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公开(公告)号:US09477129B2
公开(公告)日:2016-10-25
申请号:US14536462
申请日:2014-11-07
Applicant: View, Inc.
Inventor: Mark Kozlowski , Eric Kurman , Zhongchun Wang , Mike Scobey , Jeremy Dixon , Anshu Pradhan , Robert Rozbicki
IPC: C23C14/00 , G02F1/153 , C03C17/34 , C23C10/28 , C23C14/08 , C23C14/18 , C23C14/56 , C23C14/58 , G02F1/15 , B05D5/06 , B23K20/10 , C23C14/02 , C23C14/04 , C23C14/14 , C23C14/34 , G02F1/155
CPC classification number: G02F1/1523 , B05D5/06 , B23K20/10 , C03C17/3417 , C03C2217/94 , C23C10/28 , C23C14/021 , C23C14/022 , C23C14/024 , C23C14/046 , C23C14/08 , C23C14/083 , C23C14/085 , C23C14/086 , C23C14/14 , C23C14/185 , C23C14/3407 , C23C14/568 , C23C14/58 , C23C14/5806 , C23C14/5853 , G02F1/15 , G02F1/153 , G02F1/1533 , G02F1/155
Abstract: Prior electrochromic devices frequently suffer from high levels of defectivity. The defects may be manifest as pin holes or spots where the electrochromic transition is impaired. This is unacceptable for many applications such as electrochromic architectural glass. Improved electrochromic devices with low defectivity can be fabricated by depositing certain layered components of the electrochromic device in a single integrated deposition system. While these layers are being deposited and/or treated on a substrate, for example a glass window, the substrate never leaves a controlled ambient environment, for example a low pressure controlled atmosphere having very low levels of particles. These layers may be deposited using physical vapor deposition.
Abstract translation: 先前的电致变色器件经常遭受高水平的缺陷。 缺陷可能表现为电致变色转变受损的针孔或斑点。 这对于许多应用如电致变色建筑玻璃是不可接受的。 具有低缺陷性的改进的电致变色器件可以通过将电致变色器件的某些分层部件沉积在单个集成沉积系统中来制造。 虽然这些层被沉积和/或在衬底(例如玻璃窗)上被沉积和/或处理,但是衬底从不离开受控的环境环境,例如具有非常低水平粒子的低压控制气氛。 可以使用物理气相沉积来沉积这些层。
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公开(公告)号:US20150060264A1
公开(公告)日:2015-03-05
申请号:US14536462
申请日:2014-11-07
Applicant: View, Inc.
Inventor: Mark Kozlowski , Eric Kurman , Zhongchun Wang , Mike Scobey , Jeremy Dixon , Anshu Pradhan , Robert Rozbicki
IPC: G02F1/15
CPC classification number: G02F1/1523 , B05D5/06 , B23K20/10 , C03C17/3417 , C03C2217/94 , C23C10/28 , C23C14/021 , C23C14/022 , C23C14/024 , C23C14/046 , C23C14/08 , C23C14/083 , C23C14/085 , C23C14/086 , C23C14/14 , C23C14/185 , C23C14/3407 , C23C14/568 , C23C14/58 , C23C14/5806 , C23C14/5853 , G02F1/15 , G02F1/153 , G02F1/1533 , G02F1/155
Abstract: Prior electrochromic devices frequently suffer from high levels of defectivity. The defects may be manifest as pin holes or spots where the electrochromic transition is impaired. This is unacceptable for many applications such as electrochromic architectural glass. Improved electrochromic devices with low defectivity can be fabricated by depositing certain layered components of the electrochromic device in a single integrated deposition system. While these layers are being deposited and/or treated on a substrate, for example a glass window, the substrate never leaves a controlled ambient environment, for example a low pressure controlled atmosphere having very low levels of particles. These layers may be deposited using physical vapor deposition.
Abstract translation: 先前的电致变色器件经常遭受高水平的缺陷。 缺陷可能表现为电致变色转变受损的针孔或斑点。 这对于许多应用如电致变色建筑玻璃是不可接受的。 具有低缺陷性的改进的电致变色器件可以通过将电致变色器件的某些分层部件沉积在单个集成沉积系统中来制造。 虽然这些层被沉积和/或在衬底(例如玻璃窗)上被沉积和/或处理,但是衬底从不离开受控的环境环境,例如具有非常低水平粒子的低压控制气氛。 可以使用物理气相沉积来沉积这些层。
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