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The use of ASICs in the implementation of distance measurement using pulsed infra-red techniques

机译:使用脉冲红外线技术在实现距离测量中的应用

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The defence group (DG) of THORN EMI electronics specializes in the design and manufacture of equipment for installation in guided weapon (GW) systems. These items of equipment often have to be installed in confined, peculiarly shaped spaces, such as the nose cone of a missile or shell, in order to be able to accommodate requirements for increased circuit complexity within the limited space envelopes available, DG has adopted increasing levels of system and circuit integration. These include the use of application specific integrated circuit (ASIC) technology and advanced manufacturing techniques, such as the use of surface mount components. Since the early 1970s, DG has developed a number of products, including altimeters and GW proximity fuzes, that embody distance measuring sensors based on pulsed infra-red techniques, using solid state, uncooled laser and photo-detector components. This paper reviews the evolution within DG of the electronic circuitry for this class of product. In particular, the merits of employing an ASIC implementation for major functional elements of the receiver signal processing chain are reviewed.
机译:荆棘EMI电子的防御集团(DG)专门研究和制造在引导武器(GW)系统中安装设备。这些设备的物品通常必须安装在密闭的特殊形状的空间中,例如导弹或壳体的鼻锥,以便能够适应有限的空间信封内的电路复杂性的需求,DG采用了越来越多系统和电路集成水平。这些包括应用特定的集成电路(ASIC)技术和先进的制造技术,例如使用表面安装部件。自20世纪70年代初以来,DG开发了许多产品,包括高度仪和GW接近uzes,该产品包括基于脉冲的红外线技术,使用固态,未冷却激光器和光电检测器组分来体现距离测量传感器。本文评论了这类产品的电子电路DG内的进化。特别地,回顾了采用接收器信号处理链的主要功能元素的ASIC实现的优点。

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