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    • 42. 发明授权
    • IC-tag read-write apparatus
    • IC标签读写装置
    • US07374089B2
    • 2008-05-20
    • US11810331
    • 2007-06-04
    • Tatsuya Fujii
    • Tatsuya Fujii
    • G06K7/08
    • G06K7/10069G06K7/0008
    • A radio data communication apparatus includes first antennas, modulation circuits, an oscillating circuit, a switch circuit, a memory, and a control circuit. The first antennas perform a one-to-one radio communication with second antennas of IC tags having different communication frequencies. The one-to-one radio communication is carried out based on a resonance frequency uniquely assigned to each one of combinations between the first antennas and the second antennas. The memory stores communication information of each IC tag, including an assigned resonance frequency. The control circuit reads a resonance frequency assigned to a second antenna belonging to a target IC tag, generates the control signal such that the switch circuit selects a specific carrier wave having a frequency substantially equal to the resonance frequency read from the memory, and transmits the specific carrier wave and data to be transmitted in synchronism with each other to a corresponding modulating circuit.
    • 无线电数据通信装置包括第一天线,调制电路,振荡电路,开关电路,存储器和控制电路。 第一天线与具有不同通信频率的IC标签的第二天线执行一对一无线电通信。 一对一无线电通信基于唯一地分配给第一天线和第二天线之间的每个组合的谐振频率来执行。 存储器存储每个IC标签的通信信息,包括分配的共振频率。 控制电路读取分配给属于目标IC标签的第二天线的谐振频率,产生控制信号,使得开关电路选择具有与从存储器读取的谐振频率基本相等的频率的特定载波,并发送 具体的载波和数据将被相互同步传输到相应的调制电路。
    • 43. 发明授权
    • IC-tag read-write apparatus
    • US07240837B2
    • 2007-07-10
    • US11040558
    • 2005-01-21
    • Tatsuya Fujii
    • Tatsuya Fujii
    • G06K7/08
    • G06K7/10069G06K7/0008
    • A radio data communication apparatus includes first antennas, modulation circuits, an oscillating circuit, a switch circuit, a memory, and a control circuit. The first antennas perform a one-to-one radio communication with second antennas of IC tags having different communication frequencies. The one-to-one radio communication is carried out based on a resonance frequency uniquely assigned to each one of combinations between the first antennas and the second antennas. The memory stores communication information of each IC tag, including an assigned resonance frequency. The control circuit reads a resonance frequency assigned to a second antenna belonging to a target IC tag, generates the control signal such that the switch circuit selects a specific carrier wave having a frequency substantially equal to the resonance frequency read from the memory, and transmits the specific carrier wave and data to be transmitted in synchronism with each other to a corresponding modulating circuit.
    • 46. 发明授权
    • Dependent power supplying apparatus and electronic instrument
    • 依赖供电装置和电子仪器
    • US06952619B2
    • 2005-10-04
    • US10107466
    • 2002-03-26
    • Tatsuya Fujii
    • Tatsuya Fujii
    • G06F1/32G06F1/26G06F1/28G11C5/14H02J1/00H02J7/00H02M3/00G05B11/01
    • H02J1/10G06F1/26G06F1/28G11C5/14Y10T307/305Y10T307/406Y10T307/445Y10T307/615Y10T307/625
    • A semiconductor power supplying apparatus driven by a power source includes at least two driven circuits for performing prescribed data processing when electric power is supplied. An electric power supplying circuit is provided so as to convert power from the power source as needed to supply at least two driven circuits with electric power in accordance with voltages that the driven circuits need. A driven circuit power supplying condition signal generating device is provided so as to generate a driven circuit power supplying condition signal for determining a power supplying condition of all of the at least two driven circuits. A power supplying control signal generation circuit is also provided so as to generate a power supplying control signal for controlling operation of the power supplying circuit. The power supplying control signal is generated from the driven circuit power supplying condition signal and determines an order of supplying power to the at least two driven circuits so that the at least two driven circuits can receive dependent power supplying.
    • 由电源驱动的半导体供电装置包括至少两个驱动电路,用于在供电时进行规定的数据处理。 提供电力供应电路,以便根据驱动电路所需的电压,根据需要将来自电源的功率转换为至少两个带有电力的驱动电路。 驱动电路供电条件信号发生装置被设置成产生用于确定所有至少两个驱动电路的供电状态的驱动电路供电条件信号。 还提供一个供电控制信号产生电路,以产生用于控制供电电路的操作的供电控制信号。 从驱动电路供电条件信号产生供电控制信号,并且确定向至少两个驱动电路供电的顺序,使得至少两个从动电路可以接收依赖的供电。
    • 49. 发明授权
    • Image processing apparatus
    • 图像处理装置
    • US5455900A
    • 1995-10-03
    • US135614
    • 1993-10-14
    • Naoto ShiraishiTatsuya Fujii
    • Naoto ShiraishiTatsuya Fujii
    • G06T11/20G06T1/60G06T11/40G06T15/40G09G5/36G06F15/72
    • G06T1/60
    • An image processing apparatus which can be operated using a small memory capacity and at a high speed. A screen memory for storing X and Y coordinate data for edge points of polygons and a sort memory for storing polygon numbers are provided. A polygon side computing unit computes data for sides of each of the polygons corresponding to each of the polygon numbers. A side pair computing unit computes side pair data in accordance with the data of sides of polygons, the side pair data comprising data of a pair of sides located on the scan lines of the screen. An inclination computing unit computes an inclination of each side of the side pair. A side pair memory stores inclination data and start and end point data of each side of the side pair, each data being stored in a position having a predetermined address. A frame memory stores data for the address of the side pair memory. An interpolation computing unit computes right and left intersection data on each of the scan lines. A processing unit processes the right and left intersection data so as to obtain dot data for the polygons, and outputs the dot data by synchronizing the dot data with the scan lines of the screen on the display unit.
    • 一种图像处理装置,其可以使用小的存储容量和高速度操作。 提供了用于存储用于多边形的边缘点的X和Y坐标数据的屏幕存储器和用于存储多边形数量的分类存储器。 多边形侧计算单元计算与每个多边形数对应的每个多边形的边的数据。 侧对计算单元根据多边形的边的数据计算侧对数据,侧对数据包括位于屏幕的扫描线上的一对边的数据。 倾斜计算单元计算侧对的每一侧的倾斜度。 侧对存储器存储侧对对的每一侧的倾斜数据和开始和结束点数据,每个数据被存储在具有预定地址的位置。 帧存储器存储用于侧对存储器的地址的数据。 内插计算单元计算每条扫描线上的左和右交点数据。 处理单元处理左右交叉点数据以获得多边形的点数据,并且通过使点数据与显示单元上的屏幕的扫描线同步来输出点数据。
    • 50. 发明授权
    • Image processing system enabling real-time output of image signal based
on polygon image information
    • 图像处理系统,能够基于多边形图像信息实时输出图像信号
    • US5448690A
    • 1995-09-05
    • US197976
    • 1994-02-17
    • Naoto ShiraishiTatsuya FujiiMasanobu FukushimaTatsuya NakajimaYasuhiro Izawa
    • Naoto ShiraishiTatsuya FujiiMasanobu FukushimaTatsuya NakajimaYasuhiro Izawa
    • G09G5/36G06T11/20G06T1/00
    • G06T15/405
    • A polygon extracting unit divides a screen image into n-level hierarchy in a scan-line shifting direction. The polygon extracting unit then accesses the sort memory and then reads data, from the screen memory, concerning the end points of the polygon corresponding to the value obtained as a result of the sort memory access. Then, the same unit, in the highest-level regions of the hierarchy, extracts the polygon edge-pairs overlapping the highest-level region. Then, the same unit, based on polygon edge-information, calculates the information concerning the corresponding edge pair to appear on the scan line. A polygon-edge-pair memory stores data concerning the starting point and ending point of the polygon on the scan line. A transfer unit determines whether or not the extracted polygon edge-pair overlaps with the relevant region. The same unit then transfers the polygon edge-pair to the lower-level regions if the polygon edge-pair overlaps. A polygon-edge-pair data transfer unit, in the lowest-level region, determines whether or not the polygon edge-pair overlaps with the lowest-level region. The same unit then transfers a parameter required for vertical interpolation from the polygon-edge-pair memory, for the polygon edge-pair, if the polygon edge-pair overlaps. A vertical-interpolation operation unit calculates the gradient of the relevant polygon edge-pair based on the relevant data. The same unit then calculates so as to interpolate between the right crossing point and the left crossing point on the scan line. An output unit outputs dot data synchronized to the scan line associated with display unit for displaying the relevant polygon figure.
    • 多边形提取单元将扫描线移动方向的屏幕图像分割成n级。 然后,多边形提取单元访问排序存储器,然后从屏幕存储器读取与作为排序存储器访问的结果获得的值对应的多边形的端点的数据。 然后,在层次结构的最高级别区域中的相同单元提取与最高级别区域重叠的多边形边对。 然后,基于多边形边缘信息的相同单元计算关于在扫描线上出现的相应边缘对的信息。 多边形边对存储器存储与扫描线上的多边形的起始点和终点相关的数据。 传送单元确定所提取的多边形边对是否与相关区域重叠。 如果多边形边对重叠,则相同的单元然后将多边形边缘对传输到下级区域。 在最低层区域中的多边形对边数据传送单元确定多边形边对是否与最底层区域重叠。 如果多边形边对重叠,则相同的单元然后从多边形边对对存储器中为多边形边对传输垂直插值所需的参数。 垂直插补运算单元根据相关数据来计算相关多边形边对的梯度。 相同的单元然后计算以便在扫描线上的右交叉点和左交叉点之间插值。 输出单元输出与显示单元相关联的扫描线同步的点数据,以显示相关的多边形图形。