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Fourth Industrial Revolution:Technological Drivers,Impacts and Coping Methods 被引量:7
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作者 LI Guoping HOU Yun WU Aizhi 《Chinese Geographical Science》 SCIE CSCD 2017年第4期626-637,共12页
The world is marching into a new development period when the digital technology,physical technology,and biological technology have achieved an unprecedented development respectively in their own fields,and at the same... The world is marching into a new development period when the digital technology,physical technology,and biological technology have achieved an unprecedented development respectively in their own fields,and at the same time their applications are converging greatly.These are the three major technological drivers for the Fourth Industrial Revolution.This paper discusses the specific technology niches of each kind technological driver behind the Fourth Industrial Revolution,and then evaluates impacts of the Fourth Industrial Revolution on global industrial,economic,and social development.At last this paper proposes possible measures and policies for both firms and governments to cope with the changes brought by the Fourth Industrial Revolution. 展开更多
关键词 Fourth Industrial Revolution technological drivers global impacts firm-level adjustments government policies
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Design of a 1.12Gb/s 11.3mW low-voltage differential signaling transmitter
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作者 苏源 向济璇 +2 位作者 沈骁樱 叶凡 任俊彦 《Journal of Semiconductors》 EI CAS CSCD 2015年第4期115-121,共7页
This paper presents a 1.12 Gb/s 11.3 mW transmitter using 0.18μm mixed signal complementary metal- oxide semiconductor technology with a 1.8 V supply voltage. This transmitter implements a high-speed transmission wit... This paper presents a 1.12 Gb/s 11.3 mW transmitter using 0.18μm mixed signal complementary metal- oxide semiconductor technology with a 1.8 V supply voltage. This transmitter implements a high-speed transmission with 1.2 V common-mode output voltage, adopting a low-voltage differential signaling (LVDS) technique. A multiplexer (MUX) and an LVDS driver are critical for a transmitter to complete a high-speed data transmission. This paper proposes a high power-efficiency single-stage 14 : 1 MUX and an adjustable LVDS driver circuit, capable of driving different loads with a slight increase in power consumption. The prototype chip implements a transmitter with a core area of 970 × 560μm2, demonstrating low power consumption and adjustable driving capability. 展开更多
关键词 TRANSMITTER LVDS tree-type MUX single-stage MUX adjustable driver high power efficiency
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