Wall grazer apparatus
11177095 · 2021-11-16
Assignee
Inventors
- Jinhui Liang (Xiamen, CN)
- Yongzhe Dong (Xiamen, CN)
- Xiaoliang Wen (Xiamen, CN)
- Shouqiang Hou (Xiamen, CN)
Cpc classification
F21V23/003
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/0464
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V29/89
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V14/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V21/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V29/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21V29/73
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V29/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V29/89
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V14/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A wall grazer apparatus is provided. The wall grazer apparatus has a heat sink platform, a light source, a lens, a driver and a main housing. The heat sink platform has a main portion and a tilt portion. The light source is mounted on the tilt portion. The lens is disposed above the light source to convert an original light emitted from the light source to an output light. The driver converts an external power to a driving current. The driving current is supplied to the light source. The main housing disposes the heat sink platform, the light source, the lens and the driver. When the main housing is fixed to a first surface, the output light is projected on a second surface for forming a visual effect.
Claims
1. A wall grazer apparatus, comprising: a heat sink platform having a main portion and a tilt portion; a light source mounted on the tilt portion; a lens disposed above the light source for converting an original light emitted from the light source to an output light; a driver for converting an external power to a driving current supplied to the light source; and a main housing for disposing the heat sink platform, the light source, the lens and the driver, when the main housing being fixed to a first surface, the output light being projected on a second surface for forming a visual effect, wherein the light source and the lens form a first module, the heat sink platform and the driver are formed as a second module, the first module is detachably connected to the second module for replacing a different first module with different parameters.
2. The wall grazer apparatus of claim 1, wherein the heat sink platform is a metal plate with a bent portion as the tilt portion, the main portion is parallel to the first surface.
3. The wall grazer apparatus of claim 1, wherein the tilt portion is manually rotatable with respect to the main portion of the heat sink platform.
4. The wall grazer apparatus of claim 1, wherein the first module has a module housing with a tilt block for changing a final tilt angle of the light source with respect to the second surface when the first module is attached to the heat sink platform.
5. The wall grazer apparatus of claim 1, further comprising an interface for plugging an attached device.
6. The wall grazer apparatus of claim 1, wherein the main housing has a manual switch connected to the driver for changing a control setting of the light source.
7. The wall grazer apparatus of claim 1, wherein the driver is connected to a color temperature sensor for capturing an environment color temperature to adjust colors of the output light of the light source.
8. The wall grazer apparatus of claim 1, wherein the driver controls the light source to generate a variation of the output light over time based on a stored script.
9. The wall grazer apparatus of claim 1, wherein the driver is connected to a wind sensor for controlling the output light to create a flowing effect according to a detected wind.
10. The wall grazer apparatus of claim 1, wherein the driver controls the light source to start and stop the light source emitting the output light by co-working with another neighboring wall grazer apparatus to cool down periodically.
11. The wall grazer apparatus of claim 1, wherein a memory card is detachably connected to the driver for providing a schema for controlling the light source.
12. The wall grazer apparatus of claim 11, wherein the driver shares data of the scheme to another wall grazer apparatus.
13. The wall grazer apparatus of claim 11, wherein the driver contains a server for providing wireless access to another wall grazer apparatus for sharing control data.
14. The wall grazer apparatus of claim 1, wherein the driver synchronizes with another wall grazer apparatus together to show a light effect.
15. The wall grazer apparatus of claim 1, wherein when a mobile device sends a calling message to the driver, the driver controls the light source to emit a response light to inform a position of the wall grazer apparatus.
16. The wall grazer apparatus of claim 1, further comprises a distance switch for adjusting a distance between the light source and the lens.
17. The wall grazer apparatus of claim 1, further comprises a rotation switch for adjusting a relative angle between the light source and the lens.
18. The wall grazer apparatus of claim 1, wherein the light source has multiple sets of LED modules, each set of the LED modules corresponds to a different lens set for producing a different light pattern.
19. The wall grazer apparatus of claim 18, wherein the multiple sets of LED modules are operable independently to mix a desired effect.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION
(22) In
(23) In some embodiments, the heat sink platform is a metal plate with a bent portion as a tilt portion. The main portion is parallel to the first surface.
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(28) The interface may be a proprietary interface or a general interface, e.g. a USB interface suitable for connecting various function modules easily and conveniently. For example, a USB battery pack may be inserted to the interface 867 to supply power to the light source.
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(38) In some embodiments, the driver controls the light source to emit a response light when a mobile device sends a calling message. For example, the mobile phone may sends a signal to activate a stored procedure of the wall grazer apparatus to function accordingly to show a specific pattern of visual effect.
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(40) In some embodiments, the wall grazer apparatus has a rotation switch. The rotation switch is capable of adjusting an angle between the light source and the lens.
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(42) In some embodiments, the multiple sets of LED modules are operable independently to mix a desired effect.
(43) Four embodiments are provided below for more detailed explanation of the concept of these embodiments.
First Embodiment
(44) Please refer to
(45) The housing 1 is fixed with the base structure with a fastener. A waterproof foam 21 is stuffed between the base structure and the housing 1 to guarantee a waterproof sealing. The housing 1 has an illuminating surface 11 and an installation surface 12. The illuminating surface 11 has a window 13 corresponding with the lens 9. The illuminating surface of the lens 9 embeds window 13. The protruding buckle bar 93 positions the lens 9 to guarantee the illuminating surface of the lens 9 is in parallel with the illuminating surface 11. The installation surface 12 is in parallel with the base structure. The angle between the illuminating surface 11 and the installation surface 12 is 90˜160° to guarantee the light emitted on the wall has no shadow and dark area, and further increase the quality of the light and the application of the product.
(46) Please refer to
(47) The installation plate 3 has a hole to connect with a grounding wire 22. The installation plate 3 has an opening part 31. The opening part 31 is set on the rim of the driver top cover 41. The installation plate 3 extrudes the fixing spring 6 to let the fixing spring 6 be elastic. The installation plate 3 connects with the fixing spring 6 and attaches with the heat sink platform 7. The installation plate 3 has multiple sets of U-shaped installation hole to fit different open hole. The fixing spring 6 has a fixing portion and an elastic clip portion. The fixing portion is locked with the driver bottom cover 42. The elastic clip portion extends from the fixing portion to the rim of the driver top cover 41. Both ends of the elastic clip is near the driver top cover 41 while the middle part protrudes against the direction of the center of the driver top cover 41. The fixing spring 6 has a screw on the fixing portion. The driver bottom cover 42 has a screw on the corresponding place. A window of the driver top cover 41 has a screw base 231 having a hole downward.
(48) In this embodiment, the driver top cover 41 is a cylinder while the driver bottom cover 42 is a matching circular. The opening part 31 is a matching circular to the driver top cover 41. A side wall of the driver top cover 41 caves in inwards to form an opening groove 43. The elastic clip portion is on the protruding part of the opening groove 43 extending to the side wall of the driver top cover 41.
(49) The following procedures illustrate how to install an embodiment.
(50) Step One. A light source 8 is fixed on the tilt portion 71 of the heat sink platform 7 by a screw 23.
(51) Step Two. A driver bottom 42 is fixed on the surface of the heat sink platform 7 to weld a power line of a driver 5 to corresponding positive and negative terminals of the light source 8. A fixing spring 6 is fixed with the driver bottom cover 42 and a driver top cover 41.
(52) Step Three. A lens 9 is placed in a corresponding positioning hole of the light source 8.
(53) Step Four. A housing 1 is correspondingly buckled with the heat sink platform 7 by the screw 23.
(54) Step Five. An opening part 31 of an installation plate 3 passes through the driver top cover 41 to joint to the direction of the heat sink 7. A side wall of the opening part 31 extrudes the fixing spring 6 to let the fixing spring 6 be in the opening part 31. When the installation plate 3 moves downwards, the fixing spring 6 resets, and the installation plate 3 attaches with the heat sink platform 7.
(55) Step Six. Seal by waterproof foam 21.
Second Embodiment
(56) The differences between the first embodiment and the second embodiment is as follows.
(57) A driver 5 has a driver board. Both ends of the driver board has windows to let the screw 23 pass through. The driver board has a potentiometer or a switch. A light source 8 adopts at least two light sources and abandons single lighting mode. An apparatus provided is capable of switching at least two color temperatures by control device 51 such as manual switch, digital switch and TRIAC switch to enable discrete switch or continuous switch.
Third Embodiment
(58) The difference between the third embodiment and the second embodiment is as follows.
(59) A driver 5 has an AI smart card circuit 52 to switch color temperature by remote control or cellphone application and to control the power to enable light adjustment.
Fourth Embodiment
(60) The difference between the fourth embodiment and the first embodiment is as follows.
(61) This embodiment adopts a rectangular housing 1. A heat sink platform 7 is a square. Multiple of appearances is provided to fit different installation needs. A lens 9 is elongated.
(62) The foregoing description, for purpose of explanation, has been described with reference to specific embodiments. However, the illustrative discussions above are not intended to be exhaustive or to limit the invention to the precise forms disclosed. Many modifications and variations are possible in view of the above teachings.
(63) The embodiments were chosen and described in order to best explain the principles of the techniques and their practical applications. Others skilled in the art are thereby enabled to best utilize the techniques and various embodiments with various modifications as are suited to the particular use contemplated.
(64) Although the disclosure and examples have been fully described with reference to the accompanying drawings, it is to be noted that various changes and modifications will become apparent to those skilled in the art. Such changes and modifications are to be understood as being included within the scope of the disclosure and examples as defined by the claims.