This application claims the benefit of Taiwan application Serial No. 100138545, filed Oct. 24, 2011, the subject matter of which is incorporated herein by reference.
1. Field of the Invention
The invention relates in general to a rotating device, and more particularly to a rotation angle regulating device and a rotatable lamp using the same.
2. Description of the Related Art
Ordinary illumination lamps, such as fluorescent lamps, art lamps, advertising lights, and projection lamps have a large variety of models and styles. However, once a lamp is installed, the illumination angle and range are fixed and can hardly be changed. Also, once the tubes or bulbs are manufactured, the types and purposes of the tubes or bulbs are fixed and cannot be replaced with other ones. It seems that the lamp do not have any functions other than illumination.
Despite that a lamp may have a rotation angle regulating device, the rotation angle of the lamp is limitary. For example, the rotation angle is smaller than 270 degrees. Once the default maximum rotation angle is reached, the rotation of the lamp is stopped through the design of a stopper structure. Therefore, the lamp still has many restrictions in terms of use, and needs to be improved further.
The invention is directed to a rotation angle regulating device and a rotatable lamp using the same. The lamp can be rotated to an angle over 360 degrees and may be stopped at a designated angle.
According to one embodiment of the present invention, a rotation angle regulating device comprising a fixing element, an active rotating element and N passive rotating elements are provided. N is a positive integral equal to or more than 1. The fixing element has a first axis hole with a positioning flange disposed around the periphery of the first axis hole. The active rotating element has a second axis hole with a bump disposed around the periphery of the second axis hole. The N passive rotating elements are located between the fixing element and the active rotating element. Each passive rotating element has a through hole, and a first stopper and a second stopper are respectively disposed around the periphery of the through hole on two opposite sides of the through hole. The positioning flange is located on the rotation path of the first stopper of the first passive rotating element. The bump is located on the rotation path of the second stopper of the N-th passive rotating element. The first and the second stoppers of the j-th passive rotating element respectively press against the second and the first stoppers which are located on the i-th and the k-th passive rotating elements adjacent to the j-th passive rotating element, wherein 1≦i<j<k≦N, i, j, and k are positive integrals. The passive rotating elements respectively press against the fixing element and the active rotating element through the first passive rotating element and the N-th passive rotating element. The active rotating element, when rotating, drives and makes the passive rotating elements rotating on the fixing element. Consequently, the rotation angle of the active rotating element relative to the fixing element is increased, and the rotation of the lamp may be stopped at any designated angle through the operations of the first and the second stoppers of each passive rotating element.
According to another embodiment of the present invention, a rotatable lamp comprising a frame, a lamp, a first rotation angle regulating device and a second rotation angle regulating device is provided. The frame defines an illumination region within which the lamp is disposed. The first and the second rotation angle regulating devices are respectively fixed at a first position and a second position on the sidewall of the lamp. The first and the second positions are symmetric with each other on the lamp. The first and the second rotation angle regulating devices respectively correspond to first and second corresponding portions of the frame, such that the irradiation angle of the lamp is controlled by the first and the second rotation angle regulating devices to be fixed at a designated angle.
The above and other aspects of the invention will become better understood with regard to the following detailed description of the preferred but non-limiting embodiment(s). The following description is made with reference to the accompanying drawings.
A rotation angle regulating device and a rotatable lamp using the same are disclosed in the present embodiment. Through the passive rotating elements capable of regulating the rotation angle, the rotation angle of the active rotating element relative to the fixing element is increased. In addition, each passive rotating element has a first stopper and a second stopper. The active rotating element, when rotating, drives and makes the passive rotating elements rotating on the fixing element, so that the rotation of the lamp can be stopped at any designated angle through the operations of the first and second stoppers of each passive rotating element.
Suppose the rotation angle regulating device has N passive rotating elements, wherein N is a positive integral equal to or more than 1. When two or more than two passive rotating elements are used, the first and the last passive rotating elements respectively press against the fixing element and the active rotating element, and the first and the second stoppers of the j-th passive rotating element respectively press against the second and the first stoppers of the i-th and the k-th passive rotating elements adjacent to the j-th passive rotating element, wherein 1≦i<j<k≦N, i, j, and k are positive integrals. Suppose the rotation angle regulating device has M second passive rotating elements, wherein M is a positive integral equal to or more than 1. The first and the last of the second passive rotating elements respectively press against another fixing element and another active rotating element. The third and the fourth stoppers of the q-th of the second passive rotating elements respectively press against the fourth and the third stoppers of the p-th and the r-th of the second passive rotating elements adjacent to the q-th of the second passive rotating elements, wherein 1≦p<q<r≦M, p, q, and r are positive integrals. A number of embodiments are disclosed below for elaborating the invention. However, the embodiments of the invention are for detailed descriptions only, not for limiting the scope of protection of the invention.
Referring to
Referring to
As shown in
In the present embodiment, one passive rotating element 230 is used as an exemplification. The fixing element 210 has a first axis hole 212 with a positioning flange 214 disposed around the periphery of the first axis hole 212. The passive rotating element 230 has a through hole 232, and a first stopper 234 and a second stopper 236 are respectively disposed around the periphery on two opposite sides of the through hole 232. The active rotating element 220 has a second axis hole 222 with a bump 224 disposed around the periphery of the second axis hole. As shown in
As shown in
Referring to
When the active rotating element 220 rotates, the bump 224 drives and makes the passive rotating element 230 rotating on the fixing element 210, such that the rotation angle of the active rotating element 220 relative to the fixing element 210 is increased. Suppose the maximum rotation angle of the active rotating element 220 relative to the passive rotating element 230 is θ1 and the maximum rotation angle of the passive rotating element 230 relative to the fixing element 210 is θ2. Then, the maximum rotation angle of the active rotating element 220 relative to the fixing element 210 is equal to θ1+θ2.
Suppose there are N passive rotating elements 230 located between the active rotating element 220 and the fixing element 210, and the maximum rotation angle between two neighboring passive rotating elements 230 is θ3. Then, the maximum rotation angle of the active rotating element 220 relative to the fixing element 210 is equal to θ1+θ2+(N−1)θ3. By the same analogy, the rotation angle of the active rotating element 220 relative to the fixing element 210 is equal to the sum of relative rotation angles between the fixing element 210, the passive rotating elements 230 and the active rotating element 220.
Thus, through the first stopper 234 and the second stopper 236 of the passive rotating element 230, the rotation of the lamp can be stopped at any designated angle. Furthermore, the lamp can achieve a larger rotation angle such as over 360 degrees. Through the increase in the quantity of the passive rotating elements 230, the rotation angle of the active rotating element 220 relative to the fixing element 210 is increased.
A practical embodiment of using the rotation angle regulating device in a rotatable lamp is disclosed below.
Referring to
The first rotation angle regulating device 300 is fixed at a first position A1 on the sidewall 271 of the lamp 270 and at the first corresponding portion A2 of the frame 260. The second rotation angle regulating device 400 is fixed at a second position B1 on the sidewall 272 of the lamp 270 and fixed on the second corresponding portion B2 of the frame 260. The first position A1 and the second position B1 are symmetric with each other on the lamp 270. The first and the second positions A1 and B1 respectively correspond to the first and the second corresponding portions A2 and B2 of the frame 260, such that the irradiation angle of the lamp 270 can be controlled by the first and the second rotation angle regulating devices 300 and 400 to be fixed at a designated angle. In the present embodiment, three lamps 270, controlled by the first and the second rotation angle regulating devices 300 and 400, can change respective illumination angle and provide light sources in different illumination directions or for situational illumination.
Referring to
The quantities of the first and the second passive rotating elements of
As shown in
The second pivoting device 440 comprises a third fixing base 442 and a fourth fixing base 444. The third fixing base 442 is fixed on the second corresponding portion B2 of the frame 260. The third fixing base 442 includes a second pivot 446, which extends towards the second position B1 from the third fixing base 442. In addition, the fourth fixing base 444 is fixed at the second position B1 on the sidewall of the lamp 270, and the second active rotating element 420 is fixed on the fourth fixing base 444.
Thus, through the first and the second rotation angle regulating devices 300 and 400, the lamp 270 can rotate on the frame 260, and the illumination angle of the lamp 270 can be adjusted and fixed at a designated angle.
While the invention has been described by way of example and in terms of the preferred embodiment(s), it is to be understood that the invention is not limited thereto. On the contrary, it is intended to cover various modifications and similar arrangements and procedures, and the scope of the appended claims therefore should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements and procedures.
| Number | Date | Country | Kind |
|---|---|---|---|
| 100138545 | Oct 2011 | TW | national |