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A miniaturised wideband frequency synthesiser

机译:小型化的宽带频率合成器

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摘要

Wideband frequency synthesisers have application in many areas, including test instrumentation and defence electronics. Miniaturisation of these devices provides many advantages to system designers, particularly in applications where extra space and weight are expensive.ududThe purpose of this project was to miniaturise a wideband frequency synthesiser and package it for operation in several different environmental conditions while satisfying demanding technical specifications. The four primary and secondary goals to be achieved were:ud1.an operating frequency range from low MHz to greater than 40 GHz, with resolution better than 1 MHz, ud2.typical RF output power of +10 dBm, with maximum DC supply of 15 W, ud3.synthesiser package of only 150  100  30 mm, and ud4.operating temperatures from 20C to +71C, and vibration levels over 7 grms.ududThis task was approached from multiple angles. Electrically, the system is designed to have as few functional blocks as possible. Off the shelf components are used for active functions instead of customised circuits. Mechanically, the synthesiser package is designed for efficient use of the available space. Two identical prototype synthesisers were manufactured to evaluate the design methodology and to show the repeatability of the design. ududAlthough further engineering development will improve the synthesiser’s performance, this project has successfully demonstrated a level of miniaturisation which sets a new benchmark for wideband synthesiser design. These synthesisers will meet the demands for smaller, lighter wideband sources. Potential applications include portable test equipment, radar and electronic surveillance systems on unmanned aerial vehicles. They are also useful for reducing the overall weight and power consumption of other systems, even if small dimensions are not essential.ud
机译:宽带频率合成器已在许多领域得到应用,包括测试仪器和国防电子。这些设备的小型化为系统设计人员提供了许多优势,特别是在额外空间和重量昂贵的应用中。技术规格。要实现的四个主要和次要目标是: ud1。工作频率范围从低MHz到大于40 GHz,分辨率优于1 MHz, ud2。典型的RF输出功率为+10 dBm,最大直流电源为15 W, ud3。合成器封装只有150×100×30 mm,并且 ud4。工作温度从20°C到+ 71°C,振动级别超过7 grms。 ud ud此任务是从多个角度进行的。在电气上,该系统被设计为具有尽可能少的功能块。现成的组件用于激活功能,而非定制电路。从机械上讲,合成器套件旨在有效利用可用空间。制造了两个相同的原型综合器,以评估设计方法并显示设计的可重复性。 ud ud尽管进一步的工程开发将改善合成器的性能,但该项目已成功证明了其小型化水平,为宽带合成器设计树立了新的标杆。这些合成器将满足对更小,更轻的宽带光源的需求。潜在的应用包括便携式测试设备,无人机上的雷达和电子监视系统。即使减小尺寸不是必需的,它们也可用于减少其他系统的整体重量和功耗。

著录项

  • 作者

    Enchelmaier David Samuel;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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