2026/02/28 by Behdad Jamadi, Meysam Sohani Darban, Jeffrey S. Walling
#eess.SP
This paper presents a low-jitter \acHVLS architecture for high-speed mixed-signal and digital power-amplifier applications. The proposed design employs a regenerative cross-coupled feedback network to simultaneously generate two synchronized voltage-domain outputs (e.g., the nominal supply voltage (VDDL) and one at twice its value (VDDH = 2VDDL)). This enables direct drive of cascoded class-D power amplifiers without additional delay-calibration circuitry, amongst other mixed-signal applications. A prototype \acHVLS circuit, together with an impedance-matching network and a pre-driver for high-speed off-chip characterization, was fabricated in a 22-nm FD-SOI process technology. The total die area, including all interface circuitry, is 477×462~μm2, while the active area of the \acHVLS core is 3.26×2~μm2. Measured at 12.2~GHz, the circuit dissipates 4.43~μW per switching cycle and achieves an output jitter below 150~fs-rms.