共查询到16条相似文献,搜索用时 46 毫秒
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插入件是上海光源重要组成设备之一,其控制系统主要由高精度电机运动控制、位置反馈、校正线圈电源控制、前端轨道反馈及人机界面等部分组成。为实现以上功能并无缝接入上海光源EPICS控制系统,设计了基于EPICS的插入件控制系统。在此基础上,利用嵌入式EPICS技术将所有EPICS组件嵌入到一台嵌入式控制器中。嵌入式EPICS技术简化了系统结构,方便用户操作和后期维护。经测试和在线运行,该系统控制功能完整,反馈控制实时性高,束流的稳定性得到了提高,为试验站稳定供光提供了保证。 相似文献
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插入件是上海光源重要组成设备之一,其控制系统主要由高精度电机运动控制、位置反馈、校正线圈电源控制、前端轨道反馈及人机界面等部分组成。为实现以上功能并无缝接入上海光源EPICS控制系统,设计了基于EPICS的插入件控制系统。在此基础上,利用嵌入式EPICS技术将所有EPICS组件嵌入到一台嵌入式控制器中。嵌入式EPICS技术简化了系统结构,方便用户操作和后期维护。经测试和在线运行,该系统控制功能完整,反馈控制实时性高,束流的稳定性得到了提高,为试验站稳定供光提供了保证。 相似文献
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A new high-T_c (HT_c) rf SQUID working at around 1.3GHz has been developed to avoid electromagnetic interference such as growing mobile communication jamming. This new system works in a frequency range from 1.23 to 1.42GHz (centred at 1.3GHz), which is not occupied by commercial communication. The sensor used in the 1.3GHz rf SQUID is made of a HT_c coplanar superconducting resonator and a large-area HT_c superconducting film concentrator. We have achieved in the 1.3GHz HT_c rf SQUID system a minimal flux noise of 2.5×10^{-5}Φ_0/\sqrt{Hz} and a magnetic field sensitivity of 38fT/\sqrt{Hz} in white noise range, respectively. The effective area of the concentrator fabricated on a 15×15mm^2 substrate is 1.35mm^2. It is shown that the 1.3GHz rf SQUID system has a high field sensitivity. Design and implementation of 1.3GHz HT_c rf SQUID offers a promising direction of rf SQUID development for higher working frequency ranges. 相似文献
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A new high-T_c (HT_c) rf SQUID working at around 1.3GHz has been developed to avoid electromagnetic interference such as growing mobile communication jamming. This new system works in a frequency range from 1.23 to 1.42GHz (centred at 1.3GHz), which is not occupied by commercial communication. The sensor used in the 1.3GHz rf SQUID is made of a HT_c coplanar superconducting resonator and a large-area HT_c superconducting film concentrator. We have achieved in the 1.3GHz HT_c rf SQUID system a minimal flux noise of 2.5×10^{-5}Φ_0/\sqrt{Hz} and a magnetic field sensitivity of 38fT/\sqrt{Hz} in white noise range, respectively. The effective area of the concentrator fabricated on a 15×15mm^2 substrate is 1.35mm^2. It is shown that the 1.3GHz rf SQUID system has a high field sensitivity. Design and implementation of 1.3GHz HT_c rf SQUID offers a promising direction of rf SQUID development for higher working frequency ranges. 相似文献
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We have studied the basic characteristics of a radio frequency superconducting quantum interference device (rf SQUID) involving two Josephson junctions connected in series, the case for the widely used grain boundary junction (GBJ) rf SQUID. It is found that the SQUID properties are determined mainly by the weaker junction when the critical current of the weaker junction is much lower than that of the other junction. Otherwise, the effect of the other junction is not negligible. We also find that only when the hysteresis parameter β is less than 1-α, where α is the critical current ratio of the two junctions, will the SQUID operate in the nonhysteretic mode. 相似文献