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公开(公告)号:US20170338087A1
公开(公告)日:2017-11-23
申请号:US15665298
申请日:2017-07-31
Applicant: View, Inc.
Inventor: Ronald M. Parker , Robert T. Rozbicki
CPC classification number: H01J37/3417 , C23C14/3407 , C23C14/56 , H01J37/3414 , H01J37/3435
Abstract: The present disclosure concerns sputter targets and sputtering methods. In particular, sputter targets and methods of sputtering using conventional sputter targets as well as sputter targets described herein, for highly uniform sputter deposition, are described.
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公开(公告)号:US09638977B2
公开(公告)日:2017-05-02
申请号:US14384146
申请日:2013-03-13
Applicant: View, Inc.
Inventor: Robin Friedman , Sridhar K. Kailasam , Rao Mulpuri , Ronald M. Parker , Ronald A. Powell , Anshu A. Pradhan , Robert T. Rozbicki , Vinod Khosla
IPC: G02F1/153 , G02F1/15 , B01J19/12 , G01R31/08 , G02F1/01 , G02F1/13 , C03C23/00 , B05D3/12 , G02F1/163
CPC classification number: G02F1/1523 , B01J19/121 , B05D3/12 , C03C23/0025 , G01R31/08 , G02F1/0147 , G02F1/1309 , G02F1/15 , G02F1/153 , G02F1/1533 , G02F1/163 , G02F2001/1515 , G02F2201/508 , Y10T156/10
Abstract: Methods, apparatus, and systems for mitigating defects in optical devices such as electrochromic devices. One method mitigates a pinhole defect in an electrochromic device by identifying the site of the pinhole defect and obscuring the pinhole to make it less visually discernible. In some cases, the pinhole defect may be the result of mitigating a short-related defect.
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公开(公告)号:US20170115544A1
公开(公告)日:2017-04-27
申请号:US15364162
申请日:2016-11-29
Applicant: View, Inc.
Inventor: Ronald M. Parker , Robert T. Rozbicki , Yashraj Bhatnagar , Abhishek Anant Dixit , Anshu A. Pradhan
CPC classification number: G02F1/1533 , B32B17/10055 , B32B17/10128 , B32B17/10183 , B32B17/10513 , B32B17/10697 , B32B17/10908 , B32B17/10917 , B32B17/1099 , B32B37/18 , B32B38/0008 , B32B38/105 , B32B2333/12 , B32B2457/20 , G02F1/13458 , G02F1/1523 , G02F1/155 , G02F1/161 , Y10T29/49002 , Y10T83/0304 , Y10T428/2419 , Y10T428/24231
Abstract: Methods of manufacturing electrochromic windows are described. Insulated glass units (IGU's) are protected, e.g. during handling and shipping, by a protective bumper. The bumper can be custom made using IGU dimension data received from the IGU fabrication tool. The bumper may be made of environmentally friendly materials. Laser isolation configurations and related methods of patterning and/or configuring an electrochromic device on a substrate are described. Edge deletion is used to ensure a good seal between spacer and glass in an IGU and thus better protection of an electrochromic device sealed in the IGU. Configurations for protecting the electrochromic device edge in the primary seal and maximizing viewable area in an electrochromic pane of an IGU are also described.
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公开(公告)号:US09513525B2
公开(公告)日:2016-12-06
申请号:US14740114
申请日:2015-06-15
Applicant: View, Inc.
Inventor: Mark A. Collins , Ronald M. Parker , Robert T. Rozbicki , Dhairya Shrivastava
CPC classification number: G02F1/1533 , B32B17/10055 , B32B17/10128 , B32B17/10183 , B32B17/10513 , B32B17/10697 , B32B17/10908 , B32B17/1099 , B32B2333/12 , G02B1/14 , G02F1/133308 , G02F1/1523 , G02F1/153 , G02F1/155 , G02F1/161 , G02F2001/133311 , Y10T29/49004 , Y10T29/49124 , Y10T156/1052 , Y10T156/1062
Abstract: Methods of manufacturing electrochromic windows are described. An electrochromic device is fabricated to substantially cover a glass sheet, for example float glass, and a cutting pattern is defined based on one or more low-defectivity areas in the device from which one or more electrochromic panes are cut. Laser scribes and/or bus bars may be added prior to cutting the panes or after. Edge deletion can also be performed prior to or after cutting the electrochromic panes from the glass sheet. Insulated glass units (IGUs) are fabricated from the electrochromic panes and optionally one or more of the panes of the IGU are strengthened.
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公开(公告)号:US20160342060A1
公开(公告)日:2016-11-24
申请号:US15226835
申请日:2016-08-02
Applicant: View, Inc.
Inventor: Mark A. Collins , Ronald M. Parker , Robert T. Rozbicki , Dhairya Shrivastava
CPC classification number: G02F1/1533 , B32B17/10055 , B32B17/10128 , B32B17/10183 , B32B17/10513 , B32B17/10697 , B32B17/10908 , B32B17/1099 , B32B2333/12 , G02B1/14 , G02F1/133308 , G02F1/1523 , G02F1/153 , G02F1/155 , G02F1/161 , G02F2001/133311 , Y10T29/49004 , Y10T29/49124 , Y10T156/1052 , Y10T156/1062
Abstract: Methods of manufacturing electrochromic windows are described. An electrochromic device is fabricated to substantially cover a glass sheet, for example float glass, and a cutting pattern is defined based on one or more low-defectivity areas in the device from which one or more electrochromic panes are cut. Laser scribes and/or bus bars may be added prior to cutting the panes or after. Edge deletion can also be performed prior to or after cutting the electrochromic panes from the glass sheet. Insulated glass units (IGUs) are fabricated from the electrochromic panes and optionally one or more of the panes of the IGU are strengthened.
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公开(公告)号:US09442339B2
公开(公告)日:2016-09-13
申请号:US14196895
申请日:2014-03-04
Applicant: View, Inc.
Inventor: Ronald M. Parker , Yashraj Bhatnagar , Trevor Frank , Travis D. Wilbur , Stephen C. Brown
CPC classification number: G02F1/163 , B32B17/10055 , B32B17/10174 , B32B17/10513 , E06B3/66304 , E06B3/66314 , E06B3/66328 , E06B3/66333 , E06B3/66352 , E06B9/24 , E06B2003/6638 , E06B2003/66385 , E06B2009/247 , G02F1/153 , G02F1/155 , G02F1/161 , H01R13/22 , H01R13/6205
Abstract: This disclosure describes insulated glass units (IGUs) that incorporate electrochromic devices. More specifically, this disclosure focuses on different configurations available for providing an electrical connection to the interior region of an IGU. In many cases, an IGU includes two panes separated by a spacer. The spacer defines an interior region of the IGU and an exterior region of the IGU. Often, the electrochromic device positioned on the pane does not extend past the spacer, and some electrical connection must be provided to supply power from the exterior of the IGU to the electrochromic device on the interior of the IGU. In some embodiments, the spacer includes one or more holes (e.g, channels, mouse holes, other holes, etc.) through which an electrical connection (e.g., wires, busbar leads, etc.) may pass to provide power to the electrochromic device.
Abstract translation: 本公开描述了并入电致变色器件的绝缘玻璃单元(IGU)。 更具体地,本公开集中于可用于提供到IGU的内部区域的电连接的不同配置。 在许多情况下,IGU包括由间隔物分开的两个窗格。 间隔件限定了IGU的内部区域和IGU的外部区域。 通常,定位在玻璃板上的电致变色器件不会延伸穿过间隔器,并且必须提供一些电气连接以将电力从IGU的外部供应到IGU内部的电致变色器件。 在一些实施例中,间隔件包括一个或多个孔(例如,通道,鼠标孔,其他孔等),电连接(例如,电线,母线引线等)可以通过该孔来向电致变色装置提供电力 。
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公开(公告)号:US09158173B2
公开(公告)日:2015-10-13
申请号:US14152873
申请日:2014-01-10
Applicant: View Inc.
Inventor: Yashraj Bhatnagar , Trevor Frank , Fabian Strong , Sridhar Kailasam , Robert Babcock , Ronald M. Parker , Robert T. Rozbicki
CPC classification number: G02F1/161 , B32B17/10055 , B32B17/10174 , B32B17/10513 , E06B3/66314 , E06B3/66328 , E06B3/66352 , E06B2003/6638 , E06B2003/66385 , Y10T403/55 , Y10T403/7018
Abstract: This disclosure provides spacers for smart windows. In one aspect, a window assembly includes a first substantially transparent substrate having an optically switchable device on a surface of the first substrate. The optically switchable device includes electrodes. A first electrode of the electrodes has a length about the length of a side of the optically switchable device. The window assembly further includes a second substantially transparent substrate a metal spacer between the first and the second substrates. The metal spacer has a substantially rectangular cross section, with one side of the metal spacer including a recess configured to accommodate the length of the first electrode such that there is no contact between the first electrode and the metal spacer. A primary seal material bonds the first substrate to the metal spacer and bonds the second substrate to the metal spacer.
Abstract translation: 本公开提供了用于智能窗口的间隔物。 在一个方面,一种窗口组件包括在第一基板的表面上具有光可切换装置的第一基本上透明的基板。 光学可切换装置包括电极。 电极的第一电极具有围绕光可切换装置的一侧的长度的长度。 窗组件还包括第二基本上透明的基底,在第一和第二基底之间的金属间隔物。 金属间隔件具有基本上矩形的横截面,金属间隔件的一侧包括凹部,该凹部被构造成适应第一电极的长度,使得在第一电极和金属间隔件之间不存在接触。 第一密封材料将第一基底结合到金属间隔物并将第二基底结合到金属间隔物上。
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公开(公告)号:US20240427210A1
公开(公告)日:2024-12-26
申请号:US18671863
申请日:2024-05-22
Applicant: View, Inc.
Inventor: Ronald M. Parker , Yashraj Bhatnagar , Trevor Frank , Travis D. Wilbur , Stephen C. Brown
IPC: G02F1/163 , B32B17/10 , E06B3/663 , E06B9/24 , G02F1/153 , G02F1/155 , G02F1/161 , H01R13/22 , H01R13/62
Abstract: This disclosure describes insulated glass units (IGUs) that incorporate electrochromic devices. More specifically, this disclosure focuses on different configurations available for providing an electrical connection to the interior region of an IGU. In many cases, an IGU includes two panes separated by a spacer. The spacer defines an interior region of the IGU and an exterior region of the IGU. Often, the electrochromic device positioned on the pane does not extend past the spacer, and some electrical connection must be provided to supply power from the exterior of the IGU to the electrochromic device on the interior of the IGU. In some embodiments, the spacer includes one or more holes (e.g, channels, mouse holes, other holes, etc.) through which an electrical connection (e.g., wires, busbar leads, etc.) may pass to provide power to the electrochromic device.
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公开(公告)号:US11654659B2
公开(公告)日:2023-05-23
申请号:US17248933
申请日:2021-02-12
Applicant: View, Inc. , Corning Incorporated
Inventor: Ronald M. Parker , Anshu A. Pradhan , Abhishek Anant Dixit , Douglas Dauson
IPC: B32B17/10 , G02F1/153 , G02F1/155 , G02F1/1524 , B29C65/00
CPC classification number: B32B17/10807 , B32B17/1088 , B32B17/1099 , B32B17/10146 , B32B17/10302 , B32B17/10513 , G02F1/153 , G02F1/155 , G02F1/1533 , B29C66/006 , B29C66/0382 , B29C2793/0027 , G02F1/1524
Abstract: Methods are provided for fabricating electrochromic devices that mitigate formation of short circuits under a top bus bar without predetermining where top bus bars will be applied on the device. Devices fabricated using such methods may be deactivated under the top bus bar, or may include active material under the top bus bar. Methods of fabricating devices with active material under a top bus bar include depositing a modified top bus bar, fabricating self-healing layers in the electrochromic device, and modifying a top transparent conductive layer of the device prior to applying bus bars.
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公开(公告)号:US11623433B2
公开(公告)日:2023-04-11
申请号:US16310164
申请日:2017-06-14
Applicant: View, Inc. , Corning Incorporated
Inventor: Ronald M. Parker , Anshu A. Pradhan , Abhishek Anant Dixit , Douglas Dauson
IPC: B32B17/10 , G02F1/153 , G02F1/155 , G02F1/1524 , B29C65/00
Abstract: Methods are provided for fabricating electrochromic devices that mitigate formation of short circuits under a top bus bar without predetermining where top bus bars will be applied on the device. Devices fabricated using such methods may be deactivated under the top bus bar, or may include active material under the top bus bar. Methods of fabricating devices with active material under a top bus bar include depositing a modified top bus bar, fabricating self-healing layers in the electrochromic device, and modifying a top transparent conductive layer of the device prior to applying bus bars.
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