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Design of a high-voltage rail-to-rail error amplifier based on standard CMOS used in an LDO.

, , and . CCECE, page 1-5. IEEE, (2016)

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A high-voltage driver based on stacked low-voltage transistors with minimized on-resistance for a buck converter in 65 nm CMOS., and . CCECE, page 1-5. IEEE, (2016)Design of a high-voltage differential amplifier based on stacked low-voltage standard CMOS with different input stages., and . MIPRO, page 50-55. IEEE, (2015)Design of high speed high-voltage drivers based on stacked standard CMOS for various supply voltages., , , and . MWSCAS, page 529-532. IEEE, (2013)Self-biasing high-voltage driver based on standard CMOS with an adapted level shifter for a wide range of supply voltages., and . NORCAS, page 1-4. IEEE, (2015)One-chip solution in 0.35 μm standard CMOS for electronic ballasts for fluorescent lamps., , , , and . SoC, page 23-26. IEEE, (2003)A unary coded current steering DAC with sequential stepping of the thermometer coded register in 1 and 2 LSB steps., , and . MIPRO, page 89-92. IEEE, (2018)Solving Partial Differential Equations with Monte Carlo / Random Walk on an Analog-Digital Hybrid Computer., , , and . CoRR, (2023)Design of High-Voltage Level Shifters Based on Stacked Standard Transistors for a Wide Range of Supply Voltages., and . SBCCI, page 7:1-7:6. ACM, (2015)Design of single-inductor dual-output switching converters with average current mode control., , , and . APCCAS, page 902-905. IEEE, (2008)A 36-V H-bridge driver interface in a standard 0.35-μm CMOS process., , and . ISCAS (4), page 3651-3654. IEEE, (2005)