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The Design of Optimized Programmable Transmitter and Receiver Architectures for an Integrated Sensor Microsystem

机译:用于集成传感器微系统的优化可编程发射机和接收器架构的设计

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Utilization of wireless miniaturized electronic systems in medical diagnosis has been made possible by emergence of system-on-chip technology. Communication systems targeting miniaturized sensor microsystem networks are characterized by their restricted power and area constraints. When considering the design of telecommunication system for such a network the receiver is the key performance critical block. This paper describes research work carried out on studying the impact of input data characteristics and internal data path complexity on area and power performance of the receiver. We have designed a number of optimized programmable transmitter and receiver architectures specifically for an integrated microsystem and studied their power/area characteristics. We demonstrate that up to 59% and 11% savings in area and power respectively could be achieved by optimizing input data size and internal register width for a particular application while maintaining signal quality and a certain degree of programmability.
机译:通过芯片系统的出现,可以利用无线小型化电子系统在医学诊断中进行的。针对小型化传感器微系统网络的通信系统的特点是其限制的功率和区域约束。在考虑用于这种网络的电信系统的设计时,接收器是关键性能关键块。本文介绍了在研究输入数据特性和内部数据路径复杂性对接收器区域和功率性能的影响的研究工作。我们设计了许多优化的可编程发射器和接收器架构专门针对集成的微系统,并研究了它们的功率/区域特性。我们证明,通过优化特定应用的输入数据大小和内部寄存器宽度,可以通过优化特定应用的内部寄存器宽度,在保持信号质量和一定程度的可编程性的同时,可以实现高达59%和11%的节省。

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