Exit light with plug-in housing
11473766 · 2022-10-18
Assignee
Inventors
Cpc classification
H02G3/16
ELECTRICITY
F21V23/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/008
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V17/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V21/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V14/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S9/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21V23/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V21/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V14/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H02G3/16
ELECTRICITY
F21S9/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V17/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A lighting device includes a housing and a light emitter coupled to the housing. A mounting plate is coupled to the housing and includes a front surface facing the housing and a rear surface opposite the front surface. The rear surface includes a snap-fit mounting feature and a rear connector portion. A first connector is coupled to the rear connector portion and operatively coupled to the light emitter.
Claims
1. A lighting device comprising: a housing having a front wall and containing a high voltage connection; a light emitter coupled to the housing; a battery compartment positioned in the housing and isolated from the high voltage connection, the battery compartment having an opening providing access to the compartment through the front wall; a battery positioned in the compartment and accessible through the opening; a mounting plate coupled to the housing opposite the front wall, the mounting plate having a front surface facing the housing and a rear surface opposite the front surface, the rear surface including a rear connector portion; and a plug-style first connector coupled to the rear connector portion and operatively coupled to the light emitter.
2. The lighting device of claim 1, wherein the mounting plate includes a snap-fit mounting feature having a cantilevered mounting arm.
3. The lighting device of claim 1, wherein the rear connector portion includes a slot and the first connector extends through the slot.
4. The lighting device of claim 1, wherein the first connector is configured to mate with a corresponding second connector.
5. The lighting device of claim 4, wherein the corresponding second connector is attached to a junction box.
6. The lighting device of claim 4, wherein the first connector includes a female plug.
7. The lighting device of claim 1, wherein the mounting plate is snap-fit to the housing.
8. The lighting device of claim 6, wherein the mounting plate includes a cantilevered arm extending from the front surface.
9. A lighting device comprising: a housing having a front wall, a first compartment, a second compartment, and a second compartment opening providing access to the second compartment through the front wall; a lamp connected to the housing; a circuit connected to a high voltage connection positioned in the first compartment; a battery positioned in the second compartment; a low voltage connection extending from the circuit into the second compartment and connected to the battery; a mounting plate coupled to the housing and having a front surface facing the housing and a rear surface opposite the front surface, the rear surface including a rear connector portion; a first connector coupled to the rear connector portion and operatively connected to the lamp; and a second connector configured to be coupled to a power supply, wherein the first connector is configured to mate with the second connector.
10. The lighting device of claim 9, wherein the rear connector portion includes a slot and the first connector extends through the slot.
11. The lighting device of claim 9, wherein the first connector includes a female connector and the second connector includes a male connector.
12. The lighting device of claim 9, wherein the second connector is coupled to a mounting bracket.
13. The lighting device of claim 9, wherein a cantilevered arm extends from the rear surface of the mounting plate.
14. A lighting assembly comprising: a light assembly having a housing at least partially defining a chamber containing a control component for a light emitter, a battery compartment positioned in the housing, a battery positioned in the battery compartment, and a mounting plate having a front portion facing the chamber and a rear portion positioned opposite the chamber, wherein a first connector extends from the rear portion; a junction box comprising a plurality of walls; and a second connector positioned in the junction box, wherein the first connector extends into the junction box to mate with the second connector, and wherein a wall extends from the rear portion of the mounting plate into the junction box.
15. The lighting assembly of claim 14, wherein the battery is a rechargeable battery.
16. The lighting assembly of claim 14, wherein the first connector includes a female connector and the second connector includes a male connector.
17. The lighting assembly of claim 14, wherein a wall cantilevered mounting arm extends from the rear portion of the mounting plate into the junction box.
18. The lighting assembly of claim 17, wherein the wall includes a tab and an opening for receiving a fastener.
19. The lighting assembly of claim 14, wherein the second connector is coupled to a mounting bracket.
20. The lighting assembly of claim 14, wherein the battery is connected to a circuit configured to charge and discharge the battery.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The aspects and features of various exemplary embodiments will be more apparent from the description of those exemplary embodiments taken with reference to the accompanying drawings, in which:
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DETAILED DESCRIPTION OF EXEMPLARY EMBODIMENTS
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(22) The lamps 14 extend through openings in the housing, for example, positioned mainly in the rounded corners 28. Side walls 22 are oriented at an incline with respect to the front wall 20 to direct light in a generally outward and forward direction with respect to the housing 12. The housing 12 and lamp 14 can have various alternative configurations depending on the desired light output, strength, and direction. The housing 12 can be made from a molded plastic material, metal, composite, or other suitable rigid material.
(23) Each of the lamps 14 can be independently adjusted to direct the beam of light produced from the lamp 14 to a selected area. In an exemplary embodiment, the lamps 14 can pivot and swivel within a socket in the housing 12. The lamps 14 can include any suitable light source, for example light emitting diodes (LED) or halogen light sources.
(24) The light assembly 10 is connected to a main power source (not shown) and includes a battery 25 for providing auxiliary power. In an exemplary embodiment, the internal circuitry and the lamps 14 are connected to the battery by wires or another electrical connection. The light assembly 10 is then connected to a main power source to maintain the battery 25 in a charged condition. Typically, the light assembly 10 is wired to an electrical junction box or electrical receptacle as known in the art. Circuitry actuates the lamps 14 when certain conditions are present, for example an alarm is activated or the primary source of power is interrupted.
(25) As best shown in
(26) The front wall 20 includes a depression 30 adjacent the compartment 18 opening and a boss 32 extending into the compartment 18. The compartment 18 includes a bottom wall 34, top wall 36, side walls 38 extending from the front wall 20 toward the rear of the housing 12, and a back wall 40 connected to one or more of the other walls 34, 36, 38. The top wall 36 can include an undercut portion and the back wall 40 can include a slot for receiving the strap 27.
(27) In an exemplary embodiment, the bottom wall 34 includes one or more sets of protrusions 42 defining a groove. Slots 44 are positioned adjacent the bottom wall 34 and the side walls 38 to retain the door 16. The top wall 36 extends at least partially over the compartment 18 and includes a channel 46 and an aperture 48 that extends into and through the back wall 40 as best shown in
(28) The door 16, according to the exemplary embodiment and best shown in
(29) The pins 62 extend into the slots 44 to pivotally connect the door 16 to the housing 12. When the door 16 is in the closed position, the clips 58 engage the grooves 5o and projections 52 and the tab 56 rests in the depression 30. The projections 52 extend into the openings of the clips 58 to releasable secure the door 16 in the closed position. A fastener, for example a screw, can be inserted through the tab 56 and into the boss 32 to secure the cover 16 to the housing 12. The tab 56 can include an aperture for receiving the screw. Other connections, including other hinge or pivotal connections or a non-hinged, separable connection can be made between the door 16 and the housing 12.
(30) The compartment 18 holds the battery 25 but isolates and/or limits an installer from touching high voltage components or circuits inside the housing 12. The battery's low voltage is supplied to the main unit via wires that are routed through an opening in the back of the battery compartment. The battery 25 can therefore be easily changed by a user without moving the housing 12 and without risk to injury.
(31) As best shown in
(32) In an exemplary embodiment, a charger 68, for example a PCB mounted charger, is secured to the housing 12. The charger 68 can include an electrical connector that extends into the compartment 18, for example through the channel 46 or aperture 48. The electrical connector can be a series of wire conductors and a wire harness connector, although other suitable types of electrical connectors, including wire conductors or other releasable connectors can be used
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(35) The front side of the mounting plate 100 also includes features to connect the mounting plate 100 to the housing 12. A pair of tabs no extend from the top of the mounting plate 100 and a pair of arms 112 extend from the bottom of the mounting plate 100. The arms 112 include cantilevered beams having a snap-fit hook. The tabs no are mated with the slots 23 on the top wall 24 of the housing 12 and the arms are mated with the slots 23 on the side walls 22 of the housing 12. The mounting plate 100 can be snap-fit to the housing 12 and a user can depress the tabs 110 through the slots 23 to release the mounting plate 100 from the housing 12. One or more reinforcement ribs 114 extend from the front surface 102.
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(37) A rear connector portion 136 is positioned in the inner region 120. The rear connector portion 136 includes an area that is configured to receive at least a portion of an electrical connector or connector assembly. The area can include one or more mounting features to receive the electrical connector. In an exemplary embodiment, the slot 106 extends through the rear connector portion 136 and a set of rear bosses 138 extend outwardly from the rear connector portion 136. A connector body and/or wiring can at least partially extend through the slot 106, while one or more of the rear bosses 138 can receive fasteners to secure the connector to the mounting plate 100. The rear bosses 138 can be aligned with the front bosses 108 so that a fastener can extend from a front boss 108 into a rear boss 138 or vice versa.
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(39) As shown in
(40) The mounting plate 100 is configured to mate with a junction box 200 as shown. As best shown in
(41) A slot 212 is provided two opposite side walls 204 positioned to receive the mounting arms 124. A connector 214 is provided in the junction box 200 that mates with the connector 140 positioned on the rear connector portion 136. The connector 214 is a male connector that includes a connector body 216 and a set of electrical contacts positioned in the male projections 218. The connector body 216 is coupled to a bracket 220 that is mounted to the junction box 200. A wired connection can be established between the connector 214 and power supply wiring 222.
(42) The junction box 200 can be mounted on a structure or support, such as a wall. A wired connection can be made between the junction box connector 214 and the power supply wiring 222. The junction box connector 214 can be coupled to the junction box 200, for example by securing the mounting bracket 220 to the junction box 200 with one or more fasteners. The connector 214 can be coupled to the junction box 200 before or after it is connected to the power supply wiring 222. The emergency lighting assembly 10 can be snap-fit to the junction box 200 through the connection with the mounting plate 100. The walls 122 of the mounting plate 100 fit inside of the junction box 200 and the mounting plate connector 140 is mated with the junction box connector 214. As shown in
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(44) The foregoing detailed description of the certain exemplary embodiments has been provided for the purpose of explaining the principles of the invention and its practical application, thereby enabling others skilled in the art to understand the invention for various embodiments and with various modifications as are suited to the particular use contemplated. This description is not necessarily intended to be exhaustive or to limit the invention to the exemplary embodiments disclosed. Any of the embodiments and/or elements disclosed herein may be combined with one another to form various additional embodiments not specifically disclosed. Accordingly, additional embodiments are possible and are intended to be encompassed within this specification and the scope of the appended claims. The specification describes specific examples to accomplish a more general goal that may be accomplished in another way.
(45) As used in this application, the terms “front,” “rear,” “upper,” “lower,” “upwardly,” “downwardly,” and other orientational descriptors are intended to facilitate the description of the exemplary embodiments of the present invention, and are not intended to limit the structure of the exemplary embodiments of the present invention to any particular position or orientation. Terms of degree, such as “substantially” or “approximately” are understood by those of ordinary skill to refer to reasonable ranges outside of the given value, for example, general tolerances associated with manufacturing, assembly, and use of the described embodiments.