DocumentCode :
3588456
Title :
RTM RF Backplane for MicroTCA.4 crates
Author :
Czuba, Krzysztof ; Jezynski, Tomasz ; Lesniak, Tomasz ; Ludwig, Frank ; Mavric, Uros ; Schlarb, Holger
Author_Institution :
Warsaw Univ. of Technol., Warsaw, Poland
fYear :
2014
Firstpage :
1
Lastpage :
3
Abstract :
We developed a new Rear Transition Module (RTM) Backplane for MicroTCA.4 crates that is compliant with the PICMG standard and is an optional crate extension. The RTM Backplane provides multiple links for high-precision clock and RF signals to analog μRTM cards. Usage of an RTM Backplane allows to significantly simplify the cable management, and therefore to increase the reliability of electronic controls when multiple analog RF front-ends are required. In addition, the RTM backplane allows also to add so called extended RTM (eRTM) and RTM Power Modules (RTM-PM) to a 12-slot MicroTCA crate. Up to four 6 HP wide eRTMs and two RTM-PMs can be installed behind the front PM and MCH modules. An eRTM attached to the MCH via Zone 3 connector is used for analog signal management on the RTM backplane. This eRTM allows also installing a powerful CPU to extend the processing capacity of the MTCA.4 crate. Remaining three eRTMs provide additional space for analog and digital electronics that may not fit on the standard RTM cards. The RTM-PMs deliver managed low-noise (separated from front crate PMs) analog bipolar power (+VV, -VV) for the μRTMs and an unipolar power for the eRTMs. This extends functionality of the MicroTCA.4 crate and offers unique performance improvement for analog front-end electronics. This paper covers a new concept of the RTM Backplane, a new implementation for the real-time LLRF control system and performance evaluation of designed prototype.
Keywords :
accelerator RF systems; accelerator control systems; linear accelerators; MicroTCA.4 crates; RTM Power Modules; RTM RF backplane; Zone 3 connector; analog front-end electronics; analog signal management; electronic controls; extended RTM; high-precision clock; multiple analog RF front-ends; optional crate extension; powerful CPU; real-time LLRF control system; rear transition module; unipolar power; Backplanes; Connectors; Control systems; Crosstalk; Multichip modules; RF signals; Radio frequency; Accelerator control systems; Accelerator instrumentation; Free electron laser; Front-end electronics; MicroTCA.4;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Real Time Conference (RT), 2014 19th IEEE-NPSS
Print_ISBN :
978-1-4799-3658-8
Type :
conf
DOI :
10.1109/RTC.2014.7097413
Filename :
7097413
Link To Document :
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