Abstract:
A flexible biomonitor comprises: a flexible substrate having a circuit apparatus, a hybrid sensor, a plurality of IC devices, a central processing module, a RF transmitter circuit, an antenna, and a power supply. Thereupon the flexible biomonitor can be plastered on the skin where the human body needs to be monitored to achieve the purposes of reducing occupied area, providing comfortable wear and achieve compactness, module expansion and EMI shielding. Besides, it is capable of remote real-time monitoring this signal to achieve the purpose of home care.
Abstract:
A bio-monitoring apparatus is disclosed in the present invention which is characterized in that a bio-sensing electrode without a stud member or male portion of a snap fastener is directly integrated with a signal processing module through a conductive layer formed therebetween so as to form the bio-monitoring apparatus functions to transcutaneously sense physiological statuses of a being. In a preferred embodiment of the present invention, the structure of the bio-sensing electrode is further simplified to a contacting layer coupled to the signal processing module through the conductive layer so as to reduce attenuation of signal intensity during signal transmitting. Meanwhile, without the stud member disposed in the electrode, not only the thickness of the electrode is certainly reduced, but also the feeling of comfort is capable of being improved while the electrode is adapted to contact a being.
Abstract:
A signal sensing apparatus eliminating noise is provided, having at least a first class signal sensor for receiving at least a first class signal, at least a second class signal sensor for receiving at least a second class signal, a signal receiver for receiving a signal, wherein the signal comprises at least a noise; and a master-slave multiple noise eliminator for performing a multiple adaptive filter algorithm to eliminate noise in the signal by using one of the at least a first class signal or second class signal as a master signal and one of the at least a first class signal or second class signal not used as a master signal as a slave signal.
Abstract:
A bio-monitoring apparatus is disclosed in the present invention which is characterized in that a bio-sensing electrode without a stud member or male portion of a snap fastener is directly integrated with a signal processing module through a conductive layer formed therebetween so as to form the bio-monitoring apparatus functions to transcutaneously sense physiological statuses of a being. In a preferred embodiment of the present invention, the structure of the bio-sensing electrode is further simplified to a contacting layer coupled to the signal processing module through the conductive layer so as to reduce attenuation of signal intensity during signal transmitting. Meanwhile, without the stud member disposed in the electrode, not only the thickness of the electrode is certainly reduced, but also the feeling of comfort is capable of being improved while the electrode is adapted to contact a being.