1460726549-85b64887-009f-458e-a3ec-0349f99e88f9

1. A compressor comprising:
a shell;
a compression mechanism disposed within said shell;
a motor for actuating said compression mechanism;
a terminal body secured to the shell;
at least one conductor pin extending through said terminal body;
a fence disposed around said terminal body and secured to said shell;
a plug including at least one electrical receptacle for electrical communication with said conductor pin at least partially disposed within said fence, and having an inner core surrounded by an outer body, said outer body having an end cap, a connector body extending from said end cap and including an inner surface opposing and in contact with an outer surface of said inner core, and an annular flange extending from said inner surface, said inner core disposed between said end cap and said annular flange and contacting said inner surface of said connector body along an entire length of said inner surface located between said end cap and a surface of said annular flange that opposes and is substantially parallel to said end cap; and
an annular sealing member supported by said outer body for sealingly engaging said fence disposed at an end of said plug assembly that is at least partially disposed within said fence.
2. The compressor of claim 1, wherein said outer body includes a circumferential groove for supporting said sealing member, said sealing member being separate and apart from said outer body.
3. The compressor of claim 1, wherein said plug is flame resistant.
4. The compressor of claim 1, wherein said sealing member is an O-ring.
5. The compressor of claim 1, wherein at least one of said inner core and said outer body is formed from a material that includes glass fibers.
6. The compressor of claim 5, wherein said material includes between 30 percent and 50 percent glass fibers.
7. The compressor of claim 1, wherein said inner core is formed from a material that is operable to withstand a glow wire flammability index of 850 C.
8. The compressor of claim 1, wherein each of said inner core and said outer body is formed from one of a thermoplastic material and a thermoset material.
9. A plug assembly for a compressor, comprising:
an inner core having an outer surface;
an outer body surrounding said inner core and having an end cap, a connector body extending from said end cap and including an inner surface opposing and in contact with said outer surface of said inner core, and an annular flange extending from said inner surface and defining a first surface formed substantially parallel to and opposing said end cap, a second surface formed substantially parallel to said end cap and disposed on an opposite side of said annular flange than said first surface, and a third surface extending substantially parallel to said inner surface and between said first surface and said second surface, said inner core opposing said third surface and terminating at said second surface;
at least one electrical receptacle housed by said inner core; and
an annular sealing member encircling said outer body.
10. The plug assembly of claim 9, wherein at least one of said inner core and said outer body is formed from a material that is flame resistant.
11. The plug assembly of claim 9, wherein said sealing member is an O-ring separate and apart from said outer body.
12. The plug assembly of claim 9, wherein at least one of said inner core and said outer body is formed from a material that includes glass fibers.
13. The plug assembly of claim 12, wherein said material includes between 30 percent and 50 percent glass fibers.
14. The plug assembly of claim 9, wherein said inner core is formed from a material that is operable to withstand a glow wire flammability index of 850 C.
15. The plug assembly of claim 9, wherein each of said inner core and said outer body is formed from one of a thermoplastic material and a thermoset material.
16. The plug assembly of claim 9, wherein said inner core is spaced apart from said third surface.
17. The plug assembly of claim 9, wherein said inner core is substantially flush with said second surface.
18. A compressor comprising:
a shell;
a compression mechanism disposed within said shell;
a motor for actuating said compression mechanism;
a terminal body secured to the shell;
at least one conductor pin extending through said terminal body;
a fence disposed around said terminal body and secured to said shell;
a plug including at least one electrical receptacle for electrical communication with said conductor pin at least partially disposed within said fence, and having an inner core surrounded by an outer body, said outer body having an end cap, a connector body extending from said end cap and including an inner surface opposing an outer surface of said inner core, and an annular flange extending from said inner surface and defining a first surface formed substantially parallel to and opposing said end cap, a second surface formed substantially parallel to said end cap and disposed on an opposite side of said annular flange than said first surface, and a third surface extending substantially parallel to said inner surface and between said first surface and said second surface, said inner core having a first surface in contact with said end cap and a second surface disposed on an opposite end of said inner core than said first surface of said inner core, said second surface of said inner core being substantially flush with said second surface of said annular flange; and
an annular sealing member supported by said outer body for sealingly engaging said fence disposed at an end of said plug assembly that is at least partially disposed within said fence.
19. The compressor of claim 18, wherein said outer body includes a circumferential groove for supporting said sealing member, said sealing member being separate and apart from said outer body.
20. The compressor of claim 18, wherein at least one of said inner core and said outer body is formed from a material that is flame resistant.
21. The compressor of claim 18, wherein each of said outer body and said inner core is formed from one of a thermoplastic material and a thermoset material.
22. The compressor of claim 18, wherein at least one of said inner core and said outer body is formed from a material that includes glass fibers.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A process for dispensing into a container a portion of a consumable product comprising a frozen aerated product with particulate inclusions of a specified size range wherein the process comprises the steps of;
loading a serving of particulate inclusions of said specified size range into a supplying means
metering the flow of a serving of frozen aerated product from a source of frozen aerated product through a mixing chamber
transferring the serving of particulate inclusions from the supplying means to the mixing chamber throughout the time said serving of frozen aerated product is flowing through the mixing chamber
mixing the particulate inclusions and the frozen aerated product to form the consumable product
dispensing the consumable product into the container.
2. Process according to claim 1 wherein the frozen aerated product is at a temperature of between about 5 C. and about 9 C. as it flows into the mixing chamber.
3. Process according to claim 1 wherein the portion of frozen aerated product is dispensed at a point of sale.
4. Process according to claim 1 wherein the container is made out of an edible material.
5. Process according to claim 1 wherein about 5 to about 60% ww (based on the total weight of consumable product) of particulate inclusions, are introduced into the portion of frozen aerated product.
6. Equipment for dispensing into a container a portion of a consumable product comprising a frozen aerated product with particulate inclusions of a specified size range comprising;
a source of frozen aerated product
supplying means into which is loaded a serving of particulate inclusions of said specified size range
a mixing chamber in which the frozen aerated product and the particulate inclusions are mixed
metering means controlling the flow of a serving of frozen aerated product from the source of frozen aerated product through the mixing chamber
transferring means to transfer the serving of particulate inclusions from the supplying means to the mixing chamber throughout the time said serving of frozen aerated product is flowing through the mixing chamber
means for dispensing the consumable product into the container
7. Equipment according to claim 6 in which the source of frozen aerated product is a soft serve freezer
8. Equipment according to claim 6 in which the transferring means comprises a vane feeder.
9. Equipment according to claim 8 in which a chamber of the vane feeder is the mixing chamber.