The present invention relates to a toothbrush, especially to a toothbrush having a physiological sensing function.
Recent years, wearable devices are getting more and more popular in the field of consumer electronics. A wearable device not only works in connection with a cellphone but also detects the physiological state of the user because it is light and close-fitting, thereby allowing the users to record their physical health conditions at any time.
However, when brushing teeth, a user might not wear any wearable device because brushing teeth is usually done before or after taking a shower, before going to bed, or right after getting up, and the user might want to feel comfortable and take off the wearable device. Thus, the user cannot obtain information about his/her physical state in real time in this situation, which is inconvenient.
To overcome the shortcomings, the present invention provides a toothbrush to mitigate or obviate the aforementioned problems.
The main objective of the present invention is to provide a toothbrush that is capable of detecting the physiological state of the user.
The toothbrush has a holding segment, a sensing module, and a brush head segment. The holding segment has an inner space, a top end, a bottom end, and a sensing area. The bottom end is opposite to the top end. The bottom end and the top end are arranged along a lengthwise direction of the holding segment. The sensing module is mounted in the inner space of the holding segment and corresponds in position to the sensing area. The sensing module runs a physiological sensing function at the sensing area and generates a physiological data. The brush head segment is mounted on the top end of the holding segment.
When a user brushes his/her teeth with the toothbrush of the present invention, a finger pad or a palm of the user touches the sensing area, and the sensing module runs the physiological sensing function and then generates physiological data. Then, the physiological data can be sent to an external processing module to run health management analysis or be shown to the user. Therefore, the user can understand his/her own health information more comprehensively.
Other objectives, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
The physiological sensing function run by the sensing module 12 comprises heart rhythm sensing, blood oxygen sensing, blood pressure sensing, or body temperature sensing. The sensing module 12 can be implemented as an optical pulse detection module, an infrared blood oxygen sensing module, a blood pressure sensing module or a temperature sensing module, etc.
With reference to
With reference to
In a second embodiment, the toothbrush 10 has a sensing cover 16, and the holding segment 11 has a sensing area opening formed on the sensing area 1103. The sensing area opening communicates with the inner space. The sensing cover 16 is mounted in the sensing area opening and the sensing module 12 corresponds in position to the sensing cover 16. The sensing cover 16 protects the sensing module 12. The material of the sensing cover 16 can be determined according to the type of the sensing module 12, such as a transparent cover for optical physiological sensing, or a silicone elastic cover for pressure sensing, etc.
Preferably, the sensing module 12 has a sensing unit and a wireless communication unit. The sensing unit runs the physiological sensing function and generates the physiological data. The wireless communication unit is electrically connected to the sensing unit to receive the physiological data generated by the sensing unit. The wireless communication unit is wirelessly connected to an external processing module and sends the physiological data to the external processing module.
The external processing module can be implemented as a cloud server, a wireless receiving and display module, or a smart mobile device. In the case of the smart mobile device, the smart mobile device is wirelessly connected to the wireless communication unit of the toothbrush 10. The smart mobile device receives the physiological data generated by the sensing unit via the wireless communication unit, and then performs data analysis, such as curve analysis, abnormal surge value analysis, etc., and provides results of analysis to the user through the display screen to remind the user to pay attention to his/her health.
With reference to
With reference to
In a fifth embodiment, the holding segment 11 has a bottom end opening 110 and a bottom cover 113, and the power module 14 is implemented as a replaceable battery module. The bottom end opening 110 communicates with the inner space, and the bottom cover 113 is sleeved on the bottom end 1102 to cover the bottom end opening 110. The bottom cover 113 can be detached for the user to replace the battery in the inner space. The replaceable battery can be carbon-zinc batteries, alkaline batteries, lithium batteries, etc.
Preferably, the holding segment 11 has a sealing unit 17 mounted between the main body 111, the back cover 112, and the bottom cover 113 to seal the gap between the main body 111, the back cover 112, and the bottom cover 113 and to ensure water resistance during use. The sealing unit 17 is preferably a sealing gasket made of rubber. The sealing unit 17 has a first opening sealing segment 171. The periphery of the first opening 1110 and the periphery of the back cover 112 are both concaved to form an engaging groove. The engaging groove extends along the periphery of the first opening 1110 and the periphery of the back cover 112. When assembling the sealing unit 17, the first opening sealing segment 171 of the sealing unit 17 is mounted into the engaging groove and is tightly fit in the engaging groove. The sealing unit 17 covers the junction between the periphery of the first opening 1110 and the periphery of the back cover 112 in order to prevent liquid from leaking into the inner space of the holding segment 11 and damaging the power module 14 or the sensing module 12. Further, the sealing unit 17 has a bottom end opening sealing segment 172 sleeved on an outer wall of the bottom end 1102 of the holding segment 11. When the bottom cover 113 covers the bottom end 1102, the bottom end opening sealing segment 172 is tightly mounted between an outer wall of the holding segment 11 and an inner wall of the bottom cover 113 to prevent liquid from leaking into the inner space of the holding segment 11.
Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and features of the invention, the disclosure is illustrative only. Changes may be made in the details, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/CN2019/088754 | 5/28/2019 | WO | 00 |