MC74VHC74
Dual D Flip-Flop with Set and Reset
制造商:ON
产品信息
The MC74VHC74 is an advanced high speed CMOS D-type flip-flop fabricated with silicon gate CMOS technology. It achieves high speed operation similar to equivalent Bipolar Schottky TTL while maintaining CMOS low power dissipation.
The signal level applied to the D input is transferred to Q output during the positive going transition of the Clock pulse.
Reset (RD) and Set (SD) are independent of the Clock (CP) and are accomplished by setting the appropriate input Low.
The internal circuit is composed of three stages, including a buffer output which provides high noise immunity and stable output. The inputs tolerate voltages up to 7V, allowing the interface of 5V systems to 3V systems.
The signal level applied to the D input is transferred to Q output during the positive going transition of the Clock pulse.
Reset (RD) and Set (SD) are independent of the Clock (CP) and are accomplished by setting the appropriate input Low.
The internal circuit is composed of three stages, including a buffer output which provides high noise immunity and stable output. The inputs tolerate voltages up to 7V, allowing the interface of 5V systems to 3V systems.
- High Speed: f
- = 170MHz (Typ) at V
- = 5V
- Low Power Dissipation: I
- = 2µA (Max) at T
- = 25 C
- High Noise Immunity: V
- = V
- = 28% V
- Power Down Protection Provided on Inputs
- Balanced Propagation Delays
- Designed for 2V to 5.5V Operating Range
- Low Noise: V
- = 0.8V (Max)
- Pin and Function Compatible with Other Standard Logic Families
- Latchup Performance Exceeds 300mA
- ESD Performance: HBM > 2000V; Machine Model > 200V
- Chip Complexity: 128 FETs or 32 Equivalent Gates
- Pb-Free Packages are Available
应用案例
LG MC-74A机心彩电开关电源电路
2009-01-21
LG MC-74A机心彩电开关电源电路
2009-01-21
基于STM32H743I高性能400MHz 32位ARM MCU开发方案详解
2018-06-18
cd4013的工作原理_在电路中可以用什么代替
2017-10-24
基于MCS-51单片机的定时报警器电路原理图
2012-05-22
单片机如何执行代码命令,单片MCU内存如何分配?
2017-05-04
74ls74中文资料汇总(74ls74引脚图及功能_内部结构及应用电路)
2018-04-28
74ls74应用电路图大全(八款74ls74四分频/红外遥控开关/FSK调制电路)
2018-04-28