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An Integrated On-Chip Implantable Antenna in CMOS Technology for Biomedical Applications

机译:CMOS技术中用于生物医学应用的集成片上可植入天线

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A differentially driven miniaturized integrated on-chip implantable antenna with a total area of is designed and tested for biomedical applications in this communication. The antenna is fabricated on the standard CMOS technology to make it be easily integrated with a transmitter designed using the same process. The proposed antenna is firstly optimized in a one-layer skin model. CST voxel human head model is used to evaluate the accuracy of the design concept. The simulated reflection coefficient and coupling strength are studied and compared in two simulation models. A simple dipole antenna is placed over the skin to demonstrate the communication link. A chip-to-SMA transition is designed for testing. The simulated and measured results are well agreed, which demonstrates the communication ability of the proposed antenna. The effect of various issues in the measurement setup is discussed.
机译:针对此通信中的生物医学应用,设计并测试了总面积为的差动驱动的小型集成芯片上可植入天线。该天线采用标准CMOS技术制造,可轻松与使用相同工艺设计的发射器集成在一起。所提出的天线首先在单层皮肤模型中进行了优化。 CST体素人头模型用于评估设计概念的准确性。在两个仿真模型中研究并比较了仿真反射系数和耦合强度。在皮肤上放置一个简单的偶极天线以演示通信链接。芯片到SMA的过渡设计用于测试。仿真和测量结果完全吻合,证明了所建议天线的通信能力。讨论了测量设置中各种问题的影响。

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