2015
DOI: 10.1109/led.2014.2378313
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High-Q MOS Varactors for Millimeter-Wave Applications in CMOS 28-nm FDSOI

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Cited by 25 publications
(15 citation statements)
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“…This is because even advanced CMOS varactors are typically limited by their series resistance to frequencies below 100 GHz. 120 In the optical range, approaches such as thermo-optical tuning 121 and electro-optic modulators 122 are generally preferred for active phase control. To date there has been no demonstration of an electronically controlled phase modulator in the terahertz range that is amenable to integration with a phased array of this type.…”
Section: Phased Arraysmentioning
confidence: 99%
“…This is because even advanced CMOS varactors are typically limited by their series resistance to frequencies below 100 GHz. 120 In the optical range, approaches such as thermo-optical tuning 121 and electro-optic modulators 122 are generally preferred for active phase control. To date there has been no demonstration of an electronically controlled phase modulator in the terahertz range that is amenable to integration with a phased array of this type.…”
Section: Phased Arraysmentioning
confidence: 99%
“…The voltage dependent MOS capacitance is equivalent of semiconductor and oxide capacitances. Both and are based on the BSIM 4 compact model with specific ST Microelectonics fitting parameters [9]. This model enables to accurately simulate varactors behavior up to millimeter wave frequencies for all geometries.…”
Section: A Silicon-based Modellingmentioning
confidence: 99%
“…In this scenario, the design of novel devices with high tuning range and highfactor is a key issue in the mm-wave frequency bands. For reference, the reported -factor for state-of-the-art varactors in CMOS technologies is around 10 with a tuning ratio ( *+, / */0 ) of 1.4 at 100 GHz [5].…”
Section: Introductionmentioning
confidence: 99%