DocumentCode
35140
Title
A Prototype Clock System for LHAASO WCDA
Author
Linfeng Shang ; Kezhu Song ; Ping Cao ; Cheng Li ; Shubin Liu ; Qi An
Author_Institution
Dept. of Modern Phys., Univ. of Sci. & Technol. of China, Hefei, China
Volume
60
Issue
5
fYear
2013
fDate
Oct. 2013
Firstpage
3537
Lastpage
3543
Abstract
In this paper, a prototype of a high precision clock system for the Water Cherenkov Detector Array (WCDA) in the Large High Altitude Air Shower Observatory (LHAASO) project is proposed. Due to the large scale of WCDA, a distributed architecture is required, where the digitalization is implemented near the detectors in front. However, in this architecture, the designers had to face the difficulty of how to distribute the accurate synchronous clock to all the front-end electronics (FEE), with a very stable phase relationship. Thus a prototype clock system was developed, consisting of a clock source module, clock transmitting modules and clock receiving modules. It distributes the system clock to all FEEs, with simultaneous data transmission. Based on the White Rabbit protocol, a reduced and improved scheme is proposed to automatically adjust the propagation delay and keep the phase alignment. In this scheme, the phase difference is zoomed in by the digital Dual Mixer Time Difference (DMTD) technique, measured by a high resolution time-to-digital converter (TDC), and then shifted forward and backwards with the help of the FPGA´s Digital Clock Manager (DCM). The experimental results show that both the clock jitter (RMS) and the clock skew of all the FEEs are less than 100 ps.
Keywords
Cherenkov counters; clocks; nuclear electronics; Digital Clock Manager; LHAASO WCDA; Large High Altitude Air Shower Observatory; White Rabbit protocol; accurate synchronous clock; clock jitter; clock receiving modules; clock skew; clock source module; clock transmitting modules; digital Dual Mixer Time Difference technique; front-end electronics; high resolution time-to-digital converter; phase alignment; propagation delay; prototype clock system; simultaneous data transmission; water Cherenkov detector array; Arrays; Clocks; Detectors; Jitter; Phase measurement; Prototypes; Synchronization; Clock distribution; DMTD; FPGA-based TDC; LHAASO WCDA; clock synchronization; white rabbit;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2013.2280907
Filename
6616656
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