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    • 1. 发明申请
    • A DIRECT-TRANSFER MARCHING MEMORY AND A COMPUTER SYSTEM USING THE SAME
    • 直接传输记录和使用它的计算机系统
    • WO2014199642A1
    • 2014-12-18
    • PCT/JP2014/003145
    • 2014-06-12
    • NAKAMURA, TadaoFLYNN, Michael J.
    • NAKAMURA, TadaoFLYNN, Michael J.
    • G11C19/28
    • G11C16/10G11C16/32G11C19/184G11C19/28G11C19/282
    • A direct-transfer marching memory includes an array of memory units, each of the memory units having a sequence of bit-level cells so as to store information of byte size or word size, the information of byte size or word size is transferred synchronously, step by step, along a direction orthogonal to a direction of the sequence of bit-level cells, each of the bit-level cells encompassing an electron-storage region configured to accumulate cell-electrons. The cell-electrons accumulated in an electron-storage region (19 2j-1 ) in a subject memory unit is directly transferred to an adjacent electron-storage region (19 2j ), which is assigned in the next memory unit adjacent to the subject memory unit, the transfer of the cell-electrons is directly controlled by control signals, without using a combinational function of a logic gate circuit.
    • 直接传送行进存储器包括存储器单元阵列,每个存储器单元具有位级单元的序列,以便存储字节大小或字大小的信息,字节大小或字大小的信息被同步传输, 沿着与位电平单元序列的方向正交的方向,每个位层单元包含构成为积累电池电子的电子存储区域。 存储在被摄体存储单元中的电子存储区域(192j-1)中的单元电子被直接传送到在与主体存储单元相邻的下一个存储单元中分配的相邻的电子存储区域(192j) 单元电子的转移由控制信号直接控制,而不使用逻辑门电路的组合功能。
    • 4. 发明申请
    • SYSTEM, METHOD AND COMPUTER PROGRAM PRODUCT FOR MEASURING GAS CONCENTRATION
    • 用于测量气体浓度的系统,方法和计算机程序产品
    • WO2018084296A1
    • 2018-05-11
    • PCT/JP2017/039994
    • 2017-11-06
    • BALL WAVE INC.
    • YAMANAKA KazushiAKAO ShingoTAKEDA NobuoTSUJI ToshihiroOIZUMI ToruTSUKAHARA Yusuke
    • G01N29/02
    • System and method for measuring a gas concentration are provided. A ball sensor (2) generates a collimated beam of a surface acoustic wave including fundamental wave of first frequency and harmonic wave of second frequency, which propagates through a orbital path on piezoelectric ball while passing through sensitive film to adsorb a target gas. Temperature control unit controls ball temperature of the ball sensor (2). Signal processing unit (40) transmits a burst signal to sensor electrode of the ball sensor (2) to excite the collimated beam, receives burst signals after the collimated beam has propagated a predetermined number of turns around the piezoelectric ball, and calculates the gas concentration and the ball temperature by first and second relative changes in delay times of the first and second frequencies, respectively, using waveform data of the burst signals.
    • 提供了用于测量气体浓度的系统和方法。 球传感器(2)产生包括第一频率的基波和第二频率的谐波的表面声波的准直波束,该第一频率的基波和第二频率的谐波通过压电球上的轨道路径传播,同时穿过敏感膜以吸收目标气体。 温度控制单元控制球传感器(2)的球温度。 信号处理单元(40)向球传感器(2)的传感器电极发送脉冲串信号以激励准直光束,在准直光束在压电球周围传播预定匝数之后接收脉冲串信号,并计算气体浓度 和球温度分别由第一和第二频率的延迟时间的第一和第二相对变化使用突发信号的波形数据。