Apparatus for sensing temperatures within hollow organs

Fojtik June 7, 2

Patent Grant D758574

U.S. patent number D758,574 [Application Number D/361,655] was granted by the patent office on 2016-06-07 for apparatus for sensing temperatures within hollow organs. This patent grant is currently assigned to CIRCA Scientific, LLC. The grantee listed for this patent is Shawn P. Fojtik. Invention is credited to Shawn P. Fojtik.


United States Patent D758,574
Fojtik June 7, 2016

Apparatus for sensing temperatures within hollow organs

Claims

CLAIM The ornamental design for an apparatus for sensing temperatures within hollow organs, as shown and described.
Inventors: Fojtik; Shawn P. (Park City, UT)
Applicant:
Name City State Country Type

Fojtik; Shawn P.

Park City

UT

US
Assignee: CIRCA Scientific, LLC (Park City, UT)
Appl. No.: D/361,655
Filed: May 13, 2010

Current U.S. Class: D24/133
Current International Class: 2402
Field of Search: ;D24/133,140,143,147 ;600/108,114,153,549 ;606/41 ;D7/300.2

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Other References

File:Sine wave amplitude.svg, May 12, 2008, [online], [retrieved on Mar. 24, 2011]. Retrieved from Internet, <URL: http://www.wikipedia.org>. cited by examiner .
An Imporved Sine to Squre Wave Convertor for Rife/Bare Systems, May 24, 2001, [online], [retrieved on Mar. 24, 2011]. Retrieved from Internet, <URL: http://www.w5jgv.com>. cited by examiner .
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Primary Examiner: Eland; Bridget L
Attorney, Agent or Firm: Durham Jones & Pinegar, P.C. Intellectual Property Law Group

Description



FIG. 1 is an enlarged frontal perspective view of a first embodiment of an apparatus for sensing temperatures within hollow organs showing my new design;

FIG. 2 is a first side view of the first embodiment of the apparatus for sensing temperatures within hollow organs shown in FIG. 1;

FIG. 3 is an enlarged second side view of the first embodiment of the apparatus for sensing temperatures within hollow organs shown in FIG. 1;

FIG. 4 is an enlarged top view of the first embodiment of the apparatus for sensing temperatures within hollow organs shown in FIG. 1;

FIG. 5 is an enlarged bottom view of the first embodiment of the apparatus for sensing temperatures within hollow organs shown in FIG. 1;

FIG. 6 is an enlarged front view of the first embodiment of the apparatus for sensing temperatures within hollow organs shown in FIG. 1;

FIG. 7 is an enlarged rear view of the first embodiment of the apparatus for sensing temperatures within hollow organs shown in FIG. 1;

FIG. 8 is an enlarged frontal perspective view of a second embodiment of an apparatus for sensing temperatures within hollow organs according to my new design;

FIG. 9 is a first side view of the second embodiment of the apparatus for sensing temperatures within hollow organs shown in FIG. 8;

FIG. 10 is an enlarged second side view of the second embodiment of the apparatus for sensing temperatures within hollow organs shown in FIG. 8;

FIG. 11 is an enlarged top view of the second embodiment of the apparatus for sensing temperatures within hollow organs shown in FIG. 8;

FIG. 12 is an enlarged bottom view of the second embodiment of the apparatus for sensing temperatures within hollow organs shown in FIG. 8;

FIG. 13 is an enlarged front view of the second embodiment of the apparatus for sensing temperatures within hollow organs shown in FIG. 8; and,

FIG. 14 is an enlarged rear view of the second embodiment of the apparatus for sensing temperatures within hollow organs shown in FIG. 8.

Broken lines showing a remainder of the apparatus are directed to environment, and are for illustrative purposes only; the broken lines form no part of the claimed design.

* * * * *

References


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