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公开(公告)号:WO2013173385A2
公开(公告)日:2013-11-21
申请号:PCT/US2013/041017
申请日:2013-05-14
Applicant: MICROSOFT CORPORATION
Inventor: WHITT III, David Otto , MICKELSON, Matthew David , PELLEY, Joel Lawrence , TEREDESAI, Amey M. , SHAW, Timothy C. , BEALL, Christopher Strickland , STOUMBOS, Christopher Harry , HUALA, Rob , PLEAKE, Todd David , VANDERVOORT, David C. , WANG, Hua
CPC classification number: G06F3/0202 , A63F13/08 , G06F1/1616 , G06F1/1654 , G06F1/1662 , G06F1/1669 , H01H13/70 , H01H13/702 , H01H2209/002 , H01H2209/006 , H01H2209/016 , H01H2217/024 , H01H2219/028 , H01H2221/05 , H01H2229/02 , H01H2229/028 , H01H2229/034
Abstract: Input device manufacture techniques are described. In one or more implementations, a plurality of layers of a key assembly is positioned in a fixture such that one or more projections of the fixture are disposed through one or more openings in each of the one or more layers. The positioned plurality of layers is secured to each other.
Abstract translation: 描述输入设备制造技术。 在一个或多个实施方案中,将键组件的多个层定位在固定装置中,使得固定装置的一个或多个突起通过一个或多个层中的每一个中的一个或多个开口设置。 定位的多个层彼此固定。
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公开(公告)号:WO2014088617A2
公开(公告)日:2014-06-12
申请号:PCT/US2013/028772
申请日:2013-03-02
Applicant: MICROSOFT CORPORATION
Inventor: HUALA, Rob , SCHNEIDER, Summer L. , SHAW, Timothy C. , WHITT, David Otto, III. , WAHL, Eric Joseph , VANDERVOORT, David C. , PLEAKE, Todd David , MCLAUGHLIN, Robyn Rebecca Reed , MICKELSON, Matthew David , PELLEY, Joel Lawrence , GROENE, Ralf , WANG, Hua , STOUMBOS, Christopher Harry , AAGAARD, Karsten , WISE, James H. , LEON, Camilo , OLIVER, Thomas Charles , CADY, Andrew N. , SCHULTZ, Bernard Maurice , DIGHDE, Rajesh Manohar , DRASNIN, Sharon , SIDDIQUI, Kabir , BELESIU, Jim Tom , ISHIHARA, James Alec , KASSELS, Jay Scott , SPOONER, Richard Peter , DIETZ, Paul Henry , MATHIAS, Dennis J. , LUTZ, Moshe R. , MAIL, Scott Mitchel , WHITMAN, Christopher A. , OLER, Van Winston , UMENO, Hiroo , PEREK, David R. , SCHWAGER, Michael A. , SEILSTAD, Mark J. , REED, Anthony Christian , CUMMINGS, Stephan Alexander , JENSEN, Darryl I. , PANAY, Panos C. , STRANDE, Hakon , GOH, Chun Beng , MANTOOTH, Harold F. , MARSHALL, James Charles , PEDERSEN, Matthew G. , YOUNG, Robert D. , SHERMAN, Nathan C. , GIBSON, Scott K. , SYKES, Shane Aaron , LANE, David M. , OBIE, Gene Robert , GIAIMO, Edward C., III. , NEFF, David , SOUSA, Jose R.
CPC classification number: G06F1/166 , E05D11/1064 , E05F5/08 , F16M11/38 , G05B11/01 , G06F1/1616 , G06F1/1618 , G06F1/1637 , G06F1/1654 , G06F1/1656 , G06F1/1662 , G06F1/1669 , G06F1/1681 , G06F1/1683 , G06F1/1684 , G06F1/1686 , G06F3/002 , G06F3/01 , G06F3/0202 , G06F3/0219 , G06F3/023 , G06F3/0414 , G06F3/0416 , G06F3/0487 , G06F3/0488 , G06F3/04886 , G06F9/541 , G06F11/3089 , G06F13/102 , H01H9/26 , H01H11/00 , H01H13/14 , H01H13/702 , H01H13/703 , H01H13/704 , H01H13/78 , H01H13/785 , H01H13/79 , H01H13/807 , H01H13/82 , H01H2201/036 , H01H2203/02 , H01H2203/036 , H01H2203/058 , H01H2205/006 , H01H2211/004 , H01H2211/006 , H01H2213/016 , H01H2217/004 , H01H2217/006 , H01H2217/01 , H01H2227/032 , H04M1/0216 , H04M1/0245 , H04M1/0254 , H04M1/72527 , H05K5/0226 , H05K5/0234 , Y02D10/14 , Y10T16/5401 , Y10T16/551 , Y10T29/49826
Abstract: Flexible hinge and removable attachment techniques are described. In one or more implementations, a flexible hinge is configured to communicatively and physically couple an input device to a computing device and may implement functionality such as a support layer and minimum bend radius. The input device may also include functionality to promote a secure physical connection between the input device and the computing device. One example of this includes use of one or more protrusions that are configured to be removed from respective cavities of the computing device along a particular axis but mechanically bind along other axes. Other techniques include use of a laminate structure to form a connection portion of the input device.
Abstract translation: 描述了灵活的铰链和可拆卸附接技术。 在一个或多个实现中,柔性铰链被配置为将输入设备通信地和物理地耦合到计算设备,并且可以实现诸如支持层和最小弯曲半径之类的功能。 输入设备还可以包括促进输入设备和计算设备之间的安全物理连接的功能。 一个实例包括使用一个或多个突起,其被构造成沿着特定轴线从计算设备的相应空腔移除,但是沿其它轴线机械地结合。 其他技术包括使用层压结构形成输入装置的连接部分。
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公开(公告)号:WO2014088615A3
公开(公告)日:2014-06-12
申请号:PCT/US2013/028769
申请日:2013-03-02
Applicant: MICROSOFT CORPORATION
Inventor: JENSEN, Darryl I. , SIDDIQUI, Kabir , GROENE, Ralf , AAGAARD, Karsten , REED, Anthony Christian , CUMMINGS, Stephan Alexander , WHITT, David Otto, III , MCLAUGHLIN, Robyn Rebecca Reed , SCHNEIDER, Summer L. , WAHL, Eric Joseph , WISE, James H. , LEON, Camilo , OLIVER, Thomas Charles , CADY, Andrew N. , SCHULTZ, Bernard Maurice , DIGHDE, Rajesh Manohar , DRASNIN, Sharon , BELESIU, Jim Tom , ISHIHARA, James Alec , WANG, Hua , STOUMBOS, Christopher Harry , PELLEY, Joel Lawrence , KASSELS, Jay Scott , SPOONER, Richard Peter , SHAW, Timothy C. , MICKELSON, Matthew David , HUALA, Rob , DIETZ, Paul Henry , MATHIAS, Dennis J. , VANDERVOORT, David C. , PLEAKE, Todd David , LUTZ, Moshe R. , MAIL, Scott Mitchel , WHITMAN, Christopher A. , OLER, Van Winston , UMENO, Hiroo , PEREK, David R. , SCHWAGER, Michael A. , SEILSTAD, Mark J. , PANAY, Panos C. , STRANDE, Hakon , GOH, Chun Beng , MANTOOTH, Harold F. , MARSHALL, James Charles , PEDERSEN, Matthew G. , YOUNG, Robert D. , SHERMAN, Nathan C. , GIBSON, Scott K. , SYKES, Shane Aaron , LANE, David M. , OBIE, Gene Robert , GIAIMO, Edward C., III , NEFF, David , SOUSA, Jose R.
IPC: G06F1/16
Abstract: A device kickstand is described. In at least some implementations, a kickstand is rotatably attached to a mobile computing device. The kickstand can be rotated to various positions to provide support for different orientations of the computing device. In at least some implementations, hinges are employed to attach a kickstand to a mobile computing device. One example hinge utilizes preset hinge stops that enable the kickstand to be placed at different preset positions. Another example hinge exerts pressure on an edge of the kickstand, providing stability and vibration dampening to the kickstand.
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公开(公告)号:WO2014088613A2
公开(公告)日:2014-06-12
申请号:PCT/US2013/028766
申请日:2013-03-01
Applicant: MICROSOFT CORPORATION
Inventor: BELESIU, Jim Tom , SHAW, Timothy C. , WHITT, III, David Otto , HUALA, Rob , STOUMBOS, Christopher Harry , PELLEY, Joel Lawrence , MCLAUGHLIN, Robyn Rebecca Reed , SCHNEIDER, Summer L. , WAHL, Eric Joseph , WISE, James H. , LEON, Camilo , AAGAARD, Karsten , OLIVER, Thomas Charles , CADY, Andrew N. , SCHULTZ, Bernard Maurice , DIGHDE, Rajesh Manohar , DRASNIN, Sharon , SIDDIQUI, Kabir , ISHIHARA, James Alec , WANG, Hua , GROENE, Ralf , KASSELS, Jay Scott , SPOONER, Richard Peter , MICKELSON, Matthew David , DIETZ, Paul Henry , MATHIAS, Dennis J. , VANDERVOORT, David C. , PLEAKE, Todd David , LUTZ, Moshe R. , MAIL, Scott Mitchel , WHITMAN, Christopher A. , OLER, Van Winston , UMENO, Hiroo , PEREK, David R. , SCHWAGER, Michael A. , SEILSTAD, Mark J. , REED, Anthony Christian , CUMMINGS, Stephan Alexander , JENSEN, Darryl I. , PANAY, Panos C. , STRANDE, Hakon , GOH, Chun Beng , MANTOOTH, Harold F. , MARSHALL, James Charles , PEDERSEN, Matthew G. , YOUNG, Robert D. , SHERMAN, Nathan C. , GIBSON, Scott K. , SYKES, Shane Aaron , LANE, David M. , OBIE, Gene Robert , GIAIMO, III, Edward C. , NEFF, David , SOUSA, Jose R.
CPC classification number: G06F1/166 , E05D11/1064 , E05F5/08 , F16M11/38 , G05B11/01 , G06F1/1616 , G06F1/1618 , G06F1/1637 , G06F1/1654 , G06F1/1656 , G06F1/1662 , G06F1/1669 , G06F1/1681 , G06F1/1683 , G06F1/1684 , G06F1/1686 , G06F3/002 , G06F3/01 , G06F3/0202 , G06F3/0219 , G06F3/023 , G06F3/0414 , G06F3/0416 , G06F3/0487 , G06F3/0488 , G06F3/04886 , G06F9/541 , G06F11/3089 , G06F13/102 , H01H9/26 , H01H11/00 , H01H13/14 , H01H13/702 , H01H13/703 , H01H13/704 , H01H13/78 , H01H13/785 , H01H13/79 , H01H13/807 , H01H13/82 , H01H2201/036 , H01H2203/02 , H01H2203/036 , H01H2203/058 , H01H2205/006 , H01H2211/004 , H01H2211/006 , H01H2213/016 , H01H2217/004 , H01H2217/006 , H01H2217/01 , H01H2227/032 , H04M1/0216 , H04M1/0245 , H04M1/0254 , H04M1/72527 , H05K5/0226 , H05K5/0234 , Y02D10/14 , Y10T16/5401 , Y10T16/551 , Y10T29/49826
Abstract: Input device layer and nesting techniques are described. In one or more implementations, an input device includes a pressure sensitive key assembly including a substrate having a plurality of hardware elements secured to a surface. The input device also includes one or more layers disposed proximal to the surface, the one or more layers having respective openings configured to nest the one or more hardware elements therein.
Abstract translation: 描述输入设备层和嵌套技术。 在一个或多个实施方案中,输入装置包括压敏密钥组件,其包括具有固定到表面的多个硬件元件的基板。 所述输入装置还包括邻近所述表面设置的一个或多个层,所述一个或多个层具有被配置为将所述一个或多个硬件元件嵌套在其中的相应开口。
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公开(公告)号:WO2014084873A3
公开(公告)日:2014-06-05
申请号:PCT/US2013/028482
申请日:2013-03-01
Applicant: MICROSOFT CORPORATION
Inventor: WHITT, III, David Otto , MCLAUGHLIN, Robyn Rebecca Reed , SCHNEIDER, Summer L. , WAHL, Eric Joseph , WISE, James H. , LEON, Camilo , AAGAARD, Karsten , OLIVER, Thomas Charles , CADY, Andrew N. , SCHULTZ, Bernard Maurice , DIGHDE, Rajesh Manohar , DRASNIN, Sharon , SIDDIQUI, Kabir , BELESIU, Jim Tom , ISHIHARA, James Alec , WANG, Hua , GROENE, Ralf , STOUMBOS, Christopher Harry , PELLEY, Joel Lawrence , KASSELS, Jay Scott , SPOONER, Richard Peter , SHAW, Timothy C. , MICKELSON, Matthew David , HUALA, Rob , DIETZ, Paul Henry , MATHIAS, Dennis J. , VANDERVOORT, David C. , PLEAKE, Todd David , LUTZ, Moshe R. , MAIL, Scott Mitchel , WHITMAN, Christopher A. , OLER, Van Winston , UMENO, Hiroo , PEREK, David R. , SCHWAGER, Michael A. , SEILSTAD, Mark J. , REED, Anthony Christian , CUMMINGS, Stephan Alexander , JENSEN, Darryl I. , PANAY, Panos C. , STRANDE, Hakon , GOH, Chun Beng , MANTOOTH, Harold F. , MARSHALL, James Charles , PEDERSEN, Matthew G. , YOUNG, Robert D. , SHERMAN, Nathan C. , GIBSON, Scott K. , SYKES, Shane Aaron , LANE, David M. , OBIE, Gene Robert , GIAIMO, III, Edward C. , NEFF, David , SOUSA, Jose R.
IPC: G06F3/02
Abstract: Key formation techniques are described. In one or more implementations, an input device includes a key assembly including a plurality of keys that are usable to initiate respective inputs for a computing device, a connection portion configured to be removably connected to the computing device physically and communicatively to communicate signals generated by the plurality of keys to the computing device, and an outer layer that is configured to cover the plurality of keys of the key assembly, the outer layer having a plurality of areas that are embossed thereon that indicate one or more borders of respective said keys.
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公开(公告)号:WO2014084872A2
公开(公告)日:2014-06-05
申请号:PCT/US2013/028481
申请日:2013-03-01
Applicant: MICROSOFT CORPORATION
Inventor: WHITT, III, David Otto , MCLAUGHLIN, Robyn Rebecca Reed , SCHNEIDER, Summer L. , WAHL, Eric Joseph , WISE, James H. , LEON, Camilo , AAGAARD, Karsten , OLIVER, Thomas Charles , CADY, Andrew N. , SCHULTZ, Bernard Maurice , DIGHDE, Rajesh Manohar , DRASNIN, Sharon , SIDDIQUI, Kabir , BELESIU, Jim Tom , ISHIHARA, James Alec , WANG, Hua , GROENE, Ralf , STOUMBOS, Christopher Harry , PELLEY, Joel Lawrence , KASSELS, Jay Scott , SPOONER, Richard Peter , SHAW, Timothy C. , MICKELSON, Matthew David , HUALA, Rob , DIETZ, Paul Henry , MATHIAS, Dennis J. , VANDERVOORT, David C. , PLEAKE, Todd David , LUTZ, Moshe R. , MAIL, Scott Mitchel , WHITMAN, Christopher A. , OLER, Van Winston , UMENO, Hiroo , PEREK, David R. , SCHWAGER, Michael A. , SEILSTAD, Mark J. , REED, Anthony Christian , CUMMINGS, Stephan Alexander , JENSEN, Darryl I. , PANAY, Panos C. , STRANDE, Hakon , GOH, Chun Beng , MANTOOTH, Harold F. , MARSHALL, James Charles , PEDERSEN, Matthew G. , YOUNG, Robert D. , SHERMAN, Nathan C. , GIBSON, Scott K. , SYKES, Shane Aaron , LANE, David M. , OBIE, Gene Robert , GIAIMO, III, Edward C. , NEFF, David , SOUSA, Jose R.
CPC classification number: G06F1/166 , E05D11/1064 , E05F5/08 , F16M11/38 , G05B11/01 , G06F1/1616 , G06F1/1618 , G06F1/1637 , G06F1/1654 , G06F1/1656 , G06F1/1662 , G06F1/1669 , G06F1/1681 , G06F1/1683 , G06F1/1684 , G06F1/1686 , G06F3/002 , G06F3/01 , G06F3/0202 , G06F3/0219 , G06F3/023 , G06F3/0414 , G06F3/0416 , G06F3/0487 , G06F3/0488 , G06F3/04886 , G06F9/541 , G06F11/3089 , G06F13/102 , H01H9/26 , H01H11/00 , H01H13/14 , H01H13/702 , H01H13/703 , H01H13/704 , H01H13/78 , H01H13/785 , H01H13/79 , H01H13/807 , H01H13/82 , H01H2201/036 , H01H2203/02 , H01H2203/036 , H01H2203/058 , H01H2205/006 , H01H2211/004 , H01H2211/006 , H01H2213/016 , H01H2217/004 , H01H2217/006 , H01H2217/01 , H01H2227/032 , H04M1/0216 , H04M1/0245 , H04M1/0254 , H04M1/72527 , H05K5/0226 , H05K5/0234 , Y02D10/14 , Y10T16/5401 , Y10T16/551 , Y10T29/49826
Abstract: Flux fountain techniques are described. In one or more implementations, an apparatus includes a cover configured to be disposed over at least a portion of a display device of a computing device that is configured as a tablet and a connection portion attached to the cover using a flexible hinge. The connection portion is configured to be physically coupled to the computing device using a magnetic coupling device. The magnetic coupling device includes a first magnet that is disposed in the connection portion such that a magnetic field is aligned along an axis and second and third magnets are disposed in the connection portion at opposing sides of the first magnet from each other. The second and third magnets have respective magnetic fields that are aligned along a respective axis that is substantially perpendicular to the axis of the magnetic field of the first magnet.
Abstract translation: 描述了助焊嘴技术。 在一个或多个实施方式中,一种装置包括盖,其被配置为设置在被配置为平板电脑的计算设备的显示设备的至少一部分上,以及使用柔性铰链连接到盖的连接部分。 连接部分被配置为使用磁耦合装置物理耦合到计算装置。 磁耦合装置包括:第一磁体,其设置在连接部分中,使得磁场沿轴线对准,并且第二和第三磁体设置在第一磁体的相对侧处的连接部分中。 第二和第三磁体具有沿着基本上垂直于第一磁体的磁场的轴线的相应轴对准的各自的磁场。
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公开(公告)号:EP2820518A2
公开(公告)日:2015-01-07
申请号:EP13858674.8
申请日:2013-03-02
Applicant: Microsoft Corporation
Inventor: SHAW, Timothy C. , BELESIU, Jim Tom , DIETZ, Paul Henry , STOUMBOS, Christopher Harry , MATHIAS, Dennis J. , WHITT, David Otto, III , MCLAUGHLIN, Robyn Rebecca Reed , SCHNEIDER, Summer L. , WAHL, Eric Joseph , WISE, James H. , LEON, Camilo , AAGAARD, Karsten , OLIVER, Thomas Charles , CADY, Andrew N. , SCHULTZ, Bernard Maurice , DIGHDE, Rajesh Manohar , DRASNIN, Sharon , SIDDIQUI, Kabir , ISHIHARA, James Alec , WANG, Hua , GROENE, Ralf , PELLEY, Joel Lawrence , KASSELS, Jay Scott , SPOONER, Richard Peter , MICKELSON, Matthew David , HUALA, Rob , VANDERVOORT, David C. , PLEAKE, Todd David , LUTZ, Moshe R. , MAIL, Scott Mitchel , WHITMAN, Christopher A. , OLER, Van Winston , UMENO, Hiroo , PEREK, David R. , SCHWAGER, Michael A. , SEILSTAD, Mark J. , REED, Anthony Christian , CUMMINGS, Stephan Alexander , JENSEN, Darryl I. , PANAY, Panos C. , STRANDE, Hakon , GOH, Chun Beng , MANTOOTH, Harold F. , MARSHALL, James Charles , PEDERSEN, Matthew G. , YOUNG, Robert D. , SHERMAN, Nathan C. , GIBSON, Scott K. , SYKES, Shane Aaron , LANE, David M. , OBIE, Gene Robert , GIAIMO, III, Edward, C. , NEFF, David , SOUSA, Jose R.
IPC: G06F3/02
CPC classification number: G06F1/166 , E05D11/1064 , E05F5/08 , F16M11/38 , G05B11/01 , G06F1/1616 , G06F1/1618 , G06F1/1637 , G06F1/1654 , G06F1/1656 , G06F1/1662 , G06F1/1669 , G06F1/1681 , G06F1/1683 , G06F1/1684 , G06F1/1686 , G06F3/002 , G06F3/01 , G06F3/0202 , G06F3/0219 , G06F3/023 , G06F3/0414 , G06F3/0416 , G06F3/0487 , G06F3/0488 , G06F3/04886 , G06F9/541 , G06F11/3089 , G06F13/102 , H01H9/26 , H01H11/00 , H01H13/14 , H01H13/702 , H01H13/703 , H01H13/704 , H01H13/78 , H01H13/785 , H01H13/79 , H01H13/807 , H01H13/82 , H01H2201/036 , H01H2203/02 , H01H2203/036 , H01H2203/058 , H01H2205/006 , H01H2211/004 , H01H2211/006 , H01H2213/016 , H01H2217/004 , H01H2217/006 , H01H2217/01 , H01H2227/032 , H04M1/0216 , H04M1/0245 , H04M1/0254 , H04M1/72527 , H05K5/0226 , H05K5/0234 , Y02D10/14 , Y10T16/5401 , Y10T16/551 , Y10T29/49826
Abstract: Techniques for mobile device power state are described. In one or more implementations, a mobile device includes a computing device that is flexibly coupled to an input device via a flexible hinge. Accordingly, the mobile device can operate in a variety of different power states based on a positional orientation of the computing device to an associated input device. In one or more implementations, an application that resides on a computing device can operate in different application states based on a positional orientation of the computing device to an associated input device. In one or more implementations, techniques discussed herein can differentiate between vibrations caused by touch input to a touch functionality, and other types of vibrations. Based on this differentiation, techniques can determine whether to transition between device power states.
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公开(公告)号:EP2820507A2
公开(公告)日:2015-01-07
申请号:EP13858403.2
申请日:2013-03-01
Applicant: Microsoft Corporation
Inventor: DRASNIN, Sharon , SCHWAGER, Michael A. , STOUMBOS, Christopher Harry , SEILSTAD, Mark J. , DIGHDE, Rajesh Manohar , CADY, Andrew N. , SCHULTZ, Bernard Maurice , WHITT, III, David Otto , SCHNEIDER, Summer L. , SIDDIQUI, Kabir , ISHIHARA, James Alec , WANG, Hua , GROENE, Ralf , PELLEY, Joel Lawrence , KASSELS, Jay Scott , SPOONER, Richard Peter , SHAW, Timothy C. , MICKELSON, Matthew David , AAGAARD, Karsten , HUALA, Rob , DIETZ, Paul Henry , MATHIAS, Dennis J. , VANDERVOORT, David C. , PLEAKE, Todd David , LUTZ, Moshe R. , MAIL, Scott Mitchel , WHITMAN, Christopher A. , WAHL, Eric Joseph , MCLAUGHLIN, Robyn Rebecca Reed , WISE, James H. , LEON, Camilo , OLIVER, Thomas Charles , OLER, Van Winston , UMENO, Hiroo , PEREK, David R. , REED, Anthony Christian , CUMMINGS, Stephan Alexander , JENSEN, Darryl I. , PANAY, Panos C. , STRANDE, Hakon , GOH, Chun Beng , MANTOOTH, Harold F. , MARSHALL, James Charles , PEDERSEN, Matthew G. , YOUNG, Robert D. , SHERMAN, Nathan C. , GIBSON, Scott K. , SYKES, Shane Aaron , LANE, David M. , OBIE, Gene Robert , GIAIMO, III, Edward C. , NEFF, David , SOUSA, Jose R.
CPC classification number: G06F1/166 , E05D11/1064 , E05F5/08 , F16M11/38 , G05B11/01 , G06F1/1616 , G06F1/1618 , G06F1/1637 , G06F1/1654 , G06F1/1656 , G06F1/1662 , G06F1/1669 , G06F1/1681 , G06F1/1683 , G06F1/1684 , G06F1/1686 , G06F3/002 , G06F3/01 , G06F3/0202 , G06F3/0219 , G06F3/023 , G06F3/0414 , G06F3/0416 , G06F3/0487 , G06F3/0488 , G06F3/04886 , G06F9/541 , G06F11/3089 , G06F13/102 , H01H9/26 , H01H11/00 , H01H13/14 , H01H13/702 , H01H13/703 , H01H13/704 , H01H13/78 , H01H13/785 , H01H13/79 , H01H13/807 , H01H13/82 , H01H2201/036 , H01H2203/02 , H01H2203/036 , H01H2203/058 , H01H2205/006 , H01H2211/004 , H01H2211/006 , H01H2213/016 , H01H2217/004 , H01H2217/006 , H01H2217/01 , H01H2227/032 , H04M1/0216 , H04M1/0245 , H04M1/0254 , H04M1/72527 , H05K5/0226 , H05K5/0234 , Y02D10/14 , Y10T16/5401 , Y10T16/551 , Y10T29/49826
Abstract: Techniques for mobile device power state are described. In one or more implementations, a mobile device includes a computing device that is flexibly coupled to an input device via a flexible hinge. Accordingly, the mobile device can operate in a variety of different power states based on a positional orientation of the computing device to an associated input device. In one or more implementations, an application that resides on a computing device can operate in different application states based on a positional orientation of the computing device to an associated input device. In one or more implementations, techniques discussed herein can differentiate between vibrations caused by touch input to a touch functionality, and other types of vibrations. Based on this differentiation, techniques can determine whether to transition between device power states.
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公开(公告)号:EP2820506A2
公开(公告)日:2015-01-07
申请号:EP13861059.7
申请日:2013-03-02
Applicant: Microsoft Corporation
Inventor: JENSEN, Darryl I. , SIDDIQUI, Kabir , GROENE, Ralf , AAGAARD, Karsten , REED, Anthony Christian , CUMMINGS, Stephan Alexander , WHITT, David Otto, III , MCLAUGHLIN, Robyn Rebecca Reed , SCHNEIDER, Summer L. , WAHL, Eric Joseph , WISE, James H. , LEON, Camilo , OLIVER, Thomas Charles , CADY, Andrew N. , SCHULTZ, Bernard Maurice , DIGHDE, Rajesh Manohar , DRASNIN, Sharon , BELESIU, Jim Tom , ISHIHARA, James Alec , WANG, Hua , STOUMBOS, Christopher Harry , PELLEY, Joel Lawrence , KASSELS, Jay Scott , SPOONER, Richard Peter , SHAW, Timothy C. , MICKELSON, Matthew David , HUALA, Rob , DIETZ, Paul Henry , MATHIAS, Dennis J. , VANDERVOORT, David C. , PLEAKE, Todd David , LUTZ, Moshe R. , MAIL, Scott Mitchel , WHITMAN, Christopher A. , OLER, Van Winston , UMENO, Hiroo , PEREK, David R. , SCHWAGER, Michael A. , SEILSTAD, Mark J. , PANAY, Panos C. , STRANDE, Hakon , GOH, Chun Beng , MANTOOTH, Harold F. , MARSHALL, James Charles , PEDERSEN, Matthew G. , YOUNG, Robert D. , SHERMAN, Nathan C. , GIBSON, Scott K. , SYKES, Shane Aaron , LANE, David M. , OBIE, Gene Robert , GIAIMO, Edward C., III , NEFF, David , SOUSA, Jose R.
IPC: G06F1/16
Abstract: Techniques for mobile device power state are described. In one or more implementations, a mobile device includes a computing device that is flexibly coupled to an input device via a flexible hinge. Accordingly, the mobile device can operate in a variety of different power states based on a positional orientation of the computing device to an associated input device. In one or more implementations, an application that resides on a computing device can operate in different application states based on a positional orientation of the computing device to an associated input device. In one or more implementations, techniques discussed herein can differentiate between vibrations caused by touch input to a touch functionality, and other types of vibrations. Based on this differentiation, techniques can determine whether to transition between device power states.
Abstract translation: 描述了压敏关键技术。 在一个或多个实施方案中,装置包括至少一个压力敏感键,其具有通过间隔层与传感器衬底间隔开的柔性接触层,所述柔性接触层被配置为响应压力弯曲以接触传感器衬底以启动输入 ,用于与压敏键相关联的计算设备。 弹性接触层或传感器基底中的至少一个被配置为至少部分地对由柔性接触层的第一位置处施加的压力产生的输出进行归一化,其中所产生的输出由在柔性接触层的第二位置施加的压力 这比第一个位置具有更小的灵活性。
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公开(公告)号:EP2820512A2
公开(公告)日:2015-01-07
申请号:EP13859406.4
申请日:2013-03-01
Applicant: Microsoft Corporation
Inventor: SCHWAGER, Michael A. , DRASNIN, Sharon , SEILSTAD, Mark J. , DIGHDE, Rajesh Manohar , CADY, Andrew N. , SCHULTZ, Bernard Maurice , WHITT, III, David Otto , SCHNEIDER, Summer L. , SIDDIQUI, Kabir , BELESIU, Jim Tom , ISHIHARA, James Alec , WANG, Hua , GROENE, Ralf , STOUMBOS, Christopher Harry , PELLEY, Joel Lawrence , KASSELS, Jay Scott , SPOONER, Richard Peter , SHAW, Timothy C. , MICKELSON, Matthew David , AAGAARD, Karsten , HUALA, Rob , DIETZ, Paul Henry , MATHIAS, Dennis J. , VANDERVOORT, David C. , PLEAKE, Todd David , LUTZ, Moshe R. , MAIL, Scott Mitchel , WHITMAN, Christopher A. , WAHL, Eric Joseph , MCLAUGHLIN, Robyn Rebecca Reed , WISE, James H. , LEON, Camilo , OLIVER, Thomas Charles , OLER, Van Winston , UMENO, Hiroo , REED, Anthony Christian , CUMMINGS, Stephan Alexander , JENSEN, Darryl I. , PANAY, Panos C. , STRANDE, Hakon , GOH, Chun Beng , MANTOOTH, Harold F. , MARSHALL, James Charles , PEDERSEN, Matthew G. , YOUNG, Robert D. , SHERMAN, Nathan C. , GIBSON, Scott K. , SYKES, Shane Aaron , LANE, David M. , OBIE, Gene Robert , GIAIMO, III, Edward C. , NEFF, David , SOUSA, Jose R.
IPC: G06F3/00
CPC classification number: G06F1/166 , E05D11/1064 , E05F5/08 , F16M11/38 , G05B11/01 , G06F1/1616 , G06F1/1618 , G06F1/1637 , G06F1/1654 , G06F1/1656 , G06F1/1662 , G06F1/1669 , G06F1/1681 , G06F1/1683 , G06F1/1684 , G06F1/1686 , G06F3/002 , G06F3/01 , G06F3/0202 , G06F3/0219 , G06F3/023 , G06F3/0414 , G06F3/0416 , G06F3/0487 , G06F3/0488 , G06F3/04886 , G06F9/541 , G06F11/3089 , G06F13/102 , H01H9/26 , H01H11/00 , H01H13/14 , H01H13/702 , H01H13/703 , H01H13/704 , H01H13/78 , H01H13/785 , H01H13/79 , H01H13/807 , H01H13/82 , H01H2201/036 , H01H2203/02 , H01H2203/036 , H01H2203/058 , H01H2205/006 , H01H2211/004 , H01H2211/006 , H01H2213/016 , H01H2217/004 , H01H2217/006 , H01H2217/01 , H01H2227/032 , H04M1/0216 , H04M1/0245 , H04M1/0254 , H04M1/72527 , H05K5/0226 , H05K5/0234 , Y02D10/14 , Y10T16/5401 , Y10T16/551 , Y10T29/49826
Abstract: Techniques for mobile device power state are described. In one or more implementations, a mobile device includes a computing device that is flexibly coupled to an input device via a flexible hinge. Accordingly, the mobile device can operate in a variety of different power states based on a positional orientation of the computing device to an associated input device. In one or more implementations, an application that resides on a computing device can operate in different application states based on a positional orientation of the computing device to an associated input device. In one or more implementations, techniques discussed herein can differentiate between vibrations caused by touch input to a touch functionality, and other types of vibrations. Based on this differentiation, techniques can determine whether to transition between device power states.
Abstract translation: 描述传感器融合算法技术。 在一个或多个实施例中,基于主机设备和附件设备相对于彼此的定向来控制主机设备和附件设备的行为。 基于从至少两种不同类型的传感器获得的原始测量值可以获得主设备的组合空间位置和/或取向。 另外,使用附件装置的一个或多个传感器来确定附件装置的空间位置和/或方位。 然后可以基于主计算设备的组合空间位置/取向和附件设备的所确定的空间位置/取向来计算附件设备相对于主计算设备的取向(或位置)。 然后可以以各种方式使用所计算的相对定向来控制主机计算设备和/或附件设备的行为。
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