Idrees Muhammad, Khalid Sohail, Rehman Muhammad Abdul, Ullah Syed Sajid, Hussain Saddam, Iqbal Jawaid
Department of Electrical Engineering, Riphah International University, Islamabad 45210, Pakistan.
Department of Information and Communication Technology, University of Agder (UiA), N-4898 Grimstad, Norway.
Micromachines (Basel). 2023 Sep 23;14(10):1821. doi: 10.3390/mi14101821.
This paper presents the design of microstrip-based multiplexers using stub-loaded coupled-line resonators. The proposed multiplexers consist of a diplexer and a triplexer, meticulously engineered to operate at specific frequency bands relevant to IoT systems: 2.55 GHz, 3.94 GHz, and 5.75 GHz. To enhance isolation and selectivity between the two passband regions, the diplexer incorporates five transmission poles (TPs) within its design. Similarly, the triplexer filter employs seven transmission poles to attain the desired performance across all three passbands. A comprehensive comparison was conducted against previously reported designs, considering crucial parameters such as size, insertion loss, return loss, and isolation between the two frequency bands. The fabrication of the diplexer and triplexer was carried out on a compact Rogers Duroid 5880 substrate. The experimental results demonstrate an exceptional performance, with the diplexer exhibiting a low insertion loss of 0.3 dB at 2.55 GHz and 0.4 dB at 3.94 GHz. The triplexer exhibits an insertion loss of 0.3 dB at 2.55 GHz, 0.37 dB at 3.94 GHz, and 0.2 dB at 5.75 GHz. The measured performance of the fabricated diplexer and triplexer aligns well with the simulated results, validating their effectiveness in meeting the desired specifications.
本文介绍了使用短截线加载耦合线谐振器的基于微带的复用器的设计。所提出的复用器由一个双工器和一个三工器组成,经过精心设计,可在与物联网系统相关的特定频段工作:2.55 GHz、3.94 GHz和5.75 GHz。为了增强两个通带区域之间的隔离度和选择性,双工器在其设计中包含五个传输极点(TP)。同样,三工器滤波器采用七个传输极点,以在所有三个通带中实现所需的性能。针对先前报道的设计进行了全面比较,考虑了诸如尺寸、插入损耗、回波损耗以及两个频段之间的隔离度等关键参数。双工器和三工器在紧凑的Rogers Duroid 5880基板上制造。实验结果显示出卓越的性能,双工器在2.55 GHz时的插入损耗低至0.3 dB,在3.94 GHz时为0.4 dB。三工器在2.55 GHz时的插入损耗为0.3 dB,在3.94 GHz时为0.37 dB,在5.75 GHz时为0.2 dB。所制造的双工器和三工器的测量性能与模拟结果吻合良好,验证了它们在满足所需规格方面的有效性。