A new front-end board is under development for the CERN SPS Multi ORbit Position System (MOPOS). Based on logarithmic amplifiers, it measures the beam position over a large dynamic range of beam intensities and resolves the multi-batch structure of the SPS beams. Analogue data are digitized at 10 MS/s, packed in frames by an FPGA and on every turn sent to the readout board, via a 2.4 Gb/s optical transmission link. A first prototype has been successfully tested with several SPS beams. This paper presents an overall description of the system and its capabilities highlighted by the first beam measurements
The Proton Synchrotron accelerator (PS), installed at CERN, although commissioned in 1959, still pla...
A logarithmic-ratio beam position monitor (BPM) circuit has been designed that operates directly fro...
This paper discusses the performance of the logarithmic amplifier electronics system used with strip...
A new Front-End electronics, based on Logarithmic Amplifiers, is currently being developed for the C...
The CERN Super Proton Synchrotron (SPS) uses 215 beam position monitors (BPMs) to observe the beam o...
This paper presents the development of the digital acquisition chain for the upgrade of the Beam Pos...
A new Front-End (FE) electronics is under development for the SPS Multi Orbit POsition System (MOPOS...
Abstract. Modern logarithmic amplifiers offer wide dynamic range, high bandwidth, good logarithmic c...
The CERN SPS multiturn facility, based on the new beam orbit measurement system MOPOS, enables the U...
The Pohang Light Source(PLS) beam position moni-tor(BPM) has been designed and a prototype RPM is be...
A novel electro-optic beam position monitor capable of rapidly (<50ps) monitoring transverse intra-b...
New beam monitors and receivers have been constructed for the position measurements of the colliding...
A single data acquisition system able to sample and store every 100 ns analog signals coming from di...
This paper discusses the performance of the logarithmic amplifier electronics system used with strip...
The orbit and trajectory measurement system COPOS of the CERN SPS accelerator has been in operation ...
The Proton Synchrotron accelerator (PS), installed at CERN, although commissioned in 1959, still pla...
A logarithmic-ratio beam position monitor (BPM) circuit has been designed that operates directly fro...
This paper discusses the performance of the logarithmic amplifier electronics system used with strip...
A new Front-End electronics, based on Logarithmic Amplifiers, is currently being developed for the C...
The CERN Super Proton Synchrotron (SPS) uses 215 beam position monitors (BPMs) to observe the beam o...
This paper presents the development of the digital acquisition chain for the upgrade of the Beam Pos...
A new Front-End (FE) electronics is under development for the SPS Multi Orbit POsition System (MOPOS...
Abstract. Modern logarithmic amplifiers offer wide dynamic range, high bandwidth, good logarithmic c...
The CERN SPS multiturn facility, based on the new beam orbit measurement system MOPOS, enables the U...
The Pohang Light Source(PLS) beam position moni-tor(BPM) has been designed and a prototype RPM is be...
A novel electro-optic beam position monitor capable of rapidly (<50ps) monitoring transverse intra-b...
New beam monitors and receivers have been constructed for the position measurements of the colliding...
A single data acquisition system able to sample and store every 100 ns analog signals coming from di...
This paper discusses the performance of the logarithmic amplifier electronics system used with strip...
The orbit and trajectory measurement system COPOS of the CERN SPS accelerator has been in operation ...
The Proton Synchrotron accelerator (PS), installed at CERN, although commissioned in 1959, still pla...
A logarithmic-ratio beam position monitor (BPM) circuit has been designed that operates directly fro...
This paper discusses the performance of the logarithmic amplifier electronics system used with strip...