L. Xiao
Southern Methodist University
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by L. Xiao.
Journal of Instrumentation | 2016
L. Xiao; Xiaoting Li; D. Gong; Jinghong Chen; D. Guo; H. He; S. Hou; Guangming Huang; Chonghan Liu; T. Liu; X. Sun; P. K. Teng; Bozorgmehr Vosooghi; Annie C. Xiang; J. Ye; Y. You; Zhiheng Zuo
In this paper, we present the design and test results of LOCx2, a transmitter ASIC for the ATLAS Liquid Argon Calorimeter trigger upgrade. LOCx2 consists of two channels and each channel encodes ADC data with an overhead of 14.3% and transmits serial data at 5.12 Gbps with a latency of less than 27.2 ns. LOCx2 is fabricated with a commercial 0.25-μm Silicon-on-Sapphire CMOS technology and is packaged in a 100-pin QFN package. The power consumption of LOCx2 is about 843 mW.
Journal of Instrumentation | 2016
L. Xiao; Chonghan Liu; T. Liu; H. Chen; Jinghong Chen; K. Chen; Y. Feng; Datao Gong; D. Guo; H. He; S. Hou; Guangming Huang; Xiangming Sun; Y. Tang; P. K. Teng; Annie C. Xiang; H. Xu; J. Ye; Y. You
A Liquid-argon Trigger Digitizer Board (LTDB) is being developed to upgrade the ATLAS Liquid Argon Calorimeter Phase-I trigger electronics. The LTDB located at the front end needs to obtain the clock signals and be configured and monitored remotely from the back end. A clock and control system is being developed for the LTDB and the major functions of the system have been evaluated. The design and evaluation of the clock and control system are presented in this paper.
Journal of Instrumentation | 2016
X. Zhao; Chonghan Liu; Datao Gong; Jinghong Chen; D. Guo; H. He; S. Hou; Guangming Huang; Xiaoting Li; T. Liu; Xiangming Sun; P. K. Teng; L. Xiao; Annie C. Xiang; J. Ye
We report the development of a mid-board, TOSA and ROSA based miniature dual channel optical transmitter (MTx) and a transceiver (MTRx). The design transmission data rate is 5.12 Gbps per channel and receiving data rate 4.8 Gbps. MTx and MTRx are only 6 mm tall and are electrically and optically pluggable. Although the fiber TOSA/ROSA coupling is through a custom latch, the fiber uses the standard LC ferrule, flange and spring. Light coupling is ensured by the TOSA and ROSA with the LC coupling mechanism. With the dual channel serializer LOCx2 sits under MTx, one achieves high data transmission with a small PCB footprint, and enjoys the reliability of the hermetically packaged TOSA. MTx and MTRx are designed for detector front-end readout of the ATLAS Liquid Argon Calorimeter (LAr) trigger upgrade.
Journal of Instrumentation | 2017
L. Xiao; Datao Gong; T. Liu; Jinghong Chen; Qingjun Fan; Y. Feng; D. Guo; H. He; S. Hou; Guangming Huang; X. Li; Chonghan Liu; Q. Sun; Xiangming Sun; P. K. Teng; J. Wang; Annie C. Xiang; D. Yang; J. Ye
In this paper, we present a dual-channel serializer ASIC, LOCx2, and its pin-compatible backup, LOCx2-130, for detector front-end readout. LOCx2 is fabricated in a 0.25-um Silicon-on-Sapphire CMOS process and each channel operates at 5.12 Gbps, while LOCx2-130 is fabricated in a 130-nm bulk CMOS process and each channel operates at 4.8 Gbps. The power consumption and the transmission latency are 900 mW and 27 ns for LOCx2 and the corresponding simulation result of LOCx2-130 are 386 mW and 38 ns, respectively.
Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2018
L. Xiao; Wei Zhou; Q. Sun; Binwei Deng; Datao Gong; D. Guo; Huiqin He; Suen Hou; Chonghan Liu; T. Liu; James Thomas; Jian Wang; Annie C. Xiang; Dongxu Yang; Jingbo Ye; X. Zhao
Abstract A serializer ASIC and a VCSEL driver ASIC are needed for the ATLAS liquid argon calorimeter readout phase-I upgrade. The baseline ASICs are the serializer LOCx2 and the VCSEL driver LOCld, designed in a 0.25- μ m Silicon-on-Sapphire (SoS) CMOS technology. Based on a 130-nm CMOS technology, we design two pin-to-pin-compatible backup ASICs, LOCx2-130 and LOCld-130. Their power consumptions are much lower then their counterparts. We present the design of LOCx2-130 and LOCld-130. The test results of LOCx2-130 are also presented.
Journal of Instrumentation | 2016
X. Wen; Jinghong Chen; Y. You; Y. Feng; Y. Tang; Zhiheng Zuo; Bozorgmehr Vosooghi; Qingjun Fan; L. Xiao; D. Gong; T. Liu; J. Ye
This paper presents a 12-bit 60-MS/s SHA-less opamp-sharing pipeline analog-to-digital converter (ADC) implemented in a 0.13-μ m CMOS technology. A switch-embedded dual-input current-reused operational transconductance amplifier (OTA) with an overlapping two-phase clocking scheme is proposed to achieve low power consumption and eliminate the non-resetting and memory effects observed in conventional opamp-sharing techniques. To further reduce the power consumption, the ADC also incorporates a SHA-less multi-bit structure. The ADC achieves a signal-to-noise and distortion ratio of 64.9 dB and a spurious-free dynamic range of 77.1 dB at 60 MS/s. It occupies 2.3 mm 2 of area and consumes 36 mW of power under a 1.2-V supply.
Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2016
L. Xiao; Xiaoting Li; Datao Gong; Jinghong Chen; Binwei Deng; Qingjun Fan; Y. Feng; D. Guo; H. He; Suen Hou; Guangming Huang; Chonghan Liu; T. Liu; Xiangming Sun; Y. Tang; Ping-Kun Teng; Bozorgmehr Vosooghi; Annie C. Xiang; Jingbo Ye; Y. You; Zhiheng Zuo
Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2016
D. Guo; Chonghan Liu; Jinghong Chen; John Chramowicz; Datao Gong; H. He; Suen Hou; T. Liu; Alan Prosser; Ping-Kun Teng; Annie C. Xiang; L. Xiao; Jingbo Ye
Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2018
Ping Yang; Weiping Ren; Xiangming Sun; Guangming Huang; L. Xiao; Chaosong Gao; Xing Huang; Wei Zhou; Yashu Li; Jianchao Liu; Bihui You; Li Zhang; Jun Liu; Ying Zhang
Journal of Instrumentation | 2018
L. Xiao; Q. Sun; D. Gong; E. Baker; Binwei Deng; D. Guo; H. He; S. Hou; Chonghan Liu; T. Liu; J. Thomas; Jun Wang; Annie C. Xiang; D. Yang; J. Ye; X. Zhao; Wei Zhou