A device is described for generating electrical power from mechanical energy in a vibrating environment. The design utilises an electromagnetic transducer and its operating principle is based on the relative movement of a magnet pole with respect to a coil. The approach is suitable for embedded remote microsystems structures with no physical links to the outside world. Simulation, modelling and test results following fabrication of a first prototype have demonstrated that generation of practical amounts of power within a reasonable space is possible. Power generation of more than 1 mW within a volume of 240 mm3 at a vibration frequency of 320 Hz has been obtained
This thesis deals with modifications to the construction of vibration-to-electricity energy converte...
In this paper an electromagnetic vibration based micro power generator is presented. The proposed ge...
This paper presents an electromagnetic (EM) micro-power generator with tunable resonance frequency w...
This paper presents a wideband electromagnetic vibration-to-electrical micro power generator. The mi...
This paper presents an electromagnetic (EM) vibrationto-electrical power generator which can efficie...
This paper describes the design of a miniature generator capable of converting ambient vibration ene...
This paper presents an electromagnetic (EM) vibration-to-electrical power generator, which can effic...
This paper presents an electromagnetic (EM) vibration to electrical power generator which can effect...
This paper presents a microelectromechanical-system-based electromagnetic vibration-to-electrical po...
Mechanical energy in the form of low frequency vibrations (1–100 Hz) can be commonly available and t...
In this paper we report on the design, simulation and fabrication of a microgenerator, which convert...
This paper presents a wideband electromagnetic (EM) vibration-to-electrical power generator which ca...
This paper presents an electromagnetic (EM) vibration-to-electrical power generator for wireless sen...
Scaling down of electronic systems has generated a large interest in the research on miniature energ...
The project deals with contemporary position of vibratory generators based on electromagnetic princi...
This thesis deals with modifications to the construction of vibration-to-electricity energy converte...
In this paper an electromagnetic vibration based micro power generator is presented. The proposed ge...
This paper presents an electromagnetic (EM) micro-power generator with tunable resonance frequency w...
This paper presents a wideband electromagnetic vibration-to-electrical micro power generator. The mi...
This paper presents an electromagnetic (EM) vibrationto-electrical power generator which can efficie...
This paper describes the design of a miniature generator capable of converting ambient vibration ene...
This paper presents an electromagnetic (EM) vibration-to-electrical power generator, which can effic...
This paper presents an electromagnetic (EM) vibration to electrical power generator which can effect...
This paper presents a microelectromechanical-system-based electromagnetic vibration-to-electrical po...
Mechanical energy in the form of low frequency vibrations (1–100 Hz) can be commonly available and t...
In this paper we report on the design, simulation and fabrication of a microgenerator, which convert...
This paper presents a wideband electromagnetic (EM) vibration-to-electrical power generator which ca...
This paper presents an electromagnetic (EM) vibration-to-electrical power generator for wireless sen...
Scaling down of electronic systems has generated a large interest in the research on miniature energ...
The project deals with contemporary position of vibratory generators based on electromagnetic princi...
This thesis deals with modifications to the construction of vibration-to-electricity energy converte...
In this paper an electromagnetic vibration based micro power generator is presented. The proposed ge...
This paper presents an electromagnetic (EM) micro-power generator with tunable resonance frequency w...