Article ID Journal Published Year Pages File Type
1822805 Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 2013 10 Pages PDF
Abstract

Author-Highlights•A versatile and configurable BPM system for the ESS-Bilbao Linac has been designed.•The design works for PU and SL detectors, both in continuous and pulsed wave modes.•Several tests at simulated beamlines at 352 MHz and 175 MHz have been performed.•The BPM system has been integrated in EPICS and Archiver.

A versatile and configurable system has been developed in order to monitorize the beam position and to meet all the requirements of the future ESS-Bilbao Linac. At the same time the design has been conceived to be open and configurable so that it could eventually be used in different kinds of accelerators, independent of the charged particle, with minimal change. The design of the Beam Position Monitors (BPMs) system includes a test bench both for button-type pick-ups (PU) and striplines (SL), the electronic units and the control system. The electronic units consist of two main parts. The first part is an Analog Front-End (AFE) unit where the RF signals are filtered, conditioned and converted to base-band. The second part is a Digital Front-End (DFE) unit which is based on an FPGA board where the base-band signals are sampled in order to calculate the beam position, the amplitude and the phase. To manage the system a Multipurpose Controller (MC) developed at ESSB has been used. It includes the FPGA management, the EPICS integration and Archiver Instances. A description of the system and a comparison between the performance of both PU and SL BPM designs measured with this electronics system are fully described and discussed.

Related Topics
Physical Sciences and Engineering Physics and Astronomy Instrumentation
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