ANGLE-ADJUSTING MECHANISM OF HEAD-UP DISPLAY
20190196193 ยท 2019-06-27
Inventors
Cpc classification
B60K35/53
PERFORMING OPERATIONS; TRANSPORTING
F16H25/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G02B2027/0159
PHYSICS
B60K35/00
PERFORMING OPERATIONS; TRANSPORTING
G02B27/0179
PHYSICS
International classification
Abstract
An angle-adjusting mechanism is provided. The angle-adjusting mechanism includes a reflecting assembly, a transmission assembly and a driving unit. The reflecting assembly includes a reflecting plate. The transmission assembly includes a transmission rod and a connecting element disposed on the transmission rod. The transmission assembly is connected to the reflecting assembly via the connecting element. The driving unit is configured to drive the transmission rod to move the reflecting assembly.
Claims
1. An angle-adjusting mechanism comprising: a reflecting assembly comprising a reflecting plate; a transmission assembly comprising a transmission rod and a connecting element disposed on the transmission rod, wherein the transmission assembly is connected to the reflecting assembly via the connecting element; and a driving unit configured to drive the transmission rod to move the reflecting assembly.
2. The angle-adjusting mechanism according to claim 1, wherein the reflecting assembly further comprises a rotating shaft, and when the driving unit drives the transmission rod, the reflecting plate rotates about the rotating shaft.
3. The angle-adjusting mechanism according to claim 2, wherein an angle between a line parallel to the rotating shaft and the transmission rod is smaller than 90 degrees.
4. The angle-adjusting mechanism according to claim 1, wherein the connecting element has a guiding groove, the reflecting assembly further comprises a guiding pin disposed on one side of the reflecting plate, and the guiding pin is slidably disposed in the guiding groove.
5. The angle-adjusting mechanism according to claim 4, wherein an angle between the guiding groove and the transmission rod is adjustable for different size of the reflecting plate.
6. The angle-adjusting mechanism according to claim 1, wherein when the driving unit drives the transmission rod, the transmission rod has a linear motion.
7. The angle-adjusting mechanism according to claim 1, wherein the transmission assembly further comprises a screw, a nut and a guiding member, the nut engages with the screw and is connected to the guiding member, the transmission rod is connected to the nut to be co-acted with the nut, and when the driving unit drives the transmission rod, the nut has a linear motion on the guiding member.
8. The angle-adjusting mechanism according to claim 1, wherein when the driving unit drives the transmission rod, the transmission rod has a rotary motion.
9. The angle-adjusting mechanism according to claim 8, wherein the connecting element is a worm, the reflecting assembly further comprises a worm gear portion disposed on one side of the reflecting plate, the worm gear portion is curved in shape, and the worm gear portion engages with the worm.
10. A head-up display comprising: a base; and an angle-adjusting mechanism disposed on the base, the angle-adjusting mechanism comprising: a reflecting assembly comprising a reflecting plate; a transmission assembly comprising a transmission rod and a connecting element disposed on the transmission rod, wherein the transmission assembly is connected to the reflecting assembly via the connecting element; and a driving unit configured to drive the transmission rod to move the reflecting assembly.
11. The head-up display according to claim 10, wherein the reflecting assembly further comprises a rotating shaft, and when the driving unit drives the transmission rod, the reflecting plate rotates about the rotating shaft.
12. The head-up display according to claim 10, wherein the connecting element has a guiding groove, the reflecting assembly further comprises a guiding pin disposed on one side of the reflecting plate, and the guiding pin is slidably disposed in the guiding groove.
13. The head-up display according to claim 12, wherein an angle between the guiding groove and the transmission rod is adjustable for different size of the reflecting plate.
14. The head-up display according to claim 10, wherein the transmission assembly further comprises a screw, a nut and a guiding member, the nut engages with the screw and is connected to the guiding member, the transmission rod is connected to the nut to be co-acted with the nut, and when the driving unit drives the transmission rod, the nut has a linear motion on the guiding member.
15. The head-up display according to claim 10, wherein the connecting element is a worm, the reflecting assembly further comprises a worm gear portion disposed on one side of the reflecting plate, the worm gear portion is curved in shape, and the worm gear portion engages with the worm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0008]
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
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[0018]
[0019] FIG, 10 is a perspective view of the angle-adjusting mechanism according to another embodiment of the present invention.
[0020]
[0021]
[0022]
[0023] In the following detailed description, for purposes of explanation, numerous specific details are set forth in order to provide a thorough understanding of the disclosed embodiments. It will be apparent, however, that one or more embodiments may be practiced without these specific details. In other instances, well-known structures and devices are schematically shown in order to simplify the drawing.
DETAILED DESCRIPTION
[0024] Detailed descriptions of the present invention are disclosed below with a number of embodiments. Although the present invention does not illustrate all possible embodiments, other embodiments not disclosed in the present invention are still applicable. Moreover, the dimension scales used in the accompanying drawings are not based on actual proportion of the product. Therefore, the specification and drawings are for explaining and describing the embodiment only, not for limiting the scope of protection of the present invention. Furthermore, in the drawings of the embodiments, some elements are omitted so that technical features of the present invention can be clearly illustrated. Designations common to the accompanying drawings and embodiments are used to indicate identical or similar elements.
[0025] In the description, term such as the front direction, the left and right direction and the bottom direction of an element is not meant to represent a direction which the element faces right towards. Instead, these terms are used to describe the relative relationship with the element in the space.
[0026]
[0027] In order to adjust the tilt angle of the second reflecting plate 11, an angle-adjusting mechanism may be employed in the HUD 100 or 100. In the present invention, the angle-adjusting mechanism may be disposed in the existing remaining space S inside the HUD 100 or 100 to optimize the internal space of the HUD 100 or 100. Thus, there's no need to find an additional space to dispose the angle-adjusting mechanism, and the volume of the HUD 100 or 100 can be reduced. Here, the existing remaining space S may be a space which does not affect the traveling path of the light L and there's no element disposed in. The orientation of the existing remaining space S may substantially be in the front direction of the second reflecting plate 11, as shown in
[0028]
[0029] The angle-adjusting mechanism 10 includes a reflecting assembly 1, a transmission assembly 2 and a driving unit 3. The base 20 includes a first side wall 201, a second side wall 202 and a third side wall 203. The second side wall 202 and the third side wall 203 are connected to the first side wall 201. The base 20 further includes a bottom surface 204 connected to the first side wall 201, the second side wall 202 and the third side wall 203. The transmission assembly 2 and the driving unit 3 are disposed on the bottom surface 204. The driving unit 3 is configured to drive the transmission assembly 2, such as a motor. The transmission assembly 2 is connected between the reflecting assembly 1 and the driving unit 3 for transmitting the kinetic energy produced by the driving unit 3 to the reflecting assembly 1, so as to move the reflecting assembly 1.
[0030] The reflecting assembly 1 includes a reflecting plate 11. The function of the reflecting plate 11 is described with reference to
[0031] As shown in
[0032] In one embodiment, the reflecting assembly 1 may include a rotating shaft 12. The rotating shaft 12 may be disposed between the second side wall 202 and the third side wall 203 of the base 20. When the driving unit 3 drives the transmission assembly 2, the reflecting plate 11 rotates about the rotating shaft 12, so as to adjust the tilt angle of the reflecting plate 11.
[0033] As shown in
[0034] Referring to
[0035]
[0036] The driving unit 3 may drive the screw 24 to rotate around the X-axis. When the driving unit 3 drives the transmission assembly 2, the screw 24 rotates so that the nut 25 has a linear motion along the X-axis on the guiding member 26 to move the transmission rod 21 linearly along the X-axis.
[0037] Furthermore, in one embodiment, the transmission assembly 2 may further include a gear assembly 23. The gear assembly 23 may be connected between the driving unit 3 and the screw 24. That is, the kinetic energy produced by the driving unit 3 is transmitted sequentially through the gear assembly 23, the screw 24, the nut 25, the transmission rod 21 and the connecting element 22 to the reflecting assembly 1. Here, the designer may determine a suitable reduction ratio to adjust the design of the gear assembly 23.
[0038] As shown in
[0039] As shown in
[0040]
[0041] Referring to
[0042] Referring to
[0043] Furthermore, in these embodiments, the configuration of the above transmission rod 21, the guiding groove 221 and the guiding pin 13 may be applied to different size of the reflecting plate 11. In detail, the purpose of being applied different size of the reflecting plate 11 may be achieved by adjusting an angle between the guiding groove 221 and the transmission rod 21.
[0044]
[0045]
[0046] The angle-adjusting mechanism 10 includes a reflecting assembly 1, a transmission assembly 2 and a driving unit 3. In the present embodiment, the position of the driving unit 3 is in the existing remaining space S as shown in
[0047] In the present embodiment, the relative relationship among part components of the HUD 100 is similar to that of the HUD 100 of the embodiment of
[0048]
[0049] The connecting element 22 may be a worm. The reflecting assembly 1 may include a worm gear portion 13. In one embodiment, the worm gear portion 13 may be disposed on one side 11s of the reflecting plate 11. The worm gear portion 13 may be curved in shape, and the length of the curved shape defines the range of the tilt angle of the reflecting plate 11. Here, the worm gear portion 13 may engage with the worm (i.e., the connecting element 22).
[0050] In one embodiment, the connecting element 22 may be connected to the transmission rod 21, and be co-acted with the transmission rod 21. That is, the connecting element 22 and the transmission rod 21 cannot move relative to each other. Therefore, when the driving unit 3 drives the transmission assembly 2 so that the transmission rod 21 rotates around the X-axis, the connecting element 22 also rotates with the transmission rod 21. Thus, the connecting element 22 may drive the worm gear portion 13, which engages with the connecting element 22, to make the reflecting plate 11 rotate about the rotating shaft 12, so as to adjust the tilt angle of the reflecting plate 11. However, the present invention is not limited thereto.
[0051]
[0052] Referring to
[0053] Furthermore, in these embodiments, the configuration of the above transmission rod 21, the connecting element 22 and the worm gear portion 13 may be applied to different size of the reflecting plate 11.
[0054] Referring to
[0055] According to the angle-adjusting mechanism 10, 10 and the HUD 100, 100 provided in the above embodiments, the driving unit is disposed in the existing remaining space S as shown in
[0056] It will be apparent to those skilled in the art that various modifications and variations can be made to the disclosed embodiments. It is intended that the specification and examples be considered as exemplary only, with a true scope of the invention being indicated by the following claims and their equivalents.