Nothing Special   »   [go: up one dir, main page]

Farjana, 2023 - Google Patents

Polymer-Based Micromachining for Scalable and Cost-Effective Fabrication of Gap Waveguide Devices Beyond 100 GHz

Farjana, 2023

View PDF
Document ID
4290091307294928424
Author
Farjana S
Publication year
Publication venue
PQDT-Global

External Links

Snippet

The terahertz (THz) frequency bands have gained attention over the past few years due to the growing number of applications in fields like communication, healthcare, imaging, and spectroscopy. Above 100 GHz transmission line losses become dominating, and …
Continue reading at research.chalmers.se (PDF) (other versions)

Classifications

    • HELECTRICITY
    • H01BASIC ELECTRIC ELEMENTS
    • H01PWAVEGUIDES; RESONATORS, LINES, OR OTHER DEVICES OF THE WAVEGUIDE TYPE
    • H01P5/00Coupling devices of the waveguide type
    • H01P5/12Coupling devices having more than two ports
    • H01P5/16Conjugate devices, i.e. devices having at least one port decoupled from one other port
    • H01P5/18Conjugate devices, i.e. devices having at least one port decoupled from one other port consisting of two coupled guides, e.g. directional couplers
    • HELECTRICITY
    • H01BASIC ELECTRIC ELEMENTS
    • H01PWAVEGUIDES; RESONATORS, LINES, OR OTHER DEVICES OF THE WAVEGUIDE TYPE
    • H01P5/00Coupling devices of the waveguide type
    • H01P5/08Coupling devices of the waveguide type for linking dissimilar lines or devices
    • H01P5/10Coupling devices of the waveguide type for linking dissimilar lines or devices for coupling balanced with unbalanced lines or devices
    • H01P5/107Hollow-waveguide/strip-line transitions
    • HELECTRICITY
    • H01BASIC ELECTRIC ELEMENTS
    • H01PWAVEGUIDES; RESONATORS, LINES, OR OTHER DEVICES OF THE WAVEGUIDE TYPE
    • H01P11/00Apparatus or processes specially adapted for manufacturing waveguides or resonators, lines, or other devices of the waveguide type
    • H01P11/001Manufacturing waveguides or transmission lines of the waveguide type
    • HELECTRICITY
    • H01BASIC ELECTRIC ELEMENTS
    • H01PWAVEGUIDES; RESONATORS, LINES, OR OTHER DEVICES OF THE WAVEGUIDE TYPE
    • H01P1/00Auxiliary devices
    • H01P1/20Frequency-selective devices, e.g. filters
    • H01P1/207Hollow waveguide filters
    • H01P1/208Cascaded cavities; Cascaded resonators inside a hollow waveguide structure
    • H01P1/2088Integrated in a substrate
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS, OR APPARATUS
    • G02B6/00Light guides
    • G02B6/10Light guides of the optical waveguide type
    • G02B6/12Light guides of the optical waveguide type of the integrated circuit kind
    • G02B6/122Light guides of the optical waveguide type of the integrated circuit kind basic optical elements, e.g. light-guiding paths
    • G02B6/1221Light guides of the optical waveguide type of the integrated circuit kind basic optical elements, e.g. light-guiding paths made from organic materials
    • HELECTRICITY
    • H01BASIC ELECTRIC ELEMENTS
    • H01PWAVEGUIDES; RESONATORS, LINES, OR OTHER DEVICES OF THE WAVEGUIDE TYPE
    • H01P3/00Waveguides; Transmission lines of the waveguide type

Similar Documents

Publication Publication Date Title
US9806393B2 (en) Gap waveguide structures for THz applications
Reid et al. Micromachined rectangular-coaxial transmission lines
US8736403B2 (en) Resonance filter having low loss
US11276910B2 (en) Substrate integrated waveguide and method for manufacturing the same
Farjana et al. Low-loss gap waveguide transmission line and transitions at 220–320 GHz using dry film micromachining
Farjana et al. Realizing a 140 GHz gap waveguide–based array antenna by low-cost injection molding and micromachining
Vanhille et al. Quasi-planar high-Q millimeter-wave resonators
Isapour et al. Vertical LTCC integrated rectangular waveguide and transitions for millimeter-wave applications
Zhao et al. A silicon-micromachined waveguide platform with axial ports for integrated sub-THz filters
Krivovitca et al. Micromachined silicon-core substrate-integrated waveguides at 220–330 GHz
Savvides et al. 3D Rapid-Prototyped 21-31-GHz Hollow SIWs for Low-Cost 5G IoT and Robotic Applications
Karmakar et al. Si-RF Technology
Farjana et al. Multilayer dry film photoresist fabrication of a robust> 100 GHZ gap waveguide slot array antenna
Farjana et al. Micromachined wideband ridge gap waveguide power divider at 220–325 GHz
Farjana Polymer-Based Micromachining for Scalable and Cost-Effective Fabrication of Gap Waveguide Devices Beyond 100 GHz
Glubokov et al. Compact W-band silicon-micromachined filters with increased fabrication robustness
Karimi et al. Full-band Silicon-Micromachined E-plane Waveguide Bend for Flange-to-Chip Connection
Pan et al. Surface micromachining polymer-core-conductor approach for high-performance millimeter-wave air-cavity filters integration
Farjana Polymer-Based Low-Cost Micromachining of Gap Waveguide Components
Yu et al. Monolithic silicon micromachined Ka-band filters
Menudier et al. Innovative materials and fabrication process to develop new RF components and concepts
Ke et al. Micromachined rectangular coaxial line and cavity resonator for 77 GHz applications using SU8 photoresist
Rahiminejad Microsystem technology for microwave applications at frequencies above 100 GHz
Zhang et al. Design and experiment of 340-GHz band pass filter with low insertion loss
Yang Terahertz waveguide filters