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    • 1. 发明授权
    • Silver halide element with improved high temperature storage and raw stock keeping
    • 具有改善的高温储存和原料储存的卤化银元件
    • US06472135B1
    • 2002-10-29
    • US09593113
    • 2000-06-13
    • Steven P. SzatynskiJames H. ReynoldsLillian M. KelloggGeorge J. Burgmaier
    • Steven P. SzatynskiJames H. ReynoldsLillian M. KelloggGeorge J. Burgmaier
    • G03C7305
    • G03C1/34G03C1/346G03C7/30511
    • This invention relates to a silver halide photographic element comprising at least one silver halide emulsion, said silver halide element further comprising an amido compound represented by Formula 1 wherein INH is a development inhibitor; LINK is a linking or timing group and m is 0, 1 or 2; and R1 and R2 independently represents an aliphatic, aromatic or heterocyclic group, or R1 and R2 together with the nitrogen to which they are attached represent the atoms necessary to form a 5 or 6 membered ring or multiple ring system, or R1 and R2 are independently a —C(═O)(LINK)m—INH group, or are substituted with an —NR3aC(═O)—(LINK)m—INH group, with R3a being defined the same as R1 or R2; and wherein the compound of Formula 1 does not substantially react with oxidized developer to release INH; and a reductone compound represented by Formula 2 wherein R7 and R8 are the same or different, and may represent H, alkyl, cycloalkyl, aryl, or an alkyl group with a solubilizing group such as —OH, sulfonamide, sulfamoyl, or carbamoyl, R7 and R8 may be joined to complete a heterocyclic ring, R4 and R5 are H, OH, alkyl, aryl, cycloalkyl, or may together represent an alkylidene group, n is 1 or 2 and R3 is H, alkyl, aryl, or CO2R6 where R6 is alkyl.
    • 本发明涉及包含至少一种卤化银乳剂的卤化银照相元件,所述卤化银元素还包含由式1表示的酰胺化合物,其中INH是显影抑制剂; LINK是连接或定时基团,m是0,1或 2; 并且R 1和R 2独立地表示脂族,芳族或杂环基团,或者R 1和R 2与它们所连接的氮一起表示形成5或6元环或多环体系所必需的原子,或者R 1和R 2独立地为 -C(= O)(LINK)m-INH基团,或被-NR 3 a C(= O) - (LINK)m-INH基团取代,其中R 3a定义与R 1或R 2相同; 并且其中式1的化合物基本上不与氧化的显影剂反应以释放INH; 和由式7表示的还原酮化合物,其中R 7和R 8相同或不同,并且可以表示H,烷基,环烷基,芳基或具有增溶基团如-OH,磺酰胺,氨磺酰基或氨基甲酰基的烷基,R7和 R8可以连接成杂环,R4和R5是H,OH,烷基,芳基,环烷基,或者可以一起代表亚烷基,n是1或2,R 3是H,烷基,芳基或CO 2 R 6,其中R 6 是烷基。
    • 3. 发明授权
    • Photoconductive material imaging element
    • 光导材料成像元件
    • US06753121B2
    • 2004-06-22
    • US10295510
    • 2002-11-15
    • Lillian M. KelloggJoe E. MaskaskyDale E. Hamilton
    • Lillian M. KelloggJoe E. MaskaskyDale E. Hamilton
    • G03C1035
    • G03C1/08G03C1/0051G03C7/30Y10S430/141
    • A photoconductive material imaging element is described comprising a support and a silver halide emulsion imaging layer comprising silver halide grains which have not been chemically sensitized to optimize formation of latent image Agno, centers upon imagewise exposure and which are doped with at least 500 deep electron trapping agent dopant centers per grain. In accordance with a preferred embodiment, the photoconductive material imaging element includes a planar support and the non-chemically sensitized, deep electron trapping agent doped silver halide grains comprise tabular grains, preferably with an average grain size equivalent circular diameter of greater than 2 &mgr;m, with the long dimensions of the tabular grains primarily oriented parallel to the plane of the support.
    • 描述了一种光电导材料成像元件,其包括载体和卤化银乳剂成像层,其包含尚未化学增感以卤化银颗粒以优化潜像Agn的形成,成像曝光为中心,并且掺杂有至少500 深度电子捕获剂掺杂剂中心每颗粒。 根据优选实施例,光电导材料成像元件包括平面支撑体,掺杂的卤化银颗粒的非化学敏化的深电子捕获剂包括片状颗粒,优选具有大于2μm的平均粒径当量圆直径, 其中片状颗粒的长尺寸主要取向为平行于支撑体的平面。
    • 5. 发明授权
    • Method of electronic processing of exposed photographic material
    • 曝光照相材料的电子处理方法
    • US06624913B1
    • 2003-09-23
    • US09535317
    • 2000-03-27
    • Lillian M. Kellogg
    • Lillian M. Kellogg
    • H04N104
    • G03C1/035G03C1/09G03C1/4989G03C1/66G03C1/825G03C5/22G03C5/26G03C5/263G03C7/14G03C7/30576G03C2001/7403
    • A method of electronic processing of a latent image from a photographic element, the method employing pulsed radiation and radio frequency photoconductivity apparatus having a sample capacitor with a gap, including the steps of: placing the element in an electromagnetic field adjacent the sample capacitor; providing an advance mechanism for advancing the photographic element past the capacitor; scanning the element through the gap in the sample capacitor with a pulsed, focused beam of radiation; directly measuring the photoelectron response of the element and recording the resulting signals from the radio frequency photoconductivity apparatus; and advancing the element and repeating the exposing and measuring steps to provide a two dimensional readout of the latent image on the photographic element at ambient temperature or below.
    • 一种电子处理来自照相元件的潜像的方法,使用脉冲辐射的方法和具有间隙的采样电容器的射频光电导装置,包括以下步骤:将元件放置在与采样电容器相邻的电磁场中; 提供用于使照相元件通过电容器的前进机构; 通过脉冲聚焦的辐射束扫描元件通过样品电容器的间隙; 直接测量元件的光电子响应并记录来自射频光电导装置的结果信号; 并且推进元件并重复曝光和测量步骤以在环境温度或更低温度下提供在照相元件上的潜像的二维读数。