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    • 25. 发明授权
    • Electrostatically actuated drop ejector
    • 静电驱动滴液喷射器
    • US06874867B2
    • 2005-04-05
    • US10325205
    • 2002-12-18
    • Michael J. DeBarEdward P. FurlaniConstantine N. AnagnostopoulosChristopher N. Delametter
    • Michael J. DeBarEdward P. FurlaniConstantine N. AnagnostopoulosChristopher N. Delametter
    • B41J2/045B41J2/055B41J2/14B41J2/06
    • B41J2/14314
    • A drop emission device includes a chamber having a nozzle orifice through which a drop of liquid can be emitted. A deformable electrode is associated with the chamber such that movement of the electrode in a first direction increases the chamber's volume and movement of the electrode in a second direction decreases the chamber's volume to emit a drop through the nozzle orifice. A fixed electrode opposes to the deformable electrode to define a second chamber there between such that control of relative voltage differences between the deformable and the fixed electrodes selectively moves the deformable electrode in the first or second directions. The variable volume is vented to a source of dielectric material through an opening in the fixed electrode. The ratio of the cross-sectional area of the opening to the perimeter of the opening is greater than 0.5 μm, and is preferably about 5 μm.
    • 液滴发射装置包括具有喷嘴孔的腔室,通过该喷嘴孔可以发射一滴液体。 可变形电极与室相关联,使得电极沿第一方向的运动增加了室的体积,并且电极在第二方向上的移动减小了室的体积,以通过喷嘴孔发出液滴。 固定电极与可变形电极相对以在其间限定第二室,使得可变形和固定电极之间的相对电压差的控制选择性地使可变形电极沿第一或第二方向移动。 可变容积通过固定电极中的开口排出到电介质材料源。 开口的横截面积与开口周长的比例大于0.5μm,优选为约5μm。
    • 27. 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)。
    • 30. 发明授权
    • Continuous ink jet printer with asymmetric heating drop deflection
    • 连续喷墨打印机具有不对称加热滴偏差
    • US06254225B1
    • 2001-07-03
    • US09544688
    • 2000-04-07
    • James M. ChwalekDavid L. JeanmaireConstantine N. Anagnostopoulos
    • James M. ChwalekDavid L. JeanmaireConstantine N. Anagnostopoulos
    • B41J2105
    • B41J2/085B41J2/03B41J2/09B41J2/105B41J2/185B41J2002/022B41J2002/032B41J2202/16
    • A method for controlling a terminal flow of ink droplets from the nozzle of an ink jet printer at the end of a printing operation is provided. The printer has a first heating element disposed on one side of the nozzle that is selectively actuated to direct ink droplets away from a recording medium and into an ink gutter during a printing operation. The printer also has a second heating element disposed on the side of the nozzle opposite from the first heating element. After the first heating element applies its last operational heat pulse to the printing nozzle at the end of a printing operation, the second heating element applies at least one deflection correcting heat pulse of the same duration, magnitude and period as the last operational heat pumps. The method prevents ink droplets generated after the end of a printing operation from erroneously striking the printing medium.
    • 提供一种用于在打印操作结束时控制来自喷墨打印机的喷嘴的墨滴的端子流的方法。 打印机具有设置在喷嘴的一侧上的第一加热元件,该第一加热元件被选择性地致动以在打印操作期间将墨滴引导离开记录介质并进入墨槽。 打印机还具有设置在与第一加热元件相对的喷嘴侧的第二加热元件。 在第一加热元件在打印操作结束时将其最后的操作加热脉冲施加到打印喷嘴时,第二加热元件施加与最后操作的热泵相同的持续时间,幅度和周期的至少一个偏转校正热脉冲。 该方法防止在打印操作结束之后产生的墨滴错误地打印到打印介质上。