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    • 31. 发明授权
    • Printing apparatus and control method for same, and a data storage medium recording the control method
    • 打印装置及其控制方法,以及记录控制方法的数据存储介质
    • US06490050B2
    • 2002-12-03
    • US09148816
    • 1998-09-04
    • Yoshikazu Ito
    • Yoshikazu Ito
    • G06F1300
    • B41J13/0018B41J11/005B41J11/008B41J11/0095B41J11/42
    • Paper jams and damage to a printing medium resulting from movement of a print head carriage are prevented in a printing apparatus in which the print head unit moves orthogonally to the direction in which the printing medium, which may be slip form, is transported through a transportation path to the printing unit for printing. A pair of transportation rollers are supported on opposing sides of the transportation path in a manner enabling the transportation rollers to close and open. The transportation rollers are closed to hold and transport the slip form in the transportation path to the printing unit. A driver is controlled to open and close the transportation rollers according to a control command. When a non-print control command involving print head movement is received, the driver is controlled to close the transportation rollers.
    • 在打印头单元与打印介质(其可能是滑动形式)正交移动的方向正交地移动的打印设备中,防止由于打印头托架的移动而导致的打印介质卡纸和打印介质的损坏 到打印单元的打印路径。 一对输送辊以能够输送辊关闭和打开的方式支撑在输送路径的相对侧上。 输送辊被关闭以将运输路径中的滑动形状保持并运送到印刷单元。 根据控制指令控制驱动器打开和关闭输送辊。 当接收到涉及打印头移动的非打印控制命令时,驱动器被控制以关闭输送辊。
    • 38. 发明授权
    • Friction braking type vibration damper
    • 摩擦制动型减震器
    • US4236606A
    • 1980-12-02
    • US956575
    • 1978-11-01
    • Katsuaki SunakodaYoshikazu Ito
    • Katsuaki SunakodaYoshikazu Ito
    • F16L15/04F16F7/10F16L3/202F16D63/00
    • F16L3/202
    • A vibration snubber for earthquake protection of piping including an auxiliary cylinder axially slidable in a main cylinder having a large diameter portion. The large diameter portion houses a flywheel which is secured to a rotatable center shaft. One end of the shaft is mounted in a bearing in the cylinder end. The other end is threaded and screwed into a conventional screw nut fixed on one end of the auxiliary case. A spacing collar is provided between the flywheel and the bearing. The inner end surface of the large diameter portion has a chamferred friction bearing surface. A movable wheel is rotatably and slidably mounted on the spacing collar. The movable wheel is cylindrical, concentrically surrounding the flywheel. A spring mounted between a spring-receiving ring on the movable wheel and a spring-receiving flange on the flywheel presses the movable wheel against the flywheel. An annular friction surface corresponding to the friction bearing surface is formed on the movable wheel surface facing the end of the main cylinder. At least one ball rides in corresponding conical recesses in opposing faces of the movable wheel and flywheel. When the movable wheel leads or lags the flywheel by inertia, the ball rides up on the surfaces of the conical recesses, pushing the movable wheel away from the flywheel, causing the friction surfaces to contact each other, thereby slowing the assembly by friction braking. The friction bearing surface axial position can be adjustable.
    • 一种用于管道防震的振动缓冲器,其包括在具有大直径部分的主缸中可轴向滑动的辅助缸。 大直径部分容纳有固定到可旋转中心轴的飞轮。 轴的一端安装在气缸端的轴承中。 另一端螺纹拧入固定在辅助外壳一端的常规螺母。 在飞轮和轴承之间设有间隔环。 大直径部分的内端表面具有倒角的摩擦支承表面。 活动轮可旋转并可滑动地安装在间隔环上。 活动轮是圆柱形的,同心圆周地围绕飞轮。 安装在可动轮上的弹簧接收环和飞轮上的弹簧接收凸缘之间的弹簧将可动轮压靠在飞轮上。 在与主缸的端部相对的可动轮表面上形成有与摩擦支承面对应的环状的摩擦面。 至少一个球骑在可动轮和飞轮的相对面中的相应的锥形凹部中。 当可动轮通过惯性引导或拖动飞轮时,球骑在锥形凹槽的表面上,将可动轮推离飞轮,导致摩擦表面彼此接触,从而通过摩擦制动来减缓组装。 摩擦轴承表面的轴向位置可以调节。
    • 39. 发明授权
    • Voltage compensating drive circuit for a thermal printer
    • 热敏打印机的电压补偿驱动电路
    • US4168421A
    • 1979-09-18
    • US844957
    • 1977-10-25
    • Yoshikazu Ito
    • Yoshikazu Ito
    • B41J2/37G06K15/10H04N1/23H05B1/00
    • B41J2/37
    • A voltage compensating drive circuit for a thermal printer is provided. The thermal printer includes a power supply for producing a supply voltage of varying magnitude. A plurality of exothermic printing elements are disposed on a substrate for recording print characters on a thermally sensitive medium in response to a current driving pulse being applied thereto. The printing density of the print characters, recorded on the thermally sensitive medium, are varied in response to variations in the duration of the current drive pulse applied to the exothermic printing element. The voltage compensating drive circuit is coupled to the power supply in order to detect changes in the magnitude of the supply voltage and includes an oscillator circuit for controlling the duration of the current driving pulses in response to changes in the magnitude of the supply voltage to thereby stabilize the printing density of each print character recorded on a thermally sensitive medium.
    • 提供了一种用于热敏打印机的电压补偿驱动电路。 热敏打印机包括用于产生不同大小的电源电压的电源。 多个放热印刷元件设置在基板上,用于响应于施加到其上的电流驱动脉冲在热敏介质上记录打印字符。 记录在热敏介质上的打印字符的打印浓度响应于施加到放热打印元件的当前驱动脉冲的持续时间的变化而变化。 电压补偿驱动电路耦合到电源以便检测电源电压幅度的变化,并且包括一个振荡器电路,用于响应于电源电压幅度的变化来控制电流驱动脉冲的持续时间 稳定记录在热敏介质上的每个打印字符的打印浓度。
    • 40. 发明授权
    • Electrical-wire support apparatus
    • 电线支撑装置
    • US08153896B2
    • 2012-04-10
    • US12083959
    • 2006-10-26
    • Atsushi KawaiYoshikazu Ito
    • Atsushi KawaiYoshikazu Ito
    • H02G3/00H01B7/00
    • H04M1/0222H02G11/00
    • An electrical-wire support structure (30) is disposed at a rotary connection portion of a device and connects first and second portions (11, 12) of the device. The second portion being rotatable about at least two rotational axes. The electrical-wire support structure includes frame members having a through-hole (36, 43) through which an electrical wire (51) may pass, and the through-hole (36, 43) is positioned on one of the rotational axes. An electrical wire (51) has first and second opposite ends. The first end is configured to be disposed on the first portion (11) and the second end is configured to be disposed on the second portion (12). The electrical wire is supported by such electrical-wire support structure such that the wire passes through the through-hole and at least one first bent portion (53) of approximately 180 degrees is formed on the electrical wire (51), and at least one second bent portion (54) of approximately 90 degrees is formed on the electrical wire (51) between the first bent portion (53) and each of the first and second opposite ends of the electrical wire (51).
    • 电线支撑结构(30)设置在装置的旋转连接部分处,并连接装置的第一和第二部分(11,12)。 第二部分可围绕至少两个旋转轴线旋转。 电线支撑结构包括具有通孔(36,43)的框架构件,电线(51)可以穿过该通孔,并且通孔(36,43)位于一个旋转轴上。 电线(51)具有第一和第二相对端。 第一端被配置为设置在第一部分(11)上,并且第二端构造成设置在第二部分(12)上。 电线由这种电线支撑结构支撑,使得电线穿过通孔,并且在电线(51)上形成大约180度的至少一个第一弯曲部分(53),并且至少一个 在第一弯曲部分(53)与电线(51)的第一和第二相对端之间的电线(51)上形成大约90度的第二弯曲部分(54)。