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    • 4. 发明申请
    • OPTICAL CONNECTION DEVICE AND OPTOELECTRONIC HYBRID APPARATUS INCLUDING THE SAME
    • 光连接装置和包括其的光电混合装置
    • WO2004079420A1
    • 2004-09-16
    • PCT/JP2004/002500
    • 2004-03-01
    • CANON KABUSHIKI KAISHAOUCHI, Toshihiko
    • OUCHI, Toshihiko
    • G02B6/12
    • G02B6/43H04J14/007H05K1/0274
    • An optical connection device includes: a substrate; an optical waveguide provided in the substrate; and plural optical connection ports provided in the optical waveguide and having at least one of a light output port and a light input port, the light output port outputting light to the optical waveguide, the light input port receiving light from the optical waveguide, and is characterized by further including an arithmetic circuit for, using a key, selectively decoding an optical signal which has been coded in such a manner that it is decoded only at a light input port that is given a key for decoding and which has been outputted from a light output port to the optical waveguide to be received at the light input port.
    • 光连接装置包括:基板; 设置在基板中的光波导; 以及多个光连接端口,设置在所述光波导中,并且具有光输出端口和光输入端口中的至少一个,所述光输出端口向所述光波导输出光,所述光输入端口接收来自所述光波导的光,并且是 其特征在于还包括运算电路,用于使用键选择性地对已经被编码的光信号进行解码,所述光信号仅以给出用于解码的键的光输入端口被解码并且已从 在光输入端口处接收到光波导的光输出端口。
    • 8. 发明申请
    • FREQUENCY TUNABLE OSCILLATOR
    • 频率调节振荡器
    • WO2006104233A1
    • 2006-10-05
    • PCT/JP2006/306992
    • 2006-03-27
    • CANON KABUSHIKI KAISHASEKIGUCHI, RyotaOUCHI, Toshihiko
    • SEKIGUCHI, RyotaOUCHI, Toshihiko
    • H03B7/14
    • H03B5/1847H01P7/088H03B7/143H03B2200/0022
    • There is provided a frequency tunable oscillator that has less degradation of oscillation characteristics due to a parasitic reactance component or the like without mounting therein a lumped constant element such as a variable capacitance element. The frequency tunable oscillator includes a negative resistance element and a resonator which together form a feedback circuit. The frequency tunable oscillator further includes in at least a part of the feedback circuit, a distributed constant material so configured as to have a distributed constant such that an electrical length in the resonator is modulated, and a modification means for externally modifying the distributed constant material, wherein the oscillation frequency can be varied through the external modification by the modification means.
    • 提供了一种频率可调振荡器,由于寄生电抗分量等而具有较少的振荡特性劣化,而不会在其中安装诸如可变电容元件的集总常数元件。 频率可调谐振荡器包括一个形成反馈电路的负电阻元件和谐振器。 频率可调谐振荡器还包括在反馈电路的至少一部分中,分布常数材料被配置为具有分布常数,使得谐振器中的电长度被调制,以及用于外部修改分布常数材料的修改装置 ,其中可以通过修改装置的外部修改来改变振荡频率。
    • 9. 发明申请
    • SPATIAL POSITION DETECTION METHOD, INFORMATION INPUT METHOD, SPATIAL POSITION DETECTION APPARATUS, AND INFORMATION INPUT APPARATUS
    • 空间位置检测方法,信息输入法,空间位置检测装置和信息输入装置
    • WO2005026941A1
    • 2005-03-24
    • PCT/JP2004/013394
    • 2004-09-08
    • CANON KABUSHIKI KAISHAITSUJI, TakeakiOUCHI, Toshihiko
    • ITSUJI, TakeakiOUCHI, Toshihiko
    • G06F3/033
    • G06F3/042
    • To calculate information on a relative distance or positional relationship between an interface section and an object by detecting an electromagnetic wave transmitted through the interface section, and using the electromagnetic wave from the object to detect a relative position of the object with respective to the interface section. Information on the relative spatial position of an object 101 with respect to an interface section 102 that has an arbitrary shape and deals with transmission of information or signal from one side to the other side of the interface section 102 is detected with a spatial position detection method. An electromagnetic wave 106 radiated from the object 101 and transmitted through the interface section 102 is detected by an electromagnetic wave detection section 103, and based on the detection result, information on spatial position coordinates of the object 101 is calculated by a position calculation section 104.
    • 通过检测通过接口部分发送的电磁波来计算接口部分和对象之间的相对距离或位置关系的信息,并且使用来自对象的电磁波来检测对象与接口部分的相对位置 。 利用空间位置检测方法检测关于对象101相对于具有任意形状的接口部分102并处理从接口部分102的一侧到另一侧的信息或信号的传输的相对空间位置的信息 。 通过电磁波检测部103检测从物体101射出并通过接口部102透射的电磁波106,根据检测结果,通过位置计算部104计算出物体101的空间位置坐标的信息 。