This invention relates to an electronic hinge. More particularly, this invention relates to an electronic hinge for a door having an electrical appliance therein or thereon.
As is known, various doors have been constructed to be mounted in hinged fashion to a cabinet or within a door frame. In particular, doors have been constructed to be hinged onto the front of a cabinet, such as a refrigerated cabinet used in many supermarkets, and the like. Typically, such a door is constructed of an insulated glass unit (IG unit) of rectangular shape with at least a pair of glass panes (or lites) and a perimeter spacer system that functions as a means for maintaining the glass panes in parallel spaced apart relation. In addition, in some cases, the glass unit has been electrically heated to prevent surface condensation on the glass panes while, in other cases, a light fixture has been incorporated in the glass unit to illuminate the interior of the cabinet on which the door is mounted.
In situations where electrically heated glass is required, the IG unit can be provided with a transparent electrically conductive heating film bonded to at least one of the panes and a pair of electrically conductive bus bars mounted in electrical contact on the coated pane or panes of glass on opposite sides of the coated pane or panes of glass.
Various types of electrical connectors have also been employed to deliver electrical power to the doors with IG units, such as described in U.S. Pat. No. 3,760,157.
U.S. Pat. No. 10,167,657 describes a hinge assembly for an insulated door that provides for the delivery of electrical power through the hinge assembly to electrical appliances within a door.
Accordingly, It is an object of the invention to provide a hinge for a door on a cabinet or the like that allows for the delivery of electrical power through the hinge into an electrical appliance inside the door in a simple manner.
It is another object of the invention to deliver power through a hinge of a door to an appliance within the door.
Briefly, the invention provides an electronic hinge that is constructed to allow for the delivery of electrical power through the hinge. The hinge is particularly constructed to mount a door on a cabinet or frame and to deliver electrical power or information into an electrical appliance inside the door in a simple manner.
The hinge is comprised of a support bracket, a wire transfer bracket disposed for pivoting relative to the support bracket, a hub mounted to rotate with the transfer bracket and a flexible electrical cable extending through the support bracket and hub.
The support bracket is constructed to be mounted on the cabinet or frame and includes a pair of oppositely disposed abutments. In addition, a support pin is fixedly mounted in one of the abutments of the support bracket and a wire transfer pin is fixedly mounted in the other of the abutments of the support bracket with a collar at one end.
The wire transfer bracket is constructed to be mounted on a door and is disposed longitudinally between the abutments of the support bracket for pivoting with the door about a longitudinal axis between a closed position and an open position relative to the support bracket. In addition, the wire transfer bracket has a pair of oppositely disposed ears in each of which a bushing is fixedly mounted. One bushing is rotatably mounted on the support pin and the other bushing is rotatably mounted on the wire transfer pin to facilitate pivoting of the wire transfer bracket within the support bracket.
The hub is rotatably mounted on the collar of the wire transfer pin to pivot withthe support bracket and has an opening in a side thereof.
The flexible electrical cable extends through one abutment of the support bracket, the wire transfer pin mounted therein and the wire transfer hub, exiting through the side opening in the hub, for example to an electrical appliance inside the door.
The hinge includes a longitudinally elongated cover that is slidably mounted on the ears of the wire transfer bracket to enclose the wire transfer bracket and the elements therein.
The hinge is also provided with a spring assembly for biasing the wire transfer bracket from the open position back to the closed position.
The spring assembly includes a support shaft having an end rotatably mounted in a bore at the end of the wire transfer hub, a support disc fixedly mounted on the support shaft and a coiled torsion spring concentrically disposed on the support shaft with a first end inserted in a recess of the support pin and a second end inserted in a recess of the support disc.
These and other objects of the invention will become more apparent from the following description taken in conjunction with the accompanying drawings wherein:
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The support bracket 11 is constructed to be mounted on a cabinet 15 (see
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Likewise, a hollow wire transfer pin 23 having a serrated end surface 24 is provided for fixedly mounting in the other abutment 18 of the support bracket 11 with an adjacent smooth surface 25 and a collar 26 at one end.
The wire transfer bracket 12 is disposed longitudinally between the abutments 18 of the support bracket 11 for pivoting about a longitudinal axis thereof between a closed position and an open position relative to the support bracket 11. The transfer bracket 12 has a rectilinear base 27 with a plurality of oval shaped bores 28 for screws (not shown) to secure the wire transfer bracket 12 to a door 29 (see
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One bushing 31 has a collar 32 to be disposed between one ear 30 of the transfer bracket 12 and one abutment 18 and the other bushing 31 has a collar 32 to be disposed between the other ear 30 of the transfer bracket 12 and the other abutment 18.
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During assembly, the support shaft 39 of the spring assembly 38 is first inserted into the hollow support pin 19 while compressing the spring 42 and then the opposite end of the support shaft 39 is inserted into the wire transfer hub 13.
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In use, the support disc 40 is turned relative to the stationary hollow support pin 19 with a supplied tension pin (not shown) to turn the spring 42 and thus increase tension on the spring assembly 38. When a desired tension is met, the tension stop pin 46 is inserted into the bore closet to the wire transfer bracket 12 (see
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Thereafter, when the opening force is removed, the door 29 is swung back to the closed position by the force of the torsion spring.42.
As illustrated, the door 29 has a window 48 that is heated by an electrical appliance (not shown) that is powered by the cable 14 (
The invention thus provides an electronic hinge for a door on a cabinet or the like that allows for the delivery of electrical power or data through the hinge into an electrical appliance inside the door in a simple direct manner.
For example, the electronic hinge may be used with a display unit wherein a temperature sensing module inside a refrigerated cabinet delivers a signal representative of a sensed temperature within the cabinet through a data pass through wire extending through the hinge to a readout display on the door hinged to the cabinet.
The hinge may be supplied without the cable in place to allow a user to thread a desired cable through the hinge between a module inside the cabinet and an appliance in the door. Alternatively, where the hinge is supplied with a cable threaded therethrough, the ends of the cables may be provided with suitable adapters to electrically communicate with a wire emanating from a module inside a cabinet and a wire emanating from an electrical appliance in the door.