The present invention relates to a light assembly, and more particularly, to a light assembly that includes two control members, and multiple light assemblies are controlled by wireless singles via the control members.
The conventional light assembly is disclosed in
It is noted that all of the light tubes 81 have to be connected to the second power cables 82 and the second connection cable 83 so as to be turned on and turned off simultaneously. The length of each of the second power cables 82 and each of the second connection cable 83 restricts the locations of the light tubes 81. The second power cables 82 and the second connection cable 83 also make the light assembly to be mess and not organized.
The present invention intends to provide a light assembly that includes multiple light units, and the light units are controlled by wireless signals to eliminate the shortcomings mentioned above.
The present invention relates to a light assembly which comprises multiple first units and multiple controller members. Each first unit has multiple light members received therein. Each first unit has two control members connected to two ends thereof. The control members and the power source is electrically connected wirelessly so that the control members controls the operation of the light members. Two control members communicate with each other by a common frequency. Multiple light assemblies are electrically connected to each other by the control members using the common frequency.
The advantages of the present invention are that the control members and the power source is electrically connected wirelessly so that the control members controls the operation of the light members. The control members communicate with each other by a common frequency. The control members control the light members to be turned on or turned off simultaneously. Multiple light assemblies are electrically connected to each other by the control members using the common frequency. The light assemblies are arranged without worry of the length of power cables and connection cables.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings which show, for purposes of illustration only, a preferred embodiment in accordance with the present invention.
Referring to
Two second units 2 are respectively connected to two ends of each of the first units 10 so as to seal the two ends of the first unit 10. Each second unit 2 includes an end member 20, a first control member 30, a second plug 40 and a third plug 50. The end member 20 is a cylindrical member and mounted to the first unit 10 corresponding thereto. At least one seal ring is located between the end member 20 and each of the two ends of the first unit 10 so as to be water-tight.
For each second unit 2, the end member 20 has a first room 21 and a second room 22 respectively defined in two ends thereof. The first room 21 is a rectangular recess and communicates with the second room 22 which is a cylindrical recess. The end member 20 further has a third room 23 defined radially therein, and the third room 23 communicates with the first room 21 and the second room 22. The axis of the third room 23 is perpendicular to the axis of the second room 22. The third room 23 is a cylindrical recess.
The first control member 30 is received in the first room 21 of the end member 20 and can be charged by a power source by wireless way. The first control member 30 partially protrudes beyond the first room 21 of the end member 20. The first control member 30 provides power to the light members 11 so as to turn on or turn off the light members 11 simultaneously. The first control member 30 is electrically connected to the light members 11 by wireless way of wired way. It is noted that the multiple first control members 30 are electrically connected to each other wirelessly by using a common frequency so as to control the multiple first units 10. In this embodiment, the common frequency is 433.2 MHZ.
The second plug 40 is received in the second room 22 of the end member corresponding thereto. The second plug 40 electrically connected to the first control member 30 by wireless way or by wired way. In this embodiment, the second plug 40 is a female plug which can be any female plug in the market.
The third plug 50 is located in the third room 23 of the end member 20 and is electrically connected to the first control member 30 by wireless way of by wired way. The third plug 50 is a female plug which can be any female plug in the market.
Multiple light assemblies are electrically connected to each other by the first control members 30 using the common frequency. Each first control member 30 can control the light members 11 to be turned on or turned off simultaneously.
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Yet another embodiment shows that the second unit 2 does not have the second and third plugs 40, 50. In other words, the end member 20 does not have the second and third rooms 22, 23.
A further embodiment shows that that is a second control member that controls all of the first control members 30 to activate and de-activate a portion of the first control members 30, such that a portion of the light members 11 are activated, and a portion of the light members 11 are not activated.
The advantages of the present invention are that the first control members 30 can be charged by a power source by wireless way. The multiple first control members 30 are electrically connected to each other wirelessly by using a common frequency so as to control the multiple first units 10. Each of the first control members 30 provides power to the light members 11 so as to turn on or turn off the light members 11 simultaneously. The arrangement of the light assemblies are not restricted by the connection cables.
The first power cable 60 is connected between the third plug 50 and the power source so as to provide electric power to the light members 11. Multiple light assemblies are electrically connected to each other by way of wireless way or by wired way.
A first connection cable 70 is used to connect between two respective second plugs 40 of two light assemblies. That is to say, by using the first connection cable 70, the light assemblies are functioned normally even if the first control members cannot received the frequency.
The second unit 2 has second and third plugs 40, 50, so that the light assemblies can be electrically connected to each other by wireless way or by wired way.
Each of the first units 10 has a first plug 12 connected to each of the two ends thereof. The first unit 10, the light members 11 and the first plug 12 can be the conventional ones in the market. The second units 2 each include a fourth plug 51 which is connected to the first room 21. In other words, the second unit 2 is modularized and connected to the first unit 10 to allow the conventional light assemblies to be connected to each other wirelessly, and charged wirelessly.
While we have shown and described the embodiment in accordance with the present invention, it should be clear to those skilled in the art that further embodiments may be made without departing from the scope of the present invention.
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Number | Date | Country | |
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20190208606 A1 | Jul 2019 | US |