Plant Growth Lamp Module and Plant Growth Lamp Using the Same
20180283671 ยท 2018-10-04
Inventors
Cpc classification
F21V23/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H01R33/94
ELECTRICITY
F21Y2113/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S2/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V29/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/001
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H01R33/92
ELECTRICITY
Y02P60/14
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F21V23/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V29/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A01G7/04
HUMAN NECESSITIES
H01R33/92
ELECTRICITY
Abstract
The present invention provides a plant growth lamp module and a plant growth lamp using this module. A plurality of the plant growth lamp modules can be connected. The module comprises a casing; a power supply in the casing; a male socket and a female socket disposed on two inner sides of the casing respectively and electrically connected to the power supply; and a lighting unit disposed in the casing and electrically connected to the power supply to emit light after energizing, which is transmitted outwards via a hole. The plant growth lamp in the present invention may have various adjustments to meet growth needs of various kinds of plants. Further, the plant growth lamp in the present invention enables plants to carry out photosynthesis even in an environment without sunlight and stimulate healthy growth of plants.
Claims
1. A plant growth lamp module, in which a plurality of the modules can be mutually connected in a detachable manner; each module comprising: a casing having a hole on its one end face for light passing therethrough; a power supply disposed in the casing for providing electric energy; a female socket disposed on an inner side of the casing, which is electrically connected to the power supply and is connectible to a male socket of another said plant growth lamp module; a male socket disposed on another inner side of the casing, which is electrically connected to the female socket and is connectible to a female socket of another said plant growth lamp module; and a lighting unit disposed in the casing and electrically connected to the power supply to emit light after energizing, which is transmitted outwards via the hole.
2. The module according to claim 1, wherein the casing comprises a first casing member and a second casing member, which are mutually combined.
3. The module according to claim 1, wherein the longitudinal cross section of the casing is in a shape of , square or rectangle.
4. The module according to claim 1, further comprising a radiator disposed in the casing to improve heat dissipation of the lighting unit.
5. The module according to claim 1, further comprising a lens disposed on the hole of the casing in a fixed manner, through which light emitted by the lighting unit is transmitted.
6. The module according to claim 1, wherein the female socket and the power supply are connected by a cable, and the female socket and the male socket are also connected by a cable.
7. The module according to claim 1, wherein the female socket and the male socket are respectively provided with a plurality of slots to avoid outage.
8. The module according to claim 1, wherein the lighting unit is an LED light.
9. A plant growth lamp comprising a plurality of plant growth lamp modules and empty modules, wherein each plant growth lamp module comprises: a casing having a hole on its one end face for light passing therethrough; a power supply disposed in the casing for providing electric energy; a female socket disposed on an inner side of the casing, which is electrically connected to the power supply and is connectible to a male socket of another said plant growth lamp module; a male socket disposed on another inner side of the casing, which is electrically connected to the female socket and is connectible to a female socket of another said plant growth lamp module; and a lighting unit disposed in the casing and electrically connected to the power supply to emit light after energizing, which is transmitted outwards via the hole; and wherein each empty module is disposed between two adjacent plant growth lamp modules and each empty module comprises: a housing with a shape matching the casing of the plant growth lamp module; a female jack disposed on an inner side of the housing, and connected to the male socket of one of the plant growth lamp modules; and a male jack disposed on another inner side of the housing, electrically connected to the female jack, and connected to the female socket of one of the plant growth lamp modules.
10. The plant growth lamp according to claim 9, wherein the lighting units of a plurality of the plant growth lamp modules of the plant growth lamp are configured to have different power respectively and emit lights with different wavelengths and different color parameters.
11. The plant growth lamp according to claim 9, wherein in the empty modules, the female jacks and the male jacks are connected with cables.
12. The plant growth lamp according to claim 9, wherein the casing comprises a first casing member and a second casing member, which are mutually combined.
13. The module according to claim 9, wherein the longitudinal cross section of the casing is in a shape of , square or rectangle.
14. The module according to claim 9, further comprising a radiator disposed in the casing to improve heat dissipation of the lighting unit.
15. The module according to claim 9, further comprising a lens disposed on the hole of the casing in a fixed manner, through which light emitted by the lighting unit is transmitted.
16. The module according to claim 9, wherein the female socket and the power supply are connected by a cable, and the female socket and the male socket are also connected by a cable.
17. The module according to claim 9, wherein the female socket and the male socket are respectively provided with a plurality of slots to avoid outage.
18. The module according to claim 9, wherein the lighting unit is an LED light.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0027] The present invention will be further illustrated with reference to the accompanying drawings and embodiments:
[0028]
[0029]
[0030]
[0031]
[0032]
DETAILED DESCRIPTION OF THE INVENTION
[0033] By referring to the following embodiments, the structures of the plant growth lamp module and the plant growth lamp using this module in the present invention are illustrated.
[0034] Terms socket and jack herein refer to a device through which one or more than one wire may be inserted and a circuit can be connected.
[0035] As shown in
[0036] The casing 110 may comprise a first casing member 111 and a second casing member 112 in order for easy installation, which are definitely matched each other. During assembling, they can be installed simply through combination. For example, the first casing member 111 and the second casing member 112 are provided with snap joints respectively and fixed into an integral body in a snap-in manner. The casing 110 is made of insulating and waterproof material, such as plastic material, like PE, PP or PVC, which can get and even fulfill the purpose of cost control, easy installation of the invention.
[0037] The casing 110 may adopt various appropriate shapes provided that it can combine a plurality of plant growth lamp modules 10 into one body through the male sockets 130 and the female sockets 120. For example, the cross section of the casing 110 may be square or rectangular. In an embodiment, the shape of the longitudinal cross section of the casing 110 is so that each of the upper and lower parts of the casing has a boss. The male socket 130 and the female socket 120 are respectively fixed on two inner sides of the casing 110. To be specific, the male socket 130 is located inside the boss in the upper part of the casing and its plug sticks out of the casing 110, while the female socket 120 is located inside the boss in the lower part of the casing 110.
[0038] A hole 113 is disposed on one surface of the casing 110 so that the light emitted by the lighting unit 140 can be transmitted outwards via the hole 113 of the casing 110.
[0039] The power supply 160 is disposed in the casing 110 to provide electric energy to the lighting unit 140. The female socket 120 and the male socket 130 are provided with a plurality of slots to avoid failure of light emission in case of outage. Further, the power supply 160 further plays a role of voltage transformation. In other words, when the module 10 is connected to an external power supply for use, power may be outputted and supplied to the lighting unit 140 after voltage transformation of the power supply 160.
[0040] According to one embodiment of the invention, the module 10 further comprises a lens 170. It is installed on the hole 113 arranged on the casing 110 and is aligned with the lighting unit 140. The light emitted by the lighting unit 140 is condensed after it passes the lens 170 so that the emitted light will not diverge and the lighting effect is even better.
[0041] The lighting unit 140 can use different lamps, such as LED lights or halogen lights. In the plant growth lamp module 10, lamps with different luminance and different power may be configured according to needs or may be configured to emit lights with different wavelengths and different color parameters to coordinate with the growth needs of different plants in different areas and different seasons.
[0042] Preferably, inside the module 10, only cables are used to realize electric connection. For example, the male socket 130 and the female socket 120 are connected with a cable 191, the female socket 130 and the power supply 160 are connected with a cable 192, and the lighting unit 140 and the power supply 160 are connected with a cable 190, as shown in
[0043] The plant growth lamp module 10 further comprises a radiator 150 disposed in the casing 110. For example, the radiator 150 may be installed on the casing 110, face directly the lighting unit 140 and be fixed by screws.
[0044] All of the foregoing components in the casing 110 may be fixed in an appropriate manner. For example, they are fixed by screws 180. Alternatively, in the casing 110, a plurality of grids adaptable to the sizes of all components may be disposed to snap-fit all of the foregoing components into these grids.
[0045] As shown in
[0046] a housing with a shape matching the casing 110 of the plant growth lamp module; a female jack disposed on an inner end of the housing and connected to the male socket 130 of the plant growth lamp module; and a male jack disposed on another inner end of the housing, and connected to the female jack 120 and the female socket 120 of the plant growth lamp module.
[0047] A plug 30 of an external power supply is connected to one of the modules in the plant growth lamp in an inserted manner so that the lamp is connected to an external circuit and power is supplied to the lighting units 140 after voltage transformation of the internal power supply 160.
[0048] Apparently, the empty modules 20 only plays a role of circuit connection, so they only need to realize mutual connection of sockets, and match the plant growth lamp modules 10 in shape. For example, the empty modules 20 adopts a shape consistent with the shape of the plant growth lamp modules 10, for example, an empty module 20 only comprises a housing, a male socket 13 or a female socket 120 of the plant growth lamp module 10, as well as connecting wires.
[0049] If it is necessary, the lighting unit 140 of the plant growth lamp module 10 in the plant growth lamp is configured to be a lighting unit emitting lights with different wavelengths, different color parameters and different power.
[0050] The plant growth lamp modules 10 and the empty modules 20 can be combined together in any quantity based on real situation. By combining the plant growth lamp modules 10 and the empty modules 20 with different parameters together, a combined light source emitting lights with different wavelengths, different colors and different positions can be obtained to adapt to the needs of plants of different varieties during different growing periods in flexible way.
[0051] To sum up, the plant growth lamp in the present invention can use various adjustments to meet growth needs of various kinds of plants. Further, the plant growth lamp in the present invention enables plants to carry out photosynthesis even in an environment without sunlight and stimulate healthy growth of plants. Moreover, the plant growth lamp is characterized by simple structure, energy conservation, environmental protection, low cost and adjustable use.
[0052] It should be appreciated that the foregoing descriptions are preferred embodiments of the present invention and are not intended to limit the present invention. For those skilled in the art, the present invention may have various changes and modifications. All modifications, identical replacements and improvements made without departing from the spirit and principle of the present invention shall be within the protection scope of the present invention.