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    • 1. 发明授权
    • Recorder with piezo motor used to drive platen for high magnetic environments
    • 具有压电电机的记录仪用于驱动高磁环境的压板
    • US09114634B2
    • 2015-08-25
    • US13811917
    • 2011-07-18
    • Ronald Paul Consiglio
    • Ronald Paul Consiglio
    • B41J29/38B41J11/00A61B5/00G01R33/28B41J3/44A61B5/055
    • B41J3/445A61B5/0002A61B5/055B41J29/38B65H2555/14B65H2555/27G01R33/28
    • An apparatus and method generates a print out of physiological information from a patient (4) undergoing a magnetic resonance scan in a magnetic resonance system (8). The magnetic resonance system includes a main magnet that generates a static magnetic field (B0) through an examination region (12). A recorder device (38) is located adjacent the patient within a five Gauss line and more particularly, in the examination region with the patient at full field. A piezoelectric motor (68) drives a pinion (72) which drives a roller platen (62) of a printer assembly (60). A primary controller board (70) generates electromechanical stepper motor drive signals (90) and a secondary controller board (74) converts the electromechanical stepper motor drive signals (90) to piezoelectric motor drive motor signals (100).
    • 一种装置和方法从在磁共振系统(8)中进行磁共振扫描的患者(4)产生生理信息的打印。 磁共振系统包括通过检查区域(12)产生静磁场(B0)的主磁体。 记录器装置(38)位于患者的五高斯线附近,更具体地,在患者处于全场的检查区域中。 压电马达(68)驱动驱动打印机组件(60)的辊压板(62)的小齿轮(72)。 主控制器板(70)产生机电步进电机驱动信号(90),次控制器板(74)将机电步进电动机驱动信号(90)转换为压电电动机驱动电动机信号(100)。
    • 3. 发明授权
    • Sheet processing apparatus
    • 纸张处理设备
    • US5443257A
    • 1995-08-22
    • US304479
    • 1994-09-12
    • Katsuji Sakamori
    • Katsuji Sakamori
    • G07D7/00B65H7/06G07D7/16G07D9/00B65H7/02
    • G07D7/16B65H7/06B65H2301/331B65H2404/14B65H2511/242B65H2511/51B65H2511/514B65H2513/50B65H2513/511B65H2553/412B65H2555/14B65H2701/1311B65H2701/1313B65H2701/1912
    • With a banknote processing apparatus, banknotes stored in a storing section are fed in a feeding direction one by one by take-in rollers. First and second sensors for detecting passage of the banknote are arranged in a direction perpendicular to the feeding direction of the sheets and spaced from each other. A difference between a first passing timing at which a leading edge of the banknote is detected by the first sensor and a second passing timing at which the leading edge of the banknote is detected by the second sensor is detected by a control section. A second difference between a passing timing at which a trailing edge of the banknote is detected by the first sensor and a passing timing at which the trailing edge of the banknote is detected by the second sensor is detected by the control section. If the first and second difference are different from each other, it is determined by the control section that a bent or torn portion exists in the banknote.
    • 使用纸币处理装置,通过收纳辊将存储在存储部中的纸币一个接一个地沿供给方向进给。 用于检测纸币通过的第一传感器和第二传感器沿垂直于纸张的进给方向的方向布置,彼此间隔开。 通过控制部检测由第一传感器检测到纸币的前端的第一通过定时与由第二传感器检测到的纸币的前端的第二通过定时之间的差异。 通过控制部分检测由第一传感器检测到纸币的后缘的通过时间和由第二传感器检测到纸币的后沿的通过定时之间的第二个差异。 如果第一和第二差别彼此不同,则由控制部确定钞票中存在弯曲或撕裂部分。
    • 5. 发明申请
    • RECORDER WITH PIEZO MOTOR USED TO DRIVE PLATEN FOR HIGH MAGNETIC ENVIRONMENTS
    • 用于高磁性环境的驱动板的PIEZO电机记录仪
    • US20130123608A1
    • 2013-05-16
    • US13811917
    • 2011-07-18
    • Ronald Paul Consiglio
    • Ronald Paul Consiglio
    • B41J11/00A61B5/055
    • B41J3/445A61B5/0002A61B5/055B41J29/38B65H2555/14B65H2555/27G01R33/28
    • An apparatus and method generates a print out of physiological information from a patient (4) undergoing a magnetic resonance scan in a magnetic resonance system (8). The magnetic resonance system includes a main magnet that generates a static magnetic field (B0) through an examination region (12). A recorder device (38) is located adjacent the patient within a five Gauss line and more particularly, in the examination region with the patient at full field. A piezoelectric motor (68) drives a pinion (72) which drives a roller platen (62) of a printer assembly (60). A primary controller board (70) generates electromechanical stepper motor drive signals (90) and a secondary controller board (74) converts the electromechanical stepper motor drive signals (90) to piezoelectric motor drive motor signals (100).
    • 一种装置和方法从在磁共振系统(8)中进行磁共振扫描的患者(4)产生生理信息的打印。 磁共振系统包括通过检查区域(12)产生静磁场(B0)的主磁体。 记录器装置(38)位于患者的五高斯线附近,更具体地,在患者处于全场的检查区域中。 压电马达(68)驱动驱动打印机组件(60)的辊压板(62)的小齿轮(72)。 主控制器板(70)产生机电步进电机驱动信号(90),次控制器板(74)将机电步进电动机驱动信号(90)转换为压电电动机驱动电动机信号(100)。
    • 9. 发明申请
    • Vacuum Suction Adjustable Transfer Roller And Film Attachment Method Using the Transfer Roller
    • 使用转印辊的真空抽吸可调转印辊和胶片附着方法
    • US20150298444A1
    • 2015-10-22
    • US14347598
    • 2013-10-18
    • SHENZHEN CHINA STAR OPTOELECTROINICS TECHNOLOGY CO., LTD.
    • Shun YANG
    • B32B37/00F16K31/00B32B37/18B32B38/18B23Q3/08B65H3/10
    • B32B37/025B23Q3/088B32B37/18B32B38/1858B32B2457/202B65H3/10B65H27/00B65H2406/331B65H2406/332B65H2555/14B65H2801/61F16K31/005G02F1/1303
    • The present invention provides a vacuum suction adjustable transfer roller and a film attachment method using the transfer roller. The transfer roller includes: a roller body (20) and a plurality of adjustment devices (40) mounted in the roller body (20). The roller body (20) includes a plurality of air draw-in passages (22) uniformly distributed therein. The air draw-in passages (22) draw in air by means of an air evacuation device. Each of the adjustment devices (40) includes: a valve (42) arranged in each of the air draw-in passages (22), a piezoelectric ceramic piece (44) connected to the valve (42), and a control circuit (46) electrically connected to the piezoelectric ceramic piece (44). The control circuit (46) controls the intensity of an electric field applied to the piezoelectric ceramic piece (44) so that the piezoelectric ceramic piece (44) undergoes deformation under the action of the electric field and the valve (42) is caused by the deformation of the piezoelectric ceramic piece (44) to selectively insert into or withdraw out of the air draw-in passages (22) so as to control flow of air drawn in by the air draw-in passages (22) and thus controlling the magnitude of a vacuum suction force induced by the air draw-in passages (22).
    • 本发明提供一种使用转印辊的真空抽吸可调转印辊和膜附着方法。 转印辊包括:辊主体(20)和安装在辊体(20)中的多个调节装置(40)。 辊主体(20)包括均匀分布在其中的多个空气抽入通道(22)。 空气抽入通道(22)通过排气装置吸入空气。 每个调节装置(40)包括:布置在每个空气引入通道(22)中的阀(42),连接到阀(42)的压电陶瓷件(44)和控制电路(46) )电连接到压电陶瓷片(44)。 控制电路(46)控制施加到压电陶瓷片(44)的电场的强度,使得压电陶瓷片(44)在电场作用下经历变形,并且阀(42)由 压电陶瓷片(44)的变形以选择性地插入或抽出空气引入通道(22),以便控制由空气引入通道(22)吸入的空气的流动,从而控制压力陶瓷片 由吸气通道(22)引起的真空吸力。