LID CONTROLLING APPARATUS AND ROD DRIVING DEVICE THEREOF
20190128038 ยท 2019-05-02
Inventors
Cpc classification
E05F15/614
FIXED CONSTRUCTIONS
F16H1/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E05Y2999/00
FIXED CONSTRUCTIONS
E05F11/14
FIXED CONSTRUCTIONS
F16H51/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
E05F11/14
FIXED CONSTRUCTIONS
F16H1/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H51/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A lid controlling apparatus includes a casing having a target region, a lid, and a rod driving mechanism connected between the casing and the lid. The rod driving mechanism includes a first rod pivoted to the casing, a non-rotatable gear fixed to the casing, a driven gear pivoted to a side of the first rod and connected to the lid, and a planetary gear device pivoted to the side of the first rod and engaged with the non-rotatable gear and the driven gear for rotating between lifting and closed positions. When the planetary gear device rotates to the lifting position, the first rod pivots with rotation of the planetary gear device to have a first included angle relative to the casing, and the planetary gear device rotates the driven gear to make the lid have a second included angle relative to the first rod for exposing the target region.
Claims
1. A lid controlling apparatus comprising: a casing having a target region formed thereon; a lid for covering the target region; and a rod driving mechanism connected between the casing and the lid, the rod driving mechanism comprising: a first rod pivotally connected to the casing; a non-rotatable gear fixed to the casing; a driven gear pivoted to a side of the first rod and connected to the lid to make the lid rotatable with rotation of the driven gear; and a planetary gear device pivotally disposed on the side of the first rod and engaged with the non-rotatable gear and the driven gear for rotating between a lifting position and a closed position along the non-rotatable gear and for rotating the driven gear; wherein when the planetary gear device rotates to the lifting position along the non-rotatable gear, the first rod pivots together with rotation of the planetary gear device to have a first included angle relative to the casing and the planetary gear device rotates the driven gear to make the lid have a second included angle relative to the first rod; when the planetary gear device rotates to the closed position along the non-rotatable gear, the first rod pivots together with rotation of the planetary gear device to be contained in the casing and the planetary gear device rotates the driven gear to make the lid cover the target region.
2. The lid controlling apparatus of claim 1, wherein the planetary gear device comprises: a planetary gear pivoted to the side of the first rod and engaged with the non-rotatable gear and the driven gear respectively for rotating between the lifting position and the closed position along the non-rotatable gear; wherein when the planetary gear rotates to the lifting position or the closed position along the non-rotatable gear, the first rod pivots together with rotation of the planetary gear and the planetary gear rotates the driven gear.
3. The lid controlling apparatus of claim 2, wherein the rod driving mechanism further comprises: a driving motor disposed on the casing and connected to the planetary gear for driving the planetary gear to rotate along the non-rotatable gear.
4. The lid controlling apparatus of claim 2, wherein the rod driving mechanism further comprises: an elastic member connected to the first rod and the planetary gear respectively; wherein when the planetary gear rotates to the closed position along the non-rotatable gear, the lid is detachably engaged with the casing and the elastic member is deformed with rotation of the planetary gear; when engagement between the lid and the casing is released, the deformed elastic member drives the planetary gear to rotate to the lifting position along the non-rotatable gear.
5. The lid controlling apparatus of claim 4, wherein the elastic member is a torsional spring.
6. The lid controlling apparatus of claim 2, wherein a diameter of the driven gear is larger than a diameter of the planetary gear and a diameter of the non-rotatable gear.
7. The lid controlling apparatus of claim 1, wherein the planetary gear device comprises: a planetary gear pivoted to the side of the first rod and engaged with the non-rotatable gear for rotating between the lifting position and the closed position along the non-rotatable gear; and at least one transmission gear engaged with the planetary gear and the driven gear; wherein when the planetary gear rotates to the lifting position or the closed position along the non-rotatable gear, the first rod pivots together with rotation of the planetary gear and the planetary gear rotates the driven gear via the at least one transmission gear.
8. The lid controlling apparatus of claim 7, wherein the rod driving mechanism further comprises: a driving motor disposed on the casing and connected to the planetary gear for driving the planetary gear to rotate along the non-rotatable gear.
9. The lid controlling apparatus of claim 7, wherein the rod driving mechanism further comprises: an elastic member connected to the first rod and the planetary gear respectively; wherein when the planetary gear rotates to the closed position along the non-rotatable gear, the lid is detachably engaged with the casing and the elastic member is deformed with rotation of the planetary gear; when engagement between the lid and the casing is released, the deformed elastic member drives the planetary gear to rotate to the lifting position along the non-rotatable gear.
10. The lid controlling apparatus of claim 9, wherein the elastic member is a torsional spring.
11. The lid controlling apparatus of claim 7, wherein a diameter of the driven gear is larger than a diameter of the at least one transmission gear, a diameter of the planetary gear, and a diameter of the non-rotatable gear.
12. The lid controlling apparatus of claim 11, wherein the diameter of the planetary gear is equal to the diameter of the at least one transmission gear and the diameter of the non-rotatable gear.
13. The lid controlling apparatus of claim 7, wherein a diameter of the at least one transmission gear and a diameter of the planetary gear are equal to a width of the first rod.
14. The lid controlling apparatus of claim 1, wherein the target region is an opening, the planetary gear device drives the first rod to pivot and rotates the lid via the driven gear to expose the opening when the planetary gear device rotates to the lifting position, and the planetary gear device drives the first rod to pivot and rotates the lid via the driven gear to cover the opening when the planetary gear device rotates to the closed position.
15. The lid controlling apparatus of claim 14 further comprising: a projector disposed in the casing for performing image projection through the opening.
16. The lid controlling apparatus of claim 1, wherein the rod driving mechanism further comprises: a second rod pivoted to the lid and movably pivoted to the casing; wherein when the planetary gear device rotates to the lifting position along the non-rotatable gear, the second rod pivots together with the first rod via the lid to have the first included angle relative to the casing and the planetary gear device rotates the driven gear to make the lid have the second included angle relative to the first rod and the second rod; when the planetary gear device rotates to the closed position along the non-rotatable gear, the second rod pivots together with the first rod via the lid to be contained in the casing.
17. A rod driving device comprising: a surface; and a rod driving mechanism disposed on the surface, the rod driving mechanism comprising: a rod pivotally connected to the surface; a non-rotatable gear fixed to the surface; and a planetary gear pivoted to a side of the rod and engaged with the non-rotatable gear for rotating from a first position to a second position along the non-rotatable gear; wherein when the planetary gear rotates to the first position along the non-rotatable gear, the rod pivots together with rotation of the planetary gear to have an included angle relative to the surface; when the planetary gear rotates to the second position along the non-rotatable gear, the rod pivots together with rotation of the planetary gear to be contained in the surface.
18. The rod driving device of claim 17, wherein the rod driving mechanism further comprises: a driving motor disposed on the surface and connected to the planetary gear for driving the planetary gear to rotate along the non-rotatable gear.
19. The rod driving device of claim 17, wherein the first position is a lifting position, the second position is a closed position, and the rod driving mechanism further comprises: an elastic member connected to the rod and the planetary gear respectively; wherein when the planetary gear rotates to the closed position along the non-rotatable gear, the rod is detachably engaged with the surface and the elastic member is deformed with rotation of the planetary gear; when engagement between the rod and the surface is released, the deformed elastic member drives the planetary gear to rotate to the lifting position along the non-rotatable gear.
20. The rod driving device of claim 19, wherein the elastic member is a torsional spring.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0007]
[0008]
[0009]
[0010]
[0011]
DETAILED DESCRIPTION
[0012] Please refer to
[0013] Please further refer to
[0014] To be more specific, in this embodiment, the planetary gear device 28 could include a planetary gear 30 and at least one transmission gear 32 (four as shown in
[0015] In practical application, the rod driving mechanism 16 could preferably adopt the motor driving design. For example, as shown in
[0016] More detailed description for the lid opening operation and the lid closing operation of the lid controlling apparatus 10 is provided as follows. Please refer to
[0017] To be noted, in this embodiment, as shown in
[0018] After the aforesaid gear driving process, the lid 14 can be lifted by the first rod 22 and be tilted relative to the first rod 22 for exposing the target region 18, so that the projector 20 could project images on a projection screen through the target region 18. On the other hand, when the user wants to close the lid 14, the user can operate the driving motor 34 to rotate the planetary gear 30 along the non-rotatable gear 24 from the lifting position as shown in
[0019] In summary, since the lid controlling mechanism provided by the present invention can utilize only one rod to open or close the lid, the present invention not only solves the prior art problem that the two linkage rods could be damaged easily during the user opens or closes the lid, but also makes the lid controlling apparatus have a more compact look.
[0020] In practical application, for ensuring that the rod driving mechanism 16 opens or closes the cover 14 more steadily, as shown in
[0021] It should be mentioned that the gear driving design is not limited to the aforesaid embodiment, meaning that all the designs for driving the planetary gear to rotate along the non-rotatable gear may fall within the scope of the present invention. For example, the present invention could utilize the elastic force to rotate the planetary gear. In brief, the rod driving mechanism could utilize an elastic member (preferably a torsional spring) connected to the first rod and the planetary gear respectively. Accordingly, the lid could be detachably engaged with the casing (e.g. the lid could have a hook to be detachably engaged with a groove formed on the casing) and the elastic member could be deformed with rotation of the planetary gear when the planetary gear rotates to the closed position for closing the lid. On the other hand, when engagement between the lid and the casing is released, the deformed elastic member could drive the planetary gear to rotate to the lifting position along the non-rotatable gear for opening the lid. As for other related description for the rod driving mechanism in this embodiment, it could be reasoned by analogy according to the aforesaid embodiments and omitted herein for simplicity.
[0022] Furthermore, the present invention is not limited to be applied to opening or closing a lid of a projector. For example, in another embodiment, the casing could be a storage box and the target region could be a box opening. In such a manner, the lid controlling apparatus can open the lid to allow the user to access items stored in the casing through the box opening conveniently, or close the lid for protection.
[0023] Moreover, the present invention could only utilize the rod driving mechanism to perform the rod lifting function in another embodiment. For example, a rod driving device provided by the present invention could be applied to lifting a rod on a surface, such as lifting a desktop microphone stand on a desktop, but not limited thereto. The related description for the rod driving device is provided as follows, and components both mentioned in this embodiment and the aforesaid embodiments represent components with similar structures or functions.
[0024] In this embodiment, the rod driving device could include a surface (i.e. the desktop) and the rod driving mechanism. The rod driving mechanism is disposed on the surface, and the rod driving mechanism includes the rod (i.e. the desktop microphone stand), the non-rotatable gear 24 fixed to the surface, and the planetary gear 30 pivoted to a side of the rod and engaged with the non-rotatable gear 24 for rotating from a first position to a second position along the non-rotatable gear 24. Accordingly, when the planetary gear 30 is driven (e.g. by a driving motor or an elastic member) to rotate to the first position along the non-rotatable gear 24, the rod pivots together with rotation of the planetary gear 30 to have an included angle relative to the surface for a user to use conveniently. On the other hand, when the planetary gear 30 is driven to rotate to the second position along the non-rotatable gear 24, the rod pivots together with rotation of the planetary gear 30 to be contained in the surface for storage. As for the related description for other derived rod-lifting embodiments, it could be reasoned by analogy according to the aforesaid embodiments and omitted herein.
[0025] Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.