Printing apparatus consumable data communication
    31.
    发明申请
    Printing apparatus consumable data communication 审中-公开
    打印设备可消耗数据通信

    公开(公告)号:US20070081183A1

    公开(公告)日:2007-04-12

    申请号:US11247030

    申请日:2005-10-10

    IPC分类号: G06K15/00

    CPC分类号: G03G15/50

    摘要: Methods for communicating data with a circuit associated with a consumable of a printing apparatus, wherein a signal used to communicate data comprises one of at least two states at an object associated with the signal. For example, one method involves receiving N signals and indicating a state on a signal S that uniquely corresponds to an ordered combination of the states corresponding to M of the objects associated with each of the N signals. At least one of M and N are greater than one, and a circuit associated with a consumable of a printing apparatus can receive the signal S and decode the state of the signal S to determine the ordered combination of the states corresponding to the M of the objects associated with each of the N signals. Also disclosed are consumables of a printing apparatus having a circuit associated with the consumable and data signals associated with the same and related embodiments.

    摘要翻译: 用于与与打印设备的消耗品相关联的电路传送数据的方法,其中用于传送数据的信号包括与所述信号相关联的对象中的至少两个状态中的一个。 例如,一种方法包括接收N个信号并且指示与唯一对应于与N个信号中的每一个相关联的对象的对应于M的状态的有序组合的信号S上的状态。 M和N中的至少一个大于1,并且与打印装置的消耗品相关联的电路可以接收信号S并对信号S的状态进行解码,以确定与M的对应的状态的有序组合 与N个信号中的每一个相关联的对象。 还公开了具有与与相同和相关实施例相关联的消耗品和数据信号相关联的电路的打印设备的消耗品。

    Methods and apparatuses for control of a signal in a printing apparatus
    32.
    发明申请
    Methods and apparatuses for control of a signal in a printing apparatus 有权
    用于控制打印装置中的信号的方法和装置

    公开(公告)号:US20070076032A1

    公开(公告)日:2007-04-05

    申请号:US11241088

    申请日:2005-09-30

    IPC分类号: B41J29/38

    摘要: A printing apparatus and related methods are provided that precisely control the transition of an electrical signal that causes a printing substance to be deposited. In particular, in some embodiments, a circuit is configured to control the application of a firing pulse to a printing element, and the printing element is configured to control the application of a printing substance. The circuit in this embodiment is configured to condition or control the transition of the firing pulse from the first state to the second state such that current through the printing element dissipates to zero over a period of time that is neither too fast nor too slow.

    摘要翻译: 提供了一种能够精确控制导致印刷物质沉积的电信号的转变的打印装置和相关方法。 特别地,在一些实施例中,电路被配置为控制对打印元件的点火脉冲的应用,并且打印元件被配置为控制打印物质的应用。 本实施例中的电路被配置为调节或控制点火脉冲从第一状态到第二状态的转变,使得通过打印元件的电流在既不太快也不太慢的时间段消散到零。

    Speaker voice coil antenna
    33.
    发明申请
    Speaker voice coil antenna 审中-公开
    扬声器音圈天线

    公开(公告)号:US20070060221A1

    公开(公告)日:2007-03-15

    申请号:US11224251

    申请日:2005-09-12

    IPC分类号: H04B1/06 H04M1/00

    CPC分类号: H01Q1/243 H04M1/03

    摘要: A wireless communication device (50) can include a radio frequency transceiver (52), an audio drive circuit (58) coupled to the transceiver, a speaker (10) having a voice coil (16) coupled to the audio drive circuit, and an antenna feed or radiating circuit (20) such as an RFID or NFID circuit coupled to the voice coil for at least radiating or receiving an electromagnetic signal via the voice coil. Such radiating circuits can be coupled to the voice coil using a band pass circuit designed to substantially prevent a radiating signal from the radiating circuit from interfering with audio drive circuit driving the speaker. The wireless communication device can further include an antenna (54) coupled to the radio frequency transceiver. Note, this arrangement can be designed to avoid problems involving electrostatic discharge sensitivity, electromagnetic interference coupling between the antenna and the voice coil, total radiated power, and specific absorption rate.

    摘要翻译: 无线通信设备(50)可以包括射频收发器(52),耦合到收发器的音频驱动电路(58),具有耦合到音频驱动电路的音圈(16)的扬声器(10) 天线馈送或辐射电路(20),例如耦合到音圈的RFID或NFID电路,用于经由音圈至少辐射或接收电磁信号。 这种辐射电路可以使用设计成基本上防止辐射电路的辐射信号干扰驱动扬声器的音频驱动电路的带通电路耦合到音圈。 无线通信设备还可以包括耦合到射频收发器的天线(54)。 注意,这种布置可以被设计为避免涉及静电放电灵敏度,天线和音圈之间的电磁干扰耦合,总辐射功率和比吸收率的问题。