免费的电子元器件数据手册查询系统 addbookmark

English China
数据表, 资料表, 数据手册, 零件,电子零件,集成电路,单片机,二极管,晶闸管,以及其他半导体产品信息
主页 | 功能分类 | 厂商列表 Bookmark and Share

Related keyword

  •   NC7SV11 Datasheet
  •   NC7SV11 Cross Reference
  •   NC7SV11 Schematic
  •   NC7SV11 Distributor
  •   NC7SV11 Datenblatt
  •   NC7SV11 RoHS
  •   NC7SV11 Equivalent
  •   NC7SV11 Application Notes
  •   NC7SV11 Data Sheet
  •   NC7SV11 component
  •   NC7SV11 Fiche Technique
  •   NC7SV11 Circuit
  • NC  -  系列元器件数据手册
    NC7SV11  -  TinyLogic ULP-A 3-Input AND Gate  -  Fairchild Semiconductor Corporation  -  与门


    General Description
    The NC7SV11 is a single 3-Input AND Gate from Fairchild’s Ultra Low Power-A (ULP-A) series of TinyLogic. ULP-A is ideal for applications that require extreme high speed, high drive and low power. This product is designed for a wide low voltage operating range (0.9V to 3.6V) VCC and applications that require more drive and speed than the TinyLogic ULP series, but still offer best in class low power operation.
    The NC7SV11 is uniquely designed for optimized power and speed, and is fabricated with an advanced CMOS technology to achieve high-speed operation while maintaining low CMOS power dissipation.
    Features


     0.9V to 3.6V VCC supply operation
     3.6V overvoltage tolerant I/O’s at VCC from 0.9V to 3.6V
     Extremely High Speed tPD
    2.8 ns typ for 2.7V to 3.6V VCC
    3.0 ns typ for 2.3V to 2.7V VCC
    5.0 ns typ for 1.65V to 1.95V VCC
    6.9 ns typ for 1.4V to 1.6V VCC
    9.9 ns typ for 1.1V to 1.3V VCC
    12 ns typ for 0.9V VCC
     Power-Off high impedance inputs and outputs
     High Static Drive (IOH/IOL)
    ±24 mA @ 3.00V VCC
    ±18 mA @ 2.30V VCC
    ±6 mA @ 1.65V VCC
    ±4 mA @ 1.4V VCC
    ±2 mA @ 1.1V VCC
    ±0.1 mA @ 0.9V VCC
     Uses patented Quiet Series noise/EMI reduction circuitry
     Ultra small MicroPak leadfree package
     Ultra low dynamic power



    点击查看 : NC7SV11.pdf   



    收藏本站 网站地图 联系我们
    版权所有© Ic-datasheet-pdf.com 2009-2012
    鲁ICP备12008433号-2
    Valid XHTML 1.0 Transitional