Light tube apparatus
11248754 ยท 2022-02-15
Assignee
Inventors
Cpc classification
F21V23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V17/104
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21K9/278
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21K9/278
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V17/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A light tube apparatus includes a light passing tube, a light strip, first cap end, a second cap end, a driver circuit board and a manual switch. The light passing tube are connected with the first cap end and the second cap end on opposite sides of the light passing tube. The manual switch is a fixed to the first cap end. The driver circuit board is at least partly enclosed by the first cap end. The manual switch has a switch sheath and a sliding switch. When a user moves the switch sheath, the sliding switch is moved by the switch sheath to change a position of the sliding switch for changing an operation parameter of the driver circuit.
Claims
1. A light tube apparatus, comprising: a light passing tube; a light strip enclosed by the light passing tube emitting a light through the light passing tube; a first cap end and a second cap end fixed to two opposite ends of the light passing tube; a driver circuit board comprising a driver circuit, the driver circuit board being at least partly enclosed by the first cap end; and a manual switch fixed to the first cap end, the manual switch having a switch sheath and a sliding switch, wherein the sliding switch is mounted on the driver circuit board, the first cap end has a switch opening, the switch sheath is inserted through the switch opening to connect to the sliding switch, when a user moves the switch sheath, the sliding switch is moved by the switch sheath to change a position of the sliding switch for changing an operation parameter of the driver circuit, wherein the switch sheath has a receiver groove for enclosing a handle inserted into the receiver groove, wherein the switch sheath has an elastic reverse hook deformed when the switch sheath is inserted into the switch opening and a shape of the reverse hook is elastically recovered when the switch sheath is already plugged to connect to the sliding switch.
2. The light tube apparatus of claim 1, wherein the first cap end has a guiding groove for the driver circuit board to move along the guiding groove to a predetermined assembled position to align the sliding switch to align with the switch opening to connect to the switch sheath.
3. The light tube apparatus of claim 2, wherein the first cap end has a stop rib for stopping movement of the driver circuit board along the sliding groove when the driver circuit board is inserted to reach the predetermined assembled position.
4. The light tube apparatus of claim 1, wherein the switch sheath has a first wing plate and a second wing plate on opposite sides of the switch sheath, when the switch sheath is moved along the switch opening, the first wing plate and the second wing plate keeps the switch opening sealed.
5. The light tube apparatus of claim 4, wherein the first wing plate and the second wing plate are positioned at different heights with respect to a switch top of the switch sheath.
6. The light tube apparatus of claim 1, wherein the switch sheath has a first bottom wall and a second bottom wall arranged on opposite sides of the switch sheath, the first bottom wall, the second bottom wall and the reverse hook together enclose the sliding switch to move the sliding switch.
7. The light tube apparatus of claim 1, wherein there are multiple types of the switch sheath to be selected to inserted into the switch opening, each type of the switch sheath corresponds to an operation status of the light strip.
8. The light tube apparatus of claim 7, wherein the driver circuit detects the type of the inserted switch sheath to determine an optical parameter of the light strip.
9. The light tube apparatus of claim 8, wherein the optical parameter comprises a mixed color temperature rendered by multiple LED modules of the light strip.
10. The light tube apparatus of claim 1, wherein the switch sheath has a function circuit electrically connected to the driver circuit to expand a function of the switch circuit.
11. The light tube apparatus of claim 10, wherein the function circuit comprises a wireless circuit for routing a message received by communicating with an external device.
12. The light tube apparatus of claim 10, wherein the function circuit comprises an antenna electrically connected to the driver circuit.
13. The light tube apparatus of claim 1, wherein the switch sheath has a switch top to be touched by a user to move the switch sheath.
14. The light tube apparatus of claim 13, wherein the switch top has a sub-switch for selecting a working status to control the driver circuit.
15. The light tube apparatus of claim 14, wherein the sub-switch is a button.
16. The light tube apparatus of claim 1, wherein the first cap end has a rotating structure for rotating an angle of the switch sheath with respect to the driver circuit board.
17. The light tube apparatus of claim 1, wherein the second cap end has a supplemental switch for providing a supplemental control of the driver circuit.
18. The light tube apparatus of claim 1, wherein the switch sheath has a light indicator for indicating a working status assigned by the driver circuit.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION
(11) Please refer to
(12) The light passing tube has a light passing cover for a light of the light strip to pass through. In some embodiments, the light passing cover is a 360-degree light passing tube, completely allowing the light to pass through. In some other embodiments, the light passing cover only occupies a portion of the light passing tube. In other words, a portion of surface of the light passing tube does not allow the light to pass through.
(13) The light passing tube 2 are connected with the first cap end 1 and the second cap end 3 on opposite sides of the light passing tube 2.
(14) The light passing cover may have a diffusion layer 211 for diffusing the light of the light strip. In some embodiments, the light strip has a substrate mounted with multiple LED modules. Each LED module has a diffusing lens for diffusing light of the LED module, too.
(15) Please refer to
(16) The LED module 8802 may have multiple types of LED chips integrated as the LED module 8802. The different types of LED chips may be controlled separately by the driver circuit 8810 on the driver circuit board 8808.
(17) There is a sliding switch 8807 connected to a switch sheath 8806 to be moved and changing an operation status of the driver circuit 8810 to generate different lights passing through the light passing cover 8809 of the light passing tube.
(18) Such design provides a wide angle of the light, even the LED modules are disposed on an elongated substrate bar.
(19) In
(20) There are several types of ways for supplying power to the light tube, depending on the design of the light tube socket. In some embodiment, to be compatible with traditional light tubes, the driver circuit board has a driver circuit that needs to convert a high frequency voltage to a working voltage first when generating a driving current supplied to the LED modules of the light strip.
(21) There may be multiple types of the LED modules, e.g. LED modules with different color temperatures, different colors, or different color rendering index. The driver circuit on the driver circuit board controls supplying of the driving currents to the different types of LED modules to mix a desired optical parameter.
(22) However, it is a critical issue to inform the driver circuit how to adjust the optical parameter. Therefore, the manual switch is a fixed to the first cap end. The driver circuit board is at least partly enclosed by the first cap end. In some embodiments, the driver circuit board may be completely concealed by the first cap end. In some other embodiments, a portion of the driver circuit board may be longer than the width of the first cap end and extend into the light passing tube, e.g. to the position 2009 in
(23) The light strip may be connected to the driver circuit board so as to be fixed at a desired position inside the light passing tube.
(24) In
(25) The first cap end 11 has a switch opening 1999. The switch sheath 14 is inserted through the switch opening 1999 to connect to the sliding switch 13. When a user moves the switch sheath 14, the sliding switch 13 is moved by the switch sheath 14 to change a position of the sliding switch 13 for changing an operation parameter of the driver circuit.
(26) For example, the sliding switch may be moved among several options corresponding to different color temperatures. The driver circuit detects the position of the sliding switch to determine current ratio to be applied on different types of LED modules of the light strip to render a corresponding color temperature.
(27) Similarly, the sliding switch may be used to change a color, a light intensity, a color rendering index or other parameter of the light tube apparatus.
(28) In other words, the operation parameter may correspond to one or multiple sets of variables that may be used for adjusting a setting of the driver circuit, not only limited to optical parameters. For example, an emergency or power saving mode may be set via the sliding switch.
(29) In
(30) Specifically, there is a stop rib 114 for preventing the driver circuit board to move over a predetermined position. In the predetermined position, the conductive pins of the driver circuit board may be successfully inserted into the copper pins mentioned above via the two pin holes 112. The guiding groove 113 has two guiding entry points 1152, 1162, two guiding surfaces 1151, 1161 and two guiding blocks 115, 116.
(31) In some embodiments, the first cap end has a stop rib 114 for stopping movement of the driver circuit board along the sliding groove 113 when the driver circuit board is inserted to reach the predetermined assembled position.
(32) In
(33) In some embodiments, the switch sheath 141 has a first wing plate 142 and a second wing plate 144 on opposite sides of the switch sheath. When the switch sheath 141 is moved along the switch opening, the first wing plate 141 and the second wing plate 142 keeps the switch opening sealed.
(34) Please also refer to
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(37) In some embodiments, the switch sheath has a first bottom wall 1412 and a second bottom 1412 wall arranged on opposite sides of the switch sheath. The first bottom wall 1412, the second bottom wall 1412 and the reverse hook 144 together enclose the sliding switch in an enclosing space 1410 to move the sliding switch.
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(40) In some embodiments, the driver circuit detects the type of the inserted switch sheath to determine an optical parameter of the light strip.
(41) In some embodiments, the optical parameter may include a mixed color temperature rendered by multiple LED modules of the light strip. For example, the switch sheath may include a resistor with a resistor value indicating which type of the switch sheath is currently inserted to the light tube apparatus.
(42) In some embodiments, the switch sheath 8900 has a function circuit 8901 electrically connected to the driver circuit to expand a function of the switch circuit.
(43) In some embodiments, the function circuit may include a wireless circuit 8904 for routing a message received by communicating with an external device 8905, e.g. via Wi-Fi, Bluetooth or other communication standard.
(44) In some embodiments, the function circuit may include an antenna 8906 electrically connected to the driver circuit.
(45) In some embodiments, the switch sheath has a switch top 8901 to be touched by a user to move the switch sheath.
(46) In some embodiments, the switch top has a sub-switch for selecting a working status to control the driver circuit.
(47) In some embodiments, the sub-switch is a button. For example, the switch top 8901 is integrated with a button.
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(51) 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.
(52) 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.
(53) 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.