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    • 2. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US07881622B2
    • 2011-02-01
    • US11551780
    • 2006-10-23
    • Haruo SayamaYasushi MatsutomoKiwamu MoritaMichihiro YamashitaYuriko KameiYasuhiro Takai
    • Haruo SayamaYasushi MatsutomoKiwamu MoritaMichihiro YamashitaYuriko KameiYasuhiro Takai
    • G03G15/00
    • G03G15/70G03G2215/00548
    • An image forming apparatus includes a feeding portion, an image forming portion, a discharge portion, a paper transport path, a plurality of detection members, and a control portion. The image forming portion forms images on sheets of paper fed from the feeding portion. The path transports paper from the feeding portion to the discharge portion via the image forming portion. The detection members detect transport state of paper at respective locations on the path including the feeding portion, between the feeding and image forming portions, within the image forming portion, between the image forming and discharge portions, and the discharge portion. Upon detection of paper jam at any of the locations, the control portion displays, on an indicator, information identifying a location where the jam has occurred, and the image forming portion where paper is detected by the detection members, as locations of paper to be eliminated from the path.
    • 图像形成装置包括馈送部分,图像形成部分,放电部分,纸张传送路径,多个检测部件和控制部分。 图像形成部分在从馈送部分馈送的纸张上形成图像。 该路径经由图像形成部将纸从供给部输送到排出部。 检测构件在图像形成部分,图像形成部分和排出部分之间以及排出部分之间检测在包括馈送部分,馈送和图像形成部分之间的路径上的各个位置处的纸张的传送状态。 在检测到任何位置处的卡纸时,控制部分在指示器上显示识别发生卡纸的位置的信息和由检测部件检测到纸张的图像形成部分,作为纸张的位置 从路径中消失。
    • 4. 发明申请
    • IMAGE FORMING APPARATUS
    • 图像形成装置
    • US20070092271A1
    • 2007-04-26
    • US11551780
    • 2006-10-23
    • Haruo SayamaYasushi MatsutomoKiwamu MoritaMichihiro YamashitaYuriko KameiYasuhiro Takai
    • Haruo SayamaYasushi MatsutomoKiwamu MoritaMichihiro YamashitaYuriko KameiYasuhiro Takai
    • G03G15/00
    • G03G15/70G03G2215/00548
    • An image forming apparatus includes a feeding portion, an image forming portion, a discharge portion, a paper transport path, a plurality of detection members, and a control portion. The image forming portion forms images on sheets of paper fed from the feeding portion. The path transports paper from the feeding portion to the discharge portion via the image forming portion. The detection members detect transport state of paper at respective locations on the path including the feeding portion, between the feeding and image forming portions, within the image forming portion, between the image forming and discharge portions, and the discharge portion. Upon detection of paper jam at any of the locations, the control portion displays, on an indicator, information identifying a location where the jam has occurred, and the image forming portion where paper is detected by the detection members, as locations of paper to be eliminated from the path.
    • 图像形成装置包括馈送部分,图像形成部分,放电部分,纸张传送路径,多个检测部件和控制部分。 图像形成部分在从馈送部分馈送的纸张上形成图像。 该路径经由图像形成部将纸从供给部输送到排出部。 检测构件在图像形成部分,图像形成部分和排出部分之间以及排出部分之间检测在包括馈送部分,馈送和图像形成部分之间的路径上的各个位置处的纸张的传送状态。 在检测到任何位置处的卡纸时,控制部分在指示器上显示识别发生卡纸的位置的信息和由检测部件检测到纸张的图像形成部分,作为纸张的位置 从路径中消失。
    • 5. 发明授权
    • Sheet feeder
    • 送纸器
    • US07841596B2
    • 2010-11-30
    • US11863414
    • 2007-09-28
    • Yoshinobu OkumuraYasushi MatsutomoHaruo SayamaYasunobu OhkawaMichihiro YamashitaYuriko KameiYasuhiro Takai
    • Yoshinobu OkumuraYasushi MatsutomoHaruo SayamaYasunobu OhkawaMichihiro YamashitaYuriko KameiYasuhiro Takai
    • B65H5/34B65H7/02
    • B65H5/062B65H7/20B65H2220/09B65H2404/14B65H2511/20B65H2511/514B65H2513/10B65H2513/50B65H2557/23B65H2801/06B65H2220/03B65H2220/01B65H2220/02
    • A sheet feeder has a feed passage and includes feed roller pairs, sensors, and a controller. The feed roller pairs are arranged along the feed passage and feed sheets of paper in a feed direction along the passage by nipping the sheets. Each of the sensors is fitted at or near one of the feed roller pairs and senses a specified point on each of the sheets when the sheet is nipped by at least the associated roller pair. The controller includes a memory for storing reference feed timings as proper feed timings at each of which the specified points on the sheets should pass one of the sensors. The controller finds the real feed timing when each of the sensors senses the specified point on the sheet nipped by at least the associated roller pair. When each of the sensors senses the specified point on the sheet nipped by at least the associated roller pair, the controller finds the time difference between the associated reference feed timing and the associated real feed timing and controls, according to the found time difference, the feed speed at which the feed roller pair or pairs nipping the sheet feed it.
    • 送纸器具有进给通道,并且包括进给辊对,传感器和控制器。 馈送辊对沿着进给通道布置,并且通过夹住纸张沿着通道沿进给方向馈送纸张。 每个传感器安装在进给辊对中或附近,并且当片材被至少相关联的辊对夹持时,感测每个片材上的指定点。 控制器包括用于将参考馈送定时存储为适当的馈送定时的存储器,其中片材上的指定点将通过其中一个传感器。 当每个传感器感测到由​​至少相关联的辊对夹持的片材上的指定点时,控制器找到实际的进给定时。 当每个传感器感测至少被相关联的辊对夹紧的片材上的指定点时,控制器根据所发现的时间差找到相关联的基准馈送定时和相关联的实际馈送定时之间的时间差并进行控制, 进给辊对或夹紧片材的进给速度进给。
    • 6. 发明申请
    • X-RAY CT APPARATUS AND MEDICAL DATA COMMUNICATION LINK SYSTEM
    • X射线CT设备和医疗数据通信链路系统
    • US20070165776A1
    • 2007-07-19
    • US11623991
    • 2007-01-17
    • Shouichi NakagawaMichihiro Yamashita
    • Shouichi NakagawaMichihiro Yamashita
    • H05G1/60A61B6/00G01N23/00G21K1/12
    • A61B6/4233A61B6/56
    • A receiving medium comprising N components is assigned to a channel comprising N components respectively and provided along the circumference around which a rotating frame rotates. At a position facing said receiving medium corresponding to the rotation, the transmission medium of M components (M>2N, N represents an integer more than 2) are arranged separately in a line along the circumference of the rotating frame in a state such as charge-coupling. A signal generation device produces the signal containing data relating to an object obtained by detection of the X-ray detector device, which is for example, a carrier signal modulated with the data. In addition, for example, when the transmission medium is rotated according to the carrier signal to face any of the receiving medium, a switching device transmits the signal from the channel to one of the corresponding receiving medium, and when the interval between the two adjacent transmission medium passes through said receiving medium, the switching device switches the signal from said generation device according to said rotation, such that the signal from the same channel may be transmitted to the two adjacent transmission medium.Due to this switching, a signal containing the data from the X-ray detector device distributed to each channel can be transmitted continuously to the stationary frame without fail.
    • 将包含N个分量的接收介质分配给包括N个分量的信道,并且沿着旋转框架旋转的周边设置。 在面对与旋转对应的所述接收介质的位置处,M分量(M> 2N,N表示大于2的整数)的传输介质在诸如电荷的状态下沿着旋转框架的圆周分开布置 -耦合。 信号产生装置产生包含与通过检测X射线检测器装置获得的对象相关的数据的信号,例如,用数据调制的载波信号。 此外,例如,当传输介质根据载波信号旋转以面对任何接收介质时,交换设备将信号从信道发送到相应的接收介质之一,并且当两个相邻的间隔 传输介质通过所述接收介质,所述交换设备根据所述旋转切换来自所述生成设备的信号,使得来自相同信道的信号可以被传送到两个相邻的传输介质。 由于这种切换,包含分布到每个通道的X射线检测器装置的数据的信号可以不间断地传送到固定框架。
    • 7. 发明授权
    • Data processing apparatus for imparting priority to either nullification of processed data or processing of non-processed data
    • 用于优先处理已处理数据的无效或未处理数据的处理的数据处理装置
    • US07327484B2
    • 2008-02-05
    • US11080828
    • 2005-03-11
    • Michihiro YamashitaNorichika Katsura
    • Michihiro YamashitaNorichika Katsura
    • G06F12/14
    • H04N1/00209H04N1/00233H04N1/00342H04N1/00923H04N1/32122H04N2201/0094H04N2201/3205
    • A data processing apparatus receives and stores data, and then performs processing such as the output of the stored data. The data processing apparatus nullifies already-processed data by means of deletion or overwrite. The data processing apparatus displays a reception screen for receiving from a user a priority instruction for either a processing-speed oriented priority where priority is imparted to the processing of data or a security oriented priority where priority is imparted to the nullification of data. When the security oriented priority is instructed, the data processing apparatus performs the nullification of data immediately after the processing of the data. When the processing-speed oriented priority is instructed, the data processing apparatus performs with priority the processing of data. Then, when not-yet-processed data has been completed, or alternatively after a user has left the site, the data processing apparatus performs the nullification of already-processed data.
    • 数据处理装置接收并存储数据,然后进行存储数据的输出等处理。 数据处理装置通过删除或覆盖使已经处理的数据无效。 数据处理装置显示用于从用户接收优先级指令的接收屏幕,该优先级指令用于对数据的处理赋予优先权或者对数据的无效赋予优先权的面向安全的优先级。 当指示安全取向优先级时,数据处理装置在数据处理之后立即执行数据的无效。 当指示以处理速度为导向的优先级时,数据处理装置优先处理数据。 然后,当尚未处理的数据已经完成,或者在用户离开站点之后,数据处理装置执行已经处理的数据的无效。
    • 8. 发明授权
    • X-ray CT apparatus and medical data communication link system
    • X射线CT装置和医疗数据通信链路系统
    • US07502438B2
    • 2009-03-10
    • US11623991
    • 2007-01-17
    • Shouichi NakagawaMichihiro Yamashita
    • Shouichi NakagawaMichihiro Yamashita
    • H05G1/08H05G1/60
    • A61B6/4233A61B6/56
    • A receiving medium comprising N components is assigned to a channel comprising N components respectively and provided along the circumference around which a rotating frame rotates. At a position facing the receiving medium corresponding to the rotation, the transmission medium of M components (M≧2N, N represents an integer more than 2) are arranged separately in a line along the circumference of the rotating frame. A signal generation device produces the signal containing data relating to an object obtained by detection of the X-ray detector device. When the transmission medium is rotated according to the carrier signal to face any of the receiving medium, a switching device transmits the signal from the channel to one of the corresponding receiving medium. When the interval between the two adjacent transmission medium passes through the receiving medium, the signal from the same channel may be transmitted to the two adjacent transmission medium.
    • 将包含N个分量的接收介质分配给包括N个分量的信道,并且沿着旋转框架旋转的周边设置。 在面对与旋转对应的接收介质的位置,M分量的传输介质(M> = 2N,N表示大于2的整数)沿着旋转框架的圆周分开设置。 信号产生装置产生包含与通过检测X射线检测器装置获得的对象有关的数据的信号。 当传输介质根据载波信号旋转以面对任何接收介质时,交换设备将信号从信道发送到相应的接收介质之一。 当两个相邻的传输介质之间的间隔通过接收介质时,来自相同信道的信号可被传输到两个相邻的传输介质。
    • 9. 发明申请
    • Fixing apparatus
    • 固定装置
    • US20080003009A1
    • 2008-01-03
    • US11823155
    • 2007-06-27
    • Yasunori MinakuchiYoshinobu TateishiToshiya MikitaMichihiro Yamashita
    • Yasunori MinakuchiYoshinobu TateishiToshiya MikitaMichihiro Yamashita
    • G03G15/20
    • G03G15/2064G03G2215/2016
    • In one embodiment, in a standby mode, an endless heating belt is caused to move apart from a hot roller. Furthermore, in color mode, the endless heating belt is caused to contact the hot roller to make possible thermal conduction between the endless heating belt and the hot roller, and a surface temperature of the endless heating belt is adjusted within a prescribed range of 200° C. to 210° C. being higher than a fixing temperature of 180° C. Further still, in monochrome mode, a length (or a surface area) of a heating contact region between the endless heating belt and the hot roller is set to a maximum to increase a thermal conduction efficiency between the endless heating belt and the hot roller, and a surface temperature of the endless heating belt is adjusted within a prescribed range of 210° C. to 220° C. being sufficiently higher than the fixing temperature of 180° C.
    • 在一个实施例中,在待机模式中,使无端加热带从热辊移开。 此外,在彩色模式中,使无端加热带与热辊接触,使得环形加热带和热辊之间可能的热传导,并且将环形加热带的表面温度调节在200°的规定范围内 C.至210℃,高于180℃的定影温度。此外,在单色模式下,将环形加热带和热辊之间的加热接触区域的长度(或表面积)设定为 最大限度地提高环形加热带和热辊之间的热传导效率,并且将环形加热带的表面温度调节在210℃至220℃的规定范围内,足够高于定影温度 180°C
    • 10. 发明授权
    • Fixing apparatus
    • 固定装置
    • US07706707B2
    • 2010-04-27
    • US11823155
    • 2007-06-27
    • Yasunori MinakuchiYoshinobu TateishiToshiya MikitaMichihiro Yamashita
    • Yasunori MinakuchiYoshinobu TateishiToshiya MikitaMichihiro Yamashita
    • G03G15/20
    • G03G15/2064G03G2215/2016
    • In one embodiment, in a standby mode, an endless heating belt is caused to move apart from a hot roller. Furthermore, in color mode, the endless heating belt is caused to contact the hot roller to make possible thermal conduction between the endless heating belt and the hot roller, and a surface temperature of the endless heating belt is adjusted within a prescribed range of 200° C. to 210° C. being higher than a fixing temperature of 180° C. Further still, in monochrome mode, a length (or a surface area) of a heating contact region between the endless heating belt and the hot roller is set to a maximum to increase a thermal conduction efficiency between the endless heating belt and the hot roller, and a surface temperature of the endless heating belt is adjusted within a prescribed range of 210° C. to 220° C. being sufficiently higher than the fixing temperature of 180° C.
    • 在一个实施例中,在待机模式中,使无端加热带从热辊移开。 此外,在彩色模式中,使无端加热带与热辊接触,使得环形加热带和热辊之间可能的热传导,并且将环形加热带的表面温度调节在200°的规定范围内 C.至210℃,高于180℃的定影温度。此外,在单色模式下,将环形加热带和热辊之间的加热接触区域的长度(或表面积)设定为 最大限度地提高环形加热带和热辊之间的热传导效率,并且将环形加热带的表面温度调节在210℃至220℃的规定范围内,足够高于定影温度 180°C