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Microfabrication and Characterization of W-Band Planar Helix Slow-Wave Structure With Straight-Edge Connections
By: Ciersiang Chua; Lei Wang; Zhongxiang Shen; Soon Wee Ho; Min Tang; Aditya, S.; Tsai, J.M.;
2011 / IEEE
Description
This item was taken from the IEEE Periodical ' Microfabrication and Characterization of W-Band Planar Helix Slow-Wave Structure With Straight-Edge Connections ' A slow-wave structure (SWS) consisting of a planar helix with straight-edge connections and incorporating a coplanar waveguide feed has been designed for operation at W-band and has been fabricated using microfabrication technique. On-wafer cold measurements have been carried out on a number of fabricated SWSs, and the results are reported here for the first time. The parameters measured are return loss, attenuation, and phase velocity, and the results cover a frequency range of 70-100 GHz. Cold-test parameters of the SWS have been also obtained using simulations, and the effects of fabrication, such as surface roughness, have been accounted for by estimating effective conductivity of different parts of the microfabricated structures. The measured and simulated results match well. The effects of silicon wafer resistivity have been also discussed. Planar helical SWSs fabricated in this manner have application in traveling-wave tubes operating at millimeter wave and higher frequencies.
Related Topics
Straight-edge Connections
Coplanar Waveguide Feed
Microfabrication Technique
On-wafer Cold Measurements
Surface Roughness
Traveling Wave Tubes
Cold Test Parameters
Surface Roughness
Rough Surfaces
Silicon
Conductivity
Metals
Fabrication
Bridges
Traveling-wave Tube (twt)
Cold-test Parameters
Electron Devices
Lithography
Microstructure
Millimeter-wave Measurements
Radio-frequency Microelectromechanical Systems
Slow-wave Structure (sws)
Surface Roughness
Planar Helix Slow-wave Structure
Frequency 70 Ghz To 100 Ghz
Microfabrication
Coplanar Waveguides
Slow Wave Structures
Engineered Materials, Dielectrics And Plasmas
Components, Circuits, Devices And Systems
Engineering
Phase Velocity