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The performance of an implantable miniature planar dipole antenna designed for integration into wireless biomedical devices is investigated. The proposed antenna, exhibiting dimensions of 19.4 × 2.0 × 0.254 mm3, operates in the Medical Implant Communications Service (MICS) frequency band (402–405 MHz). Numerical analysis with regard to antenna resonance and radiation characteristics is, initially,...
Design and performance of implantable planar dipole antennas from a) current phase and metallization, b) impedance matching, and c) quality factor point of view are discussed here. Antennas are built for wireless biotelemetry applications in the Medical Implant Communications Service (MICS) frequency band (402–405 MHz). As shown, implementing detailed analysis with emphasis on current phase, significant...
In this study, a human tissue-implantable compact folded dipole antenna of 19.6 ∗ 2 ∗ 0.254 mm3 operating in the Medical Implant Communication Service (MICS) frequency band (402–405 MHz) is presented. The antenna design and analysis is carried out inside a homogeneous flat phantom with electrical properties equivalent to those of 2/3 human muscle tissue. The dipole antenna, printed on a high-dielectric...
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