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Electromagnetic interference (EMI) disturbances coupled in the power supply of voltage and current references can severely degrade their performance, due to its finite power supply rejection (PSR). The design of a 90-dB PSR 4-dBm EMI-resistant NMOS-only voltage reference is herein presented. The voltage reference is designed based on the zero-temperature-coefficient transistor operating point. The...
Electromagnetic Interference (EMI) disturbances coupled in the power supply of voltage and current references can severely degrade their performance, due to its finite Power Supply Rejection Ratio (PSRR). The design of a 90 dB PSRR, 4 dBm EMI resistant NMOS-Only Voltage Reference is herein presented. The Voltage Reference is designed based on the Zero Temperature Coefficient (ZTC) transistor point...
Electromagnetic Interference (EMI) degrades the performance of voltage and current references, due to its finite Power Supply Rejection Ratio (PSRR). The design of a 90 dB PSRR, 4 dBm EMI resistant MOSFET-Only Voltage Reference is herein presented. The Voltage Reference is designed based on the Zero Temperature Coefficient (ZTC) transistor point. The high-PSRR is obtained using zero-VT transistors...
Electromagnetic interference (EMI) can significantly degrade the performance of analog circuits, including DC voltage and current references, due to their limited Power Supply Rejection Ratio (PSRR). An EMI-resisting MOSFET-Only Voltage Reference is herein proposed, based on the MOSFET Zero Temperature Coefficient (ZTC) vicinity condition. The ZTC condition is analytically derived through a continuous...
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