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    • 1. 发明申请
    • Digital Enveloping for Digital Right Management and Re-broadcasting
    • US20150040184A1
    • 2015-02-05
    • US14517717
    • 2014-10-17
    • Donald C.D. ChangJuo-Yu LeeJeffrey C. ChangSteve K. Chen
    • Donald C.D. ChangJuo-Yu LeeJeffrey C. ChangSteve K. Chen
    • G06F21/62H04L29/06
    • G06F21/6209G06F21/6245H04L65/4084H04L65/602H04L65/604H04L65/607
    • Data files with digital envelops are used (1) for embedded identifiers for digital right management (DRM), and (2) as means delivering additional data or new information via repeated re-broadcasting process by many broadcasting service providers. The new DRM applications offer additional privacy and survivability while data is in storage and/or transported on cloud. Wavefront multiplexing/demultiplexing process (WF muxing/demuxing) embodying an architecture that utilizes multi-dimensional waveforms has found applications in data storage and transport on cloud. Multiple data sets are preprocessed by WF muxing before stored/transported. WF muxed data is aggregated data from multiple data sets that have been “customized processed” and disassembled into any scalable number of sets of processed data, with each set being stored on a storage site. The original data is reassembled via WF demuxing after retrieving a lesser but scalable number of WF muxed data sets. A customized set of WF muxing on multiple digital files as inputs including at least a data message file and a selected digital envelop file, is configured to guarantee at least one of the multiple outputs comprising a weighted sum of all inputs with an appearance to human natural sensors substantially identical to the appearance of the selected digital envelop in a same image, video or audio format. The output file is the file with enveloped or embedded messages. The embedded message may be reconstituted by a corresponding WF demuxing processor at destination with the known a priori information of the original digital envelope. In short, digital enveloping/de-enveloping can be implemented via WF muxing and demuxing formulations. WF muxed data featured enhanced privacy and redundancy in data transport and storage on cloud. On the other hand, data enveloping is in a different application domain from most of WF muxing applications as far as redundancy is concerned. Enveloped data is intended only for limited receivers who has access to associated digital enveloped data files with enhanced privacy for no or minimized redundancy.
    • 5. 发明授权
    • Thermal transfer donor and receptor with silicated surface for
lithographic printing applications
    • 热转印供体和具有硅胶表面的受体,用于平版印刷应用
    • US5460918A
    • 1995-10-24
    • US320943
    • 1994-10-11
    • M. Zaki AliMahfuza AliDavid R. BostonJeffrey C. Chang
    • M. Zaki AliMahfuza AliDavid R. BostonJeffrey C. Chang
    • G03F7/004B41C1/055B41C1/10B41M5/382B41M5/392B41M5/50B41M5/52G03F7/00G03F7/34G03C8/08G03C8/26G03F7/038
    • G03F7/346B41C1/1091
    • A thermal transfer system for transferring material in an imagewise manner by means of thermal transfer printing from a donor element to an image receiving element is used to prepare printing plates. In one construction, a donor element, which is prepared by coating a photoinitiator (and optionally a sensitizer) in a binder on a backing material, is used with an image receiving element, which is prepared by coating a photopolymer (and optionally a sensitizer) on a substrate having a microporous hydrophilic crosslinked silicated surface. In an alternative construction, a donor element, which is prepared by coating a sensitizer in a binder on a backing material, is used with an image receiving element, which is prepared by coating a photopolymer and photoinitiator on a substrate having a microporous hydrophilic crosslinked silicated surface. In yet another construction, a donor element, prepared by coating a thermal transfer layer containing a photopolymer, a photoinitiator and/or a sensitizer on a backing material, is used with an image receiving element having a microporous hydrophilic crosslinked silicated surface.
    • 用于通过从供体元件到图像接收元件的热转移印刷以成像方式转移材料的热转印系统用于制备印刷版。 在一种结构中,通过将光引发剂(和任选的敏化剂)涂覆在背衬材料上的粘合剂中制备的供体元件与图像接收元件一起使用,其通过涂布光聚合物(和任选的敏化剂)制备, 在具有微孔亲水性交联硅表面的基材上。 在替代的结构中,通过将粘合剂中的敏化剂涂覆在背衬材料上制备的供体元件与图像接收元件一起使用,该图像接收元件通过将光聚合物和光引发剂涂布在具有微孔亲水性交联硅胶 表面。 在另一种结构中,通过在背衬材料上涂覆含有光聚合物,光引发剂和/或敏化剂的热转印层制备的供体元件与具有微孔亲水性交联硅表面的图像接收元件一起使用。