The present configuration of an ILC main LINAC RF station has 26 nine cell cavities driven from one klystron. With the addition of waveguide power coupler monitors, 96 RF signals will be down-converted and processed. A down-converter chassis is being developed that contains 12 eight channel analog modules and a single upconverter module. This chassis will first be deployed for testing a cryomodule composed of eight cavities located at New Muon Laboratory (NML) - Fermilab. Critical parts of the design for LLRF applications are identified and a detailed description of the circuit with various characteristic measurements is presented. The board is composed of an input band-pass filter centered at 1.3GHz, followed by a mixer, which down-convert...
The main RF system of the LHC, which uses 400MHz superconducting cavities, will be used to capture, ...
PIP-II is an 800 MEV superconducting linac that is in the initial acceleration chain for the Fermila...
This paper describes an X-Band and RF system for the Next Linear Collider Test Accelerator. The RF s...
The present configuration of an ILC main LINAC RF station has 26 nine cell cavities driven from one ...
The proposed RF distribution scheme for the two 15 km long ILC LINACs, uses one klystron to feed 26 ...
An ILC R&D facility is being constructed in the NML building at Fermilab which, in addition to a...
The proposed Next Linear Collider contains a large number of linac RF systems with new requirements ...
The major controls and instrumentation systems for the ILC test areas and the NML test accelerator a...
Fermilab is developing a facility for vertical testing of SRF cavities as part of its ILC program. T...
The proposed Next Linear Collider (NLC) contains linac systems operating at L,S,C, and X band. This ...
The field control of multiple superconducting RF cavities with a single Klystron, such as the propos...
As part of the research and development towards the International Linear Collider (ILC), several tes...
We report on the L-band RF power distribution system (PDS) developed at SLAC for Fermilab's NML supe...
The LHC Low Level RF system (LLRF) is a complex multi-loop system used to regulate the superconducti...
The LHC RF consists of eight 400 MHz superconducting cavities per ring, with each cavity independent...
The main RF system of the LHC, which uses 400MHz superconducting cavities, will be used to capture, ...
PIP-II is an 800 MEV superconducting linac that is in the initial acceleration chain for the Fermila...
This paper describes an X-Band and RF system for the Next Linear Collider Test Accelerator. The RF s...
The present configuration of an ILC main LINAC RF station has 26 nine cell cavities driven from one ...
The proposed RF distribution scheme for the two 15 km long ILC LINACs, uses one klystron to feed 26 ...
An ILC R&D facility is being constructed in the NML building at Fermilab which, in addition to a...
The proposed Next Linear Collider contains a large number of linac RF systems with new requirements ...
The major controls and instrumentation systems for the ILC test areas and the NML test accelerator a...
Fermilab is developing a facility for vertical testing of SRF cavities as part of its ILC program. T...
The proposed Next Linear Collider (NLC) contains linac systems operating at L,S,C, and X band. This ...
The field control of multiple superconducting RF cavities with a single Klystron, such as the propos...
As part of the research and development towards the International Linear Collider (ILC), several tes...
We report on the L-band RF power distribution system (PDS) developed at SLAC for Fermilab's NML supe...
The LHC Low Level RF system (LLRF) is a complex multi-loop system used to regulate the superconducti...
The LHC RF consists of eight 400 MHz superconducting cavities per ring, with each cavity independent...
The main RF system of the LHC, which uses 400MHz superconducting cavities, will be used to capture, ...
PIP-II is an 800 MEV superconducting linac that is in the initial acceleration chain for the Fermila...
This paper describes an X-Band and RF system for the Next Linear Collider Test Accelerator. The RF s...