LED security light with surrounding lamp shade
11022290 ยท 2021-06-01
Assignee
Inventors
Cpc classification
F21V5/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/0464
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V33/0096
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02B20/40
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
F21V3/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/0471
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2105/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2113/13
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H05B47/11
ELECTRICITY
F21V23/0478
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S8/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H05B47/115
ELECTRICITY
F21V23/0435
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21V23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S8/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V5/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H05B47/11
ELECTRICITY
F21V1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An LED security light includes a base plate, a surrounding lamp shade, an LED illuminator, and a detector assembly. The surrounding lamp shade is fixed on the base plate. The LED illuminator includes a plurality of light emitting diodes, and is fully covered by the surrounding lamp shade. The detector assembly includes at least one lens and a detection circuit, disposed in the center of the base plate of the LED security light. The detector assembly is installed in an accommodating space formed between a cover plate and the base plate of the LED security light. The cover plate is recessed and mounted on an inner border of the surrounding lamp shade such that the cover plate can be illuminated by an edge light emitted from the LED illuminator. The lens is disposed to protrude outwardly through a circular opening of the cover plate.
Claims
1. An LED security light comprising: a base plate; a surrounding LED illuminator assembly, including: an LED illuminator, having a circuit board shaped in a doughnut or a ring, and a plurality of LEDs mounted on the circuit board, a surrounding lamp shade shaped with a central opening to form a surrounding configuration, being made of an optically transmissive material; wherein the LED illuminator is fully covered by the surrounding lamp shade and the surrounding lamp shade is further fastened to the base plate, and a cover plate, being recessed and mounted on an inner border of the surrounding lamp shade, the cover plate formed with a circular opening and designed with a punched out motif, so that the edge light emitted from the inner border of the surrounding LED illuminator assembly is diffused to illuminate the punched out motif; and a detector assembly, including at least one lens and a detection circuit, disposed in the center of the base plate of the LED security light in front of the LEDs of the LED illuminator and encompassed by the surrounding LED illuminator assembly, wherein the detector assembly is installed in an accommodating space formed between the cover plate and the base plate of the LED security light, wherein the lens is disposed through the circular opening of the cover plate; wherein the surrounding LED illuminator assembly is responsive to a first signal from the detector assembly to switch on the LED illuminator.
2. The LED security light according to claim 1, wherein the cover plate is illuminated by an edge light emitted from the inner border of the surrounding LED illuminator assembly.
3. The LED security light according to claim 1, wherein the surrounding lamp shade comprises a doughnut-shaped lamp shade.
4. The LED security light according to claim 3, wherein the doughnut-shaped lamp shade is a circular ring design.
5. The LED security light according to claim 3, wherein the doughnut-shaped lamp shade is further skirted with floral art.
6. The LED security light according to claim 3, wherein the doughnut-shaped lamp shade is a square ring design.
7. The LED security light according to claim 3, wherein the doughnut-shaped lamp shade is an octagonal ring design.
8. The LED security light according to claim 1, wherein the lens includes a dome-shaped lens.
9. The LED security light according to claim 1, wherein the detector assembly includes a passive infrared motion sensor.
10. The LED security light according to claim 1, wherein the detector assembly includes a motion sensor and a light sensor, wherein when an ambient light detected by the light sensor is lower than a first preset value, the light sensor outputs the first signal to a control circuit to manage the LED illuminator to emit a first level light, wherein when the ambient light detected by the light sensor is higher than a second preset value, the light sensor outputs a second signal to the control circuit to switch off the LED illuminator, wherein when a motion signal is detected by the motion sensor, the motion sensor outputs a third signal to the control circuit to manage the LED illuminator to emit a second level light for a predetermined time duration before resuming performing the first level light, wherein the light intensity of the second level light is higher than the light intensity of the first level light.
11. The LED security light according to claim 1, wherein the detector assembly includes a motion sensor and a light sensor, wherein when an ambient light detected by the light sensor is lower than a first preset value, the light sensor outputs the first signal to a control circuit to switch on the LED illuminator, wherein when the ambient light detected by the light sensor is higher than a second preset value, the light sensor outputs a second signal to the control circuit to switch off the LED illuminator, wherein when a motion signal is detected by the motion sensor, the motion sensor outputs a third signal to the control circuit to manage the LED illuminator to emit a first level light for a predetermined time duration before resuming a prior state.
12. The LED security light according to claim 1, wherein the detector assembly includes a light sensor, wherein when an ambient light detected by the light sensor is lower than a first preset value, the light sensor outputs the first signal to a control circuit to switch on the LED illuminator to emit a first level light, wherein when the ambient light detected by the light sensor is higher than a second preset value, the light sensor outputs a second signal to the control circuit to switch off the LED illuminator.
13. The LED security light according to claim 1, wherein the detector assembly includes a motion sensor that senses motion in a 360-degree angle coverage of viewing field via the lens.
14. The LED security light according to claim 1, wherein the detector assembly includes a light sensor that senses an ambient light external to the LED security light.
15. The LED security light according to claim 14, wherein the light sensor senses the ambient light via the lens.
16. The LED security light according to claim 1, wherein the detector assembly includes a video detector and a light sensor for surveilling motion activities in a detection zone day and night, wherein the lens is a camera lens, wherein the video detector further includes a two way wireless communication circuit to receive a wireless external control signal to activate the video detector and to transmit a digital video signal, wherein at dusk level the LED security light is automatically turned on by the light sensor to provide an adequate illumination for performing a video detection.
17. The LED security light according to claim 1, wherein the detector assembly includes a video detector, a motion sensor and a photo cell for surveilling motion activities in a detection zone day and night, wherein the cover plate is further configured with a circular opening for installing a camera lens of the video detector, wherein during a day time when a motion intrusion is detected by the motion sensor, the video detector is activated to continuously photograph a motion intrusion event scene, processing the motion intrusion event scene into a digital video signal, recording the video digital signal and transmitting the video digital signal to a mobile device to perform at least one security alert, wherein at dusk the LED security light is automatically turned on to provide an adequate illumination to perform a video detection.
18. The LED security light according to claim 1, further comprising: a controller assembly, wherein the controller assembly includes at least a driving circuitry for regulating an electric power delivered to the LED illuminator, disposed in the center of the base plate of the LED security light and encompassed by the surrounding LED illuminator assembly; wherein the controller assembly is installed in the accommodating space formed between the cover plate and the base plate of the LED security light.
19. The LED security light according to claim 18, wherein the surrounding LED illuminator assembly comprises at least one doughnut-shaped lamp shade.
20. The LED security light according to claim 19, wherein the doughnut-shaped lamp shade is a circular ring design.
21. The LED light fixture according to claim 19, wherein the doughnut-shaped shade is further skirted with floral art on an outer border thereof.
22. The LED security light according to claim 19, wherein the doughnut-shaped lamp shade is a square ring design.
23. The LED security light according to claim 19, wherein the doughnut-shaped lamp shade is an octagonal ring design.
24. The LED security light according to claim 1, wherein the LED illuminator is disposed inside a housing space defined between the surrounding lamp shade and the base plate, wherein the surrounding lamp shade transmits and diffuses the light emitted by the LED illuminator along the surface of the surrounding lamp shade.
25. The LED security light according to claim 1, wherein the cover plate is detachably fastened with the surrounding lamp shade.
26. The LED security light according to claim 1, wherein the LEDs of the LED illuminator are surface-mounted.
27. The LED security light according to claim 1, wherein the surrounding LED illuminator assembly includes a plurality of LED illuminators configured to jointly encompass the detector assembly, wherein the LEDs of the LED illuminator are evenly allocated to each of the LED illuminators, wherein the base plate is composed of a plurality of bottom plates with each connecting to a corresponding arm structure, wherein each of the LED illuminators includes a lamp shade, the bottom plate and the corresponding arm structure configured to mechanically connect to the bottom plate and to electrically connect to a power source controlled by the detector assembly, wherein the surrounding lamp shade is composed of a plurality of the lamp shades respectively fastened to the bottom plate to create a corresponding housing space for accommodating and installing the allocated LEDs to form each of the LED illuminators.
28. The LED security light according to claim 27, wherein the allocated LEDs are surface-mounted on the base plate with a printed circuit board.
29. The LED security light according to claim 1, wherein the surrounding LED illuminator assembly includes a plurality of LED illuminators configured to jointly encompass the detector assembly, wherein the LEDs of the LED illuminator are evenly allocated to each LED illuminator, wherein each LED illuminator is configured with a lamp shade and an arm structure, wherein the LEDs allocated to each LED illuminator are disposed within a channel configured inside the arm structure, wherein the surrounding lamp shade is composed of a plurality of the lamp shades respectively inserted into the corresponding arm structure and fastened with the arm structure, wherein an edge surface of the end of the each lamp shade transmits light emitted by the LEDs and diffuses the light along the front surface of the lamp shade for each LED illuminator.
30. The LED security light according to claim 18, wherein the controller assembly adjusts a light intensity of the LED illuminator by a user.
31. The LED security light according to claim 18, wherein the LED security light is adaptable to a ceiling fan to form a ceiling fan assembly for controlling a fan speed and illumination characteristics of the ceiling fan assembly, wherein the LED security light is electrically coupled with the ceiling fan to receive external signals to respectively control a speed performance of the ceiling fan and a lighting performance of the LED illuminator, wherein the external control signals are generated from an external control unit operated by a user.
32. The LED security light according to claim 31, wherein the external control unit includes at least two rotary switches to respectively control the speed performance of the ceiling fan and the lighting performance of the LED illuminator, wherein each of the two rotary switches is configured to be connected to a pull chain to be used to respectively operate each of the two rotary switches.
33. The LED security light according to claim 31, wherein the external control unit includes a remote control device.
34. The LED security light according to claim 18, wherein the controller assembly further includes a remote control device integrated with the driving circuitry for receiving a wireless external control signal to adjust an illumination performance of the LED illuminator including at least an on/off control mode, a dimming control mode or a color temperature tuning mode.
35. The LED security light according to claim 34, wherein the remote control device is a transceiver enabling a two way communication between the LED security light and a remote device for controlling an illumination performance on a remote basis.
36. The LED security light according to claim 18, wherein the LEDs of the LED illuminator are divided into two sets of LEDs having different color temperatures, wherein a first set of the LEDs emits light with a high color temperature and a second set of the LEDs emits light with a low color temperature, wherein a color temperature tuning for the LED illuminator is achieved by managing a combination of different light intensities between the first set of the LEDs and the second set of the LEDs, wherein paired combinations of different light intensities between the first set of the LEDs and the second set of the LEDs are preprogrammed for selection by a user.
37. An LED security light comprising: a base plate; a surrounding LED illuminator assembly, including: an LED illuminator, having a circuit board shaped in a doughnut or a ring, and a plurality of LEDs mounted on the circuit board, and a surrounding lamp shade shaped with a central opening to form a surrounding configuration, being made of an optically transmissive material; wherein the LED illuminator is fully covered by the surrounding lamp shade and the surrounding lamp shade is further fastened to the base plate, a controller assembly, installed in the accommodating space formed between cover plate and the base plate of the LED security light; wherein the surrounding LED illuminator assembly is responsive to a signal from the controller assembly to switch on the LED illuminator; wherein the inner side of the cover plate is further covered with a diffuser sheet such that the edge light emitted from the inner border of the surrounding LED illuminator assembly is evenly diffused across the surface of the diffuser sheet of the cover plate and shadow of the controller assembly is not externally visible.
38. An LED security light comprising: a base plate; a surrounding LED illuminator assembly, including: an LED illuminator, having a circuit board shaped in a doughnut or a ring, and a plurality of LEDs mounted on the circuit board, and a surrounding lamp shade shaped with a central opening to form a surrounding configuration, being made of an optically transmissive material; wherein the LED illuminator is fully covered by the surrounding lamp shade and the surrounding lamp shade is further fastened to the base plate, and a detector assembly, including a detection circuit, disposed in the center of the base plate of the LED security light and encompassed by the surrounding LED illuminator assembly, wherein the detector assembly is installed in an accommodating space formed between a cover plate and the base plate of the LED security light, wherein the cover plate is recessed and mounted on an inner border of the surrounding lamp shade; wherein the surrounding LED illuminator assembly is responsive to a first signal from the detector assembly to switch on the LED illuminator; wherein a cylinder base is further attached to the inner border of the surrounding lamp shade, wherein portion of the LEDs are edge-mounted against the surrounding lamp shade on a surface of the cylinder base to radically emit light.
39. The LED security light according to claim 38, wherein the LEDs are edge-mounted on the surface of the cylinder base to illuminate the cover plate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE EXEMPLARY EMBODIMENTS
(25) The aforementioned illustrations and following detailed descriptions are exemplary for the purpose of further explaining the scope of the present disclosure. Other objectives and advantages related to the present disclosure will be illustrated in the subsequent descriptions and appended drawings.
First Embodiment
(26) Reference is made to
(27) The surrounding lamp shade 40 may be made of glass or other transparent or translucent materials known in the art such as acrylic plastic or polycarbonate plastic which can transmit and diffuse light. The surrounding lamp shade 40 is removably mounted on the base plate 90, by using such as regular nuts, regular screws or other decorative fastening elements. As shown in
(28) The LED illuminator 50 includes a circuit board 51 which is doughnut-shaped or ring-shaped, and a plurality of light emitting diodes 52 mounted on the circuit board 51. The detector assembly 60 includes at least one lens 64, a motion detector 65, a light sensor 66 and a printed circuit board 62 jointly disposed in a sensor housing 68 formed by a top cover 61 and a bottom cover 63. The motion detector 65, the light sensor 66 and the printed circuit board 62 are configured to a detection circuit. The top cover 61 has a lens opening 610 formed at the center thereof and allows the lens 64 to protrude outwardly of the sensor housing 68 for detecting a motion intrusion. The bottom cover 63 of the sensor housing 68 is mounted on the base plate 90. The lens 64 preferably is a spherical lens or a dome-shaped lens, and is mounted downwardly at the center of a ceiling pan (the base plate 90) facing the ground to perform the 360-degree motion detection. The lens 64 could be used for a passive infrared (PIR) sensor, and collects infrared rays from the motion intrusion and converges the infrared rays to a focal point where the motion detector 65 is located on the printed circuit board 62 for detecting a motion signal to turn on the LED ceiling mount light 1. Since the surrounding lamp shade 40 is configured with a thin housing, a detection angle of the lens 64 surrounded by the surrounding lamp shade 40 with a gap is not blocked. When a motion signal is detected by the motion sensor 65, the motion sensor 65 outputs a third signal to the control circuit to manage the LED illuminator to emit a second level light for a predetermined time duration before resuming performing the first level light. A light intensity of the second level light is higher than a light intensity of the first level light.
(29) Reference is made to
(30) A light diffuser sheet 20 can attach an inner side of the cover plate 10, and has a shape corresponding to that of the light-pervious holes 12.
(31) The height of the sensor housing 68 of the detector assembly 60 is lower than the height of the surrounding lamp shade 40. The sensor housing 68 of the detector assembly 60 is fully received in the cylindrical inner shell 41 of the surrounding lamp shade 40, and arranged above the cover plate 10. Light from the LED illuminator 50 can be radiated through the light-pervious shell 42 of the surrounding lamp shade 40, and further passes the cylindrical inner shell 41 and then passes through the cover plate 10, so as to illuminate a central portion of the LED security light 1. Therefore, there is no dark shadow around the center of the surrounding lamp shade.
(32) As shown in
(33) The motion detector 65 is used to detect movement of heat generated from a living creature. The light sensor 66 is also positioned on the same printed circuit board 62 to disable the illumination during the day time. The light sensor 66 includes at least one photocell. When an ambient light detected by the light sensor 66 is lower than a first preset value, such as a dusk level, the light sensor outputs the first signal to a control circuit to manage the LED illuminator to emit a first level light. When the ambient light detected by the light sensor is higher than a second preset value, such as a dawn level, the light sensor outputs a second signal to the control circuit to switch off the LED illuminator. In addition, when a motion signal is detected by the motion sensor 65, the motion sensor 65 outputs a third signal to the control circuit to manage the LED illuminator to emit the first level light for a predetermined time duration before resuming a prior state. A few control switches (not shown in
(34) The base plate 90 is attached to a mounting bracket (not shown) which is used to mount the LED ceiling mount light 1 to an electrical junction box.
(35) Compared with the prior art, the present disclosure has at least four advantages as follows. The first advantage is that the LED as a light source only consumes around 15% or less of electric power consumed by an incandescent bulb for the same lumens output. The second advantage is that the thin LED illuminator of light emitting diodes enables the design of lighting fixtures to become much more flexible and stylish without being constrained by the bulky structure of the incandescent bulb. Reference can be made to the compact and stylish look of
(36) Please refer to
Second Embodiment
(37) In the second embodiment as shown in
Third Embodiment
(38) In the third embodiment as shown in
Fourth Embodiment
(39) In the fourth embodiment as shown in
Fifth Embodiment
(40) In the fifth embodiment as shown in
(41) The present disclosure provides a functional platform for designing a compact LED lamp characterized with a surrounding LED illuminator assembly to encompass a functional art, a decorative art or a combination of both a functional art and a decorative art.
Sixth Embodiment
(42) Please refer to a sixth embodiment of the present disclosure as shown in
Seventh Embodiment
(43) Please refer to a seventh embodiment of the present disclosure as shown in
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Eighth Embodiment
(47) In the eighth embodiment 1m as shown in
Ninth Embodiment
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(49) The present disclosure is basically the same as that of first embodiment described in the above except that the controller assembly 60n is provided to replace the detector assembly 60. The controller assembly 60n includes at least a printed circuit board 62n jointly mounted in a housing 68n formed by a top cover 61n and a bottom cover 63n. The top cover 61n has a lens opening 610n formed in a center thereof. The bottom cover 63n of the housing 68n is mounted to the base plate 90. The controller assembly 60n may be also a detector assembly to provide the detection functions as described in the other embodiments. However, the controller assembly may include other circuitries such as an LED driver, dimmer, wireless receiver, wireless transmitter and illumination color tuner to manage various illumination performance of the LED lighting fixture.
Tenth Embodiment
(50) Please refer to the tenth embodiment of the present disclosure as shown in
Eleventh Embodiment
(51) Please refer to the eleventh embodiment of the present disclosure as shown in
(52) Please refer to the twelfth embodiment of the present disclosure as shown in
(53) The descriptions illustrated supra set forth simply the preferred embodiments of the present disclosure; however, the characteristics of the present disclosure are by no means restricted thereto. All changes, alterations, or modifications conveniently considered by those skilled in the art are deemed to be encompassed within the scope of the present disclosure delineated by the following claims.