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    • 92. 发明授权
    • Silicon wafer configuration and method for forming same
    • 硅晶片配置及其形成方法
    • US06521513B1
    • 2003-02-18
    • US09609617
    • 2000-07-05
    • John A. LebensConstantine N. Anagnostopoulos
    • John A. LebensConstantine N. Anagnostopoulos
    • H01L21301
    • B81C1/00873B81C1/00888B81C2201/0132H01L21/78Y10S438/928
    • A method for singulating a semiconductor silicon wafer (10) comprising a plurality of semiconductor dice (20) arranged along a multiplicity of intersecting streets (30). Initially, a layer of photoresist (15)is patterned on the backside of the wafer (10). The semiconductor silicon wafer (10) is then etched using dry etching methods. As such, slots (22) are etched through the silicon of the wafer (10) aligned to the streets (30) forming a perforation. Simultaneously, tethers (40) are formed between the slots (22) interconnecting the adjacent dice (20) in order to maintain the wafer (10) mechanically intact. Furthermore, a membrane comprising integrated circuitry on the silicon wafer (10) is formed. The dice (20) of the wafer (10) are then separated for various purposes along the perforations. This is accomplished by applying pressure, such as manual pressure, to the wafer (10) so as to sever the tethers (40) which interconnect the dice (20) at their region (50) of reduced dimension.
    • 一种用于单片化半导体硅晶片(10)的方法,包括沿着多个相交街道(30)布置的多个半导体晶片(20)。 最初,在晶片(10)的背面上形成一层光致抗蚀剂(15)。 然后使用干蚀刻方法蚀刻半导体硅晶片(10)。 因此,通过与街道(30)对准的形成穿孔的晶片(10)的硅蚀刻槽(22)。 同时,在互连相邻骰子(20)的槽(22)之间形成系绳(40),以便将机芯(10)机械地保持完整。 此外,形成包括硅晶片(10)上的集成电路的膜。 然后,晶片(10)的骰子(20)沿着穿孔分开用于各种目的。 这通过将压力(例如手动压力)施加到晶片(10)来实现,以便切断在其尺寸减小的区域(50)处将骰子(20)互连的系绳(40)。
    • 94. 发明授权
    • Assisted drop-on-demand inkjet printer
    • 辅助按需喷墨打印机
    • US06276782B1
    • 2001-08-21
    • US09481303
    • 2000-01-11
    • Ravi SharmaJohn A. Lebens
    • Ravi SharmaJohn A. Lebens
    • B41J205
    • B41J2/14B41J2/005
    • A droplet generator is provided that is particularly adapted for generating micro droplets of ink on demand in an inkjet printhead having a plurality of nozzles. The droplet generator includes a droplet separator formed from the combination of a droplet assistor and a droplet initiator. The droplet assistor is coupled to ink in each of the nozzles and functions to lower the amount of energy necessary for an ink droplet to form and separate from an ink meniscus extending across the nozzle outlet. The droplet assistor may be, for example, a heater or surfactant supply mechanism for lowering the surface tension of the ink meniscus. Alternatively, the droplet assistor may be a mechanical oscillator such as a piezoelectric transducer that generates oscillations in the ink sufficient to periodically form convex ink menisci across the nozzle outlets, but insufficient to cause ink droplets to separate from the outlets. The droplet initiator cooperates with the droplet assistor and selectively causes an ink droplet to form and separate from the ink meniscus. The droplet initiator may be, for example, a thermally-actuated paddle. The droplet separator increases the speed and accuracy of ink micro droplets expelled from the printhead nozzles.
    • 提供了一种液滴发生器,其特别适于在具有多个喷嘴的喷墨打印头中根据需要生成墨滴微滴。 液滴发生器包括由液滴组合物和液滴引发剂的组合形成的液滴分离器。 液滴组合器耦合到每个喷嘴中的油墨,并且用于降低墨滴形成并与从喷嘴出口延伸的油墨弯液面分离所需的能量的量。 液滴组合器可以是例如用于降低油墨弯液面的表面张力的加热器或表面活性剂供给机构。 或者,液滴组合器可以是诸如压电换能器的机械振荡器,其在油墨中产生足够的周期性地在喷嘴出口周围形成凸形墨水半月板的振荡,但不足以使墨滴与出口分离。 液滴引发剂与液滴组合物配合,并选择性地使油墨液滴形成并与油墨弯液面分离。 液滴引发剂可以是例如热致动桨。 液滴分离器增加从打印头喷嘴排出的墨微滴的速度和精度。
    • 100. 发明申请
    • CONTINUOUS PRINTHEAD INCLUDING POLYMERIC FILTER
    • 连续打印,包括聚合物过滤器
    • US20110261125A1
    • 2011-10-27
    • US12767826
    • 2010-04-27
    • Yonglin XieJohn A. LebensCharles F. Faisst
    • Yonglin XieJohn A. LebensCharles F. Faisst
    • B41J2/175
    • B41J2/09
    • A printhead includes a substrate, a filter membrane structure, and a liquid source. A first portion of the substrate defines a plurality of nozzles. A second portion of the substrate defines a plurality of liquid chambers. Each liquid chamber of the plurality of liquid chambers is in fluid communication with a respective one of the plurality of nozzles. The filter membrane structure is in contact with the second portion of the substrate. Each liquid chamber of the plurality of liquid chambers is in fluid communication with a distinct portion of the filter membrane structure. The filter membrane structure includes a polymeric material layer. The liquid source provides liquid under pressure through the filter membrane structure. The pressure is sufficient to jet an individual stream of the liquid through each nozzle of the plurality of nozzles after the liquid flows through the filter membrane structure.
    • 打印头包括基板,过滤膜结构和液体源。 衬底的第一部分限定多个喷嘴。 衬底的第二部分限定多个液体室。 多个液体室中的每个液体室与多个喷嘴中的相应一个流体连通。 过滤膜结构与衬底的第二部分接触。 多个液体室的每个液体室与过滤膜结构的不同部分流体连通。 过滤膜结构包括聚合材料层。 液体源通过过滤膜结构在压力下提供液体。 在液体流过滤膜结构之后,压力足以喷射单个流体通过多个喷嘴的每个喷嘴。