Differential capacitive sensing technique has gained popularity in capacitance measuring system due to its high symmetrical implementation, easy to be implemented using discrete components and has a characteristic of high linearity in its system. However, very few work has reported on the differential CVC system that is able to operate at a high frequency operation especially when using discrete method. In this work, a differential CVC is proposed using discrete single supply, suitable for energy harvesting and WSN application. The method has emphasised on the rectifier current behavior analysis of the capacitive sensing circuit. Using this method, sensitivity of 0.04933 mV per 1 ƒF capacitance change is achievable with low power consumptio...
In this work, a self-generated power capacitance measurement circuit for wireless health monitoring ...
We propose a circuit to directly connect a differential capacitive sensor to a microcontroller unit ...
RF-harvesting wireless sensors are under a tight power budget due to the limitations of RF energy tr...
Differential capacitive sensing technique has gained popularity in capacitance measuring system due ...
This paper presents a single supply differential capacitive sensing technique suitable to be used wi...
This paper presents a low power capacitance to voltage converter (CVC) circuit using two differentia...
A differential capacitive sensing technique is discussed in this paper. The differential capacitive ...
This paper presents a single supply differential capacitive sensing technique. Focus is on the anal...
A differential capacitive sensing technique is discussed in this paper. The differential capacitive ...
There is a need for capacitance to voltage converters (CVC's) for differential capacitive sensors li...
A single supply differential capacitive sensing technique is presented in this paper with the focus...
Parasitic integration for a single supply differential capacitive sensing technique is presented in ...
Abstract: Problem statement: The design of Capacitance to Voltage Converter (CVC) for capacitive sen...
A 0.13-μm complementary metal-oxide-semiconductor (CMOS) technology capacitive measuring system has ...
This paper presents a capacitive sensor of current-mode where differential capacitors are used.For i...
In this work, a self-generated power capacitance measurement circuit for wireless health monitoring ...
We propose a circuit to directly connect a differential capacitive sensor to a microcontroller unit ...
RF-harvesting wireless sensors are under a tight power budget due to the limitations of RF energy tr...
Differential capacitive sensing technique has gained popularity in capacitance measuring system due ...
This paper presents a single supply differential capacitive sensing technique suitable to be used wi...
This paper presents a low power capacitance to voltage converter (CVC) circuit using two differentia...
A differential capacitive sensing technique is discussed in this paper. The differential capacitive ...
This paper presents a single supply differential capacitive sensing technique. Focus is on the anal...
A differential capacitive sensing technique is discussed in this paper. The differential capacitive ...
There is a need for capacitance to voltage converters (CVC's) for differential capacitive sensors li...
A single supply differential capacitive sensing technique is presented in this paper with the focus...
Parasitic integration for a single supply differential capacitive sensing technique is presented in ...
Abstract: Problem statement: The design of Capacitance to Voltage Converter (CVC) for capacitive sen...
A 0.13-μm complementary metal-oxide-semiconductor (CMOS) technology capacitive measuring system has ...
This paper presents a capacitive sensor of current-mode where differential capacitors are used.For i...
In this work, a self-generated power capacitance measurement circuit for wireless health monitoring ...
We propose a circuit to directly connect a differential capacitive sensor to a microcontroller unit ...
RF-harvesting wireless sensors are under a tight power budget due to the limitations of RF energy tr...