DocumentCode :
3044412
Title :
RF backplane for MTCA.4 based LLRF control system
Author :
Czuba, K. ; Jezynski, Tomasz ; Hoffmann, Marco ; Ludwig, F. ; Schlarb, H.
Author_Institution :
Warsaw Univ. of Technol., Warsaw, Poland
fYear :
2012
fDate :
9-15 June 2012
Firstpage :
1
Lastpage :
4
Abstract :
Low-Level RF (LLRF) control systems developed for linear accelerator based Free Electron Lasers (FEL) require real-time processing of thousands RF signals with very challenging RF field detection precision. To provide a reliable, maintainable and scalable system a new generation of LLRF control based on MTCA.4 architecture was started at DESY for the FLASH and European-XFEL facilities. In contrast to previous RF control systems realized in 19" modules, we could demonstrate field detection, RF generation, RF distribution, DAQ system and the high-speed real-time processing entirely embedded in the MTCA.4 crate system. This unique scheme embeds ultra-high precision analog electronics for detection on the Rear Transition Module (RTM) with powerful digital processing units on the Advanced Mezzanine Card (AMC). To increase system reliability, maintainability and reduce performance limitations arising through RF cabling, we developed and embedded in the MTCA.4 crate a unique RF Backplane for RTM cards. This backplane is used for distribution of high-performance Local Oscillator (LO), RF and low-jitter clock signals together with low-noise analog power supply to analog RTM cards in the system. In this paper we present the design and architecture of the MTCA.4 crate with the RF Backplane and successful test results of the LLRF control system.
Keywords :
accelerator RF systems; clocks; data acquisition; free electron lasers; jitter; linear accelerators; nuclear electronics; physical instrumentation control; power supplies to apparatus; radiofrequency oscillators; real-time systems; reliability; DAQ system; DESY; European-XFEL facilities; FLASH; MTCA.4 architecture; MTCA.4 based LLRF control system; MTCA.4 crate system; RF backplane; RF clock signals; RF distribution; RF field detection; RF generation; RTM cards; advanced mezzanine card; digital processing units; free electron lasers; high-performance local oscillator; high-speed real-time processing; linear accelerator; low-jitter clock signals; low-level RF control systems; low-noise analog power supply; maintainable system; rear transition module; scalable system; system maintainability; system reliability; ultrahigh precision analog electronics; Backplanes; Connectors; Control systems; Europe; Power supplies; Radio frequency; Standards;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Real Time Conference (RT), 2012 18th IEEE-NPSS
Conference_Location :
Berkeley, CA
Print_ISBN :
978-1-4673-1082-6
Type :
conf
DOI :
10.1109/RTC.2012.6418389
Filename :
6418389
Link To Document :
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