EYE MOVEMENT DEVICE
20240009065 ยท 2024-01-11
Inventors
Cpc classification
International classification
Abstract
The present invention relates to an apparatus for exercising an eyeball, in which a geared motor (20) is mounted on an upper end of a column (11) of a stand (10), an output shaft (21) of the geared motor (20) is inserted into a hole (31) formed at one end of a rotating arm (30), a connecting shaft (35) is mounted on a free end of the rotating arm (30) in parallel with the output shaft (21), the connecting shaft (35) is inserted into an upper horizontal shaft hole 41 of a balance weight (40) through a bearing (50), a magnet (60) is mounted on a front of the balance weight (40), and an iron plate (76) attached to a case 75 of a smartphone (70) is attached to the magnet (60).
Claims
1. An apparatus for exercising an eyeball, wherein a geared motor (20) is mounted on an upper end of a column (11) of a stand (10), an output shaft (21) of the geared motor (20) is inserted into a hole (31) formed at one end of a rotating arm (30), a connecting shaft (35) is mounted on a free end of the rotating arm (30) in parallel with the output shaft (21), the connecting shaft (35) is inserted into an upper horizontal shaft hole (41) of a balance weight (40) through a bearing (50), a magnet (60) is mounted on a front of the balance weight (40), and an iron plate (76) attached to a case (75) of a smartphone (70) is attached to the magnet (60).
2. The apparatus of claim 1, wherein the geared motor (20) is capable of both forward rotation and reverse rotation, the output shaft (21) rotates at a low speed, and the output shaft continues to rotate at a constant speed at a low speed or repeatedly rotates and stops at a predetermined angle.
3. The apparatus of claim 1, wherein, in the balance weight (40), a bundle weight part (42) is formed at a lower portion of the upper horizontal shaft hole (41), the plurality of bearings (50) are mounted inside the upper horizontal shaft hole (41), and the connecting shaft (35) of the rotating arm (30) is fitted into the bearing (50).
4. The apparatus of claim 1, wherein, when the free end of the rotating arm (30) makes a circular motion at a low speed around the output shaft (21) of the geared motor (20) in a state where the smartphone (70) is attached to the magnet (60) of the balance weight (40), since the connecting shaft (35) of the rotating arm (30) is inserted into the upper horizontal shaft hole (41) of the balance weight (40) through the bearing (50) and the balance weight (40) rotates relative to the connecting shaft (35) according to an arrangement position of the connecting shaft (35) by the bundle weight part (42) and the balance weight (40) is always maintained in a state where the bundle weight part (42) is erected to be arranged at the lower portion of the upper horizontal shaft hole (41), the attachment state of the smartphone (70) attached to the magnet (60) of the balance weight (40) is always maintained constant without being tilted regardless of a rotational motion of the rotating arm (30), so a user performs eyeball exercise while watching a screen of the smartphone (70) rotating at a low speed.
5. An apparatus for exercising an eyeball, wherein a rotating shaft (220) is rotatably fitted into a cantilever (213) of a stand (210), a connecting end (231) of a rotating arm (230) is vertically connected to a front end of the rotating shaft (220) so that a free end (232) of the rotating arm (230) rotates around the rotating shaft (220), a ball screw (242) driven by a linear step motor (241) and a transfer nut (243) are mounted inside the rotating arm (230), one end of a connecting shaft (245) is connected to the transfer nut (243), the other end of the connecting shaft (245) is inserted into an upper horizontal shaft hole (251) of a balance weight (250) through a bearing (252), a magnet (255) is mounted on a front of the balance weight (250), an iron plate (311) attached to a case of a smartphone (300) is attached to the magnet (255), a driven pulley (265) is mounted on a rear end of the rotating shaft (220), a geared motor (261) is arranged inside a pedestal (211) of the stand (210), a drive pulley (263) is mounted on an output shaft (262) of the geared motor (261), the drive pulley (263) and the driven pulley (265) are connected by a belt (264), a fixing ring (271) of an energizing means (270) is mounted on a front end of the cantilever (213), a slip ring (273) rotating relative to the fixed ring (271) is coupled to the rotating arm (230), a contact terminal (274) of the slip ring (273) is connected to a connection part (272) of the fixed ring (271) so that power is supplied to the linear step motor (241) through the energizing means (270), a controller (281) and the geared motor (261) are respectively arranged on the pedestal (211) of the stand (210), and the controller (281) is connected to the fixed ring (271) of the power supply (270) and the geared motor (261) through wires (282 and 283), respectively.
6. The apparatus of claim 5, wherein the smartphone (300) rotates at a low speed of 360 around the rotating shaft (220), and moves left and right along the ball screw (242) arranged on the rotating arm (230) in a state where the rotating arm (230) is horizontally arranged, and when the rotating arm (230) is erected, moves up and down along the ball screw (242) arranged on the rotating arm (230), and when the rotating arm (230) is arranged diagonally, moves in a diagonal direction along the ball screw (242) arranged on the rotating arm (230), so a user's eyeball moves along the smartphone (300).
7. An apparatus for exercising an eyeball, wherein a geared motor (420) is mounted on an upper end of a column (411) of a stand (410), a rotating support (430) is mounted on an output shaft (421) of the geared motor (420), a central portion of a box housing (440) in a shape of a long rectangular parallelepiped is mounted on the rotating support (430), a belt and pulley means (450) are arranged inside a box housing (440), a cutout part (442) is formed long in a longitudinal direction on either side surface (441) of the box housing (440), a transfer support (460) is coupled to the belt (452), one end of a connecting shaft (465) is vertically attached to a center of a vertical support plate part (464) of the transfer support (460), the connecting shaft (465) is inserted into an upper horizontal shaft hole (471) of a balance weight (470) through a bearing (475), a magnet (480) is mounted on a front of the balance weight (470), an iron plate (510) attached to a case of a smartphone (500) is attached to the magnet (480), so a user's eyeball rotates or moves up and down and left and right along the smartphone while a user watches a screen of the smartphone (500).
8. The apparatus of claim 7, wherein one end of the box housing (440) is provided with a reduction motor (455) for driving the belt and pulley means (450) and the other end of the box housing (440) is provided with the balance weight (445), a battery socket is arranged inside the balance weight (445), a battery installed in the battery socket is used as a power supply for the reduction motor (455), first and second detection sensors (491 and 492) are mounted on the side surface (441) on which the cutout part (442) is formed, so the first and second detection sensors (491 and 492) detect the transfer support (460).
9. The apparatus of claim 7, wherein the transfer support (460) includes a coupling plate part (461) that is coupled to the belt (452), a vertical part (462) that is erected vertically in a center of the coupling plate part (461), an upper horizontal part (463) that is bent at an upper end of the vertical part (462), the vertical support plate part (464) that is bent downward from the upper horizontal part (463), and the connecting shaft (465), one end of which is vertically attached to a center of the vertical support plate part (464).
10. The apparatus of claim 7, wherein, in the balance weight (470), a bunch weight part (472) is formed at a lower portion of the upper horizontal shaft hole (471), the plurality of bearings (475) are mounted inside the upper horizontal shaft hole (471), the connecting shaft (465) is inserted into the bearing (475), and the magnet (480) is attached to the front.
11. The apparatus of claim 7, wherein the smartphone (500) makes a circular motion at a low speed around the output shaft (421) of the geared motor (420), moves left and right by the belt and pulley means (450) and the transfer support (460) in a state where the box housing (440) is horizontally arranged, moves up and down by the belt and pulley means (450) and the transfer support (460) while the box housing (440) is erected, moves in a diagonal direction by the belt and pulley means (450) and the transfer support (460) in a state where the box housing (440) is arranged diagonally, so a user's eyeball moves along the smartphone (500).
12. An apparatus for exercising an eyeball, wherein a geared motor (620) is mounted on an upper end of a column (611) of a stand (610), an output shaft (621) of the geared motor (620) is connected to a shaft connection part (622) formed in a center of a lower surface of a box housing (630), a rack (640) and a pinion (645) are arranged inside the box housing (630), the pinion (645) is driven by a step motor (650), a battery case (655) is mounted on the step motor 650 to apply power from a battery in the battery case (655) to the step motor (650), a cutout part (631) is formed long in the longitudinal direction on the side surface of the box housing (630), a shaft (651) of the step motor (650) protrudes outward from the pinion (645) and the cutout part (631) of the box housing (630), the shaft (651) of the step motor (650) is inserted into the upper horizontal shaft hole (661) of the balance weight (660) through a bearing (665), a magnet (670) is mounted on the front of the balance weight (660), and an iron plate (710) attached to a case of a smartphone (700) is attached to the magnet (670), so the user's eyeball rotates along the smartphone (700) or moves along the cutout part (631) of the box housing (630) while the user watches a screen of the smartphone (700).
13. The apparatus of claim 12, wherein in the balance weight (660), a bunch weight part (662) is formed at the lower portion of the upper horizontal shaft hole (662), the plurality of bearings (665) are mounted inside the upper horizontal shaft hole (661), the shaft (651) is inserted into the bearing (665), and the magnet (670) is attached to the front.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
BEST MODE
[0031] Hereinafter, embodiments of the present invention will be described in detail with reference to the accompanying drawings.
[0032] Referring to
[0033] The geared motor 20 is capable of both forward rotation and reverse rotation, the output shaft 21 may rotate at a low speed, and the output shaft may continue to rotate at a constant speed at a low speed or repeatedly rotate and stop at a predetermined angle.
[0034] In the balance weight 40, a bundle weight part 42 is formed at a lower portion of the upper horizontal shaft hole 41, a plurality of bearings 50 are mounted inside the upper horizontal shaft hole 41, and the connecting shaft 35 of the rotating arm 30 is fitted into the bearing 50.
[0035] In the apparatus for exercising an eyeball according to a first embodiment of the present invention configured as described above, as illustrated in
[0036] As a result, the attachment state of the smartphone attached to the magnet 60 of the balance weight 40 is always maintained constant without being tilted regardless of a rotational motion of the rotating arm 30.
[0037] That is, when the free end of the rotating arm 30 makes a circular motion at a low speed around the output shaft 21 of the geared motor 20, the state where the smartphone 70 is attached to the magnet 60 continues to be maintained as it is without changing the screen state of the smartphone 70 attached to the magnet 60 of the balance weight 40, so a user enables the eyeball exercise while watching the screen of the smartphone 70 rotating at a low speed.
[0038] For example, in a state where the smartphone 70 is mounted on the magnet 40 while being erected at position a in
[0039] As described above, in the apparatus for exercising an eyeball according to the present invention, one attached to the magnet is referred to as a smartphone, but the present invention is not limited thereto, and may be an instruction board, a video device, or the like for eyeball exercise. It will be appreciated that attaching the instruction board or the video device for the eyeball exercise to the magnet instead of the smartphone also falls within the scope of the present invention.
[0040] Referring to
[0041] In the apparatus for exercising an eyeball according to the second embodiment of the present invention, a driven pulley 265 is mounted on a rear end of the rotating shaft 220, a geared motor 261 is arranged inside a pedestal 211 of the stand 210, a drive pulley 263 is mounted on an output shaft 262 of the geared motor 261, the drive pulley 263 and the driven pulley 265 are connected by a belt 264, a fixing ring 271 of an energizing means 270 is mounted on a front end of the cantilever 213, a slip ring 273 rotating relative to a fixed ring 271 is coupled to the rotating arm 230, a contact terminal 274 of the slip ring 273 is connected to a connection part 272 of the fixed ring 271 so that power is supplied to the linear step motor 241 through the energizing means 270.
[0042] In addition, in the apparatus for exercising an eyeball according to the second embodiment of the present invention, a controller 281 and the geared motor 261 are respectively arranged on the pedestal 211 of the stand 210, and the controller 281 is connected to the fixed ring 271 of the power supply 270 and the geared motor 261 through wires 282 and 283, respectively.
[0043] The geared motor 261 is capable of both forward rotation and reverse rotation, the output shaft 21 may rotate at a low speed, and the output shaft continues to rotate at a constant speed at a low speed or repeatedly rotates and stops at a predetermined angle.
[0044] In the balance weight 250, a bundle weight part 253 is formed at a lower portion of the upper horizontal shaft hole 251, a plurality of bearings 252 are mounted inside the upper horizontal shaft hole 251, and the connecting shaft 245 is fitted into the bearing 252.
[0045] In the apparatus for exercising an eyeball according to the second embodiment of the present invention configured as described above, the power of the geared motor 261 is transmitted to the rotating shaft 220 through the pulleys 263 and 265 and the belt 264, and the free end 232 of the rotating arm 230 rotates around the rotating shaft 220 by the rotation of the rotating shaft 220, so, as illustrated in
[0046] In this case, since the connecting shaft 245 arranged at the free end of the rotating arm 230 is inserted into the upper horizontal shaft hole 251 of the balance weight 250 through the bearing 252, the balance weight 250 rotates relative to the connecting shaft 245 according to the arrangement position of the connecting shaft 245 by the bundle weight part 253, so the balance weight 250 is always maintained in the erected state so that the bundle weight part 253 is arranged at the lower portion of the upper horizontal shaft hole 251.
[0047] As a result, the attachment state of the smartphone 300 attached to the magnet 255 of the balance weight 250 is always maintained constant without being tilted regardless of a rotational motion of the rotating arm 230.
[0048] That is, when the free end of the rotating arm 230 makes a circular motion at a low speed around the rotating shaft 220, the state where the smartphone 300 is attached to the magnet 60 continues to be maintained as it is without changing the screen state of the smartphone 300 attached to the magnet 255 of the balance weight 250, so a user enables the eyeball exercise while watching the screen of the smartphone 300 rotating at a low speed.
[0049] Although the rotating arm 230 rotates around the rotating shaft 220, power may be supplied to the linear step motor 241 through the energizing means 270, and as illustrated in
[0050] Thereafter, the rotating arm 230 rotates 90 around the rotating shaft 220, so the rotating arm 230 is erected and the smartphone 300 is arranged at the upper end of the rotating arm 230 which is position b.
[0051] Thereafter, as illustrated in
[0052] Furthermore, as illustrated in
[0053] Referring to
[0054] The geared motor 420 is capable of both forward rotation and reverse rotation, the output shaft 21 may rotate at a low speed, and the output shaft continues to rotate at a constant speed at a low speed or repeatedly rotates and stops at a predetermined angle.
[0055] One end of the box housing 440 is provided with a reduction motor 455 for driving the belt and pulley means 450 and the other end of the box housing 440 is provided with a balance weight 445, a battery socket not illustrated is arranged inside the balance weight 445, a battery not illustrated installed in the battery socket is used as a power supply for the reduction motor 455, first and second detection sensors 491 and 492 are mounted on the side surface 441 on which the cutout part 442 is formed, so the first and second detection sensors 491 and 492 detect the transfer support 460.
[0056] The first and second detection sensors 491 and 492 are any one of a proximity sensor, a limit switch, and a touch sensor.
[0057] In the belt and pulley means 450, a driving pulley 451 and a driven pulley 453 are arranged at one end and the other end of a box housing 440, respectively, the belt 452 is hung on the driving pulley 451 and the driven pulley 453, and the drive pulley 451 is driven by the reduction motor 455, so the belt moves left and right between the drive pulley 451 and the driven pulley.
[0058] The transfer support 460 includes a coupling plate part 461 that is coupled to the belt 452, a vertical part 462 that is erected vertically in a center of the coupling plate part 461, an upper horizontal part 463 that is bent at an upper end of the vertical part 462, the vertical support plate part 464 that is bent downward from the upper horizontal part 463, and the connecting shaft 465, one end of which is vertically attached to a center of the vertical support plate part 464.
[0059] In the balance weight 470, a bunch weight part 472 is formed at a lower portion of the upper horizontal shaft hole 471, a plurality of bearings 475 are mounted inside the upper horizontal shaft hole 471, the connecting shaft 465 is inserted into the bearing 475, and the magnet 480 is attached to the front.
[0060] In the apparatus for exercising an eyeball according to the third embodiment of the present invention configured as described above, as illustrated in
[0061] As a result, the attachment state of the smartphone 500 attached to the magnet 480 of the balance weight 470 is always maintained constant without being tilted regardless of a rotational motion of the box housing 440. That is, the screen state of the smartphone 500 attached to the magnet 480 of the balance weight 470 does not change and the state where the smartphone 500 is attached to the magnet 480 continues to be maintained as it is, so the user may make eyeball exercise while watching the screen of the smartphone 500 rotating at a low speed.
[0062] As illustrated in
[0063] Thereafter, as illustrated in
[0064] Thereafter, in the state where the box housing 440 is erected, the smartphone 500 may move up and down in a direction of an arrow 517 by the belt and pulley means 470 as described above, so the user's eyeball may move up and down along the smartphone 500.
[0065] Furthermore, as illustrated in
[0066] Referring to
[0067] In the balance weight 660, a bunch weight part 662 is formed at the lower portion of the upper horizontal shaft hole 662, the plurality of bearings 665 are mounted inside the upper horizontal shaft hole 661, the shaft 651 is inserted into the bearing 665, and the magnet 670 is attached to the front.
[0068] As described with reference to
TABLE-US-00001 [Description of reference numerals] 10: Stand 20: Geared motor 30: Rotating arm 40: Balance weight 50: Bearing 60 : Magnet 70: Smartphone