IP Library › Granted Patent US 11,672,407
Granted Patent B2
US 11,672,407 · App. 17/223,847 · Granted Jun 13, 2023

Endoscope system with multiple connection interfaces to interface with different video data signal sources

Inventors: Idan Levy (Hadera, IL); Roei Atias (Kiryat Ata, IL); Golan Salman (Atlit, IL)
Assignee: EndoChoice, Inc.
A61B1/00124A61B1/00006A61B1/00011A61B1/00126A61B1/00128A61B1/00165A61B1/015A61B1/045A61B1/051A61B1/053G02B23/2476A61B1/00059A61B1/05
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Quick Facts
Patent No.
US 11,672,407
App. No.
17/223,847
Granted
Jun 13, 2023
Kind
B2
Abstract

Endoscopes having a tip section with viewing elements coupled to a CMOS image sensor and/or a CCD image sensor for transforming light captured by the viewing element into digital and/or analog signals are described. A main connector is coupled with the tip section for transmitting the signals to a main control unit of the endoscope. The main connector includes a pad for transmitting digital signals provided by the CMOS image sensor to a push pin probe in a receptacle of the main control unit. The main connector also include another interface for transmitting analog signals to the main control unit.

Claims (31)

1. A control unit comprising:

a receptacle configured to receive a connector of a medical device;

a first region of the receptacle, wherein the first region comprises a first probe configured to receive a first set of video data signals having a first bandwidth; and

a second region of the receptacle spaced from the first region, wherein the second region comprises an interface configured to receive a second set of video data signals having a second bandwidth.

2. The control unit of claim 1 , wherein the first probe comprises a spring loaded pin.

3. The control unit of claim 1 , wherein the second region comprises a multi-pin interface configured to attach to a complementary multi-pin interface in the connector of the medical device.

4. The control unit of claim 1 , wherein the first probe is configured to be compressed upon attachment of the receptacle to a connector of the medical device.

5. The control unit of claim 1 , wherein the first bandwidth is greater than the second bandwidth.

6. The control unit of claim 5 , wherein the first bandwidth is greater than 1 GHz and the second bandwidth is less than 0.5 GHz.

7. The control unit of claim 1 , wherein the first region further comprises a light guide, a gas channel, a second probe, and a third probe, wherein the first probe, the second probe, and third probe are positioned circumferentially around at least one of the light guide and the gas channel, and wherein each of the second probe and the third probe comprises a spring loaded pin.

8. The control unit of claim 1 , wherein the control unit is an endoscope control unit, and the medical device is an endoscope.

9. A control unit comprising:

a receptacle configured to receive a main connector of a medical device, wherein:

the medical device comprises a tip section having at least one viewing element,

the receptacle has 1) a first region comprising at least one probe configured to receive a first set of video data signals, and 2) a second region configured to receive a second set of video data signals, and wherein the second set of video data signals has a lower bandwidth than a bandwidth of the first set of video data signals;

the main connector is configured to receive and transmit the first set of video data signals from the at least one viewing element, and

upon attachment of the main connector to the receptacle, the at least one probe abuts at least one pad of the main connector.

10. The control unit of claim 9 , wherein upon attachment of the main connector to the receptacle, the at least one probe is compressed.

11. The control unit of claim 9 , wherein the at least one probe comprises a spring loaded pin.

12. The control unit of claim 9 , wherein the second region comprises a multi-pin interface.

13. The control unit of claim 9 , wherein the first set of video data signals comprise digital data with a bandwidth greater than 1 GHz.

14. The control unit of claim 13 , wherein the second set of video data signals comprise digital data with a bandwidth less than 0.5 GHz.

15. The control unit of claim 9 , wherein the first region further comprises a light guide, a gas channel, a second probe, and a third probe, wherein the first probe, the second probe, and third probe are positioned circumferentially around at least one of the light guide and the gas channel, and wherein each of the second probe and the third probe comprises a spring loaded pin.

16. The control unit of claim 9 , wherein the control unit is an endoscope control unit and the medical device is an endoscope.

17. A control unit comprising:

a receptacle configured to receive a connector of a medical device;

a first region of the receptacle, wherein the first region is configured to receive a first set of video data signals having a first bandwidth; and

a second region of the receptacle spaced from the first region, wherein the second region comprises an interface configured to receive a second set of video data signals having a second bandwidth, wherein the second bandwidth is lower than the first bandwidth.

18. The control unit of claim 17 , wherein the second region comprises a multi-pin interface configured to attach to a complementary multi-pin interface in the connector of the medical device.

19. The control unit of claim 17 , wherein the first set of video data signals comprise digital data with a bandwidth greater than 1 GHz.

20. The control unit of claim 19 , wherein the second set of video data signals comprise digital data with a bandwidth less than 0.5 GHz.

Continuity (3)
Continuation 15602411 · May 23, 2017
Provisional Application 62352898 · Jun 21, 2016
Related Publication 20210219823A1 · Jul 22, 2021
Cited By (1)
US 12,310,555