1. Field of the Invention
The present invention relates generally to a suction-attachment structure, and more particularly to a combined arrangement of an electrically conducting unit and a suction-attaching member that helps prevent undesired displacement of the electrically conducting unit in carrying out a detection operation and also helps maintain a state of being in contact engagement with a surface layer of a human body so as to applicable to a physiological detection device, a tilt detection device, and the likes.
2. Description of Related Art
Major technical manufacturers have recently devoted themselves to the study of combining electrode plates with a woven or knitted fabric product in order to detect physiological signals when the fabric product is worn for the purposes of getting aware of physical function conditions and also for monitoring and recording purposes.
However, when the electrode plates are put in contact with the surface layer of a human body, such electrode plates are generally fixed on the fabric. Thus, with the movement and activity of the human body, the electrode plates are often caused to undergo displacement, leading to unexpected interruption of signals or generation of abnormal signals during the detection of physiological signals conducted by the electrode plates on the surface layer of the human body. This makes it necessary to re-adjust the location of the electrode plates, or alternatively, the human body must keep still in order to allow for smooth operations of detection of physiological signals by the electrode plates.
Thus, in view of the above problems, the present inventor wishes to propose a suction-attachment structure that prevents electrode plates from displacing during a detection operation and allows for easy operation by a user for assembly. This is the motivation of the invention made by the present inventor.
The primary object of the present invention is to provide a suction-attachment structure, which comprises a combined arrangement of an electrically conducting unit and a suction-attaching member. The suction-attaching member comprises a base. The base has an edge from which a wall extends. The wall has an upper end forming an attaching face. The electrically conducting unit is coupled to the base of the suction-attaching member. The attaching face at the upper end of the base define a suction-attaching configuration to allow the suction-attaching member to securely hold the electrically conducting unit in position, so as to prevent the electrically conducting unit from displacing during an operation of detection and to securely maintain contact engagement with a surface layer of a human body for effectively carrying out detection of physiological signals thereby improving overall utilization.
Another object of the present invention is to provide a suction-attachment structure, which comprises a suction-attaching member comprising at least one extension section extending from an edge of a base. The extension section has an edge from which a wall is extended. The extended wall has an upper end forming an attaching face. The extension section comprises an electrically-conductive extension unit arranged therein. The electrically-conductive extension unit is extended from an electrically conducting unit arranged in the suction-attaching member so as to increase the contact area thereof with a surface layer of a human body to help improve accuracy of physiological signal detection thereby improving overall accuracy.
A further object of the present invention is to provide a suction-attachment structure, which comprises a suction-attaching member comprising at least one extension section extending from an edge of the base. The suction-attaching member and the extension section are formed of electrically conductive rubber to improve the attachability thereof and also to allow the electrically conducting unit arranged in the suction-attaching member to extend into the extension section in order to improve the signal magnitude of a physiological signal detected thereby for improving the detection performance, thereby improving overall utilization.
To achieve the above objects, the present invention provides a suction-attachment structure, which comprises an electrically conducting unit and a suction-attaching member. The suction-attaching member comprises a base. The base has an edge from which a wall extends. The wall has an upper end forming an attaching face. The electrically conducting unit is coupled to the base of the suction-attaching member. The attaching face formed at the upper end of the wall defines a suction-attaching configuration to allow the suction-attaching member to securely hold the electrically conducting unit in position.
The above and other objects and advantages of the present invention can be fully understood from the following detailed description, and the attached drawings, given with reference to selected embodiments.
Certainly, some of the components of the present invention, or arrangements of components may be different; however, the selected embodiment will be described, in details, in the specification and illustrated in the attached drawings.
Referring to
A primary embodiment of the suction-attachment structure according to the present invention generally comprises an electrically conducting unit 10 and a suction-attaching member 20 (as shown in
Further, the suction-attaching member 20 of the present invention is made of silica gel or electrically conductive rubber. The silica gel used is particulate porous hydrated silica washed with sodium silicate added with acid and the dried, having a temperature resistance for 220-280° C. and having excellent property of releasing. The silica gel is non-conductive. The conductive rubber has an effect of electrical conductivity and the conductive rubber is formed of a base material of high performance silicon rubber, added with conductive particles, such as particles of copper plated with silver, particles of aluminum plated with silver, particles of glass plated with silver, and particles of graphite plated with nickel, and assisting agents, in such a way that the conductive particles are uniformly mixed in the silicon rubber and the conductive particles are in contact engagement with each other with pressure applied thereto so as to achieve an excellent effect of electrical conductivity. In addition to the above-described silica gel and conductive rubber, the suction-attaching member 20 of the present invention may also be formed of other plastic materials involving electrical conductivity or not involving electrical conductivity, and the materials that can be used are not limited to what described or mentioned above.
The suction-attaching member 20 comprises a base 21. The base 21 has an edge from which a wall 22 extends to form a bowl like configuration. The wall 22 has an upper end that forms an attaching face 23 (as shown in
A second embodiment of the suction-attachment structure according to the present invention is formed on the basis of the electrically conducting unit 10 and the suction-attaching member 20 of the primary embodiment described above, where the electrically conducting unit 10 can be one of a piece of electrically conductive fabric and an electrode plate (or other electrically conductive substitutes) and the base 21 of the suction-attaching member 20 is structured to have at least one extension section 40 extending from an edge thereof, wherein the number of the extension section 40 is plural and can be one, two, three, . . . , or six (two and six extension sections being taken as examples of the present invention) (as shown in
A third embodiment of the suction-attachment structure according to the present invention is formed on the basis of the electrically conducting unit 10 and the suction-attaching member 20 of the primary embodiment described above, where the electrically conducting unit 10 can be one of a piece of electrically conductive fabric and an electrode plate (or other electrically conductive substitutes) and the base 21 of the suction-attaching member 20 is structured to have at least one extension section 60 extending from an edge thereof (as shown in
Further, in the above-described first, second, and third embodiments of the suction-attachment structure according to the present invention, the electrically conducting unit 10 can be connected to a signal transmission point (not shown) and the signal transmission point is connected via a conductor line (not shown) to a signal transmitter. The signal transmitter may comprise a wireless transmission module to transmit, in a wireless manner, the physiological signal detected and variation thereof to an electronic device (such as a smart phone, a smart tablet computer, a notebook computer, a desktop computer, and medical equipment) or cloud for easy aware of the result of detection to take measure for preventive medical treatments.
Based on the above detailed description, those skilled in the art may appreciate that the present invention can achieve the above-discussed objectives and is in complete compliance with the Patent Laws and thus, an application is filed herewith for seeking protection offered by a patent granted therefor.
However, it is noted that the above description is made only to preferred embodiments of the present invention and is not intending to limit the true scope where the present invention may be put into practice. Thus, simple and equivalent variations and modifications made on the disclosure of the specification and the attached claims are all considered within the scope of the present invention.