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MRF volume 11 issue 8 Cover and Front matter
Compact filtering power dividers with wide upper stopband
Gaoya Dong, Weimin Wang, Yuanan Liu
A series of compact filtering power dividers (FPDs) with simple layouts are proposed based on coupling topology. The structure of the presented FPD1 is composed of three resonators and one isolating resistor. These FPDs can be designed based on coupling matrix filter theory. A half-wave transmission line is employed in FPD2 to introduce a transmission zero (TZ) locating at 1.27. The FPD3 is design
Gain enhancement for MIMO antenna using metamaterial structure
Ngoc Lan Nguyen, Van Yem Vu
In this paper, a multiple input multiple output antenna which operates at 5.8 GHz for wireless local area network applications is proposed. The proposed antenna is composed of two sets of four elements antenna array (2 × 2) on the top and a novel metamaterial structure on the ground plane. Here, the ground plane, which includes a lattice of 2 × 5 unit cells of metamaterial structure, is utilized i
A low insertion loss low-pass filter based on single comb-shaped spoof surface plasmon polaritons
Luping Li, Lijuan Dong, Peng Chen, Kai Yang
This paper presents a low insertion loss low-pass filter based on the spoof surface plasmon polariton (SSPP) with single comb-shape. Compared with traditional ones, the proposed filter provides lower insertion loss and return loss by optimizing the structural parameters of the mode conversion and SSPP parts. According to the measurement results, the average insertion loss of the fabricated filter
Design of WLAN/WiMAX band notch super-wideband microstrip fractal antennas
S. S. Abdpour, N. Azadi-Tinat, H. Oraizi, J. Ghalibafan
A super-wideband microstrip fractal antenna is designed with miniaturized dimensions of 21 mm × 23.5 mm × 1 mm and generation of dual rejection bands for WLAN/WiMAX systems has been achieved. The triangular fractal shape slots are placed inside a circular patch and the antenna is miniaturized by using a repetition frequency resonance technique. The proposed antenna frequency range 2.6?40 GHz opera
A multilayer substrate integrated filter using dual dielectric modes
Xiao-Xiao Yuan, Li-Heng Zhou, Jian-Xin Chen
In this paper, a novel multilayer substrate integrated dual-mode dielectric resonator (DR) filter is proposed. The square dual-mode DR is made of the high permittivity substrate by removing the undesired portions and the surface coppers so that the relatively high unloaded quality factor of the dominate TM pair can be obtained which compared to these fully dielectric-filled substrate integrated wa
Design and performance analysis of a conformal CPW fed wideband antenna with Mu-Negative metamaterial for wearable applications
Deepa Negi, Rajesh Khanna, Jaswinder Kaur
In this paper, a flexible CPW fed ultrawide band (UWB) antenna with mu-negative (MNG) metamaterial is designed, fabricated, and tested for wearable applications. Initially, a UWB antenna of size 50 mm × 43 mm is fabricated on two different substrates, viz. flexible FR4 and semi-flexible Rogers RT/duroid 5880. A metamaterial structure fabricated on flexible FR4 shows a magnetic resonance from 7.2 G
A tunable open ring coupling structure and its application in fully tunable bandpass filter
Zhonghai Zhang, Fei Zhao, Aiting Wu
This letter presents a novel tunable coupling structure to simplify the design complexity of the miniaturized fully tunable filter by using open ring and varactors. Based on the proposed novel tunable coupling structure, a fully tunable bandpass filter is implemented with independently tunable operating frequency and bandwidth. The tunable resonator and tunable coupling structure can be easily com
Broadband CPW-fed circularly polarized antenna for IoT-based navigation system
Amit Birwal, Sanjeev Singh, Binod Kumar Kanaujia, Sachin Kumar
The paper presents a new coplanar waveguide (CPW)-fed rectangular patch antenna with a square-shaped ground plane that can be employed in modern advanced navigation systems. For realizing broad impedance bandwidth in the proposed antenna, a wide slot is introduced in the square ground plane and the rectangular patch is shifted toward the left edge of the ground surface. In addition, by means of in
Coherent J-Band radiating arrays based on ×27 CMOS activemultiplier chips
Roman Klimovich, Samuel Jameson, Eran Socher
This paper presents a hybrid design of 1 × 2 and 1 × 4 arrays operating in 0.277?0.292 THz on 65 nm Complementary metal?oxide?semiconductor (CMOS) technology. Each of the chips has an X-band input with 3 ×3 multiplier stages and connected at the output to an on-chip ring antenna. A wideband microstrip Wilkinson four-way and two-way power dividers have been developed on a multilayer printed circuit
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