Claims
- 1. In combination, an assembly for the thermal profiling of heat generating elements within an enclosure encompassed by a cabinet, the cabinet having a first face, the heat generating elements disposed a fixed distance, within a range, from said first face, the combination comprising:
(a) a lens assembly, said lens assembly of the fish-eye configuration, including
(i) a housing; (ii) a series of infrared transmitting optical lenses mounted within said housing; said housing configured to have a co-axially aligned open front end and open rear end, said open front end being substantially smaller in relation to said open rear end; (b) a thermal imaging camera, each of said lenses in said series of infrared transmitting optical lenses being compatible with the spectral transmissivity of said thermal imaging camera; (c) means for connecting said open rear end of said housing to said thermal imaging camera; and, (d) an access opening formed in the face of the cabinet, said access opening having a predetermined relationship to the heat generating elements, so that when said means for connecting is activated to form a combination of said thermal imaging camera and said lens assembly, an operator may position said open front end of said housing immediately adjacent said access opening, thereby enabling said operator to view infrared radiation rays originating from the heat generating elements.
- 2. The combination according to claim 1 wherein one of said lenses in said series of lenses is a wide angle, objective lens.
- 3. The combination according to claim 2 wherein said wide angle, objective lens has an approximately 66° diagonally wide angle.
- 4. The combination according to claim 2 wherein said thermal imaging camera is selected from a group consisting of Mikron Instrument Company, Inc.'s model no. 7102, model no. 7200, or model no. 7515.
- 5. The combination according to claim 1 wherein the opening of said open front end of said housing is approximately 12 mm in diameter.
- 6. The combination according to claim 1 wherein said open front end of said housing has a frusto-conical shape tapering downward to an opening of said open front end.
- 7. The combination according to claim 6 wherein said opening in said open front end is approximately 12 mm in diameter.
- 8. The combination according to claim 6, further comprising an infrared view port fixedly secured to the face of the cabinet, said infrared view port having an opening, said port opening being concentrically aligned with and positioned about said access opening, said infrared view port adapted and configured to form a nesting platform for said open front end of said housing, thereby providing said open front end of said housing with approximately 10° of rotation in any direction for viewing the heat generating elements within the enclosure.
- 9. The combination according to claim 7 further comprising means for sealing closed said access opening when said access opening is not in use.
- 10. The combination according to claim 8 wherein the cabinet has a pre-specified NEMA safety rating before said access opening is formed in the face thereof, the combination further including means for sealing closed said access opening when said access opening is not in use, wherein said means for sealing closed said access opening are adapted, configured and utilized in a cooperative way with said infrared view port to ensure that the pre-specified NEMA safety rating of the cabinet is maintained.
- 11. The combination according to claim 10, wherein said means for sealing closed said access opening include a cap for sealingly, enclosing said infrared view port.
- 12. The combination according to claim 11, further comprising a ring and chain assembly connected between the cabinet and said cap, whereby the operator is reminded to re-secure said cap on said infrared view port after using.
- 13. The combination according to claim 1 wherein said access opening has a diameter equal to 0.625 inches (16 mm) nominally.
- 14. The combination according to claim 7 wherein said access opening has a diameter equal to 0.625 inches (16 mm) nominally.
- 15. The combination according to claim 8 wherein said access opening has a diameter equal to 0.625 inches (16 mm) nominally.
- 16. The combination according to claim 10 wherein said access opening has a diameter equal to 0.625 inches (16 mm) nominally.
- 17. A new use for standard thermal imaging cameras to enable the thermal profiling of heat generating elements within an enclosure encompassed by a cabinet, the cabinet having a first face, the heat generating elements disposed a fixed distance, within a range, from said first face, comprising the steps of:
(a) selecting a lens assembly, said lens assembly of the fish-eye configuration, including
(i) a housing; (ii) a series of infrared transmitting optical lenses mounted within said housing; said housing configured to have a co-axially aligned open front end and open rear end, said open front end being substantially smaller in relation to said open rear end; (b) selecting a standard thermal imaging camera, each of said lenses in said series of infrared transmitting optical lenses being compatible with the spectral transmissibility of said thermal imaging camera; (c) connecting said open rear end of said housing to said thermal imaging camera; and, (d) forming an access opening in and through the face of the cabinet, said access opening having a predetermined relationship to the heat generating elements, so that after step (c) is performed, an operator may then position said open front end of said housing immediately adjacent said access opening, thereby enabling said operator to view infrared radiation rays originating from the heat generating elements when the camera is energized.
- 18. The new use according to claim 17 further including the step of selecting said standard thermal imaging camera from a group consisting of Mikron Instrument Company, Inc.'s model no. 7102, model no. 7200, or model no. 7515.
- 19. The new use according to claim 17 wherein said step of selecting a lens assembly further includes selecting a wide angle objective lens.
- 20. The new use according to claim 19 further comprising the step of selecting a wide angle objective lens having an approximately 66° diagonally wide angle.
- 21. The new use according to claim 17 further including the step of affixing an infrared view port to the face of the cabinet, said infrared view port having an opening, said port opening being concentrically aligned with and positioned about said access opening, said infrared view port adapted and configured to form a nesting platform for said open front end of said housing, thereby providing said open front end of said housing with approximately 10° of rotation in any direction for viewing the heat generating elements within the enclosure.
- 22. The new use according to claim 21 further including the step of providing a cap for sealing said infrared view port when said infrared view port is not in use.
- 23. The new use according to claim 22 further including the step of affixing a ring and chain assembly to said cap and the cabinet face.
- 24. In combination, an assembly for the thermal profiling of heat generating elements within an enclosure encompassed by a cabinet, the cabinet having a first face, the heat generating elements disposed a fixed distance, within a range, from said first face, infrared radiation rays emanating from the heat generating elements, the combination comprising:
(a) a sub-assembly including
(i) a nose piece; (ii) a lens assembly, including at least one infrared transmitting optical lens, mounted in fixed predetermined spatial relationship to said nose piece, said lens assembly having a first optical axis and including a ray front surface, said nosepiece having a second optical axis, said nose piece configured to have a co-axially aligned open front end and open rear end about said second optical axis, said open front end being substantially smaller in relation to said open rear end, said first optical axis coaxially aligned with said second optical axis, (b) an access opening formed through the face of the cabinet, said access opening disposed about a centerline axis, said access opening having a predetermined relationship to the heat generating elements, a portion of the infrared radiation rays passing through said access opening, the spatial relationship between said nose piece and said at least one infrared transmitting optical lens adapted to produce a wide-angle image output of the portion of the infrared radiation rays passing through said access opening incident at said ray front surface when said open front end is disposed immediately adjacent said access opening and said second optical axis is co-axially aligned with said centerline axis; and, (c) means co-axially aligned with said second optical axis and positioned in spatial relationship to said lens assembly and adapted to receive, process and image said wide-angle image output to produce a thermal profile image of said heat generating elements, when said open front end is disposed immediately adjacent said access opening and said second optical axis is co-axially aligned with said centerline axis.
- 25. The combination according to claim 24, further comprising an infrared view port fixedly secured to the face of the cabinet, said infrared view port having an opening, said port opening being concentrically aligned with said centerline axis and positioned about said access opening, said infrared view port adapted and configured to form a nesting platform for said open front end of said sub-assembly, thereby providing said open front end of said sub-assembly with approximately 10° of rotation in any direction for viewing the heat generating elements within the enclosure.
- 26. The combination according to claim 24 further comprising means for sealing closed said access opening when said access opening is not in use.
- 27. The combination according to claim 25 wherein the cabinet has a pre-specified NEMA safety rating before said access opening is formed in the face thereof, the combination further including means for sealing closed said access opening when said access opening is not in use, wherein said means for sealing closed said access opening are adapted, configured and utilized in a cooperative way with said infrared view port to ensure that the pre-specified NEMA safety rating of the cabinet is maintained.
- 28. The combination according to claim 24 wherein said access opening has a diameter equal to 0.625 inches (16 mm) nominally.
- 29. The combination according to claim 25 wherein said access opening has a diameter equal to 0.625 inches (16 mm) nominally.
- 30. The combination according to claim 27 wherein said access opening has a diameter equal to 0.625 inches (16 mm) nominally.
- 31. A method to enable the thermal profiling of heat generating elements within an enclosure encompassed by a cabinet, the cabinet having a first face, the heat generating elements disposed a fixed distance, within a range, from said first face, infrared radiation rays emanating from the heat generating elements, comprising the steps of:
(a) selecting a sub-assembly, said sub-assembly including,
(i) a nosepiece; (ii) a lens assembly, including at least one infrared transmitting optical lens, mounted in fixed predetermined spatial relationship to said nose piece, said lens assembly having a first optical axis and including a ray front surface, said nosepiece having a second optical axis, said nose piece configured to have a co-axially aligned open front end and open rear end about said second optical axis, said open front end being substantially smaller in relation to said open rear end, said first optical axis coaxially aligned with said second optical axis, (b) forming an access opening in and through the face of the cabinet, said access opening disposed about a centerline axis, said access opening having a predetermined relationship to the heat generating elements, a portion of the infrared radiation rays passing through said access opening, the spatial relationship between said nose piece and said at least one infrared transmitting optical lens adapted to produce a wide-angle image output of the portion of the infrared radiation rays passing through said access opening incident at said ray front surface when said open front end is disposed immediately adjacent said access opening and said second optical axis is co-axially aligned with said centerline axis; and, (c) providing means co-axially aligned with said second optical axis and positioned in spatial relationship to said lens assembly and adapted to receive, process and image said wide-angle image output to produce a thermal profile image of said heat generating elements, when said open front end is disposed immediately adjacent said access opening and said second optical axis is co-axially aligned with said centerline axis.
- 32. The method according to claim 31 further including the step of affixing an infrared view port to the face of the cabinet, said infrared view port having an opening, said port opening being concentrically aligned with and positioned about said centerline axis of said access opening, said infrared view port adapted and configured to form a nesting platform for said open front end of said sub-assembly, thereby providing said open front end of said sub-assembly with approximately 10° of rotation in any direction for viewing the heat generating elements within the enclosure.
- 33. The method according to claim 32 further including the step of providing a cap for sealing said infrared view port when said infrared view port is not in use.
- 34. The method according to claim 33 further including the step of affixing a ring and chain assembly to said cap and the cabinet face.
Parent Case Info
[0001] This invention claims the benefit of U.S. Provisional Application No. 60/362,743, filed Mar. 8, 2002. This invention relates generally to a thermal imaging combination and method for measuring hot spots.
Provisional Applications (1)
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Number |
Date |
Country |
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60362743 |
Mar 2002 |
US |