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Titlebook: 5G and E-Band Communication Circuits in Deep-Scaled CMOS; Marco Vigilante,Patrick Reynaert Book 2018 Springer International Publishing AG,

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,A Short Introduction to Kähler Manifolds,n achieve. As discussed in Chap. ., the bit error rate against SNR requirements in an AWGN environment shown in Fig. . changes drastically when a practical PN profile is considered, see Fig. .. Moreover, together with the tough PN requirements, a PLL should be able to synthesize the necessary LO signal over the whole band of operation.
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https://doi.org/10.1007/978-3-319-03422-5to the achievable link distance. Moreover, to achieve wideband operation without jeopardizing the insertion loss of the required matching networks, the design techniques discussed in Chap. . are largely employed. The design challenges and trade-offs relevant to mm-Wave circuits implemented in deep-scaled CMOS are addressed.
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Mechanical Engineering in Antiquity,nessed a revolution in the way people communicate, share ideas and live. This is still happening and will continue in the future. The 1G analog cellular system was introduced in the ’80s. But it is only with the 2nd generation 2G and the switch to digital cellular system that in the ’90s the mobile
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https://doi.org/10.1007/978-3-319-03422-5led CMOS actives and passives components and in Chap. . several gain-bandwidth enhancement techniques were considered. This chapter brings these results together and applies them to mm-Wave broadband CMOS power amplifiers (PAs) design.
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https://doi.org/10.1007/978-3-319-03422-5t watches and wearables, from car radar for adaptive cruise control, blind spot detection, etc. to self driving car, not to mention high quality video applications for smartphones, tablet and 360. virtual reality. To enable this revolution 100. higher data rate, 100. higher network efficiency and be
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