The threshold detector is similar to a Schmitt Trigger in that it is a latch circuit with a large dead zone. 阈值检测器就是一种回差范围较大的锁存电路,与施密特触发器相似。
This Schmitt trigger circuit can be suited to the deep sub-micron CMOS process and used to get rid of the noise on the input pad of the chip. 利用动态体偏置实现的施密特触发器可以适用于深亚微米芯片,可广泛用于滤除芯片的输入噪声,提高输入信号的信噪比。
Furthermore, the current transmission switch operation used to realize threshold-controlling circuit was established, and used to instruct the switch level design of current-m ode CMOS Schmitt circuit. 建立实现阈值控制电路的电流传输开关运算,并用于指导电流型CMOS施密特电路的开关级设计。
Furthermore, ternary ECL Schmitt circuit having twice reaction of threshold-jumping is designed. 在此基础上设计了具有二次跳阈反应的三值ECL施密特电路。
The Design of Ternary ECL Schmitt Circuit 三值ECL施密特电路设计
Based on TTL technique, the designed quaternary Schmitt circuit is simulated with PSPICE and is proved to have the ideal Schmitt function. 基于TTL技术设计的四值施密特电路已用PSPICE模拟证明了具有理想的施密特电路功能。
The switching process of a transistor Schmitt circuit 晶体管施密特电路的开关过程
On the triggering processes of Schmitt circuit and the accuracy of such circuits in measuring the amplitude of short pulses 施密特电路的触发过程及它在测量窄脉冲振幅时的准确度
The sequential characteristic of Schmitt circuit and its design at gate level 施密特电路的时序特征及门级设计
The switching process of transistor Schmitt circuit was studied in this paper. 本文研究了施密特电路的开关过程。
The CMOS Schmitt trigger circuit with low voltage by the dynamic body-bias technology was presented. 提出了一种利用MOS管的体偏置技术实现的低电压施密特触发器电路。
Trigger point block Schmitt toggle circuit and improving on it 施密特触发器电路及其改进