VALUE PROPOSITION With advances in sensors, numerical modeling, image processing, and material science, a diverse range of diagnostic and prognostic techniques are being developed for assessing structural integrity and reliability. Split-ring resonators (SRRs) have been used in the design of metamaterials, largely due to their frequency selective behavior. Specifically, SRRs behave as sub-wavelength resonators when excited by a time-varying magnetic field perpendicular to the plane of the SRRs. Thus, SRRs are able to inhibit signal propagation in a narrow band, close to their resonant frequency. SRRs can be modeled as LC resonant tanks, with a resonant frequency dependent on the SRR unit cell parameters, such as ring size, width, and edge gaps. When excited by a microstrip transmission line, SRRs have demonstrated great potential for bio-sensing applications. The dielectric coupling due to the presence of biomolecules lead to a shift of resonance frequency, which can be utilized for bio-sensing.
DESCRIPTION OF TECHNOLOGY
In this technology a defect sensing apparatus is configured to identify defects or targets in materials. The defect sensing apparatus includes a microstrip transmission line along a length of the defect sensing apparatus and a reference split-ring resonator coupled to the microstrip transmission line. The reference split-ring resonator is located on a reference side of the microstrip transmission line. The defect sensing apparatus includes a first sensing split-ring resonator coupled to the microstrip transmission line. The first sensing split-ring resonator is located on a sensing side of the microstrip transmission line. The defect sensing apparatus includes a second sensing split-ring resonator coupled to the microstrip transmission line. The second sensing split-ring resonator is located on the sensing side of the microstrip transmission line. The microstrip transmission line is configured to excite the reference split-ring resonator, the first sensing split-ring resonator, and the second sensing split-ring resonator. The first sensing split-ring resonator and the second sensing split-ring resonator are configured to scan a sample.
BENEFITS
APPLICATIONS
IP Status
US Patent 11,137,359
LICENSING RIGHTS AVAILABLE
All Licensing rights available
Inventors: Lalita Udpa, Satish Udpa and Saptarshi Mukherjee
Tech ID: TEC2018-0159
For more information about this technology,
Contact Jon Debling, Ph.D. at deblingj@msu.edu or +1-517-884-1653