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Che Muhammad Nor Che Isa
Preferred name
Che Muhammad Nor Che Isa
Official Name
Che Muhammad Nor, Che Isa
Alternative Name
Che Isa, Che Muhammad Nor
Main Affiliation
Scopus Author ID
57210792893
Now showing
1 - 3 of 3
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PublicationAn ultrawideband full flexible 4 elements DGS based MIMO antenna for Sub-6 GHz wearable applications(IEEE, 2024-03)
;Bikash Chandra Sahoo ; ; ;Surentiran Padmanathan ;Sadia Afroz ; ;Soh Ping Jack ;Soumya Ranjan MishraIn this article, a compact wearable quad element MIMO antenna is presented operating at 4.5 GHz for 5G n77, n78, and n79 bands with the use of polyester substrate with a size of 80 × 82 × 0.4 mm3. Here T-shaped defected ground structure (DGS) technique has been utilized to improve the impedance bandwidth along with the reduction of the mutual coupling between the radiating elements. The antenna is evaluated in terms of reflection coefficient, gain, efficiency, and radiation pattern. The proposed MIMO antenna attained a maximum simulated gain of 4.3 dBi, and an efficiency of 96 % in the resonating band. -
PublicationA 3.5 GHz wearable antipodal vivaldi antenna for 5G applications(IEEE, 2024-01)
;Sadia Afroz ; ;Surentiran Padmanathan ; ; ;Bikash Chandra Sahoo ;Yen San Loh ; ;Lun Hao Tung ;Lai Ming Lim ;Zambri Samsudin ;Idris MansorSoh Ping JackThis paper represents a wideband wearable antenna for 5G applications. In this proposed design, an antipodal vivaldi antenna structure is implemented on a polyimide and polyester combined substrate. The 120 × 95 × 0.82 mm3 sized antenna acquired a wide bandwidth of 910 MHz with a realized gain of 5.42 dBi and efficiency of 96 percent.10 2 -
PublicationCompact full flexible vivaldi antenna for 3.5 GHz wearable applications(IEEE, 2023)
;Bikash Chandra Sahoo ; ; ; ;Surentiran Padmanathan ;Sadia Afroz ; ;Yen San Loh ;Muhammad Syahir Mahyuddin ;Lai Ming Lim ;Zambri Samsudin ;Idris MansorSoh Ping JackIn this paper, a compact wearable Vivaldi antenna resonating at 3.5 GHz is proposed for 5G n77, and n78 bands. It is designed upon a flexible polyester substrate having dielectric constant (εr) of 1.34 and loss tangent (tan δ) of 0.005. The antenna parameters were optimized via parametric analyses using CST software with a size of 45 × 45 × 0.4 mm3 (length × width × height). The antenna is evaluated in terms of reflection coefficient, gain, efficiency, radiation pattern, and surface current density. This antenna attained a maximum simulated gain of 4.7 dBi, and an efficiency of 98 % in the resonating band.7 1