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    • 9. 发明授权
    • Container for printing material and detector used for container
    • 用于容器的印刷材料和检测器的容器
    • US07201463B2
    • 2007-04-10
    • US10637437
    • 2003-08-08
    • Yasuhiko KosugiNoboru AsauchiYuichi Nishihara
    • Yasuhiko KosugiNoboru AsauchiYuichi Nishihara
    • B41J29/393
    • B41J2/17546B41J2/17566B41J29/393G03G15/0851G03G15/086G03G15/0863
    • A cartridge 100 utilizes a carrier wave of a signal transmitted from a printer PT to generate driving electric powers required for driving respective circuits elements including a sensor SS of a piezoelectric element. The generated electric power is supplied to a sensor driving voltage generator 220 and is then to the sensor SS. The sensor driving voltage generator 220 supplies the electric power to the sensor SS via a supply circuit having a higher impedance. The sensor SS is discharged via a discharge circuit having a lower impedance. Even when there is a limited electric power supply, the structure enables the sensor SS to release a large energy in a unit time and ensures a sufficient displacement of vibration in the sensor SS. This arrangement of the invention ensures application of a sufficiently high voltage to the piezoelectric element of he sensor SS and causes a sufficient resonance of the sensor SS, even when a cartridge communicating with a printing device receives only a small electric power supply.
    • 盒100利用从打印机PT发送的信号的载波来产生驱动包括压电元件的传感器SS的各个电路元件所需的驱动电力。 所产生的电力被提供给传感器驱动电压发生器220,然后被传送到传感器SS。 传感器驱动电压发生器220通过具有较高阻抗的电源电路向传感器SS供电。 传感器SS通过具有较低阻抗的放电电路放电。 即使存在有限的电力供应,该结构使得传感器SS能够在单位时间内释放大的能量,并且确保传感器SS中的足够的振动位移。 本发明的这种布置确保了对传感器SS的压电元件施加足够高的电压,并且即使当与打印装置通信的盒只接收到小的电力供应时,传感器SS也会产生充分的共振。
    • 10. 发明申请
    • Cartridge and printing apparatus
    • 墨盒和打印设备
    • US20050264597A1
    • 2005-12-01
    • US11191425
    • 2005-07-28
    • Noboru AsauchiYasuhiko Kosugi
    • Noboru AsauchiYasuhiko Kosugi
    • B41J2/17B41J2/175B41J29/393
    • B41J2/17546B41J2/17513B41J2/17566B41J2002/17583
    • An ink cartridge 10 of the invention has a sensor 17 to detect the presence or the absence of ink. A control device 22 of a printer 20 transmits a detection command and a specified detection condition to the ink cartridge 10 by radio communication. In response to input of the detection command into the ink cartridge 10, a sensor controller 19 actuates and vibrates the sensor 17 under the specified detection condition. The sensor 17 is attached to a resonance chamber 18, which is disposed in an ink chamber 16. The frequency of the vibration of the sensor 17 is thus regulated by a resonance frequency of the resonance chamber 18. The resonance frequency is varied by the presence or the absence of ink in the resonance chamber 18. Detection of the resonance frequency accordingly specifies the presence or the absence of ink in the resonance chamber 18 and thereby the remaining quantity of ink in the ink cartridge 10. The control device 22 of the printer 20 receives the result of the detection together with the detection condition from the ink cartridge 10, and checks whether or not the detection has been carried out under the specified detection condition, in order to verify the validity of the detection result. This technique of the invention is generally applicable to a cartridge that holds a recording material used for printing therein, for example, an ink or a toner, and detects the state of the recording material. The arrangement flexibly handles the change in detection condition and ensures the sufficiently high reliability of the detection.
    • 本发明的墨盒10具有检测墨水的存在或不存在的传感器17。 打印机20的控制装置22通过无线电通信将检测指令和指定的检测条件发送到墨盒10。 响应于将检测命令输入到墨盒10中,传感器控制器19在指定的检测条件下致动和振动传感器17。 传感器17安装在设置在墨室16中的谐振室18上。 因此,传感器17的振动频率由共振室18的共振频率调节。 谐振频率由共振室18内存在或不存在墨水而变化。 相应地,共振频率的检测指定了共振室18中存在或不存在墨水,从而确定墨盒10中的墨水的剩余量。 打印机20的控制装置22与来自墨盒10的检测条件一起接收检测结果,并且在指定的检测条件下检查是否已经进行了检测,以便验证是否有效 检测结果。 本发明的这种技术通常适用于保持用于在其中印刷的记录材料的盒,例如油墨或调色剂,并检测记录材料的状态。 该布置灵活地处理检测条件的变化,并确保检测的足够高的可靠性。