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    • 44. 发明申请
    • Transfer center
    • 转运中心
    • US20060011368A1
    • 2006-01-19
    • US11177168
    • 2005-07-07
    • Hiroyuki MaruyamaJohn SpencerClas SiverstenTohru Iwama
    • Hiroyuki MaruyamaJohn SpencerClas SiverstenTohru Iwama
    • H01B11/02
    • G06F13/409H01R13/465H01R29/00H01R2201/04
    • A system and method of interfacing data between a first electronic device and a second electronic device is disclosed. In one embodiment, the first and second electronic devices are cell phones manufactured by different manufacturers. The first electronic device can be the source device, and the second electronic device can be the target device. A data transfer hub having universal connectors is coupled with at least one of a plurality of adapter cables. The first and second electronic devices are connected to the data transfer hub using at least one of the plurality of adapter cables. The data transfer hub is connected to the computer system, wherein the computer system is configured to receive and transmit data from the first electronic device and the second electronic device. The data is then transmitted from the first electronic device to the second electronic device.
    • 公开了一种在第一电子设备和第二电子设备之间接口数据的系统和方法。 在一个实施例中,第一和第二电子设备是由不同制造商制造的手机。 第一电子设备可以是源设备,第二电子设备可以是目标设备。 具有通用连接器的数据传输集线器与多个适配器电缆中的至少一个耦合。 第一和第二电子设备使用多个适配器电缆中的至少一个连接到数据传输集线器。 数据传输集线器连接到计算机系统,其中计算机系统被配置为从第一电子设备和第二电子设备接收和发送数据。 然后将数据从第一电子设备发送到第二电子设备。
    • 48. 发明授权
    • Drive method for an electrostatic ink jet head for eliminating residual
charge in the diaphragm
    • 用于消除隔膜中残留电荷的静电喷墨头的驱动方法
    • US5818473A
    • 1998-10-06
    • US749874
    • 1996-11-14
    • Masahiro FujiiHiroyuki IshikawaShigeo NojimaHiroyuki MaruyamaAtsushi Yamaji
    • Masahiro FujiiHiroyuki IshikawaShigeo NojimaHiroyuki MaruyamaAtsushi Yamaji
    • B41J2/045B41J2/14B41J2/04B41J2/095
    • B41J2/04541B41J2/04551B41J2/04578B41J2/04588B41J2/14314
    • A drive method of an ink-jet head is provided in which a diaphragm is deformed by means of electrostatic force to eject an ink droplet from a nozzle so as to prevent a residual charge from being created between a diaphragm and an individual electrode. The method has first and second drive modes. In a first drive mode a voltage of a first polarity is applied between a diaphragm of the inkjet head (common electrode) and an individual electrode to cause the diaphragm to be deformed and an ink droplet to be ejected from a nozzle. In the second drive mode a voltage of a second polarity opposite to the first polarity is applied between the diaphragm and the individual electrode to cause the diaphragm to be deformed and an ink droplet to be ejected from the nozzle at least once for each operation of ink droplet ejection performed in the first drive mode. According to this method, a residual charge created between the diaphragm and the electrode can be removed concurrently with performing the operation of ink droplet ejection by applying positive and negative drive voltage pulses.
    • 提供了一种喷墨头的驱动方法,其中隔膜通过静电力而变形以从喷嘴喷射墨滴,从而防止在隔膜和单独电极之间产生残余电荷。 该方法具有第一和第二驱动模式。 在第一驱动模式中,在喷墨头(公共电极)的隔膜和单独电极之间施加第一极性的电压,以使隔膜变形并从喷嘴喷出墨滴。 在第二驱动模式中,在隔膜和单独电极之间施加与第一极性相反的第二极性的电压,以使得隔膜变形,并且对于每个墨的操作,墨滴从喷嘴喷射至少一次 在第一驱动模式中执行液滴喷射。 根据该方法,通过施加正驱动电压脉冲和负驱动电压脉冲来执行墨滴喷射的操作,可以同时去除在膜片和电极之间产生的残留电荷。