2022 9th International Conference on Electrical and Electronics Engineering (ICEEE) 2022
DOI: 10.1109/iceee55327.2022.9772578
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3-5 GHz CMOS Power Amplifier in 130nm CMOS for UWB Applications

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Cited by 3 publications
(4 citation statements)
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“…A hybrid technique power amplifier is a combination of the three main configurations of a power amplifier: cascaded topology, cascode topology, and shunt feedback topology. As shown in Figure 6, by combining more than one topology into the design of a power amplifier, many advantages can be achieved as compared with the one topology design [13]- [15], [18], [21], [28]- [33], [36], [37], [41]- [44], [48]- [50], [51], [57], [58]. To attain extra gain, several works have employed the cascode power amplifier topology followed by common-source topology [28].…”
Section: Hybrid Technique Power Amplifiermentioning
confidence: 99%
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“…A hybrid technique power amplifier is a combination of the three main configurations of a power amplifier: cascaded topology, cascode topology, and shunt feedback topology. As shown in Figure 6, by combining more than one topology into the design of a power amplifier, many advantages can be achieved as compared with the one topology design [13]- [15], [18], [21], [28]- [33], [36], [37], [41]- [44], [48]- [50], [51], [57], [58]. To attain extra gain, several works have employed the cascode power amplifier topology followed by common-source topology [28].…”
Section: Hybrid Technique Power Amplifiermentioning
confidence: 99%
“…In the hybrid technique, more than one of the different implementation schemes of the wideband power amplifier was combined together to get the advantage of each scheme which makes that scheme the most attractive for the design of PAs. This technique has been widely used [13]- [15], [18], [21], [28]- [33], [13], [37], [41]- [44], [46], [48]- [51], [57], [58]. A summary of the published wideband hybrid-technique power amplifiers is presented in Table 3.…”
Section: Summary Of the Published Wideband Hybrid-technique Power Amp...mentioning
confidence: 99%
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“…It must meet several requirements such as good linearity, good wideband matching, high efficiency and low power consumption. Numerous UWB CMOS power amplifiers have been reported with frequency of 3.0-5.0 GHz, 3.0-7.0 GHz, 6.0-10.0 GHz and 3.1-10.6 GHz with various types of implemented topologies such as distributed amplifier, resistive shunt feedback and RLC matching, current-reused approach, common source inductive degeneration, current-reused technique, interstage wideband impedance transformer and stagger tuning [2][3][4][5][6][7][8][9][10][11]. Wideband matching in power amplifier design can be accomplished using distributed amplifiers, however, this topology consumes high power and large chip area [12].…”
Section: Introductionmentioning
confidence: 99%