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Reconfigurable mosaic annular arrays

机译:可重构马赛克环形阵列

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摘要

Mosaic annular arrays (MAA) based on reconfigurable array (RA) transducer electronics assemblies are presented as a potential solution for future highly integrated ultrasonic transducer subsystems. Advantages of MAAs include excellent beam quality and depth of field resulting from superior elevational focus compared with 1-D electronically scanned arrays, as well as potentially reduced cost, size, and power consumption resulting from the use of a limited number of beamforming channels for processing a large number of subelements. Specific design tradeoffs for these highly integrated arrays are discussed in terms of array specifications for center frequency, element pitch, and electronic switch-on resistance. Large-area RAs essentially function as RC delay lines. Efficient architectures which take into account RC delay effects are presented. Architectures for integration of the transducer and electronics layers of large-area array implementations are reviewed.
机译:提出了基于可重构阵列(RA)换能器电子组件的镶嵌环形阵列(MAA),作为未来高度集成的超声换能器子系统的潜在解决方案。 MAA的优势包括:与一维电子扫描阵列相比,由于具有出色的仰角聚焦,因此具有出色的光束质量和景深,以及由于使用有限数量的波束形成通道进行处理而可能降低的成本,尺寸和功耗大量子元素。根据中心频率,元件间距和电子接通电阻的阵列规格,讨论了这些高度集成的阵列的特定设计折衷。大面积RA本质上用作RC延迟线。提出了考虑RC延迟影响的高效架构。审查了用于大面积阵列实现的换能器和电子设备层集成的体系结构。

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