The present invention relates to a power inlet box, which is typically mounted to the exterior of a building and which provides an inlet for the supply of electrical power from an auxiliary power source such as a generator, and more particularly, pertains to a power inlet box equipped with an protective lid to prevent outside elements from entering the power inlet.
In an auxiliary power supply system, a remote power generator is interconnected with a power inlet box, which is typically mounted to the exterior of a building or dwelling. The power inlet box is, in turn, typically interconnected with a transfer switching arrangement, which is connected to the main electrical panel or load center of the building. A cord is interconnected with the power outlet of the generator and with a power inlet receptacle or socket associated with the power inlet box for providing power from the generator through the power inlet box to the transfer panel, and ultimately to the main electrical panel in order to supply power to certain circuits of the building in the event of a power outage or the like.
Prior art power inlet boxes generally include a base member adapted to be mounted to a wall of the building, and a cover member or assembly that is movably interconnected with the base member. The base member defines an internal cavity, and the cover member is configured to enclose the internal cavity. The power inlet includes an access cover, which is pivotable between a closed position in which the access cover prevents access to the power receptacle socket structure, and an open position providing access to the power receptacle socket structure. Other prior art power inlet boxes having a base member and a cover assembly are known wherein a power inlet is mounted to a bottom wall of the cover assembly such that the inlet is openly accessible from beneath the power inlet box.
With such conventional power inlet boxes, moisture and dirt may easily enter the power inlet box through the many air gaps and openings provided between the base member and the cover.
In order to prevent ingress of moisture, dirt and other contaminants, which may damage the electrical components, the current state-of-the art for power inlet boxes involves a generally circular spring-loaded lid that closes against a generally circular base element, into which a flanged socket-type inlet is installed. In order to protect the flanged inlet and the interior of the enclosure into which the flanged inlet is installed from the outside elements, current units have utilized gaskets to provide a weatherproof seal. Gaskets are typically made from a resilient material, e.g., neoprene rubber, which is able to deform and tightly fill any space irregularities. However, gaskets are expensive, difficult to install, and are prone to failure from loss of compliance over time due to compression set, temperature aging, tearing, adhesion to the cover, and a host of other issues.
The present invention seeks to improve upon such prior art by providing a gasketless assembly for a power inlet protection lid, while still providing the weatherproofing feature desired.
The present invention is generally directed to a power inlet box suitable for outdoor or external use and configured in such a manner so as to prevent moisture and dirt from entering the inlet box. The power inlet box may be formed from weather resistant material such as plastic, corrosion resistant aluminum, galvanized steel, etc., and may be designed such that the electrical socket faces any number of directions but in such a way that an electrical connector can be easily attached.
In one embodiment, the power inlet box includes a base or frame that may be mounted to the wall of a building. The base receives a flanged power inlet that is configured to be protected against rain, snow, dust, dirt, and the like by a removable hinged lid. The removable hinged lid contains a number of seals to prevent moisture and dirt from entering the power inlet.
In particular, a first seal may be formed between the removable hinged lid and the flanged power inlet. The flanged power inlet may be generally circular in shape, and may “face seal” with a generally circular hinged lid which is disposed directly on top of the flanged power inlet and may be secured by a number of attachment means, such as by screw-force deformation.
A second seal may be formed through the interaction of the removable hinged lid itself, and in particular, between the cover and the base of the hinged lid. The base of the hinged lid assembly may have an annular “groove-like” depression for receiving a corresponding annular “tongue” protrusion of the cover. The two components may cooperate to provide a “tongue-and-groove” seal when the cover is in a closed position t.
A third seal may be formed between the cover and the base of the hinged lid, by providing the cover with a tapered stopper that is received within a correspondingly tapered opening of the base to create a “sink stopper” seal. Thus, any moisture or dirt, which is able to pass the perimeter of the hinged lid, must also pass the “sink stopper” seal to reach the interior of the power inlet.
A fourth seal may be formed at the hinge point of the hinged lid between the cover and the base. A protrusion located at an upper edge of the hinge fits within a laterally facing slot located near a bottom edge of the hinge when the cover is in the closed position. This creates a “slot seal” at the hinge and prevents moisture from entering the hinge area where the annular “tongue-and-groove” seal is not present due to the structure of the hinge.
Therefore, it is an object of the present invention to provide a power inlet box that utilizes a removable lid having a number of defenses against moisture entering the interior of a power inlet.
It is an additional object of the present invention to provide a lid that is installable on a flanged power inlet assembly to provide a weatherproof power inlet box.
It is an additional object of the present invention to provide a weatherproof power inlet box without the use of gaskets.
Various other features, objects and advantages of the present invention will be apparent from the following detailed description taken together with the drawings.
The drawings illustrate the best mode presently contemplated for carrying out the invention.
In the drawings:
This invention relates to a gasketless cover for a power inlet receptacle having a number of features configured to prevent moisture and dirt from entering the power inlet receptacle.
Referring to
The power inlet box 10 includes a base 12 or frame that is defined by a rear wall 14, and a pair of side walls 16, 18 extending forwardly from the sides of rear wall 14. A bottom wall 20 extends forwardly from the lower end of rear wall 14, and extends between the lower ends of side walls 16, 18. A series of openings may be formed in rear wall 14 for use in mounting base 12 to a wall.
A cover assembly 22 includes a front wall 24 and a top wall 26 extending rearwardly from the upper end of front wall 24. Front wall 24 includes a central opening 28 for receiving a power inlet 30. Power inlet 30 is in the form of a power receptacle socket assembly mounted to front wall 24 and extending through opening 28.
A pair of side flanges 32, 34 extend rearwardly from the side edges of front wall 24, throughout the height of front wall. Similarly, a pair of flanges 36, 38, extend downwardly from the side edges of top wall 26 between the side flanges. An opening may be formed in the lower end of front wall 24, and a threaded fastener 76, such as a screw, may be threadedly engageable with the opening to securely couple cover assembly 22 with base 12. Bottom wall 20 may have a flange at its outer end for threadedly receiving fastener 76.
Referring to
A removable lid assembly 48 in accordance with the present invention is utilized to secure power inlet 30 to base 24. Lid assembly 48 includes a hinged cover 50 hingedly attached to a base member 52. Base member 52 has a generally circular sidewall 54 and an upper flange 55 extending inwardly from the upper sidewall 54. The upper edge of circular sidewall 54 provides a circuitous groove 68 for receiving a protruded tongue of cover 50. The upper flange 55 has a series of openings for receiving a corresponding number of threaded fasteners 78, e.g., screws, for engagement within openings in base 24 for coupling the lid assembly 48 with the upper edge of power inlet 30.
Cover 50 has a circular top wall 60 and a circumferential flange 62 extending downwardly from the outer edge of top wall 60. The flange 62 may have a protruded tongue 66 for insertion into groove 68 of the upper edge of circular sidewall 54. Cover 50 may also have a protruded lip 74 extending outwardly from top wall 60 to assist the user in opening and closing cover 50. Cover 50 is pivotable via a hinge 64 between an open position, as shown, and a closed position. Hinge 64 may include a conventional pivot pin defining a pivot axis of cover 50, and a torsion spring for biasing the cover 50 toward a closed position.
Referring to
The removable lid assembly 48 is coupleable to the power inlet 30 by disposing the base 54 of lid assembly 48 on the top edge of flange 44 of the power inlet 30. The base 54 may be securely engaged with flange 44 by utilizing screws 78 engageable with the front wall 24 and extending through both the base 54 and the flange 44, thus providing a screw-force generated deformation face seal between the facing surfaces of front wall 24, flange 44 and base 54. The face seal provides a waterproof seal and prevents moisture from entering the power inlet 30.
As shown in
Referring again to
Referring again to
It can thus be appreciated that the present invention provides a sealing arrangement for a flanged power inlet that includes several lines of defense against entry of moisture or other contaminants into the interior of the power inlet, without the use of gaskets or the like. Specifically, the sealing arrangement contemplates an outer line of defense providing by the slot seal and the tongue-and-groove seal, and an inner line of defense provided by the stopper-type seal formed by the mating tapered edges. This functions to simplify the number of components and assembly of a power inlet arrangement, while at the same time, providing weatherproof features that extend throughout the life of the power inlet arrangement without the failures commonly associated with a gasket-type arrangement.
Various alternatives and embodiments are contemplated as being within the scope of the following claims, which particularly point out and distinctly claim the subject matter regarded as the invention.
Number | Name | Date | Kind |
---|---|---|---|
1131667 | Bommer | Mar 1915 | A |
2856470 | Hyde | Oct 1958 | A |
3277251 | Daly | Oct 1966 | A |
3284591 | Daly | Nov 1966 | A |
3315556 | Speck | Apr 1967 | A |
3361938 | Watson | Jan 1968 | A |
3391374 | Schleicher | Jul 1968 | A |
3523166 | Daly | Aug 1970 | A |
3559148 | Hafer | Jan 1971 | A |
3636237 | Hafer | Jan 1972 | A |
3654484 | Jorgenson et al. | Apr 1972 | A |
3716683 | Hafer | Feb 1973 | A |
3723942 | Dennison | Mar 1973 | A |
3731256 | Hafer | May 1973 | A |
3739321 | Murphy et al. | Jun 1973 | A |
3742431 | Kobyner | Jun 1973 | A |
3781765 | Schleicher | Dec 1973 | A |
3922053 | Hafer | Nov 1975 | A |
4058358 | Carlisle | Nov 1977 | A |
4067529 | Milcoy | Jan 1978 | A |
4088829 | Milcoy | May 1978 | A |
4282954 | Hill | Aug 1981 | A |
4605817 | Lopez | Aug 1986 | A |
4669281 | Young | Jun 1987 | A |
4979634 | Begley | Dec 1990 | A |
5070252 | Castenschiold et al. | Dec 1991 | A |
5174773 | Jones | Dec 1992 | A |
5265511 | Itzov | Nov 1993 | A |
5268850 | Skoglund | Dec 1993 | A |
5310075 | Wyler | May 1994 | A |
5402323 | Schwenk et al. | Mar 1995 | A |
5573412 | Anthony | Nov 1996 | A |
5579201 | Karageozian | Nov 1996 | A |
5590440 | Pelt et al. | Jan 1997 | A |
5717164 | Shetterly | Feb 1998 | A |
5773757 | Kenney et al. | Jun 1998 | A |
5980278 | Winkler | Nov 1999 | A |
5984719 | Flegel | Nov 1999 | A |
6148480 | Cooke | Nov 2000 | A |
6276027 | Hanna | Aug 2001 | B1 |
6564427 | Flegel | May 2003 | B1 |
7105745 | Drane et al. | Sep 2006 | B2 |
7148421 | Nagashima et al. | Dec 2006 | B2 |
7709735 | Vigorito et al. | May 2010 | B2 |
20060037773 | Castaldo et al. | Feb 2006 | A1 |
20060191701 | Herzog | Aug 2006 | A1 |
20090255703 | Vigorito et al. | Oct 2009 | A1 |
20120312577 | Carbone | Dec 2012 | A1 |