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In Fig. 1, the casing and tool are grounded and the electrodes are held at an electric potential of ±V 0. Capacitance values between the electrodes and casing are converted into a voltage signal through a capacitance-to-voltage converter circuit.
The ANN is trained to form a mapping between the inputs and outputs of converter circuit using back propagation algorithm.
This converter circuit is simulated with universal input voltage of 190V - 220V DC output Voltage connected to resistive load.
Also, to further increase the efficiency, a level converter circuit is used to lower the Vdd of the digital section.
The stability of the single-electron A to D converter circuit is studied and its stable operation is shown.
The proposed novel V–I converter circuit uses a combination of local resistive feedback and cross-coupling.
Similar(33)
Since rechargeable batteries have very low output impedance, the most efficient converter circuits result in maximum operating time.
Unlike power supply systems powered by rechargeable NiCad or NiMH batteries, high efficiency power converter circuits are not necessarily optimum for use with disposable batteries.
This paper presents a simple built-in current sensor (BICS) design for quiescent current (IDDQ) testing of CMOS data converter circuits.
Despite of the scarce RF power available, energy usable to extend battery life or to self-power low-duty cycle electronics may be scavenged by highly efficient receivers and power converter circuits designed in a unique design process.
New low-noise multi-channel charge-sensitive preamplifiers and spectroscopy amplifiers, associated with constant fraction discriminators, peak-and-hold and Time to Amplitude Converter circuits were developed for the electronic readout of the ΔE stage.
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