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A detailed cavity and coupler design was carried out via simulation.
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In this paper, the three-dimension time-domain S-parameters calculation for coupler design is described in detail.
In our project, S-Band Linac Radiation Facility R&D, a calculation means for RF coupler numerical simulation design was considered by computing the phase of scattering parameter S11 and the good results are obtained in conjunction with microwave measurement.
This design is advantageous where the coupler is being fed to a detector for power monitoring.
This design is frequently used to produce a 3 dB coupler.
This design is limited because the electrical length of the coupler will only be λ/4 at one specific frequency.
The commercial software High-Frequency Structure Simulator (HFSS) of Ansoft Corporation is used for the coupler design.
Finally, an example of coupler design for a 2π/3 X band accelerating structure is illustrated.
The designed coupler is inspired from the taper configuration and numerically modeled through finite-difference time-domain (FDTD) simulation.
To control the heating problem, a new HOM coupler was designed based on a TESLA-style coaxial HOM coupler, and the feedthrough was also modified based on a Kyocera N-R type connector to have better thermal conductivity.
A 2 × 2 polymer-waveguide-based vertical coupler was designed and fabricated.
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