2014The Journal of EngineeringOpen access

Doubling‐resolution analog‐to‐digital conversion based on PIC18F45K80

Yueyang Yuan, Chongchang Yang

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Abstract

Aiming at the analog signal being converted into the digital with a higher precision, a method to improve the analog‐to‐digital converter (ADC) resolution is proposed and described. Based on the microcomputer PIC18F45K80 in which the internal ADC modules are embedded, a circuit is designed for doubling the resolution of ADC. According to the circuit diagram, the mathematical formula for calculating this resolution is derived. The corresponding software and print circuit board assembly is also prepared. With the experiment, a 13 bit ADC is achieved based on the 12 bit ADC module predesigned in the PIC18F45K80.

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Aiming at the analog signal being converted into the digital with a higher precision, a method to improve the analog‐to‐digital converter (ADC) resolution is proposed and described. Based on the microcomputer PIC18F45K80 in which the internal ADC modules are embedded, a circuit is designed for doubling the resolution of ADC. According to the circuit diagram, the mathematical formula for calculating this resolution is derived. The corresponding software and print circuit board assembly is also prepared. With the experiment, a 13 bit ADC is achieved based on the 12 bit ADC module predesigned in the PIC18F45K80.

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Available abstract

Aiming at the analog signal being converted into the digital with a higher precision, a method to improve the analog‐to‐digital converter (ADC) resolution is proposed and described. Based on the microcomputer PIC18F45K80 in which the internal ADC modules are embedded, a circuit is designed for doubling the resolution of ADC. According to the circuit diagram, the mathematical formula for calculating this resolution is derived. The corresponding software and print circuit board assembly is also prepared. With the experiment, a 13 bit ADC is achieved based on the 12 bit ADC module predesigned in the PIC18F45K80.

Key concepts: 12-bit, Resolution (logic), Microcomputer, Computer science, Analog-to-digital converter, Digital-to-analog converter, Successive approximation ADC, Circuit diagram

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