Intelligent visual earpick
An intelligent technology for ear picking, applied in otoscopy, ear therapy, medical science, etc. The effect of digging experience
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Embodiment 1
[0059] Depend on Figure 1-Figure 4 As shown, an intelligent visual ear pick provided by the present invention includes a rod body 1 and a spoon head 7 connected to the rod body 1 with a spoon head assembly 4. It is characterized in that a power supply is installed on one side of the rod body 1 9. A computing module 10 is installed on one side of the power supply 9. The spoon head assembly 4 is provided with LED lamp beads 12 evenly distributed along its circumference at one end of the spoon head, and a camera 13 is installed in the middle of the spoon head. The side of the camera 13 is installed There is a laser emitting probe 14, the laser emitting probe 14 is provided with a charge-coupled device image sensor, and the LED lamp bead 12 is used to provide an illumination source during use, which is convenient for the camera 13 to take pictures clearly; the tail end located inside the rod body 1 is provided with a computing module 10. The charge-coupled device image sensor, th...
Embodiment 2
[0065] Such as Figure 1-4 As shown, an intelligent visual ear pick provided in this embodiment includes a rod body 1 and a spoon head 7 connected to the rod body 1 with a spoon head assembly 4. It is characterized in that one side of the rod body 1 is installed There is a power supply 9, and a calculation module 10 is installed on one side of the power supply 9. The spoon head assembly 4 is provided with LED lamp beads 12 uniformly distributed along its circumference at one end of the spoon head, and a camera 13 is arranged in the middle thereof. A laser emitting probe 14 is installed on the side, and a charge-coupled device image sensor is also arranged at the laser emitting probe; a calculation module 10 is arranged at the tail end inside the rod body 1, and the charge-coupled device image sensor is used to receive the m The reflected beam of the three-dimensional fractional laser beam, and transmit the data to the calculation module 10, m≥1; the calculation module 10 is al...
Embodiment 3
[0106] On the basis of Embodiment 1, the surface of the spoon bar 3 is marked with a scale line 16, which is convenient for the user to measure the depth of the ear canal, and is convenient to grasp the degree of entry of the ear spoon to avoid puncturing the eardrum and causing hearing damage; The charging interface 11 of the spoon body 10 is connected to the external display device through the Type-C interface, and the external display device is connected to the power supply, and then the power supply connected to the display device can be indirectly used for the camera 13, the LED lamp bead 12, and the laser emitting probe on the ear spoon body. 14 and computing module 10 work to provide electric energy and transmit data at the rod body.
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