTEGRATED CIRCUITS FOR SECURITY-RELATED FUNCTIONS
Integrated circuit card; Chip card; Smart cards; SmartCard; Smartcards; Integrated chip card; Integrated circuit(s) card; Smartcard; Intergrated circuit card; IC card; Integrated Chip Card; Smart Card; Smart-card; ERIDANE; IC Card; Smartchip; Chipcard; Chipped card; Blink technology; Smart chips; Smart card security; Smart Card Web Server; Smart Kartela; Complex smart card
بطاقة شريحة

Definition

smart card
Any plastic card (like a credit card) with an embedded integrated circuit for storing information. Smart cards are being incorporated into soldier's dog-tags and used to store hospital patients' medical records. This way they are always instantly accessible. Other uses are as a form of token in banking systems. You could store electronic money on the card or less valuable tokens such as those given away by petrol companies which you collect to exchange for free gifts at a later date. The idea being that one smart card is easier to carry around than a multitude of paper tokens. news:alt.technology.smartcards (1995-01-06)

Wikipedia

Integrated circuit design

Integrated circuit design, or IC design, is a sub-field of electronics engineering, encompassing the particular logic and circuit design techniques required to design integrated circuits, or ICs. ICs consist of miniaturized electronic components built into an electrical network on a monolithic semiconductor substrate by photolithography.

IC design can be divided into the broad categories of digital and analog IC design. Digital IC design is to produce components such as microprocessors, FPGAs, memories (RAM, ROM, and flash) and digital ASICs. Digital design focuses on logical correctness, maximizing circuit density, and placing circuits so that clock and timing signals are routed efficiently. Analog IC design also has specializations in power IC design and RF IC design. Analog IC design is used in the design of op-amps, linear regulators, phase locked loops, oscillators and active filters. Analog design is more concerned with the physics of the semiconductor devices such as gain, matching, power dissipation, and resistance. Fidelity of analog signal amplification and filtering is usually critical, and as a result analog ICs use larger area active devices than digital designs and are usually less dense in circuitry.

Modern ICs are enormously complicated. An average desktop computer chip, as of 2015, has over 1 billion transistors. The rules for what can and cannot be manufactured are also extremely complex. Common IC processes of 2015 have more than 500 rules. Furthermore, since the manufacturing process itself is not completely predictable, designers must account for its statistical nature. The complexity of modern IC design, as well as market pressure to produce designs rapidly, has led to the extensive use of automated design tools in the IC design process. In short, the design of an IC using EDA software is the design, test, and verification of the instructions that the IC is to carry out.

Examples of use of IC-integrated circuit
1. The IC (integrated circuit) designing technology was put on a high level, the Korean–style computer–operating system and nanotechnology–based equipment developed and the latest technology developed and introduced into the prospecting of underground resources.