会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 4. 发明授权
    • Electrochromic mirrors and other electrooptic devices
    • 电致变色镜和其他电光设备
    • US07738155B2
    • 2010-06-15
    • US11927462
    • 2007-10-29
    • Anoop AgrawalJuan Carlos LopezRobert S. LeCompteJohn P. Cronin
    • Anoop AgrawalJuan Carlos LopezRobert S. LeCompteJohn P. Cronin
    • G02F1/15
    • G02F1/161B60R1/088C09J163/00C09K9/02G02F1/1525Y10T29/49002
    • This invention focuses on electrooptic devices and in particular on electrochromic devices with many aspects directed towards automotive EC mirrors. There are several ways to improve these products and their processing using this invention and some of the prominent ones are outlined below. This invention improves on the devices by disclosing new compositions for electrodes and methods of depositing them. It also addresses novel ways to provide busbars to power these devices in order to improve their performance. The device processing attributes and performance are also improved by adhesive compositions and solid electrolytes disclosed herein. In addition sensors are also disclosed which are novel for use in electrochromic mirrors. The invention also discloses how the electrolytes comprising ionic liquids have no adverse effect on attributes of commercial EC mirrors and often result in improved performance and/or feature enhancements.
    • 本发明专注于电光装置,特别涉及具有许多方面针对汽车EC反射镜的电致变色装置。 有几种方法来改进这些产品及其使用本发明的加工方法,其中一些突出的技术概述如下。 本发明通过公开用于电极的新组合物和沉积它们的方法来改进装置。 它还解决了提供母线来为这些设备供电以提高其性能的新颖方式。 装置处理属性和性能也通过本文公开的粘合剂组合物和固体电解质来改进。 此外,还公开了新颖用于电致变色镜的传感器。 本发明还公开了包含离子液体的电解质如何对商业EC反射镜的属性没有不利影响,并且经常导致改进的性能和/或特征增强。
    • 5. 发明授权
    • Electrochromic mirrors and other electrooptic devices
    • 电致变色镜和其他电光设备
    • US07300166B2
    • 2007-11-27
    • US10793071
    • 2004-03-04
    • Anoop AgrawalJuan Carlos Lopez TonazziRobert S. LeCompteJohn P. Cronin
    • Anoop AgrawalJuan Carlos Lopez TonazziRobert S. LeCompteJohn P. Cronin
    • G02B5/08
    • G02F1/161B60R1/088C09J163/00C09K9/02G02F1/1525Y10T29/49002
    • This invention focuses on electrooptic devices and in particular on electrochromic devices with many aspects directed towards automotive EC mirrors. There are several ways to improve these products and their processing using this invention and some of the prominent ones are outlined below. This invention improves on the devices by disclosing new compositions for electrodes and methods of depositing them. It also addresses novel ways to provide busbars to power these devices in order to improve their performance. The device processing attributes and performance are also improved by adhesive compositions and solid electrolytes disclosed herein. In addition sensors are also disclosed which are novel for use in electrochromic mirrors. The invention also discloses how the electrolytes comprising ionic liquids have no adverse effect on attributes of commercial EC mirrors and often result in improved performance and/or feature enhancements.
    • 本发明专注于电光装置,特别涉及具有许多方面针对汽车EC反射镜的电致变色装置。 有几种方法来改进这些产品及其使用本发明的加工方法,其中一些突出的技术概述如下。 本发明通过公开用于电极的新组合物和沉积它们的方法来改进装置。 它还解决了提供母线来为这些设备供电以提高其性能的新颖方式。 装置处理属性和性能也通过本文公开的粘合剂组合物和固体电解质来改善。 此外,还公开了新颖用于电致变色镜的传感器。 本发明还公开了包含离子液体的电解质如何对商业EC反射镜的属性没有不利影响,并且经常导致改进的性能和/或特征增强。
    • 6. 发明申请
    • Electrochromic Mirrors and other Electrooptic Devices
    • 电致变色镜和其他电光设备
    • US20100224838A1
    • 2010-09-09
    • US12781699
    • 2010-05-17
    • Anoop AgrawalJuan Carlos Lopez TonazziRobert S. LeCompteJohn P. Cronin
    • Anoop AgrawalJuan Carlos Lopez TonazziRobert S. LeCompteJohn P. Cronin
    • G02F1/15B23P17/00
    • G02F1/161B60R1/088C09J163/00C09K9/02G02F1/1525Y10T29/49002
    • This invention focuses on electrooptic devices and in particular on electrochromic devices with many aspects directed towards automotive EC mirrors. There are several ways to improve these products and their processing using this invention and some of the prominent ones are outlined below. This invention improves on the devices by disclosing new compositions for electrodes and methods of depositing them. It also addresses novel ways to provide busbars to power these devices in order to improve their performance. The device processing attributes and performance are also improved by adhesive compositions and solid electrolytes disclosed herein. In addition sensors are also disclosed which are novel for use in electrochromic mirrors. The invention also discloses how the electrolytes comprising ionic liquids have no adverse effect on attributes of commercial EC mirrors and often result in improved performance and/or feature enhancements.
    • 本发明专注于电光装置,特别涉及具有许多方面针对汽车EC反射镜的电致变色装置。 有几种方法来改进这些产品及其使用本发明的加工方法,其中一些突出的技术概述如下。 本发明通过公开用于电极的新组合物和沉积它们的方法来改进装置。 它还解决了提供母线来为这些设备供电以提高其性能的新颖方式。 装置处理属性和性能也通过本文公开的粘合剂组合物和固体电解质来改善。 此外,还公开了新颖用于电致变色镜的传感器。 本发明还公开了包含离子液体的电解质如何对商业EC反射镜的属性没有不利影响,并且经常导致改进的性能和/或特征增强。
    • 10. 发明申请
    • Device and Method for Subaperture Stray Light Detection and Diagnosis
    • 用于子孔径杂散光检测和诊断的装置和方法
    • US20130258323A1
    • 2013-10-03
    • US13726154
    • 2012-12-23
    • William P. KuhnJohn C. StoverRobert S. LeCompte
    • William P. KuhnJohn C. StoverRobert S. LeCompte
    • G01B11/26
    • G01B11/26G01J1/00G01J1/0214G01J1/0228G01J1/0266G01J1/0411G01J1/0437
    • A device and method for subaperture stray light detection and diagnosis in an optical system. A test light beam is generated with a width whose cross sectional area is less than the cross sectional area of a system aperture. Stray light is detected at a system detection surface. Based on the stray light and the location and direction angles of the light beam, potential paths that light may have taken to arrive at the detection surface are determined so as to identify physical features of the optical system that may have produced the stray light. A testing device comprises a test light beam source, preferably including a beam width magnifier, whereby the cross sectional area of the test light beam is made less than the cross sectional area of the system aperture. A relative lateral positioning stage and an angular beam directing stage launch the test light beam into the aperture at a selected position and selected directional angles. A detector and a data processing system produce a data set relating the stray light to the location and directional angles of the test light beam. A light trap and complementary test light beam delivery system are also provided.
    • 一种用于光学系统中亚光谱杂散光检测和诊断的装置和方法。 产生具有横截面积小于系统孔径横截面面积的宽度的测试光束。 在系统检测表面检测到杂散光。 基于杂散光和光束的位置和方向角度,确定光可能到达检测表面的电势路径,以便识别可能产生杂散光的光学系统的物理特征。 测试装置包括测试光束源,优选地包括光束宽度放大镜,由此使测试光束的横截面积小于系统孔径的横截面面积。 相对的侧向定位台和角度光束定向台将测试光束在所选择的位置和选定的方向角度发射到孔中。 检测器和数据处理系统产生将杂散光与测试光束的位置和方向角相关联的数据集。 还提供了光阱和补充测试光束传送系统。