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A compact and portable X-ray beam position monitor using Medipix3

Authors :
O. Rico-Alvarez
R.G. van Silfhout
B. Willis
Anton Kachatkou
Nicola Tartoni
Kawal Sawhney
J. Marchal
Source :
Journal of Instrumentation. 9:C12036-C12036
Publication Year :
2014
Publisher :
IOP Publishing, 2014.

Abstract

The present work reports on the design and implementation of a novel portable X-ray beam diagnostics (XBPM) device. The device is transparent to the X-ray beam and provides real-time measurements of beam position, intensity, and size. The measurement principle is based on a pinhole camera which records scattered radiation from a Kapton foil which is placed in the beam path. The use of hybrid detectors (Medipix3) that feature a virtually noiseless readout system with capability of single photon detection and energy resolving power enables the diagnostics with a better resolution and higher sensitivity compared to the use of traditional indirect X-ray detection schemes. We describe the detailed system design, which consists of a vacuum compatible focal plane sensor array, a sensor conditioning and readout board and a heterogeneous data processing unit, which also acts as a network server that handles network communications with clients. The readout protocol for the Medipix3 sensor is implemented using field programmable gate array (FPGA) logic resulting in a versatile and scalable system that is capable of performing advanced functions such as data compression techniques and feature extraction. For the system performance measurements, we equipped the instrument with a single Medipix3 die, bump bonded to a Si sensor, rather than four for which it was designed. Without data compression, it is capable of acquiring magnified images and profiles of synchrotron X-ray beams at a transfer rate through Ethernet of 27 frames/s for one Medipix3 die.

Details

ISSN :
17480221
Volume :
9
Database :
OpenAIRE
Journal :
Journal of Instrumentation
Accession number :
edsair.doi...........5620aca1b5ac468af709a3c0881a0958
Full Text :
https://doi.org/10.1088/1748-0221/9/12/c12036