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    • 73. 发明公开
    • Power receiving device and power feeding device
    • Stromempfangende Vorrichtung und Stromversorgungsvorrichtung
    • EP2860841A1
    • 2015-04-15
    • EP14187540.1
    • 2014-10-02
    • TDK Corporation
    • Kamiura, NaokoMatsuoka, KaoruUrano, Takashi
    • H02J5/00H02J17/00
    • H02J50/40B60L11/182H01F27/2823H01F38/14H02J7/025H02J50/05H02J50/10H04B5/0037H04B5/0075Y02T10/7072Y02T90/122Y02T90/14
    • The present invention provides a power receiving device and a power feeding device, which improve convenience of the user by increasing the freedom of configuring the power receiving device with respect to the power feeding device and freedom of configuring the power feeding device with respect to the power receiving device, and inhibit large size of machines. The power receiving device comprises: a plurality of surfaces; and inside a power receiving coil, and the power receiving coil comprises: a winding portion with wires wound; and an opening portion surrounded by the winding portion and having two opposite opening ends. By disposing the power receiving coil so that an end face of at least one of the two opening ends is nonparallel (excluding perpendicular) to two or more surfaces of the power receiving device, a power receiving area capable of receiving power from the power feeding device is formed on the two or more surfaces of the power receiving device.
    • 本发明提供了一种电力接收装置和供电装置,其通过增加相对于供电装置的配置电力接收装置的自由度和相对于电力的配置供电装置的自由度而提高用户的便利性 接收设备,并抑制大型机器。 电力接收装置包括:多个表面; 并且在电力接收线圈内部,并且所述受电线圈包括:缠绕有电线的绕组部分; 以及由所述卷绕部包围并具有两个相对的开口端的开口部。 通过设置受电线圈使得两个开口端中的至少一个的端面与电力接收装置的两个或更多个表面不平行(不垂直),能够从供电装置接收电力的电力接收区域 形成在电力接收装置的两个或更多个表面上。
    • 74. 发明公开
    • Drehübertrager für Werkzeugmaschinen
    • DrehübertragerfürWerkzeugmaschinen
    • EP2858204A1
    • 2015-04-08
    • EP14179694.6
    • 2012-06-21
    • Komet Group GmbH
    • Graf, Heiko
    • H02J5/00B23Q1/00H04B5/00B23Q5/04H01F38/18H04B15/00
    • H04B5/0037B23Q1/0009B23Q5/043H01F38/18H02J50/10H04B5/0031H04B5/0075H04B5/0093H04B15/00H04B15/02
    • Die Erfindung bezieht sich auf einen Drehübertrager (2) für Werkzeugmaschinen mit einer zwischen einem maschinenfesten Statorteil (4) und einem werkzeugfesten Rotorteil (6) angeordneten induktiven Energieübertragungsstrecke (31) sowie einer berührungsfreien bidirektionalen Datenübertragungsstrecke (35). Eine Besonderheit der Erfindung besteht darin, dass zur maximalen Ausschöpfung der Leistungsfähigkeit der Energieübertragungsstrecke (31) Vorkehrungen getroffen sind, womit die optimale Betriebsfrequenz (f opt ) der nach dem Transformatorprinzip arbeitenden Energieübertragung bei jedem Systemstart in einem Testlauf mit zugeschaltetem Testwiderstand (51) und variabler Frequenz (f p ) ermittelt wird. Weiter wird zum Zwecke der störungsfreien Datenübertragung eine Zwischenspeicherung der über die Datenübertragungsstrecke (35) zu übertragenden Daten vorgeschlagen, die in vorgegebenen Zeitfenstern mit störungsfreien Zeitabschnitten der Energieübertragung synchronisiert werden.
    • 本发明涉及一种用于机床的旋转变速器(2),其具有感应能量传递部分(31),该感应能量传递部分布置在固定到机器的定子部分(4)和固定到工具上的转子部分(6)之间, 和非接触双向数据传输部分(35)。 本发明的特征在于,为了最大限度地利用能量传递部(31)的能力,采取预防措施,根据变压器原理工作的能量传输的最佳工作频率(fopt) 在连接的测试电阻(51)和可变频率(fp)的测试运行中,在每个系统开始时确定。 此外,为了无干扰数据传输的目的,提出了经由数据传输部分(35)发送的数据的缓冲存储器,哪些数据在预定义的时间窗口中与能量传输的无干扰周期同步。
    • 79. 发明公开
    • POWER TRANSMISSION SYSTEM
    • 电力传输系统
    • EP2824799A1
    • 2015-01-14
    • EP13758558.4
    • 2013-02-21
    • Murata Manufacturing Co., Ltd.
    • HOSOTANI, Tatsuya
    • H02J17/00
    • H02J50/12H01F27/28H01F38/14H02J5/005H02J7/025H04B5/0037H04B5/0075
    • A power transmitting unit-side resonance circuit including a resonance capacitor (Cr) connected in series to a power transmitting coil (Lp) and a power receiving unit-side resonance circuit including a resonance capacitor (Crs) connected in series to a power receiving coil (Ls) are caused to resonate with each other so that each resonance circuit resonates. With this, power is transmitted between the power transmitting coil (Lp) and the power receiving unit (Ls) making use of magnetic field resonance coupling and electric field resonance coupling. By making use of resonance, only effective power is transmitted from the power transmitting unit side to the power receiving unit side, while reactive power that is reflected is reserved as resonance energy in each resonance circuit.
    • 一种电力传输单元侧谐振电路,包括串联连接到电力传输线圈(Lp)的谐振电容器(Cr)和包括串联连接到电力接收线圈(Lc)的谐振电容器(Crs)的电力接收单元侧谐振电路, (Ls)彼此共振,从而使每个谐振电路谐振。 由此,利用磁场共振耦合和电场共振耦合在供电线圈(Lp)和受电单元(Ls)之间传输电力。 通过利用谐振,只有有效功率从功率发送单元侧传送到受电单元侧,而反射的无功功率被保留作为每个谐振电路中的谐振能量。
    • 80. 发明公开
    • ELECTRONIC DEVICE WITH SHARED NEAR FIELD COMMUNICATIONS AND SENSOR STRUCTURES
    • ELEKTRONISCHE VORRICHTUNG MIT GEMEINSAMEN NAHFELDKOMMUNIKATIONEN UND SENSORSTRUKTUREN
    • EP2810215A2
    • 2014-12-10
    • EP13708602.1
    • 2013-02-25
    • Apple Inc.
    • POPE, Benjamin, J.JARVIS, Daniel, W.MYERS, Scott, A.MERZ, Nicholas, G.l.
    • G06K9/00H04B5/00
    • G06K9/00013G06F3/0416G06F3/044G06K9/0002H04B5/0012H04B5/0075
    • An electronic device may have electrical components such as sensors. A sensor may have sensor circuitry that gathers sensor data using a conductive structure. The sensor may be a touch sensor that uses the conductive structure to form a capacitive touch sensor electrode or may be a fingerprint sensor that uses the conductive structure with a fingerprint electrode array to handle fingerprint sensor signals. Near field communications circuitry may be included in an electronic device. When operated in a sensor mode, the sensor circuitry may use the conductive structure to gather a fingerprint or other sensor data. When operated in near field communications mode, the near field communications circuitry can use the conductive structure to transmit and receive capacitively coupled or inductively coupled near field communications signals. A fingerprint sensor may have optical structures that communicate with external equipment.
    • 电子设备可以具有诸如传感器的电气部件。 传感器可以具有使用导电结构收集传感器数据的传感器电路。 传感器可以是使用导电结构形成电容式触摸传感器电极的触摸传感器,或者可以是使用具有指纹电极阵列的导电结构来处理指纹传感器信号的指纹传感器。 近场通信电路可以包括在电子设备中。 当在传感器模式下操作时,传感器电路可以使用导电结构来收集指纹或其他传感器数据。 当在近场通信模式下操作时,近场通信电路可以使用导电结构来发射和接收电容耦合或电感耦合近场通信信号。 指纹传感器可以具有与外部设备通信的光学结构。