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This paper describes multi retriggering technique applied in the memorized measuring system. It is referred to the measurement of shock suffered by the fuzes when spinning or bumping randomly in the transportation course and the measurement of bending stress during the engage of every tooth of a gear. It is the first time that the start point (start address) of each retriggerable record can be latched while sampling, and be punched automatically into address counter while reading out the data, need no program...

This paper describes multi retriggering technique applied in the memorized measuring system. It is referred to the measurement of shock suffered by the fuzes when spinning or bumping randomly in the transportation course and the measurement of bending stress during the engage of every tooth of a gear. It is the first time that the start point (start address) of each retriggerable record can be latched while sampling, and be punched automatically into address counter while reading out the data, need no program to adjust the recorded data. This article gives the detail description about the system construction, the work principle and the working sequence.

本文研究了多次重触发技术在存储测试系统中的应用,它是针对引信运输安全模拟实验的多次磕碰冲击测试,以及齿轮轮齿多次啮合过程弯曲应力测试而提出的.它首次对每次重触发记录的起始地址进行锁存,以便读数时直接找到该次记录的真实起点,无须利用程序调整.该研究对重触发技术在存储测试系统中的应用具有重要意义

Introduces the schematic of a high speed two channel data acqusition system.Includes signal amplifier,digitizing acqusition,programme controlled multi-segment trigger and record,ISA interfaceetal.

介绍了双通道高速数据采集系统的硬件结构和原理 ,包括双通道性能一致性、模拟放大、量化采集、程控多段触发记录及接口等 .

The precise measurement of the impulse signal of the pressure in the bore of the cannonball when explodingbas always been a technology problem. A new way of such tueasurement based on embedded microprocessor is introduced.By periodically sampling and recording the signal when the circulator is triggered,the impulse signal can be measured ef-fectively and precisely. The FRAM components are also used in the system to save the information for future use.

冲击信号的可靠检测与记录是一个重要的研究领域,文章以内置于炮弹弹丸内部的能够检测和记录瞬时膛压信息的嵌入式系统为研究内容,针对炮弹发射时膛压变化曲线测试和记录这一技术难题,提出了对单次冲击信号采用“循环采集、触发记录”的新方法,成功的解决了传统的铜柱测试法只能确定爆炸峰值压力、不能测出爆炸过程P-T曲线、无法求出增压时间及火药燃烧速率等问题,介绍了用非易失性新型快速存储器件FRAM将数据长期可靠保存的实用电路、该系统不仅适合于爆炸主体P-T过程的测试,还可用于多种瞬态参量的测试。

 
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