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一种适用于802.11a/g无线局域网接收机的实时压扩开关电容模拟基带电路(英文)
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作者 王申杰 Vaibhav Masheshwari +1 位作者 wouter a.serdijn 洪志良 《复旦学报(自然科学版)》 CAS CSCD 北大核心 2010年第2期221-228,241,共9页
由于采用正交频分复用(OFDM)技术,802.11 a/g无线局域网接收机的模拟基带电路需要克服12 dB峰均功率比(PAPR).本文设计了一种基于实时压扩方式的模拟基带电路,主要包括5阶开关电容低通滤波器和10-bit流水线模数转换器.滤波器的截止和时... 由于采用正交频分复用(OFDM)技术,802.11 a/g无线局域网接收机的模拟基带电路需要克服12 dB峰均功率比(PAPR).本文设计了一种基于实时压扩方式的模拟基带电路,主要包括5阶开关电容低通滤波器和10-bit流水线模数转换器.滤波器的截止和时钟频率分别为10 MHz和100 MHz,模数转换器的采样时钟为25 MS/s.经滤波器压缩的信号直接经过模数转换器,同时信号扩展在后端数字域完成,无需采用模拟放大器恢复信息.因为动态范围扩了2 bit,基于压扩方式的模拟基带功耗大约为传统基带的四分之一.本设计采用1.2 VIBM CMOS工艺实现,设计功耗为75mW. 展开更多
关键词 压扩 基带 滤波器 模数转换器 峰均功率比 动态范围 运算跨导放大器
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Multilayer CVD graphene electrodes using a transfer-free process for the next generation of optically transparent and MRI-compatible neural interfaces 被引量:3
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作者 Nasim Bakhshaee Babaroud Merlin Palmar +6 位作者 Andrada Iulia Velea Chiara Coletti Sebastian Weingärtner Frans Vos wouter a.serdijn Sten Vollebregt Vasiliki Giagka 《Microsystems & Nanoengineering》 SCIE EI CSCD 2022年第5期183-196,共14页
Multimodal platforms combining electrical neural recording and stimulation,optogenetics,optical imaging,and magnetic resonance(MRI)imaging are emerging as a promising platform to enhance the depth of characterization ... Multimodal platforms combining electrical neural recording and stimulation,optogenetics,optical imaging,and magnetic resonance(MRI)imaging are emerging as a promising platform to enhance the depth of characterization in neuroscientific research.Electrically conductive,optically transparent,and MRI-compatible electrodes can optimally combine all modalities.Graphene as a suitable electrode candidate material can be grown via chemical vapor deposition(CVD)processes and sandwiched between transparent biocompatible polymers.However,due to the high graphene growth temperature(≥900℃)and the presence of polymers,fabrication is commonly based on a manual transfer process of pre-grown graphene sheets,which causes reliability issues.In this paper,we present CVD-based multilayer graphene electrodes fabricated using a wafer-scale transfer-free process for use in optically transparent and MRI-compatible neural interfaces.Our fabricated electrodes feature very low impedances which are comparable to those of noble metal electrodes of the same size and geometry.They also exhibit the highest charge storage capacity(CSC)reported to date among all previously fabricated CVD graphene electrodes.Our graphene electrodes did not reveal any photo-induced artifact during 10-Hz light pulse illumination.Additionally,we show here,for the first time,that CVD graphene electrodes do not cause any image artifact in a 3T MRI scanner.These results demonstrate that multilayer graphene electrodes are excellent candidates for the next generation of neural interfaces and can substitute the standard conventional metal electrodes.Our fabricated graphene electrodes enable multimodal neural recording,electrical and optogenetic stimulation,while allowing for optical imaging,as well as,artifact-free MRI studies. 展开更多
关键词 TRANSPARENT TRANSFER PROCESS
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