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History of resistor array infrared projectors: hindsight is always 100 operability

机译:电阻阵列红外投影仪的历史:事后观察始终具有100%的可操作性

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Numerous infrared scene projection technologies have been investigated since the 1970s. Notably, from the late 1980s the development of the first resistor array infrared projectors gained leverage from the strong concurrent developments within focal plane array imaging technology, linked by the common need for large integrated circuits comprising a 2-dimensional array of interconnected unit cells. In the resistor array case, it is the unit cell comprising the resistively heated emitter and its dedicated drive circuit that determines the projector response to its associated scene generator commands. In this paper we review the development of resistor array technology from a historical perspective, concentrating on the unit cell developments. We commence by describing the technological innovations that forged the way, sharing along the way stories of the successes and failures, all of which contributed to the steady if somewhat eventful growth of the critical knowledge base that underpins the strength of today's array technology. We conclude with comments on the characteristics and limitations of the technology and on the prospects for future array development.
机译:自1970年代以来,已经研究了许多红外场景投影技术。值得注意的是,从1980年代后期开始,第一台电阻阵列红外投影仪的开发就得到了焦平面阵列成像技术的强劲并发发展的推动,焦平面阵列成像技术的强劲并发发展是由对包含互连单元单元的二维阵列的大型集成电路的普遍需求所链接的。在电阻器阵列的情况下,是由电阻加热的发射器及其专用驱动电路组成的单位单元,确定了投影仪对其相关联的场景生成器命令的响应。在本文中,我们从历史的角度回顾了电阻器阵列技术的发展,重点是单位单元的发展。首先,我们描述了锻造技术的创新,并分享了成功和失败的故事,所有这些都为关键知识基础的稳步增长提供了基础,这些增长奠定了当今阵列技术的力量。我们以对该技术的特性和局限性以及未来阵列开发的前景发表评论作为结尾。

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