The present invention relates to an electrical receptacle that has a ruggedized design for harsh environments.
Conventional electrical connectors, including data jacks and receptacles, are usually not suitable for certain applications, such as those in harsh environments, which expose the connector to damaging environmental conditions, water, extreme temperatures, vibrations, etc. As such, rugged electrical connectors were developed specifically for harsh environment applications. There is an increasing trend for today's electronic devices to be able to withstand exposure to harsh environments. Typical applications may involve exposure to dust, splashing water or cleaning solutions over the course of their lifetime. However, the known rugged electrical connectors often fail and provide only degraded performance. Enclosures need to be able to withstand these types of risks without causing damage to internal components. Application requirements are requiring more and more products to meet ever increasing levels of environmental protection. Designers must consider the influence of temperature extremes, moisture, solvents, icing, corrosion, fungus, salt exposure etc.
Accordingly, the present invention may provide a ruggedized electrical receptacle that comprises a shell that includes an inner surface defining an inner receiving area having front and rear sections, and the front section is configured to receive an interface of a mating connector. A contact subassembly is received in the shell. The contact subassembly may comprise a contact printed circuit board with first and second opposing faces, a plurality of interface contacts coupled to the first face of the contact printed circuit board and a plurality of termination contacts coupled to the second face of the contact printed circuit board, and an overmold overmolded onto the contact subassembly. The overmold surrounds the contact printed circuit board such that free ends of the plurality of interface contacts are exposed and extend toward the front section of the shell for engaging the mating connector and tail ends of the plurality of termination contacts are exposed and extend toward the rear section of the shell for engagement with a main printed circuit board. An internal sealing member may be disposed between an outer surface of the overmold and the inner surface of the shell, thereby creating a seal therebetween.
In certain embodiments, the internal sealing member is a sealing gasket that extends around an outer perimeter of the overmold; the outer perimeter of the overmold has groove therein and the sealing gasket is received in the groove; the overmold is formed of high temperature glass filled nylon or the like and/or the sealing gasket is formed of silicone rubber or the like.
In some embodiments, the overmold is received in the rear section of the shell; the electrical receptacle further comprises an insulator housing positioned in the front section of the shell such that the free ends of the plurality of interface contacts extend into the insulator housing; the electrical receptacle further comprises a rear contact support coupled to a rear end of the shell such that the tail ends of the plurality of termination contacts extend through the rear contact support; the tails ends generally form a right angle; and/or the tail ends are generally straight.
In other embodiments, the electrical receptacle further comprises one or more LEDs coupled to a front side of the overmold with contact tails thereof extending through the overmold; the electrical receptacle further comprises a secondary internal sealing member disposed around the contact tails of the one or more LEDs and abutting the front side of the overmold; the secondary internal sealing member is another sealing gasket; the electrical receptacle further comprises an external sealing member positioned on an outer surface of the shell; and/or the receptacle is devoid of epoxy or adhesive.
The present invention may also provide a ruggedized electrical receptacle that comprises a shell that includes an inner receiving area that has front and rear sections. The front section is configured to receive an interface of a mating connector. A contact subassembly is received in the shell. The contact subassembly comprises a contact printed circuit board with first and second opposing faces and at least one of the first and second opposing faces having capacitive compensation circuits. A plurality of interface contacts are coupled to the first face of the contact printed circuit board and a plurality of termination contacts coupled to the second face of the contact printed circuit board. An overmold is overmolded onto the contact subassembly to surround the contact printed circuit board such that free ends of the plurality of interface contacts are exposed and extend toward the front section of the shell for engaging the mating connector and tail ends of the plurality of termination contacts are exposed and extend toward the rear section of the shell for engaging a main printed circuit board. An internal sealing member may be disposed around an outer perimeter of the overmold, thereby creating a seal therebetween between the overmold and the shell.
In one embodiments, the electrical receptacle further comprises an insulator housing positioned in the front section of the shell such that the free ends of the plurality of interface contacts extend into the insulator housing; and a rear contact support coupled to a rear end of the shell such that the tail ends of the plurality of termination contacts extend through the rear contact support. In another embodiment, the electrical receptacle further comprises one or more LEDs coupled to a front side of the overmold with contacts thereof extending through the overmold; and a secondary internal sealing member disposed around the one or more LEDs and abutting the front side of the overmold. In yet another embodiment, the electrical receptacle further comprises an external sealing member positioned on an outer surface of the shell; and each of the internal sealing member, secondary internal sealing member, and external sealing member, is a sealing gasket. In one embodiment, the receptacle is devoid of epoxy or adhesive.
A more complete appreciation of the invention and many of the attendant advantages thereof will be readily obtained as the same becomes better understood by reference to the following detailed description when considered in connection with the accompanying drawing figures:
Referring to the figures, the present invention generally relates to an electrical receptacle 100 with a ruggedized design for harsh or demanding environment conditions, such as where Ethernet/IP protocol is used. Receptacle 100 is configured to protect against conditions such as outdoor environment, thermal and/or physical shock, humidity, vibration, salt spray, temperature rise, etc. Receptacle 100 is preferably configured to deliver IP67 protection in both mated and unmated conditions. One way to quantify an enclosure's or connector's ability to resist the elements is to reference the IEC 60529 standard. This standard defines the level of protection against intrusion of foreign objects. The format of the ratings follows a coding system where the first character after “IP” defines the solid particle protection and the second character defines the liquid ingress protection. Optional suffixes can be used to define special options. A rating of IP20 will define protection from fingers being inserted but will provide little to no protection from water or other liquid exposure. A rating of IP67 provides protection from dust as well as protection from water ingress when submerged under 1 Meter of water for 30 minutes. Receptacle 100 may be used for any number of applications, such as military vehicles and equipment, mobile communication systems, factory automation, outdoor communications, vehicle instrument, navigation and GPS systems, or security/surveillance equipment. Receptacle 100 also preferably has an epoxy or adhesive free design to protect from leakage under extreme temperature changes.
As seen in
Shell 102 includes an inner surface 110 that defines an inner receiving area 112 that has a front section 114 with a front opening 116 configured to receive the interface of a mating connector or plug, such as a MRJR jack; and a rear section 118 configured to support contact subassembly 104. A locating peg 119 (
As seen in
The overmold 140 surrounds the contact printed circuit board 130 such that free ends 142 of the interface contacts 132 are exposed and extend from a front side 144 (
An internal sealing member 160 may be positioned in the rear section 118 of shell 102 and around overmold 140 to provide an environmental seal therebetween. Internal sealing member 160 may be disposed between an outer perimeter 141 of the overmold 140 and the inner surface 110 of shell 102, as best seen in
In one embodiment, receptacle 100 includes one or more LEDS 170a (
An outer sealing member 190 may be provided on an outer surface 192 of shell 102 adjacent to panel mounts 194 of the shell 102. Panel mounts 194 are configured to receive fasteners, such as screws 196, for coupling the rear contact support 124a or 124b to shell 102. Outer sealing member 190 may be a gasket, which may be formed of a silicone rubber or the like.
While particular embodiments have been chosen to illustrate the invention, it will be understood by those skilled in the art that various changes and modifications can be made therein without departing from the scope of the invention as defined in the appended claims.
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