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公开(公告)号:US20190274644A1
公开(公告)日:2019-09-12
申请号:US16423450
申请日:2019-05-28
发明人: Scott David Kravis , Leonid Khatutskiy , James Paul Frerichs , Adrian David French , Kyle Alan Pixton , Hein Loijens , Frank Polderdijk , Helmut Rosner
IPC分类号: A61B6/14 , A61B6/00 , A61B5/01 , A61B5/00 , G01R31/44 , G06F1/3215 , G06F1/3234 , G06F3/00 , G06F3/03 , H02S40/44 , G01J3/28 , H04N5/32 , H04N5/232
摘要: Methods and systems are described for operating an imaging sensor, the imaging sensor including a multi-dimensional sensor. An electronic processor receives an output from the multi-dimensional sensor and transitions the imaging sensor from the low-power state into a ready state in response to a determination by the electronic processor, based on the output from the multi-dimensional sensor, that a first state transition criteria is satisfied and transitions the imaging sensor from the ready state into an armed state in response to a determination that a second state transition criteria is satisfied. In some implementations, the electronic processor operates the imaging sensor to capture image data only when operating in the armed state and prevents the imaging system from transitioning from the low-power state directly into the armed state.
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公开(公告)号:US10299741B2
公开(公告)日:2019-05-28
申请号:US15265753
申请日:2016-09-14
发明人: Scott David Kravis , Leonid Khatutskiy , James Paul Frerichs , Adrian David French , Kyle Alan Pixton , Hein Loijens , Frank Polderdijk , Helmut Rosner
IPC分类号: A61B6/14 , A61B6/00 , A61B5/01 , G01J3/28 , A61B5/00 , G01R31/44 , H02S40/44 , G06F1/3215 , G06F1/3234 , G06F3/00 , G06F3/03 , H04N5/232 , H04N5/32 , G01L7/00 , G01R33/02 , G01T1/16 , G01R31/02 , H01H35/14 , H01L31/00 , H01L27/14 , A61B5/055
摘要: Methods and systems are described for operating an imaging sensor, the imaging sensor including a multi-dimensional sensor. An electronic processor receives an output from the multi-dimensional sensor and transitions the imaging sensor from the low-power state into a ready state in response to a determination by the electronic processor, based on the output from the multi-dimensional sensor, that a first state transition criteria is satisfied and transitions the imaging sensor from the ready state into an armed state in response to a determination that a second state transition criteria is satisfied. In some implementations, the electronic processor operates the imaging sensor to capture image data only when operating in the armed state and prevents the imaging system from transitioning from the low-power state directly into the armed state.
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公开(公告)号:US20180070897A1
公开(公告)日:2018-03-15
申请号:US15627232
申请日:2017-06-19
发明人: Scott David Kravis , Leonid Khatutskiy , James Paul Frerichs , Adrian David French , Kyle Alan Pixton , Hein Loijens , Frank Polderdijk , Helmut Rosner
CPC分类号: A61B6/145 , A61B5/01 , A61B5/055 , A61B5/4547 , A61B5/7275 , A61B6/4233 , A61B6/4405 , A61B6/4429 , A61B6/461 , A61B6/467 , A61B6/545 , A61B6/547 , A61B6/586 , A61B6/587 , A61B2560/0204 , A61B2562/0219 , A61B2562/0223 , A61B2562/0247 , G01R31/02 , G01R31/44 , G01R33/02 , G01T1/16 , G03B42/04 , G06F3/017 , G16H40/63 , H01H35/14 , H01H36/00 , H01L27/14
摘要: Systems and methods are described for operating an imaging system that includes an intra-oral imaging sensor and an electronic processor. The intra-oral imaging sensor includes a housing, an image sensing component at least partially housed within the housing, and a multi-dimensional sensor at least partially housed within the housing. The electronic processor is configured to receive an output of the multi-dimensional sensor indicative of movement of the intra-oral imaging sensor. The output is compared to predetermined movement criteria indicative of a type of movement and, in response to determining that the type of movement of the imaging sensor has occurred, the electronic processor alters the operation of the imaging system.
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公开(公告)号:US10932733B2
公开(公告)日:2021-03-02
申请号:US15627232
申请日:2017-06-19
发明人: Scott David Kravis , Leonid Khatutskiy , James Paul Frerichs , Adrian David French , Kyle Alan Pixton , Hein Loijens , Frank Polderdijk , Helmut Rosner
IPC分类号: A61B6/14 , A61B6/00 , H01L27/14 , G06F3/01 , G01T1/16 , A61B5/01 , A61B5/00 , H01H36/00 , G01R33/02 , H01H35/14 , G03B42/04 , A61B5/055 , G01R31/44 , G16H40/63 , G01R31/50
摘要: Systems and methods are described for operating an imaging system that includes an intra-oral imaging sensor and an electronic processor. The intra-oral imaging sensor includes a housing, an image sensing component at least partially housed within the housing, and a multi-dimensional sensor at least partially housed within the housing. The electronic processor is configured to receive an output of the multi-dimensional sensor indicative of movement of the intra-oral imaging sensor. The output is compared to predetermined movement criteria indicative of a type of movement and, in response to determining that the type of movement of the imaging sensor has occurred, the electronic processor alters the operation of the imaging system.
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5.
公开(公告)号:US20180070895A1
公开(公告)日:2018-03-15
申请号:US15265753
申请日:2016-09-14
发明人: Scott David Kravis , Leonid Khatutskiy , James Paul Frerichs , Adrian David French , Kyle Alan Pixton , Hein Loijens , Frank Polderdijk , Helmut Rosner
CPC分类号: A61B6/145 , A61B5/01 , A61B5/055 , A61B5/4547 , A61B6/4233 , A61B6/4405 , A61B6/465 , A61B6/467 , A61B6/54 , A61B6/58 , A61B6/586 , A61B6/587 , A61B2560/0204 , A61B2562/0219 , A61B2562/0223 , A61B2562/0247 , G01J3/2803 , G01L7/00 , G01R31/02 , G01R31/44 , G01R33/02 , G01T1/16 , G06F1/3215 , G06F1/325 , G06F3/005 , G06F3/0304 , H01H35/14 , H01L27/14 , H01L31/00 , H02S40/44 , H04N5/232 , H04N5/32
摘要: Methods and systems are described for operating an imaging sensor, the imaging sensor including a multi-dimensional sensor. An electronic processor receives an output from the multi-dimensional sensor and transitions the imaging sensor from the low-power state into a ready state in response to a determination by the electronic processor, based on the output from the multi-dimensional sensor, that a first state transition criteria is satisfied and transitions the imaging sensor from the ready state into an armed state in response to a determination that a second state transition criteria is satisfied. In some implementations, the electronic processor operates the imaging sensor to capture image data only when operating in the armed state and prevents the imaging system from transitioning from the low-power state directly into the armed state.
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