位置:首页 > IC中文资料 > TC74AC166P

型号 功能描述 生产厂家 企业 LOGO 操作
TC74AC166P

TOSHIBA CMOS DIGITAL INTEGRATED CIRCUIT SILICON MONOLITHIC

8-Bit Shift Register (P-IN, S-OUT) The TC74AC166 is an advanced high speed CMOS 8-BIT PARALLEL/SERIAL-IN, SERIAL-OUT SHIFT REGISTER fabricated with silicon gate and double-layer metal wiring C2MOS technology. It achieves the high speed operation similar to equivalent Bipolar Schottky TTL while m

TOSHIBA

东芝

TC74AC166P

74AC CMOS logic IC series

Function:8-Bit Parallel-In/Serial-Out Shift Register\nNumber of Circuits:1\nRoHS Compatible Product(s) (#):Available\nAssembly bases:日本

TOSHIBA

东芝

TC74AC166P

CMOS Digital Integrated Circuit Silicon Monolithic 8-Bit Shift Register (P-IN, S-OUT)

文件:503.7 Kbytes Page:10 Pages

TOSHIBA

东芝

CMOS Digital Integrated Circuit Silicon Monolithic 8-Bit Shift Register (P-IN, S-OUT)

文件:503.7 Kbytes Page:10 Pages

TOSHIBA

东芝

8-Bit Shift Register (P-IN, S-OUT)

文件:374.17 Kbytes Page:9 Pages

TOSHIBA

东芝

TOSHIBA CMOS DIGITAL INTEGRATED CIRCUIT SILICON MONOLITHIC

8-Bit Shift Register (P-IN, S-OUT) The TC74AC166 is an advanced high speed CMOS 8-BIT PARALLEL/SERIAL-IN, SERIAL-OUT SHIFT REGISTER fabricated with silicon gate and double-layer metal wiring C2MOS technology. It achieves the high speed operation similar to equivalent Bipolar Schottky TTL while m

TOSHIBA

东芝

TOSHIBA CMOS DIGITAL INTEGRATED CIRCUIT SILICON MONOLITHIC

8-Bit Shift Register (P-IN, S-OUT) The TC74AC166 is an advanced high speed CMOS 8-BIT PARALLEL/SERIAL-IN, SERIAL-OUT SHIFT REGISTER fabricated with silicon gate and double-layer metal wiring C2MOS technology. It achieves the high speed operation similar to equivalent Bipolar Schottky TTL while m

TOSHIBA

东芝

CMOS Digital Integrated Circuit Silicon Monolithic 8-Bit Shift Register (P-IN, S-OUT)

文件:503.7 Kbytes Page:10 Pages

TOSHIBA

东芝

8-bit Shift Register

Description The HD74AC166/HD74ACT166 is an 8-bit, serial or parallel-in, serial-out shift register using edge triggered D-type flip-flops. Serial and parallel entry are synchronous, with state changes initiated by the rising edge of the clock. An asynchronous Master Reset overrides other inputs a

HITACHIHitachi Semiconductor

日立日立公司

TC74AC166P产品属性

  • 类型

    描述

  • Group:

    AC

  • Function1:

    Flip-Flop/Latch/Register

  • Function2:

    Parallel-In/Serial-Out Shift Register

  • Number of Circuits:

    1

  • Number of pins:

    16

  • Surface mount package:

    N

  • Package name(Toshiba):

    DIP16

  • VCC (Min)(V):

    2

  • VCC (Max)(V):

    5.5

  • IO (Min)(mA):

    24

  • tpd_tpz (Typ.)(nsec):

    6.6

  • OperatingTemperature(℃):

    -40 to 85

更新时间:2026-8-3 22:58:00
IC供应商 芯片型号 品牌 批号 封装 库存 备注 价格
TELECRUZ
2016+
QFP
3900
只做原装,假一罚十,公司可开17%增值税发票!
TELECRUZ
20+
QFP208
500
样品可出,优势库存欢迎实单
TELECRUZ
20+
QFP
32970
原装优势主营型号-可开原型号增税票
SAMSUNG
25+
SOP8
10000
只做原装,支持实单
TeleCruz
24+
QFP
35200
一级代理/放心采购
SAMSUNG
26+
SOP8
8000
原装现货 极速发货 一站式原装元器件BOM配单
ROHS
SMD
56520
一级代理 原装正品假一罚十价格优势长期供货
SHARP
02+
DIP-6
6
原装现货海量库存欢迎咨询
SAMSUNG
25+
SOP8
10000
只做原装,支持实单
SAMSUNG
26+
SOP8
20000
原装

TC74AC166P数据表相关新闻

  • TC77-3.3MCTTR主营微芯原装现货

    TC77-3.3MCTTR主营微芯原装现货

    2024-6-3
  • TC670ECHTR

    www.jskj-ic.com

    2021-9-7
  • TC72-5.0MUA

    TC72-5.0MUA,全新原装现货当天发货或门市自取0755-82732291.

    2020-2-18
  • TC58NVM9S3ETA00

    FLASH-NAND / 64MX8 NAND SLC / TSOP-48 / 25 NS / 0° ~ 70°C / RoHS / 2.7v-3.6v / TRAY / EOL / 480 PCS

    2019-12-14
  • TC7660H-高频7660的DC-DC电压转换器...

    TC7660H是引脚兼容的,高频率的升级行业标准的TC7660电荷泵电压转换器。它转换为+1.5 V至+10 V输入到相应的 - 1.5V至- 10V的输出,使用只有两个低成本电容,无需电感器和其相关的成本,尺寸和EMI。TC7660H(而不是在120kHz频率10kHz时的TC7660),允许使用的1.0mF外部电容。振荡频率可减少(更低的电源电流的应用)通过连接从OSC接地的外部电容。TC7660H是8脚DIP和小外形在商业和扩展温度(SOIC)封装范围。TC7660H包含所有必要的电路,实施高压变频器,两个例外外部电容,这可能是廉价的1.0mF无极电容器。行动是最好的理解考虑图2显示了一

    2012-12-18
  • TC7660-电荷泵式DC-DC电压转换器

    TC7660是一个引脚兼容的替代品行业标准的TC7660电荷泵电压转换器。它转换为+1.5 V至+10 V输入相应的 - 1.5V- 10V输出,仅使用两个低成本电容器,消除电感器和其相关的成本,尺寸和EMI。板上振荡器工作在标称频率为10kHz。低于10kHz的操作(更低的电源当前的应用程序)是连接外部从OSC电容接地(针1开放)。TC7660是在两个8脚DIP和8 - pin在商业和扩展温度的SOIC封装范围。TC7660包含所有必要的电路,实施高压变频器,两个例外外部电容器,这可能是廉价的10 MF极化电解电容器。行动是最好的理解考虑图2显示了一个理想化的电压逆变器。电容C1充电电压,V

    2012-12-18