U.S. patent number D914,877 [Application Number D/736,456] was granted by the patent office on 2021-03-30 for thermal ablation device.
This patent grant is currently assigned to MedGyn Products, Inc.. The grantee listed for this patent is MedGyn Products, Inc.. Invention is credited to Amar L. Agadi, Mihira Abubakr Hamad, Je Ho Lee, Aarathi A. Singh, Gene Spahija, Hsin-Yun Yeh.
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United States Patent |
D914,877 |
Singh , et al. |
March 30, 2021 |
Thermal ablation device
Claims
CLAIM The ornamental design for a thermal ablation device, as shown
and described.
Inventors: |
Singh; Aarathi A. (Hinsdale,
IL), Agadi; Amar L. (Oak Brook, IL), Spahija; Gene
(Northfield, IL), Lee; Je Ho (Northbrook, IL), Yeh;
Hsin-Yun (Oak Park, IL), Hamad; Mihira Abubakr (Chicago,
IL) |
Applicant: |
Name |
City |
State |
Country |
Type |
MedGyn Products, Inc. |
Addison |
IL |
US |
|
|
Assignee: |
MedGyn Products, Inc. (Addison,
IL)
|
Appl.
No.: |
D/736,456 |
Filed: |
May 30, 2020 |
Current U.S.
Class: |
D24/144 |
Current International
Class: |
2402 |
Field of
Search: |
;D24/144,146-147,170,200
;606/27-28,31 |
References Cited
[Referenced By]
U.S. Patent Documents
Other References
MEDGYN MTA-100 Thermal Ablation System. Retrieved on Sep. 1, 2020.
Retrieved from the Internet:
<URL:https://www.medgyn.com/product/medgyn-mta-100-thermal-ablation-sy-
stem/>. cited by examiner.
|
Primary Examiner: Laymon; Wan
Attorney, Agent or Firm: Crawford; Brie A. Crawford
Intellectual Property Law LLC
Description
FIG. 1 depicts a top, front, right perspective view of a first
embodiment of the thermal ablation device showing my new
design;
FIG. 2 depicts a front elevational view of the thermal ablation
device based on FIG. 1;
FIG. 3 depicts a rear elevational view of the thermal ablation
device based on FIG. 1 and the reverse view of FIG. 2;
FIG. 4 depicts a top plan view of the thermal ablation device based
on FIG. 1;
FIG. 5 depicts a bottom plan view of the thermal ablation device
based on FIG. 1 and the reverse view of FIG. 4;
FIG. 6 depicts a left elevational view of the thermal ablation
device based on FIG. 1;
FIG. 7 depicts a right elevational view of the thermal ablation
device based on FIG. 1 and the reverse view of FIG. 6;
FIG. 8 depicts a top, front, right perspective view of a second
embodiment of the thermal ablation device showing my new
design;
FIG. 9 depicts a front elevational view of the thermal ablation
device based on FIG. 8;
FIG. 10 depicts a rear elevational view of the thermal ablation
device based on FIG. 8 and the reverse view of FIG. 9;
FIG. 11 depicts a top plan view of the thermal ablation device
based on FIG. 8;
FIG. 12 depicts a bottom plan view of the thermal ablation device
based on FIG. 8 and the reverse view of FIG. 11;
FIG. 13 depicts a left elevational view of the thermal ablation
device based on FIG. 8;
FIG. 14 depicts a right elevational view of the thermal ablation
device based on FIG. 8 and the reverse view of FIG. 13;
FIG. 15 depicts a top, front, right perspective view of a third
embodiment of the thermal ablation device showing my new
design;
FIG. 16 depicts a front elevational view of the thermal ablation
device based on FIG. 15;
FIG. 17 depicts a rear elevational view of the thermal ablation
device based on FIG. 15 and the reverse view of FIG. 16;
FIG. 18 depicts a top plan view of the thermal ablation device
based on FIG. 15;
FIG. 19 depicts a bottom plan view of the thermal ablation device
based on FIG. 15 and the reverse view of FIG. 18;
FIG. 20 depicts a left elevational view of the thermal ablation
device based on FIG. 15;
FIG. 21 depicts a right elevational view of the thermal ablation
device based on FIG. 15 and the reverse view of FIG. 20;
FIG. 22 depicts a top, front, right perspective view of a fourth
embodiment of the thermal ablation device showing my new
design;
FIG. 23 depicts a front elevational view of the thermal ablation
device based on FIG. 22;
FIG. 24 depicts a rear elevational view of the thermal ablation
device based on FIG. 22 and the reverse view of FIG. 23;
FIG. 25 depicts a top plan view of the thermal ablation device
based on FIG. 22;
FIG. 26 depicts a bottom plan view of the thermal ablation device
based on FIG. 22 and the reverse view of FIG. 25;
FIG. 27 depicts a left elevational view of the thermal ablation
device based on FIG. 22;
FIG. 28 depicts a right elevational view of the thermal ablation
device based on FIG. 22 and the reverse view of FIG. 27;
FIG. 29 depicts a top, front, right perspective view of a fifth
embodiment of the thermal ablation device showing my new
design;
FIG. 30 depicts a front elevational view of the thermal ablation
device based on FIG. 29;
FIG. 31 depicts a rear elevational view of the thermal ablation
device 105 based on FIG. 29 and the reverse view of FIG. 30;
FIG. 32 depicts a top plan view of the thermal ablation device
based on FIG. 29;
FIG. 33 depicts a bottom plan view of the thermal ablation device
based on FIG. 29 and the reverse view of FIG. 32;
FIG. 34 depicts a left elevational view of the thermal ablation
device based on FIG. 29; and,
FIG. 35 depicts a right elevational view of the thermal ablation
device based on FIG. 29 and the reverse view of FIG. 34.
The broken lines in FIGS. 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12,
13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29,
30, 31, 32, 33, 34, and 35 depict a portion of the thermal ablation
device that forms no part of the claimed design.
* * * * *
References