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    • 1. 发明申请
    • SEMICONDUCTOR DEVICE
    • 半导体器件
    • US20120293203A1
    • 2012-11-22
    • US13471879
    • 2012-05-15
    • Takuro OHMARUYutaka SHIONOIRI
    • Takuro OHMARUYutaka SHIONOIRI
    • H03K19/177
    • H01L27/105H03K19/1776H03K19/17764H03K19/17772
    • A programmable analog device in which data can be held even when supply of a power supply potential is stopped. The programmable circuit includes unit cells connected in parallel or in series, and each of the unit cells includes an analog element. A conduction state of each of the unit cells is changed between an on state and an off state. Each of the unit cells includes, as a switch of the unit cell, a first transistor having a sufficiently low off-state current and a second transistor, a gate electrode of the second transistor being electrically connected to a source or drain electrode of the first transistor. The conduction state of the unit cell is controlled with a potential of the gate electrode of the second transistor, which can be kept even when no power is supplied thanks to the low off-state current of the first transistor.
    • 即使停止供给电源电位,也可以进行数据保持的可编程模拟装置。 可编程电路包括并联或串联连接的单位单元,并且每个单位单元包括模拟元件。 每个单电池的导通状态在导通状态和断开状态之间变化。 每个单电池包括作为单位电池的开关的具有足够低的截止电流的第一晶体管和第二晶体管,第二晶体管的栅电极电连接到第一晶体管的源电极或漏电极 晶体管。 单电池的导通状态由第二晶体管的栅电极的电位来控制,即使在没有供电的情况下,由于第一晶体管的低截止电流也可以保持该电位。
    • 2. 发明申请
    • SEMICONDUCTOR DEVICE AND DRIVING METHOD THE SAME
    • 半导体器件及其驱动方法
    • US20110055463A1
    • 2011-03-03
    • US12872254
    • 2010-08-31
    • Masato ISHIIYasuyuki TAKAHASHITakuro OHMARUHidetomo KOBAYASHIYutaka SHIONOIRI
    • Masato ISHIIYasuyuki TAKAHASHITakuro OHMARUHidetomo KOBAYASHIYutaka SHIONOIRI
    • G06F12/00G06F12/02
    • G06F12/1433G06F2212/178
    • It is an object to prevent miswriting by radio in a relatively easy way in a semiconductor device which is capable of data communication (reception/transmission) through wireless communication, in particular, in an RFID tag provided with an OTP memory or a write-once memory. Alternatively, it is an object to prevent data from being tampered. Further alternatively, it is an object to inhibit access to a memory in a relatively easy way and to inhibit reading of data in a semiconductor device which is capable of data communication (reception/transmission) through wireless communication. In a semiconductor device including a control circuit and an OTP memory, a memory includes at least a sector for preventing additional writing and an information sector. When data for preventing additional writing is written to the sector for preventing additional writing and information is written to the information sector which is electrically connected to the sector for preventing additional writing, additional writing to the information sector to which the information is written is impossible.
    • 本发明的目的是在能够通过无线通信进行数据通信(接收/发送)的半导体装置中以相对容易的方式防止在无线电中的错误写入,特别是在设置有OTP存储器或一次写入的RFID标签中 记忆。 或者,其目的是防止数据被篡改。 进一步地,本发明的目的是以相对简单的方式禁止对存储器的访问,并且禁止通过无线通信进行数据通信(接收/发送)的半导体装置中的数据的读取。 在包括控制电路和OTP存储器的半导体器件中,存储器至少包括用于防止额外写入的扇区和信息扇区。 当防止附加写入的数据被写入扇区以防止附加写入时,信息被写入电连接到扇区的信息扇区以防止附加写入,对写入信息的信息扇区的附加写入是不可能的。
    • 3. 发明申请
    • SEMICONDUCTOR DEVICE
    • 半导体器件
    • US20120281469A1
    • 2012-11-08
    • US13459537
    • 2012-04-30
    • Hiroyuki TOMATSUHidetomo KOBAYASHIYutaka SHIONOIRI
    • Hiroyuki TOMATSUHidetomo KOBAYASHIYutaka SHIONOIRI
    • G11C11/40H01L27/108
    • H01L27/1156G11C7/02G11C11/4085G11C11/4091G11C11/4094
    • Noise generated on a word line is reduced without increasing a load on the word line. A semiconductor device is provided in which a plurality of storage elements each including at least one switching element are provided in matrix; each of the plurality of storage elements is electrically connected to a word line and a bit line; the word line is connected to a gate (or a source and a drain) of a transistor in which minority carriers do not exist substantially; and capacitance of the transistor in which minority carriers do not exist substantially can be controlled by controlling a potential of a source and a drain (or a gate) the transistor in which minority carriers do not exist substantially. The transistor in which minority carriers do not exist substantially may include a wide band gap semiconductor.
    • 在字线上产生的噪声减小,而不增加字线上的负载。 提供一种半导体器件,其中包括至少一个开关元件的多个存储元件设置为矩阵; 多个存储元件中的每一个电连接到字线和位线; 字线连接到其中少数载体基本不存在的晶体管的栅极(或源极和漏极); 并且通过控制其中不存在少数载流子的晶体管的源极和漏极(或栅极)的电位,可以控制其中不存在少数载流子的晶体管的电容。 少数载流子不存在的晶体管可以包括宽带隙半导体。
    • 6. 发明申请
    • WIRELESS POWER FEEDING SYSTEM AND WIRELESS POWER FEEDING METHOD
    • 无线电源馈电系统和无线电源馈电方法
    • US20120025631A1
    • 2012-02-02
    • US13189862
    • 2011-07-25
    • Yutaka SHIONOIRIKoichiro KAMATAMisako SATOShuhei MAEDA
    • Yutaka SHIONOIRIKoichiro KAMATAMisako SATOShuhei MAEDA
    • H02J17/00
    • H02J50/12H02J7/025H02J17/00H02J50/20H02J50/40H02J50/80H02J50/90
    • An object is to provide a power feeding system and a power feeding method which are more convenient for a power feeding user at the power receiving end, without causing increases in complexity and size of devices. An object is to provide a power feeding system and a power feeding method which also allow a power feeding provider (a company) which feeds power (at the power transmitting end) to supply power without waste. A power feeding device which wirelessly supplies power to a power receiver detects the position and the resonant frequency of the power receiver by receiving a position and resonant frequency detection signal using a plurality of sub-carriers having different frequencies from the power receiver, and controls the frequency of a power signal to be transmitted to the power receiver on the basis of the information. An efficient power feeding service can be offered by transmitting a power signal to the power receiver at an optimum frequency for high power transmission efficiency.
    • 本发明的目的是提供一种供电系统和馈电方法,其对于供电用户在电力接收端更方便,而不会增加设备的复杂性和尺寸。 本发明的目的是提供一种馈电系统和馈电方法,其还允许馈电供应商(在发电端发电)供电而不浪费电力。 向功率接收器无线供电的供电装置通过使用具有与电力接收器不同的频率的多个子载波接收位置和谐振频率检测信号来检测电力接收器的位置和谐振频率,并且控制 根据该信息将电力信号的频率发送到电力接收器。 通过以最佳频率向功率接收器发送功率信号以实现高功率传输效率,可以提供有效的馈电服务。