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公开(公告)号:US20200262261A1
公开(公告)日:2020-08-20
申请号:US16813701
申请日:2020-03-09
Applicant: Gecko Robotics, Inc.
Inventor: Mark J. Loosararian , Michael A. Binger , Edward A. Bryner , Edwin H. Cho , Mark Cho , Alexander R. Cuti , Ignacio J. Cordova , Benjamin A. Guise , Dillon R. Jourde , Kevin Y. Low , Logan A. MacKenzie , Joshua D. Moore , Jeffrey J. Mrkonich , William J. Pridgen , Domenic P. Rodriguez , Francesco H. Trogu , Alex C. Watt , Yizhu Gu , Ian Miller , Todd Joslin , Katherine Virginia Denner , Michael Stephen Auda , Samuel Theodore Westenberg
IPC: B60G17/015 , G01B17/02 , B60G21/00 , B60G17/02
Abstract: An inspection robot includes a robot body, at least two sensors, a drive module, a stability assist device and an actuator. The at least two sensors are positioned to interrogate an inspection surface and are communicatively coupled to the robot body. The drive module includes at least two wheels that engage the inspection surface. The drive module is coupled to the robot body. The stability assist device is coupled to at least one of the robot body or the drive module. The actuator is coupled to the stability assist device at a first end, and coupled to one of the drive module or the robot body at a second end. The actuator is structured to selectively move the stability assist device between a first position and a second position. The first position includes a stored position. The second position includes a deployed position.
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公开(公告)号:US12156334B2
公开(公告)日:2024-11-26
申请号:US17752453
申请日:2022-05-24
Applicant: Gecko Robotics, Inc.
Inventor: Edward A. Bryner , Dillon R. Jourde , Mark Cho , Michael A. Binger , Kevin Y. Low , Alexander R. Cuti
IPC: F28D15/00 , B25J5/00 , B25J9/00 , B25J9/16 , B25J13/00 , B25J13/08 , B25J19/00 , B25J19/02 , B60B19/00 , B60B19/12 , B60K1/02 , B62D53/02 , B62D57/024 , G01N29/04 , G01N29/22 , G01N29/265 , G06F1/20 , H05K1/18
Abstract: Inspection robot and methods utilizing coolant for temperature management are described. An example inspection robot may include a housing with a couplant retaining chamber, and an electronic board selectively thermally coupled to the couplant retaining chamber. The inspection robot may include a couplant input port coupling a couplant source to a couplant flow path, a drive module coupled to the housing, and a payload with at least one sensor, where the payload is coupled to the housing. The couplant flow path is fluidly coupling the couplant input port to the couplant retaining chamber.
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公开(公告)号:US11673272B2
公开(公告)日:2023-06-13
申请号:US16813701
申请日:2020-03-09
Applicant: Gecko Robotics, Inc.
Inventor: Mark J. Loosararian , Michael A. Binger , Edward A. Bryner , Edwin H. Cho , Mark Cho , Alexander R. Cuti , Ignacio J. Cordova , Benjamin A. Guise , Dillon R. Jourde , Kevin Y. Low , Logan A. MacKenzie , Joshua D. Moore , Jeffrey J. Mrkonich , William J. Pridgen , Domenic P. Rodriguez , Francesco H. Trogu , Alex C. Watt , Yizhu Gu , Ian Miller , Todd Joslin , Katherine Virginia Denner , Michael Stephen Auda , Samuel Theodore Westenberg
IPC: B25J5/00 , B25J9/16 , B25J9/00 , B25J9/10 , B25J13/08 , B25J19/00 , B25J19/02 , G01B11/06 , G01B11/24 , G01B11/30 , G01B17/02 , G01B17/06 , G01B17/08 , G01J3/50 , G01K13/00 , G05D1/00 , G05D1/02 , B60G17/015 , B60G17/02 , B60G21/00 , B62D37/04 , B62D57/024 , G01M3/04 , G01N21/88 , G01N27/82 , G01N29/04 , G05B15/02
CPC classification number: B25J9/1669 , B25J5/007 , B25J9/0009 , B25J9/0015 , B25J9/102 , B25J9/1602 , B25J9/162 , B25J9/1617 , B25J9/1633 , B25J9/1664 , B25J9/1666 , B25J9/1679 , B25J9/1697 , B25J13/088 , B25J19/0029 , B25J19/02 , B60G17/015 , B60G17/02 , B60G21/002 , B60G21/007 , B62D37/04 , B62D57/024 , G01B11/0616 , G01B11/24 , G01B11/303 , G01B17/025 , G01B17/06 , G01B17/08 , G01J3/50 , G01K13/00 , G05D1/0016 , G05D1/0094 , G05D1/0272 , G05D1/0274 , G01M3/04 , G01N21/88 , G01N27/82 , G01N29/04 , G01N2291/0289 , G05B15/02 , G05D2201/0207
Abstract: An inspection robot incudes a robot body, at least two sensors, a drive module, a stability assist device and an actuator. The at least two sensors are positioned to interrogate an inspection surface and are communicatively coupled to the robot body. The drive module includes at least two wheels that engage the inspection surface. The drive module is coupled to the robot body. The stability assist device is coupled to at least one of the robot body or the drive module. The actuator is coupled to the stability assist device at a first end, and coupled to one of the drive module or the robot body at a second end. The actuator is structured to selectively move the stability assist device between a first position and a second position. The first position includes a stored position. The second position includes a deployed position.
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4.
公开(公告)号:US20220331978A1
公开(公告)日:2022-10-20
申请号:US17716249
申请日:2022-04-08
Applicant: Gecko Robotics, Inc.
Inventor: Edward A. Bryner , Dillon R. Jourde , Edwin H. Cho , Mark Cho , Michael A. Binger , Katherine Virginia Denner , Michael Stephen Auda , Kevin Y. Low , Samuel Theodore Westenberg , Alexander R. Cuti , Ignacio J. Cordova , Francesco H. Trogu
Abstract: Inspection robots with removeable interface plates and method for configuring payload interfaces are described. An example robot may include a payload, with at least one sensor, mounted to a housing of the inspection robot. The housing may include a removeable interface plate coupled to the at least one sensor and to an electronic board, the electronic board positioned within the housing. The removeable interface plate may define an electrical coupling interface compatible with the payload, and the electronic board may include an electrical processing configuration compatible with the payload.
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公开(公告)号:US20230390930A1
公开(公告)日:2023-12-07
申请号:US18306408
申请日:2023-04-25
Applicant: Gecko Robotics, Inc.
Inventor: Mark J. Loosararian , Michael A. Binger , Edward A. Bryner , Edwin H. Cho , Mark Cho , Alexander R. Cuti , Ignacio J. Cordova , Benjamin A. Guise , Dillon R. Jourde , Kevin Y. Low , Logan A. MacKenzie , Joshua D. Moore , Jeffrey J. Mrkonich , William J. Pridgen , Domenic P. Rodriguez , Francesco H. Trogu , Alex C. Watt , Yizhu Gu , Ian Miller , Todd Joslin , Katherine Virginia Denner , Michael Stephen Auda , Samuel Theodore Westenberg
IPC: B25J9/16 , B25J5/00 , B25J9/00 , B25J9/10 , B25J13/08 , B25J19/00 , B25J19/02 , G01B11/06 , G01B11/24 , G01B11/30 , G01B17/02 , G01B17/06 , G01B17/08 , G01J3/50 , G01K13/00 , G05D1/00 , G05D1/02 , B60G17/015 , B60G17/02 , B60G21/00 , B62D37/04 , B62D57/024
CPC classification number: B25J9/1669 , B25J5/007 , B25J9/0009 , B25J9/0015 , B25J9/102 , B25J9/1602 , B25J9/1617 , B25J9/162 , B25J9/1633 , B25J9/1664 , B25J9/1666 , B25J9/1679 , B25J9/1697 , B25J13/088 , B25J19/0029 , B25J19/02 , G01B11/0616 , G01B11/24 , G01B11/303 , G01B17/025 , G01B17/06 , G01B17/08 , G01J3/50 , G01K13/00 , G05D1/0016 , G05D1/0094 , G05D1/0272 , G05D1/0274 , B60G17/015 , B60G17/02 , B60G21/002 , B60G21/007 , B62D37/04 , B62D57/024 , B25J9/1025 , G05D2201/0207 , G01M3/04
Abstract: An inspection robot includes a robot body, at least two sensors, a drive module, a stability assist device and an actuator. The at least two sensors are positioned to interrogate an inspection surface and are communicatively coupled to the robot body. The drive module includes at least two wheels that engage the inspection surface. The drive module is coupled to the robot body. The stability assist device is coupled to at least one of the robot body or the drive module. The actuator is coupled to the stability assist device at a first end, and coupled to one of the drive module or the robot body at a second end. The actuator is structured to selectively move the stability assist device between a first position and a second position. The first position includes a stored position. The second position includes a deployed position.
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公开(公告)号:US20220331988A1
公开(公告)日:2022-10-20
申请号:US17752453
申请日:2022-05-24
Applicant: Gecko Robotics, Inc.
Inventor: Edward A. Bryner , Dillon R. Jourde , Mark Cho , Michael A. Binger , Kevin Y. Low , Alexander R. Cuti
Abstract: Inspection robot and methods utilizing coolant for temperature management are described. An example inspection robot may include a housing with a couplant retaining chamber, and an electronic board selectively thermally coupled to the couplant retaining chamber. The inspection robot may include a couplant input port coupling a couplant source to a couplant flow path, a drive module coupled to the housing, and a payload with at least one sensor, where the payload is coupled to the housing. The couplant flow path is fluidly coupling the couplant input port to the couplant retaining chamber.
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7.
公开(公告)号:US20240100717A1
公开(公告)日:2024-03-28
申请号:US18532773
申请日:2023-12-07
Applicant: Gecko Robotics, Inc.
Inventor: Edward A. Bryner , Dillon R. Jourde , Edwin H. Cho , Mark Cho , Michael A. Binger , Katherine Virginia Denner , Michael Stephen Auda , Kevin Y. Low , Samuel Theodore Westenberg , Alexander R. Cuti , Ignacio J. Cordova , Francesco H. Trogu
IPC: B25J13/08 , B25J5/00 , B25J9/00 , B25J9/16 , B25J13/00 , B25J19/02 , B60B19/00 , B60B19/12 , B60K1/02 , B62D53/02 , B62D57/024 , G01N29/04 , G01N29/22 , G01N29/265 , G06F1/20 , H05K1/18
CPC classification number: B25J13/087 , B25J5/007 , B25J9/0009 , B25J9/1617 , B25J9/163 , B25J9/1653 , B25J9/1664 , B25J9/1674 , B25J9/1694 , B25J13/006 , B25J19/021 , B25J19/027 , B60B19/006 , B60B19/12 , B60K1/02 , B62D53/02 , B62D57/024 , G01N29/04 , G01N29/226 , G01N29/265 , G06F1/206 , H05K1/18 , B60B2360/102 , B60B2360/104 , B60B2360/109 , B60B2900/931 , G01N2291/0289 , G01N2291/2698 , G06F2200/201 , H05K2201/10151
Abstract: Inspection robots with removeable interface plates and method for configuring payload interfaces are described. An example robot may include a payload, with at least one sensor, mounted to a housing of the inspection robot. The housing may include a removeable interface plate coupled to the at least one sensor and to an electronic board, the electronic board positioned within the housing. The removeable interface plate may define an electrical coupling interface compatible with the payload, and the electronic board may include an electrical processing configuration compatible with the payload.
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