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The second block is a high-gain tunable current source, which provides the excitation current to the sensors. Analog-to-digital converters (ADC) were used to convert the voltage from the AD5933 dielectric impedance measurement unit to digital data. The high-gain current source and the capacitive voltage divider circuit were the only components of the whole platform that were not designed in the microelectronics process. However, both the sensors and the microcontroller unit were designed in the same microelectronics process, and the ADC is also a microelectronics component. Therefore, the platform can be designed in any standard microelectronics process.
The third block is a microcomputer for controlling, monitoring, and analyzing the data. The platform communicates with a host PC through RS232C, the microcomputer was designed to be a Linux-based computing platform that has all the monitoring and software capabilities. The microcomputer is also capable of storing all the data to an internal flash memory for later analysis. The data logger developed at the research laboratory is connected to the microcomputer for data storage and analysis.
The microelectronics platform also includes a digital communication functionality to the AD5933 dielectric impedance measurement unit. In order to provide the means to remotely sense and monitor the measurements of the DIS sensors, the platform has the ability to communicate and synchronize all the sensors with the AD5933 dielectric impedance measurement unit through a regular serial communication bus [24]. There is a microcontroller unit in the platform performing the synchronous reading and communication to the host computer. The microcontroller unit also provides a direct SPI reading interface for the microelectronics unit AD5933, and the external DAQ interface allows monitoring and controlling of the microcontroller unit and the AD5933 dielectric impedance measurement unit from a standard host PC. The microcontroller unit provides all the required interfaces as well as an independent communication bus to the AD5933 dielectric impedance measurement unit.
As discussed earlier, the microelectronics platform has the ability to multiplex and read the multiple sensors located on the same platform. The microcontroller unit controls the DC voltage (via voltage divider) and the AC excitation current that is transferred to the sensors. The microcontroller unit is able to control the multiplexer and the 16 MHz oscillator that provides the AC excitation current to the sensors.
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