CD54HC4316F3A 供应商
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CD54HC4316F3A
品牌:HAR 封装/批号:/2019+ -
CD54HC4316F3A
品牌:TI 封装/批号:标准封装/23+ -
CD54HC4316F3A
品牌:TI 封装/批号:DIP/23+ -
CD54HC4316F3A
品牌:TI 封装/批号:DIP/
CD54HC4316F3A 属性参数
- 现有数量:0现货10,001Factory
- 价格:在售
- 系列:*
- 包装:管件
- 产品状态:在售
- 开关电路:-
- 多路复用器/解复用器电路:-
- 电路数:-
- 导通电阻(最大值):-
- 通道至通道匹配 (ΔRon):-
- 电压 -?电源,单 (V+):-
- 电压 - 供电,双?(V±):-
- 开关时间?(Ton, Toff)(最大值):-
- -3db 带宽:-
- 电荷注入:-
- 沟道电容 (CS(off),CD(off)):-
- 电流 - 漏泄 (IS(off))(最大值):-
- 串扰:-
- 工作温度:-
- 安装类型:-
- 封装/外壳:-
- 供应商器件封装:-
产品特性
- Wide Analog-Input-Voltage Range VCC VEE...0V to 10V
- Low "ON" Resistance 45 (Typ)...VCC = 4.5V 35 (Typ)...VCC = 6V 30 (Typ)...VCC VEE = 9V
- 45 (Typ)...VCC = 4.5V
- 35 (Typ)...VCC = 6V
- 30 (Typ)...VCC VEE = 9V
- Fast Switching and Propagation Delay Times
- Low "OFF" Leakage Current
- Built-In "Break-Before-Make" Switching
- Logic-Level Translation to Enable 5V Logic to Accommodate ±5V Analog Signals
- Wide Operating Temperature Range . . . 55°C to 125°C
- HC Types 2V to 10V Operation High Noise Immunity: NIL = 30%, NIH = 30% of VCC at VCC = 5V
- 2V to 10V Operation
- High Noise Immunity: NIL = 30%, NIH = 30% of VCC at VCC = 5V
- HCT Types Direct LSTTL Input Logic Compatibility, VIL = 0.8V (Max), VIH = 2V (Min) CMOS Input Compatibility, Il 1µA at VOL, VOH
- Direct LSTTL Input Logic Compatibility, VIL = 0.8V (Max), VIH = 2V (Min)
- CMOS Input Compatibility, Il 1µA at VOL, VOH
产品概述
The HC4316 and CD74HCT4316 contain four independent digitally controlled analog switches that use silicon-gate CMOS technology to achieve operating speeds similar to LSTTL with the low power consumption of standard CMOS integrated circuits.In addition these devices contain logic-level translation circuits that provide for analog signal switching of voltages between ±5V via 5V logic. Each switch is turned on by a high-level voltage on its select input (S) when the common Enable (E) is Low. A High E disables all switches. The digital inputs can swing between VCC and GND; the analog inputs/outputs can swing between VCC as a positive limit and VEE as a negative limit. Voltage ranges are shown in Figures 2 and 3.