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   计数电路 在 自动化技术 分类中 的翻译结果: 查询用时:0.014秒
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计数电路
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  counter circuit
Figure 7 depicts the capacitance versus fanout plot for the nets in the Counter circuit.
      
For the counter circuit a mean power error of 3.2% per net and load, with a standard deviation of 1.6% is achieved.
      
The functionality of the counter circuit was tested by bread-boarding a circuit composed of tunnel diodes and discrete NPN transistors.
      


By using the Step Change Equation, the Principle and method of counting circuits analysis are discussed. Owing to its more strict logical operation, the process of counting circuits analysis is simplified and the results are reliable.

本文叙述了用触发器的跳变方程分析计数电路的原理和方法。这种方法具有较严格的逻辑运算,因此使计数电路的分析简单而可靠。 分析计数电路就是要找出该电路的主循环环路,确定它的计数周期,并检查计数电路是否有“死循环”或“死状态”,即检查电路是否有自校准功能。如果出现“死循环”或“死状态”,必须设法排除。

A new digital photon correlator (DPC) built on combining hardware combined with software is introduced in the paper. Having the advantage of high speed for hardware correlator and of easy realization for software correlator, the new DPC has a good cost performance. A fast synchronous counter and a counter buffer are used in DPC in order to acquire data from optical pulse correctly arid Continuously. The speed of data processing is improved by using an advanced single chip computer MCS—51 and parallel processing...

A new digital photon correlator (DPC) built on combining hardware combined with software is introduced in the paper. Having the advantage of high speed for hardware correlator and of easy realization for software correlator, the new DPC has a good cost performance. A fast synchronous counter and a counter buffer are used in DPC in order to acquire data from optical pulse correctly arid Continuously. The speed of data processing is improved by using an advanced single chip computer MCS—51 and parallel processing techniques with double CPU in DPC.

介绍了一种用硬件、软件相结合的新型光子数字相关仪(DPC)。它既具有硬件相关仪速度快,又具有软件相关仪易于实现的优点,因而有良好的性能价格比。方案采用了快速进位计数电路和缓冲器暂存计数器内容的方法,使电路实现了对光脉冲信号的连续正确的采集。由于在电路中选用了国际上较为先进的MCS—51单片机,采用双CPU并行操作的工作方式,大大地提高了数据处理速度。

In this paper, some techniques are introduced for the design of power supply monitoring system using a TPS01A-baed single-board computer; (1)the test circuit and EEPROM; (2)externally connected pulse count circuit; (3)simple communication method. Their characteristic is little increase in hardware and there are only four communication lines. It is easy to program and appropriate to be used for multi-stage industrial automation systems in the future.

本文介绍用单板机设计供电监测系统的一些技术:(1)检测电路和EEPROM;(2)外接脉冲计数电路;(3)简易通讯方法。这些技术的特点是不增加硬件,编程容易,仅需4条通讯线,适宜在工业自动化多级系统中使用。

 
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