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    • 1. 发明专利
    • Proximity detection equipment
    • 临近检测装置
    • JP2008153025A
    • 2008-07-03
    • JP2006338845
    • 2006-12-15
    • Mitsubishi Electric Corp三菱電機株式会社
    • KAWAMATA TAKENORINIITOME KATSUHIRONAGATA RIKIYASUNAMORI NORITOSHIOGE TADANOBU
    • H01H36/00G01B7/00G06F3/041
    • PROBLEM TO BE SOLVED: To obtain a proximity detection device capable of extending a detectable distance enabled to detect the proximity, and at the same time, improving positional resolution of proximity coordinates. SOLUTION: A plurality of detection electrodes are electrically combined in case of detecting an object for detection located at a distance, and a detection electrode combining circuit 5 is provided for separating the plurality of detection electrodes electrically combined, in case of detecting an object for detection located nearby. Capacitances of the detection electrodes electrically combined by the detection electrode combining circuit 5 are detected by a capacitance detection circuit 6, and at the same time, capacitances of the detection electrodes separated are detected by the detection electrode combining circuit 5. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了获得能够延长能够检测到接近度的可检测距离并且同时改善接近坐标的位置分辨率的接近检测装置。 解决方案:在检测到远距离的检测对象的情况下,多个检测电极被电气组合,并且检测电极组合电路5被设置为用于分离多个检测电极电气组合,在检测到 检测对象位于附近。 通过电容检测电路6检测由检测电极组合电路5电气组合的检测电极的电容,同时通过检测电极组合电路5检测分离的检测电极的电容。版权所有: (C)2008,JPO&INPIT
    • 2. 发明专利
    • Positioning device
    • 定位装置
    • JP2003021673A
    • 2003-01-24
    • JP2001207696
    • 2001-07-09
    • Mitsubishi Electric Corp三菱電機株式会社
    • OMURA YUJISAITO MASAYUKIOGE TADANOBU
    • G01C21/00G01S19/05G01S19/25G01S19/28G01S19/34G01S19/46G01S19/52H04Q7/20G01S5/14
    • G01S19/28G01S19/426
    • PROBLEM TO BE SOLVED: To solve the problem of existence of accuracy deterioration undeterminable only by DOP.
      SOLUTION: This positioning device is equipped with a receiver 1 for receiving signals from plural positioning satellites and outputting satellite reception data, a satellite selector 2 for selecting plural combinations of the positioning satellites which are objects for positioning calculation and outputting satellite combination data based on the satellite reception data, a positioning calculator 3 for performing positioning calculation based on the satellite reception data and the satellite combination data and outputting positioning results, a velocity detector 4 for detecting the velocity of the positioning device and outputting velocity data, and a positioning output determiner 5 for selecting the positioning result nearest to the predicted position from among the positioning results and outputting it as the positioning output. Hereby, highly accurate positioning capable of coping even with the accuracy deterioration having no correlation with the DOP can be realized, and, in addition, a smooth positioning orbit can be generated by performing orbit prediction of the positioning device, to thereby remove a sudden disturbance.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:解决仅由DOP不可确定的精度劣化的存在问题。 解决方案:该定位装置配备有用于从多个定位卫星接收信号并输出​​卫星接收数据的接收机1,用于选择作为定位计算对象的定位卫星的多个组合的卫星选择器2,并基于该定位卫星输出卫星组合数据 卫星接收数据,用于基于卫星接收数据和卫星组合数据进行定位计算并输出定位结果的定位计算器3,用于检测定位装置的速度并输出速度数据的速度检测器4,以及定位输出确定器 5用于从定位结果中选择最接近预测位置的定位结果,并将其作为定位输出输出。 因此,能够实现即使具有与DOP无关的精度劣化的高精度定位,另外,通过进行定位装置的轨道预测可以产生平滑的定位轨道,从而消除突发干扰 。
    • 3. 发明专利
    • Positioning device
    • 定位装置
    • JP2003270320A
    • 2003-09-25
    • JP2002067186
    • 2002-03-12
    • Mitsubishi Electric Corp三菱電機株式会社
    • OMURA YUJISAITO MASAYUKIOGE TADANOBU
    • G01C21/04G01S19/54G01S5/14
    • PROBLEM TO BE SOLVED: To actualize a positioning device capable of mutually converting observation data between antennas in the case where different positioning satellites can be observed by each of the antennas.
      SOLUTION: An observed-signal converting means is provided for converting an observation signal obtained by a receiver from a signal received by an antenna capable of observing a particular positioning satellite into a converted observation signal equivalent to an observation signal of the receiver connected to antennas incapable of observing the particular positioning satellite, in the case where the particular positioning satellite can not be observed by each of the plurality of antennas. A positioning/calculating means calculates the positioning coordinates of the receiver based on the converted observation signal converted by the converting means and the satellite position on the coordinates.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:在通过每个天线可以观察不同的定位卫星的情况下,实现能够相互转换天线之间的观测数据的定位装置。 解决方案:提供一种观测信号转换装置,用于将由接收机获得的观测信号从能够观察特定定位卫星的天线接收的信号转换为等效于接收机连接的观测信号的转换观测信号 对于不能观察特定定位卫星的天线,在特定的定位卫星不能被多个天线中的每一个天线观察到的情况下。 定位/计算装置基于由转换装置转换的转换观察信号和坐标上的卫星位置来计算接收机的定位坐标。 版权所有(C)2003,JPO
    • 5. 发明专利
    • POWER SOURCE CIRCUIT FOR DISK DEVICE
    • JP2000195142A
    • 2000-07-14
    • JP37266298
    • 1998-12-28
    • MITSUBISHI ELECTRIC CORP
    • OGE TADANOBU
    • G11B19/00H02M3/00
    • PROBLEM TO BE SOLVED: To use a large amount of current when necessary and to make the operation possible with a current supplied from an interface, by providing a boosting means of a DC power source, a capacitor with large capacitance connected to the output of the source, and a means for stepping down such capacitor to make a power source for the operation, and thereby accumulating in the capacitor an excess current at an idling and a standby time. SOLUTION: A current detecting circuit 2 monitors a current flowing to a power source feeding terminal 11 and, if a current above a prescribed value is detected, transmits the signal to a control circuit 3. The control circuit 3 reduces the input current of a booster circuit 1 by controlling its operation and makes the prescribed value. The output of the booster circuit 1 is stored in a capacitor 5 with large capacitance. A step-down circuit 4 converts the terminal voltage of the capacitor 5 into a voltage used in a circuit 6 inside the disk device and supplies it to the inside circuit 6. As a result, the disk device can be operated only by the power source supplied from a USB interface and PC card interface.
    • 6. 发明专利
    • THIN FILM MAGNETIC HEAD
    • JPH0479007A
    • 1992-03-12
    • JP19266890
    • 1990-07-20
    • MITSUBISHI ELECTRIC CORP
    • OGE TADANOBU
    • G11B5/31G11B5/40
    • PURPOSE:To suppress the temperature rise of the thin film magnetic head and to generate a large magnetic field at the time of writing by making the area of an upper magnetic pole large enough to cover the both ends and the rear end of a conductor coil. CONSTITUTION:An upper magnetic pole 11 is equipped with a main body part 11a for covering the front part of a conductor coil 3 and a cover part 11b for covering the both ends and the rear end of the conductor coil 3 by extending at the back of this main body part 11a and extending to right and left, and this cover part 11b is attached onto a substrate 1 while protruding the both ends from the both ends of the conductor coil 3. The Joule heat of the conductor coil 3 is propagated to the upper magnetic pole 11 and radiated through a protecting layer 5 and the substrate 1, etc. In such a case, since the upper magnetic pole 11 covers the surface of the conductor coil 3, the heat is speedily radiated to the outside. Thus, when a large current flows to the conductor coil 3 to generate a strong magnetic field, the temperature rise is suppressed, thermal noise generated from the conductor coil 3 is reduced, and the thin film magnetic head with a high resonance frequency can be obtained.
    • 9. 发明专利
    • MAGNETIC DISK DEVICE
    • JPH0536260A
    • 1993-02-12
    • JP19398891
    • 1991-08-02
    • MITSUBISHI ELECTRIC CORP
    • OGE TADANOBU
    • G11B33/12H01R13/22
    • PURPOSE:To contrive operational stabilization and longevity of a power source input part by using a magnetic connector for the power source input part. CONSTITUTION:The magnetic connector is used for the power source input part in place of a pin connector. When the magnetic disk device 1 is pushed along a guide rail in the direction of an arrow to be housed into a housing part, electric energy is supplied by making contact between a supply side connector 2a of the magnetic connector and the input side connector 2b. That is, the power source can be supplied without requiring engagement like the conventional pin connector but only contact, and even when there is more or less disprepancy between the connectors 2a and 2b, the stable power source can be supplied. Consequently, a short circuit and inferior contact are eliminated, and deformation and breakage of the connectors due to use with age is prevented, and hence attaching and detaching life can be made semipermanent.