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Dr. Ali Mohammed Almuhlafi | د. علي بن محمد المحلفي

Assistant Professor

Full-Time Faculty

كلية الهندسة
Building 3, 2nd floor, Office No. 2C9
publication
Journal Article
2018

Highly Sensitive Microwaves Sensors for Fluid Concentration Measurements

, Ali M. Albishi ; Omar M. Ramahi . 2018

Although electromagnetic-stored energy of planar electrically-small resonators is mostly concentrated in an electrically small volume, most of the energy, however, is concentrated in the host substrate, thus limiting the sensitivity to detect changes in the material under test which is different from the host substrate. In this letter, a sensor design for enhancing the electromagnetic stored energy in the sensing volume is presented. The design concept is based on using a 3-D parallel-plate capacitor to enhance the stored electric energy in the sensing volume that is exposed to the material under test. For validation, a resonator based on a complementary electric-LC resonator was utilized to design the sensor. Using simulations, the sensor demonstrated a sensitivity enhancement of more than 400% when detecting changes in a dielectric material over the relative permittivity range of 1 to 1.2. To validate the concept experimentally, the sensor was utilized to detect changes in the concentration of two fluids, which makes it suitable for a host of emerging micofludic applications including lab-on-a-chip.

Volume Number
28
Issue Number
4
Magazine \ Newspaper
IEEE Microwave and Wireless Components Letters
Pages
287 - 289
more of publication
publications

This study explores the viability of using the avoided mode crossing phenomenon in the microwave regime to design microwave differential sensors. While the design concept can be applied to any…

by Ali M. Almuhlafi, Mohammed S. Alshaykh, Mansour Alajmi, Bassam Alshammari and Omar M. Ramahi
2024
Published in:
MDPI Sensors
publications
by Zambak, M.F.; Al-Bawri, S.S.; Jusoh, M.; Rambe, A.H.; Vettikalladi, H.; Albishi, A.M.; Himdi, M.
2023
publications

his paper presents a novel microstrip patch antenna design using slots and parasitic strips to operate at the n77 (3.3–4.2 GHz)/n78 (3.3–3.8 GHz) band of sub-6 GHz and n96 (5.9–7.1 GHz) band of…

by Noor, S.K.; Jusoh, M.; Sabapathy, T.; Rambe, A.H.; Vettikalladi, H.; M. Albishi, A.; Himdi, M.
2023