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11.
公开(公告)号:US20220331987A1
公开(公告)日:2022-10-20
申请号:US17752177
申请日:2022-05-24
Applicant: Gecko Robotics, Inc.
Inventor: Edward A. Bryner , Dillon R. Jourde , Edwin H. Cho , Mark Cho , Michael A. Binger , Kevin Y. Low , Samuel Theodore Westenberg , Francesco H. Trogu
Abstract: Systems, methods, and apparatus for temperature control and active cooling of an inspection robot are disclosed. An example apparatus may include a temperature determination circuit to interpret an inspection temperature value, a temperature management circuit to determine a temperature management command in response to the inspection temperature value, and a temperature response circuit to provide the temperature management command to a temperature management device associated with an inspection robot.
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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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13.
公开(公告)号:US12302499B2
公开(公告)日:2025-05-13
申请号:US17752177
申请日:2022-05-24
Applicant: Gecko Robotics, Inc.
Inventor: Edward A. Bryner , Dillon R. Jourde , Edwin H. Cho , Mark Cho , Michael A. Binger , Kevin Y. Low , Samuel Theodore Westenberg , Francesco H. Trogu
IPC: G06F1/20 , 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 , H05K1/18
Abstract: Systems, methods, and apparatus for temperature control and active cooling of an inspection robot are disclosed. An example apparatus may include a temperature determination circuit to interpret an inspection temperature value, a temperature management circuit to determine a temperature management command in response to the inspection temperature value, and a temperature response circuit to provide the temperature management command to a temperature management device associated with an inspection robot.
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14.
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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15.
公开(公告)号:US11529735B2
公开(公告)日:2022-12-20
申请号:US16869671
申请日:2020-05-08
Applicant: Gecko Robotics, Inc.
Inventor: Edward A. Bryner , Kevin Y. Low , Joshua D. Moore , Dillon R. Jourde , Mark Cho , Francesco H. Trogu , Domenic P. Rodriguez , Edwin H. Cho
IPC: B25J9/16 , B25J9/00 , B25J5/00 , G05D1/00 , G05D1/02 , B25J9/10 , B25J19/00 , B25J19/02 , G01B11/06 , G01B11/24 , G01B11/30 , G01B17/02 , G01B17/06 , G01B17/08 , G01J3/50 , G01K13/00 , B25J13/08
Abstract: Inspection robots with a multi-function piston connecting a drive module to a central chassis and systems thereof are disclosed. An example inspection robot may include a center chassis coupled to a payload coupled to at least two inspection sensors. The inspection robot may further include a drive module coupled to the center chassis, the drive module having a drive wheel to engage an inspection surface and a drive piston mechanically interposed between the center chassis and the drive module. The example may further include wherein the drive piston in a first position couples the drive module to the center chassis at a minimum distance between and the drive piston in a second position couples the drive module to the center chassis at a maximum distance between. The example may further include wherein the drive module is independently rotatable relative to the center chassis.
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16.
公开(公告)号:US11511426B2
公开(公告)日:2022-11-29
申请号:US16863594
申请日:2020-04-30
Applicant: Gecko Robotics, Inc.
Inventor: Edward A. Bryner , Kevin Y. Low , Joshua D. Moore , Dillon R. Jourde , Francesco H. Trogu , Jeffrey J. Mrkonich , William J. Pridgen , Domenic P. Rodriguez , Alexander C. Watt , Michael Stephen Auda , Logan A. MacKenzie , Ian Miller , Samuel Theodore Westenberg , Katherine Virginia Denner , Benjamin A. Guise , Yizhu Gu , Todd Joslin , Mark J. Loosararian , Mark Cho , Edwin H. Cho
IPC: B25J9/16 , B25J9/00 , B25J5/00 , G05D1/00 , G05D1/02 , B25J9/10 , B25J19/00 , B25J19/02 , G01B11/06 , G01B11/24 , G01B11/30 , G01B17/02 , G01B17/06 , G01B17/08 , G01J3/50 , G01K13/00 , B25J13/08 , B60G17/015 , B60G17/02 , B60G21/00 , B62D37/04 , B62D57/024 , G01M3/04 , G01N21/88 , G01N27/82 , G01N29/04 , G05B15/02
Abstract: Systems, methods and apparatus for rapid development of an inspection scheme for an inspection robot are disclosed. An apparatus may include an inspection definition circuit to interpret an inspection description value, and a robot configuration circuit to determine an inspection robot configuration description in response to the inspection description value. The apparatus may further include a configuration implementation circuit, communicatively coupled to a configuration interface of an inspection robot, to provide at least a portion of the inspection robot configuration description to the configuration interface.
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公开(公告)号:US20220331984A1
公开(公告)日:2022-10-20
申请号:US17741508
申请日:2022-05-11
Applicant: Gecko Robotics, Inc.
Inventor: Edward A. Bryner , Kevin Y. Low , Ignacio J. Cordova , Francesco H. Trogu
Abstract: Inspection robots and methods for inspection of curved surfaces are described. An example inspection robot may include a housing, and at least one drive module operative linked to the housing and including a wheel and motor. An example inspection robot may further include two sleds, each with a sensor, the sled connectable to a payload. An example payload may include multiple rail components with intervening connectors, the connectors are able to connect two rail components at a plurality of discrete engagement positions.
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公开(公告)号:US11472032B2
公开(公告)日:2022-10-18
申请号:US16869629
申请日:2020-05-08
Applicant: Gecko Robotics, Inc.
Inventor: Edward A. Bryner , Kevin Y. Low , Joshua D. Moore , Dillon R. Jourde , Benjamin A. Guise , Alexander C. Watt , Logan A. MacKenzie , Ian Miller , Mark Cho , Edwin H. Cho , Francesco H. Trogu , Domenic P. Rodriguez
IPC: B25J9/16 , B25J9/00 , B25J5/00 , G05D1/00 , G05D1/02 , B25J19/00 , B25J19/02 , B25J9/10 , G01B11/06 , G01B11/24 , G01B11/30 , G01B17/02 , G01B17/06 , G01B17/08 , G01J3/50 , G01K13/00 , B25J13/08
Abstract: An inspection robot, and methods and a controller thereof are disclosed. An inspection robot may include an inspection chassis including a plurality of inspection sensors and coupled to at least one drive module to drive the robot over an inspection surface. The inspection robot may also include a controller including an inspection data circuit to interpret inspection base data, an inspection processing circuit to determine refined inspection data, and an inspection configuration circuit to determine an inspection response value in response to the refined inspection data. The controller may further include an inspection response circuit to, in response to the inspection response value, provide an inspection command value while the inspection robot is interrogating the inspection surface.
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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:US11648671B2
公开(公告)日:2023-05-16
申请号:US16869656
申请日:2020-05-08
Applicant: Gecko Robotics, Inc.
Inventor: Edward A. Bryner , Kevin Y. Low , Joshua D. Moore , Dillon R. Jourde , Edwin H. Cho , William J. Pridgen , Domenic P. Rodriguez , Jeffrey J. Mrkonich , Mark Cho , Francesco H. Trogu , Benjamin A. Guise , Todd Joslin , Logan A. MacKenzie , Ian Miller , Alexander C. Watt
IPC: B25J9/16 , B25J5/00 , B25J9/00 , B25J9/10 , B25J13/08 , B25J19/02 , G05D1/02 , B25J19/00 , G01B11/06 , G01B11/24 , G01B11/30 , G01B17/02 , G01B17/06 , G01B17/08 , G01J3/50 , G01K13/00 , G05D1/00 , 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: Systems, methods, and apparatus for tracking location of an inspection robot are disclosed. An example apparatus for tracking inspection data may include an inspection chassis having a plurality of inspection sensors configured to interrogate an inspection surface, a first drive module and a second drive module, both coupled to the inspection chassis. The first and second drive module may each include a passive encoder wheel and a non-contact sensor positioned in proximity to the passive encoder wheel, wherein the non-contact sensor provides a movement value corresponding to the first passive encoder wheel. An inspection position circuit may determine a relative position of the inspection chassis in response to the movement values from the first and second drive modules.
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