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    • 1. 发明申请
    • STORING MEDIA WITH UNDIFFERENTIATED ASPECT
    • 存储介质与不平衡的方面
    • US20110003106A1
    • 2011-01-06
    • US12557258
    • 2009-09-10
    • Gurpreet Singh JUNEJARajagopal Sundara RamanRajeev JindalAnil Bhargava
    • Gurpreet Singh JUNEJARajagopal Sundara RamanRajeev JindalAnil Bhargava
    • B32B3/02B32B38/00B65C9/46B05D5/06B41J2/01
    • G11B7/263G11B7/00736G11B7/24079Y10T156/1039
    • A storing medium with undifferentiated visual aspect, a method and system for manufacturing a storing medium, and a method and system for printing on a storing medium are provided. The storing medium includes a base substrate and a print substrate onto which one or more labels can be printed. The base substrate includes a first region formed between a first inner periphery and a first outer periphery, and a second region formed between a second inner periphery and a second outer periphery. One or more first tracks are formed in the first region, and one or more second tracks are formed up to a pre-defined periphery from the second outer periphery in the second region. The pre-defined periphery substantially lies at the second inner periphery or between the second inner periphery and the second outer periphery. The first tracks have a first set of undulations formed thereon, and the second tracks have a second set of undulations formed thereon. The base substrate appears substantially visually undifferentiated across a region spanning up to the pre-defined periphery from the first outer periphery.
    • 提供具有未分化视觉方面的存储介质,用于制造存储介质的方法和系统,以及用于在存储介质上打印的方法和系统。 存储介质包括基础基板和打印基板,可以在其上打印一个或多个标签。 基底基板包括形成在第一内周和第一外周之间的第一区域和形成在第二内周和第二外周之间的第二区域。 一个或多个第一轨道形成在第一区域中,并且一个或多个第二轨道形成为从第二区域中的第二外周缘到预定的周边。 预定的周边基本上位于第二内周边或第二内周边和第二外周边之间。 第一轨道具有形成在其上的第一组起伏,并且第二轨道具有形成在其上的第二组起伏。 基底基本上在跨越从第一外周边延伸到预定周边的区域上基本上视觉上未分化。
    • 4. 发明授权
    • Method of manufacturing organic lighting device
    • 制造有机照明装置的方法
    • US08338201B2
    • 2012-12-25
    • US13019287
    • 2011-02-01
    • Gopalan RajeswaranRajeev JindalSubrata Dutta
    • Gopalan RajeswaranRajeev JindalSubrata Dutta
    • H01L21/00
    • H01L51/0024H01L51/5259
    • A method of manufacturing an organic lighting device, having a form factor substantially equal to or less than 900 square centimeters, without involving a cutting process is provided. The method includes providing one or more first substrates with a size substantially equal to the form factor. Thereafter, the method includes a high throughput first processing of the one or more first substrates and active layer deposition processing on the one or more first substrates. Further, one or more second substrates having a size substantially equal or less than the form factor are provided. Thereafter, a high throughput second processing is performed on the one or more second substrates. Finally, the method includes encapsulating at least one of the one or more first substrates with at least one of the one or more second substrates to form the organic lighting device having the form factor.
    • 提供一种制造有机照明装置的方法,其具有基本上等于或小于900平方厘米的形状因数,而不涉及切割过程。 该方法包括提供具有基本上等于形状因子的尺寸的一个或多个第一基底。 此后,该方法包括一个或多个第一基板的高通量第一处理和一个或多个第一基板上的有源层沉积处理。 此外,提供具有基本上等于或小于形状因子的尺寸的一个或多个第二基板。 此后,对一个或多个第二基板执行高吞吐量第二处理。 最后,该方法包括用一个或多个第二基板中的至少一个封装一个或多个第一基板中的至少一个,以形成具有形状因子的有机照明装置。
    • 5. 发明申请
    • METHOD OF MANUFACTURING ORGANIC LIGHTING DEVICE
    • 制造有机照明装置的方法
    • US20110195533A1
    • 2011-08-11
    • US13019287
    • 2011-02-01
    • G. RAJESWARANRAJEEV JINDALSUBRATA DUTTA
    • G. RAJESWARANRAJEEV JINDALSUBRATA DUTTA
    • H01L33/44H01L33/52
    • H01L51/0024H01L51/5259
    • A method of manufacturing an organic lighting device, having a form factor substantially equal to or less than 900 square centimeters, without involving a cutting process is provided. The method includes providing one or more first substrates with a size substantially equal to the form factor. Thereafter, the method includes a high throughput first processing of the one or more first substrates and active layer deposition processing on the one or more first substrates. Further, one or more second substrates having a size substantially equal or less than the form factor are provided. Thereafter, a high throughput second processing is performed on the one or more second substrates. Finally, the method includes encapsulating at least one of the one or more first substrates with at least one of the one or more second substrates to form the organic lighting device having the form factor.
    • 提供一种制造有机照明装置的方法,其具有基本上等于或小于900平方厘米的形状因数,而不涉及切割过程。 该方法包括提供具有基本上等于形状因子的尺寸的一个或多个第一基底。 此后,该方法包括一个或多个第一基板的高通量第一处理和一个或多个第一基板上的有源层沉积处理。 此外,提供具有基本上等于或小于形状因子的尺寸的一个或多个第二基板。 此后,对一个或多个第二基板执行高吞吐量第二处理。 最后,该方法包括用一个或多个第二基板中的至少一个封装一个或多个第一基板中的至少一个,以形成具有形状因子的有机照明装置。
    • 7. 发明申请
    • METHOD OF MANUFACTURING ORGANIC PHOTOVOLTAIC DEVICE
    • 制造有机光伏器件的方法
    • US20120208312A1
    • 2012-08-16
    • US13100843
    • 2011-05-04
    • Nikhil AgrawalGopalan RajeswaranRajeev Jindal
    • Nikhil AgrawalGopalan RajeswaranRajeev Jindal
    • H01L51/48
    • H01L51/448H01L51/0024H01L51/42Y02E10/549Y02P70/521
    • A method of manufacturing an organic photovoltaic device of a pre-defined shape and size is provided. The method includes providing a first substrate with said pre-defined shape and size, the size being less than 900 square centimeters and depositing an organic photoactive layer on said first substrate followed by depositing an electrically conducting layer on said organic photoactive layer. Thereafter, said electrically conducting layer and said organic photoactive layer are scribed from said first substrate forming zones on first substrates, whereby forming an active substrate. Further, providing a second substrate with said pre-defined shape and size and depositing a gas-absorbent layer on said second substrate whereby forming an inactive substrate. Finally, encapsulating said active substrate with said inactive substrate to form said organic photovoltaic device with said pre-defined shape and size, whereby not involving cutting of said first substrate after deposition of said organic photoactive layer.
    • 提供了制造具有预定形状和尺寸的有机光伏器件的方法。 该方法包括提供具有所述预定形状和尺寸的第一基底,尺寸小于900平方厘米,并在所述第一基底上沉积有机光敏层,然后在所述有机光敏层上沉积导电层。 此后,从第一基板上的所述第一基板形成区域刻划所述导电层和所述有机光敏层,由此形成有源基板。 此外,提供具有所述预定形状和尺寸的第二基板,并且在所述第二基板上沉积气体吸收层,从而形成非活性基板。 最后,用所述非活性衬底封装所述活性衬底以形成具有所述预定形状和尺寸的所述有机光伏器件,由此在沉积所述有机光活性层之后不涉及切割所述第一衬底。