Compact Dual-Band Zig Zag Shaped Implantable Antenna for Biomedical Devices

Rajiv Kumar Nehraa, N. S. Raghavab
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Abstract

This paper presents a highly compact volume 12 mm 3 Zig Zag-shaped implantable antenna for biomedical applications. The antenna performance is closely analyzed in terms of penetration depth, different human tissues, substrate materials, reflection coefficient, Impedance Bandwidth, directive gain, and SAR values. The three different models are analyzed for different resonating frequencies. It is found that the proposed antenna shows dual ISM bands (900 MHz to 970 MHz 2.36GHz to 2.49 GHz) with impedance bandwidth of 7.77 % and 5.5% respectively. The proposed implantable antenna is successfully fabricated and tested in skin mimicking gel (vitro model). The performance of the proposed antenna is enhanced by using a sorting pin and slots that provides dual ISM bands, an acceptable SAR of 856.3 W/KG, and a directive gain of -28.68 dBi. Parametric analysis of the proposed implantable antenna has been studied in detail. Simulated and fabricated results are compared and found almost similar
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用于生物医学设备的紧凑型双波段之字形植入式天线
本文介绍了一种高度紧凑的体积为12毫米3之字形的生物医学应用植入式天线。从穿透深度、不同人体组织、衬底材料、反射系数、阻抗带宽、定向增益和SAR值等方面对天线性能进行了分析。对不同谐振频率下的三种不同模型进行了分析。结果表明,该天线具有900 MHz ~ 970 MHz、2.36GHz ~ 2.49 GHz双ISM频段,阻抗带宽分别为7.77%和5.5%。该植入式天线已成功制备,并在皮肤模拟凝胶(体外模型)中进行了测试。该天线的性能通过使用分选引脚和提供双ISM频段的插槽来增强,可接受的SAR为856.3 W/KG,指示增益为-28.68 dBi。对所提出的可植入天线进行了详细的参数分析。将模拟结果与模拟结果进行比较,发现两者基本一致
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