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By Gabriel Alfonso Rincon-Mora

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Extra resources for Current efficient, low voltage, low drop-out regulators

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The main building blocks of low drop-out regulators were described as well as some of their associated performance parameters. Moreover, the specifications that gauge these circuits were defined. Lastly, the research objective was identified and defined according to the growing requirements of current and future applications. Overall, this chapter forms the premise and establishes enough background to start analyzing the system under loading conditions and start considering the electrical implications of such an architecture.

The design criteria also focuses on minimizing transient output voltage variations resulting from fast load-current step transitions, less than 75 mV. To further mitigate overall costs, standard tantalum capacitors are used for the output. These are among the least expensive with an electrical series resistance (ESR) range of up to approximately 10 Ω [23]. The target range of ESR is extended to zero to cater to applications where low ESR is necessary. Low values of ESR are demanded for high power supply rejection ratio (PSRR) performance at high frequencies and minimized transient output voltage variations.

5 V. The design criteria also focuses on minimizing transient output voltage variations resulting from fast load-current step transitions, less than 75 mV. To further mitigate overall costs, standard tantalum capacitors are used for the output. These are among the least expensive with an electrical series resistance (ESR) range of up to approximately 10 Ω [23]. The target range of ESR is extended to zero to cater to applications where low ESR is necessary. Low values of ESR are demanded for high power supply rejection ratio (PSRR) performance at high frequencies and minimized transient output voltage variations.

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Current efficient, low voltage, low drop-out regulators by Gabriel Alfonso Rincon-Mora


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