1. Field of the Invention
The instant disclosure relates to an illumination lamp, and more particularly, to an illumination lamp having a light-projecting angle adjusting function.
2. Description of Related Art
Compared to the newly developed light-emitting-diode (LED) lamps, these traditional lamps have the disadvantages of quick attenuation, high power consumption, high heat generation, short service life, high fragility, and being not recyclable. Thus, various high-powered LED structures are created to replace the traditional light sources.
However, conventional LED lamp bulbs suffer some drawbacks. For one thing, the light-projecting angle of the conventional LED lamp bulb is fixed and cannot be adjusted, thus the conventional LED lamp bulb is unable to provide adjustability for proper correction. Therefore, the light-projecting angle of the prior art LED lamp bulbs cannot be corrected and cannot be adjusted according to the different requirements.
One aspect of the instant disclosure relates to an illumination lamp having a light-projecting angle adjusting function, thus the light-projecting angle of the illumination lamp can be adjusted according to the different requirements.
One of the embodiments of the instant disclosure provides an illumination lamp having a light-projecting angle adjusting function, comprising: a base unit, a light-emitting unit, a retaining unit and a pressing unit. The base unit includes a base body, an electrical connection element disposed on the bottom portion of the base body, and a retaining module disposed on the top portion of the base body, wherein the retaining module has a plurality of retaining grooves arranged as a surrounding shape and a surrounding receiving groove communicated with the retaining grooves and formed under the retaining grooves. The light-emitting unit is disposed on the base unit and electrically connected to the electrical connection element. The retaining unit includes a movable retaining element penetrating through the light-emitting unit and moved along with the light-emitting unit, wherein the movable retaining element has a first end portion and a second end portion corresponding with each other, and the first end portion selectively positioned in one of the retaining grooves for positioning the light-emitting unit or movably disposed in the surrounding receiving groove for rotating the light-emitting unit. The pressing unit includes a pressing element and an elastic element abutted against the bottom portion of the pressing element, wherein the pressing element has a pressing portion exposed outwardly from the light-emitting unit, and the second end portion of the movable retaining element passes through the elastic element to connect with the bottom portion of the pressing element.
Another one of the embodiments of the instant disclosure provides an illumination lamp having a light-projecting angle adjusting function, comprising: a base unit, a light-emitting unit and a retaining unit. The base unit includes a retaining module, wherein the retaining module has a plurality of retaining grooves arranged as a surrounding shape and a surrounding receiving groove. The light-emitting unit is disposed on the base unit. The retaining unit includes a movable retaining element penetrating through the light-emitting unit and moved along with the light-emitting unit, wherein the movable retaining element has a first end portion and a second end portion corresponding with each other, and the first end portion selectively positioned in one of the retaining grooves for positioning the light-emitting unit or movably disposed in the surrounding receiving groove for rotating the light-emitting unit.
Therefore, the first end portion of the movable retaining element can be selectively positioned in one of the retaining grooves for positioning the light-emitting unit or movably disposed in the surrounding receiving groove for rotating the light-emitting unit, thus the light-projecting angle of the illumination lamp can be adjusted freely according to the different requirements.
To further understand the techniques, means and effects of the instant disclosure applied for achieving the prescribed objectives, the following detailed descriptions and appended drawings are hereby referred, such that, through which, the purposes, features and aspects of the instant disclosure can be thoroughly and concretely appreciated. However, the appended drawings are provided solely for reference and illustration, without any intention to limit the instant disclosure.
Referring to
Referring to
For example, the electrical connection element 11 may be an electrical connector having a securing screw 110 formed on the external surrounding surface of the electrical connector, thus the electrical connection element 11 of the illumination lamp Z can be positioned in a power socket (not shown) by rotating to obtain power supply. In addition, the base unit 1 includes a drive IC module 13 electrically connected between the electrical connection element 11 and the light-emitting unit 2 in order to transform voltage from AC (alternating current) into DC (Direct current), thus the instant disclosure can provide DC for the light-emitting unit 2.
For example, referring to
Referring to
For example, the heat-dissipating body 20 has a plurality of heat-dissipating fins 200 disposed on the bottom portion thereof and extended downwardly. The light-emitting module 21 includes a circuit substrate 210 and a plurality of light-emitting elements 211 disposed on the circuit substrate 210 and electrically connected to the circuit substrate 210, and each light-emitting element 211 may be composed of at least one LED chip (such as a blue LED chip for generating blue light beams) and a package colloid body (such as a phosphor colloid body) for covering the LED chip. In addition, the light-transmitting lampshade 22 can be formed as an arch shape and includes a plurality of diffusion particles mixed inside the light-transmitting lampshade 22 in order to increase light-emitting efficiency. The light-transmitting lampshade 22 has two first retaining structures 220 respectively disposed on two opposite lateral sides thereof, and the heat-dissipating body 20 has two second retaining structures 201 respectively disposed on two opposite lateral sides thereof. The two retaining structures 220 can be respectively mated with the two second retaining structures 201, thus the two opposite lateral sides of the light-transmitting lampshade 22 can be respectively retained with the two opposite lateral sides of the heat-dissipating body 20. However, the light-emitting unit 2 used in the instant disclosure is merely an example and is not meant to limit the instant disclosure.
Referring to
For example, the first end portion 301 of the movable retaining element 30 has two retaining blocks 3010 corresponding to each other, and the two retaining blocks 3010 can be respectively retained in the corresponding first groove 120A and the corresponding second groove 120B that face each other. In other words, the first end portion 301 of the movable retaining element 30 can be received in the corresponding retaining groove 120 and between the corresponding first groove 120A and the corresponding second groove 120B that face each other, thus the light-emitting unit 2 is positioned and the light-projecting angle of the illumination lamp Z cannot be adjusted. Furthermore, the main body 303 has a maximum width W smaller than a minimum distance D between the first gear structure 12A and the second gear structure 12B, thus the main body 303 of the movable retaining element 30 can easily pass through the first gear structure 12A and the second gear structure 12B for moving freely the first end portion 301 of the movable retaining element 30 in the surrounding receiving groove 121, and the light-emitting unit 2 is released at the same time for adjusting the light-projecting angle of the illumination lamp Z. However, the movable retaining element 30 used in the instant disclosure is merely an example and is not meant to limit the instant disclosure.
Referring to
For example, because the lateral cover 23 has a through opening 230, the pressing portion 401 can pass through the through opening 230. The pressing element 40 has a position-limiting portion 402 disposed under the pressing portion 401 and contacting the bottom portion of the lateral cover 23, thus the pressing portion 401 can pass through the through opening 230, but the pressing element 40 cannot be escaped from the lateral cover 23. In addition, the second end portion 302 of the movable retaining element 30 can be connected to the position-limiting portion 402, for example, the second end portion 302 can be embedded into the position-limiting portion 402 and combined with the position-limiting portion 402. Furthermore, the elastic element 41 can be disposed between the position-limiting portion 402 and the heat-dissipating body 20, and the elastic element 41 may be an elastic piece or spring, thus the position-limiting portion 402 of the pressing element 40 can continuously abut against the bottom portion of the lateral cover 23. Such as the elastic piece, the elastic element 41 has a plane base portion (not labeled) disposed on the heat-dissipating body 20 and an elastic portion (not labeled) extended upwardly and obliquely from the plane base portion to continuously abut against the bottom portion of the position-limiting portion 402. The plane base portion has a first opening, the elastic portion has a second opening corresponding to the first opening, thus the second end portion 302 of the movable retaining element 30 can respectively pass through the first opening the second opening of the elastic element 40 to contact the bottom portion of the pressing element 40. However, the elastic element 40 or the elastic element 41 used in the instant disclosure is merely an example and is not meant to limit the instant disclosure.
Moreover, referring to
Furthermore, referring to
In conclusion, the first end portion 301 of the movable retaining element 30 can be selectively positioned in one of the retaining grooves 120 for positioning the light-emitting unit 2 or movably disposed in the surrounding receiving groove 121 for rotating the light-emitting unit 2, thus the light-projecting angle of the illumination lamp Z can be adjusted freely according to the different requirements.
The above-mentioned descriptions merely represent the preferred embodiments of the instant disclosure, without any intention or ability to limit the scope of the instant disclosure which is fully described only within the following claims. Various equivalent changes, alterations or modifications based on the claims of instant disclosure are all, consequently, viewed as being embraced by the scope of the instant disclosure.
Number | Date | Country | Kind |
---|---|---|---|
100143919 | Nov 2011 | TW | national |