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    • 7. 发明申请
    • FLUID JET PRINT MODULE
    • 流体喷射打印模块
    • WO2007117929A3
    • 2008-04-10
    • PCT/US2007064641
    • 2007-03-22
    • PICOSYS INCKARAM RAY M IIROUSSOS GEORGES
    • KARAM RAY M IIROUSSOS GEORGES
    • B41J2/14
    • B41J2/14233B41J2002/14491
    • A print module having nozzles which are centrally disposed in a nozzle face of the module is disclosed. The arrangement of the nozzles is symmetric with respect to fluidic paths in the nozzle plates or chamber plates. The connecting channels between chambers and nozzles can also be symmetric, allowing improved performance and uniformity of drop formation, drop size and drop velocity. The module does not suffer from fluid path differences between chamber plates, uses materials similar to the completed print module without the use of bonding agents such as adhesives, and greatly improves the jetting quality by using uniform or symmetric nozzles. In addition, the print module is slim, flat, robust, and can be slanted in order to increase resolution. A variety of fluids may be dispensed by the print module, including ink. The nozzles and nozzle arrangements in the print module can be made using advanced laser structuring.
    • 公开了一种具有中心设置在模块的喷嘴面中的喷嘴的打印模块。 喷嘴的布置相对于喷嘴板或室板中的流体路径是对称的。 腔室和喷嘴之间的连接通道也可以是对称的,允许改善液滴形成,液滴尺寸和液滴速度的性能和均匀性。 模块不会受到室板之间的流体路径差异的影响,使用与完成的打印模块类似的材料,而不使用粘合剂,例如粘合剂,并且通过使用均匀或对称的喷嘴大大提高喷射质量。 此外,打印模块纤薄,平整,坚固,并且可以倾斜以增加分辨率。 各种流体可以由打印模块(包括墨水)分配。 打印模块中的喷嘴和喷嘴布置可以使用先进的激光结构制成。
    • 8. 发明申请
    • FLUID JET PRINT MODULE
    • 流体喷射打印模块
    • WO2007117929A2
    • 2007-10-18
    • PCT/US2007/064641
    • 2007-03-22
    • PICOSYS, INC.KARAM, Ray M., IIROUSSOS, Georges
    • KARAM, Ray M., IIROUSSOS, Georges
    • B41J2/14
    • B41J2/14233B41J2002/14491
    • A print module having nozzles which are centrally disposed in a nozzle face of the module is disclosed. The arrangement of the nozzles is symmetric with respect to fluidic paths in the nozzle plates or chamber plates. The connecting channels between chambers and nozzles can also be symmetric, allowing improved performance and uniformity of drop formation, drop size and drop velocity. The module does not suffer from fluid path differences between chamber plates, uses materials similar to the completed print module without the use of bonding agents such as adhesives, and greatly improves the jetting quality by using uniform or symmetric nozzles. In addition, the print module is slim, flat, robust, and can be slanted in order to increase resolution. A variety of fluids may be dispensed by the print module, including ink. The nozzles and nozzle arrangements in the print module can be made using advanced laser structuring.
    • 公开了一种具有中心设置在模块的喷嘴面中的喷嘴的打印模块。 喷嘴的布置相对于喷嘴板或室板中的流体路径是对称的。 腔室和喷嘴之间的连接通道也可以是对称的,允许改善液滴形成,液滴尺寸和液滴速度的性能和均匀性。 模块不会受到室板之间的流体路径差异的影响,使用与完成的打印模块类似的材料,而不使用粘合剂,例如粘合剂,并且通过使用均匀或对称的喷嘴大大提高喷射质量。 此外,打印模块纤薄,平整,坚固,并且可以倾斜以增加分辨率。 各种流体可以由打印模块(包括墨水)分配。 打印模块中的喷嘴和喷嘴布置可以使用先进的激光结构制成。
    • 9. 发明申请
    • DIRECT-WRITE SYSTEM AND METHOD FOR ROLL-TO-ROLL MANUFACTURING OF REFLECTIVE GRATINGS
    • 直接写入系统和反射光栅的滚筒制造方法
    • WO2005084176A3
    • 2006-03-30
    • PCT/US2004033887
    • 2004-10-15
    • PICOSYS INCKARAM RAYMOND MILLER II
    • KARAM RAYMOND MILLER II
    • G02B5/18
    • G02B5/1857
    • A reflective grating (24) for precision location measurement is disclosed. In one embodiment, the reflective grating has a non-reflective substrate (56) and a non- reflective adhesion layer (28) disposed on the substrate layer. A reflective surface layer (30) is disposed on the adhesion layer. In another embodiment, the reflective grating is manufactured on the reflective (polished) surface of a monolithic substrate. A series of grating lines (32) are formed in the reflective surface layer by vaporizing portions of the reflective surface layer with a laser in order to expose the non-reflective adhesion layer. Accordingly, alternating reflective and non reflective grating lines are formed that are used for making precision measurements.
    • 公开了一种用于精确定位测量的反射光栅(24)。 在一个实施例中,反射光栅具有非反射衬底(56)和设置在衬底层上的非反射粘附层(28)。 反射表面层(30)设置在粘合层上。 在另一个实施例中,反射光栅制造在单片基板的反射(抛光)表面上。 通过用激光蒸发反射表面层的部分以便暴露非反射粘附层,在反射表面层中形成一系列光栅线(32)。 因此,形成用于进行精密测量的交替的反射和非反射光栅线。