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    • 2. 发明申请
    • Device Comprising An Antenna For Exchanging Radio Frequency Signals
    • 装置包括用于交换射频信号的天线
    • US20080106474A1
    • 2008-05-08
    • US11720521
    • 2005-11-29
    • Anthony Kerselaers
    • Anthony Kerselaers
    • H01Q9/04
    • H01Q9/24H01Q5/35
    • In devices (1) comprising antennas (2) for exchanging radio frequency signals, the antennas (2) comprise two conductive planes (21,22) which comprise two connection points (31a,32a) and which are separated by gaps (23) for separating the conductive planes (21,22) from each other and which are coupled to each other by conductive bridges (24). These antennas (2) have a sufficient antenna performance, do not require power amplifiers to be over dimensioned, do not introduce extra power consumption, have sufficient bandwidth, are low cost and can easily be manufactured. The conductive planes (21,22) carry processing circuitry (41) and interfacing circuitry (42). By introducing two further connection points (31b,32b), the gaps (23) are divided into first gaps (23a) and second gaps (23b) by the conductive bridges (24) and the antennas (2) can be used in different frequency bands. The conductive planes (21,22) may make an angle with respect to each other, to allow the antennas (2) to be shaped in dependence of device constructions.
    • 在包括用于交换射频信号的天线(2)的设备(1)中,天线(2)包括两个导电平面(21,22),其包括两个连接点(31a,3a),并且由间隙(23 ),用于将导电平面(21,22)彼此分离,并且通过导电桥(24)彼此耦合。 这些天线(2)具有足够的天线性能,不需要功率放大器的尺寸过大,不会引入额外的功率消耗,具有足够的带宽,低成本并且可以容易地制造。 导电平面(21,22)承载处理电路(41)和接口电路(42)。 通过引入两个另外的连接点(31b,32b),间隙(23)被导电桥(24)分成第一间隙(23a)和第二间隙(23b),并且天线(2)可以是 用于不同频段。 导电平面(21,22)可以相对于彼此形成一个角度,以允许天线(2)根据设备结构成形。
    • 3. 发明申请
    • Device Comprising an Antenna For Exchanging Radio Frequency Signals
    • 包含用于交换射频信号的天线的装置
    • US20080024370A1
    • 2008-01-31
    • US11569178
    • 2005-05-23
    • Anthony Kerselaers
    • Anthony Kerselaers
    • H01Q1/24
    • H01Q1/38H01Q1/243H01Q13/106
    • Devices (1) comprising antennas (2) for exchanging radio frequency signals are provided with conductive planes (11,12) with slots (10) comprising open ends and closed ends. Connection points (13,14) are located near the slots (10) more closely to the closed ends than to the open ends. The conductive planes (11,12) do not operate against ground surfaces, to keep the antenna small. Perimeters of the conductive planes (11,12) are between 50% and 200% of a wavelength of the radio frequency signals, to get sufficient antenna performances and bandwidths. Radio modules (16) with conductive shieldings are mounted on non-conductive areas (15) of the conductive planes (11, 12), to exchange radio frequency signals in three directions. The lengths of the slots (10) are 10%-50% of the wavelength. A distance (d) from the connection point (13,14) to a nearest side of the conductive plane (11,12) in a direction perpendicular to the slot (10) at the closed end is at least 2% of the wavelength.
    • 包括用于交换射频信号的天线(2)的设备(1)设置有具有包括开放端和闭合端的槽(10)的导电平面(11,12)。 连接点(13,14)位于更靠近封闭端的槽(10)附近而不是开口端。 导电平面(11,12)不对地面起作用,以保持天线的小型化。 导电平面(11,12)的周长在射频信号的波长的50%和200%之间,以获得足够的天线性能和带宽。 具有导电屏蔽的无线电模块(16)安装在导电平面(11,12)的非导电区域(15)上,以在三个方向上交换射频信号。 槽(10)的长度为波长的10%-50%。 从连接点(13,14)到导电平面(11,12)的最接近一侧的距离(d)在垂直于狭槽(10)的方向在封闭端的距离为至少波长的2%。
    • 4. 发明授权
    • Radio receiver and transmitter circuits and methods
    • 无线电接收机和发射机电路和方法
    • US08532568B2
    • 2013-09-10
    • US13151779
    • 2011-06-02
    • Anthony Kerselaers
    • Anthony Kerselaers
    • H04B5/00H04B5/02H01Q7/00
    • H04B5/0087H04B5/0031
    • A transmitter/receiver circuit comprises a wireless transmission/reception circuit having a first inductor for generating/detecting a magnetic induction field onto which an output of a radio frequency circuit is modulated and a second inductor in series with the first inductor for generating/detecting an electric induction field onto which the output of the radio frequency circuit is modulated. The second inductor comprises an electrically conductive track which at least partially surrounds a grounded electrically conductive core.The invention thus provides the transmitter and receiver for a communication system using near fields, and in which the input/output of the radio frequency circuitry can be balanced. The first coil produces the main magnetic induction field and the second coil is activated as an antenna producing an electric induction field. By this method, the operating range is increased and the relative positioning between both communication ends is less sensitive.
    • 发射机/接收机电路包括具有第一电感器的无线发射/接收电路,用于产生/检测射频电路的输出被调制的磁感应场和与第一电感器串联的第二电感器,用于产生/检测 电感应场,射频电路的输出被调制到该感应场上。 第二电感器包括至少部分地围绕接地导电芯的导电轨道。 因此,本发明为使用近场的通信系统提供发射机和接收机,并且可以平衡射频电路的输入/输出。 第一线圈产生主磁感应场,第二线圈作为产生电感应场的天线被激活。 通过这种方法,增加了操作范围,并且两个通信端之间的相对定位不那么敏感。
    • 5. 发明申请
    • EQUALIZER SYSTEM FOR EMITTING A QUAS I-CONSTANT POWER OUTPUT RF SIGNAL IN A FREQUENCY BAND
    • 用于发射频带中的恒定功率输出RF信号的均衡器系统
    • US20100015933A1
    • 2010-01-21
    • US12310220
    • 2007-08-10
    • Anthony Kerselaers
    • Anthony Kerselaers
    • H04B1/04
    • H03G3/3042H04B2001/0416H04W52/52
    • The invention refers to an equalizer system for emitting a quasi-constant power output RF signal in a first frequency band, the system comprising a programmable RF signal generator (10) for providing a modulated signal; a variable gain amplifier (40) for receiving the modulated signal and generating a RF signal to an antenna (70). The system further comprises a sensing devices (60, 61, 62) for providing a sensing signal which is either a signal proportional with the RF signal or a signal proportional with a supply current of the variable gain amplifier and a user interface (110) for determining an initial RF frequency signal and adjusting circuit (100) for providing a control signal to the variable gain amplifier (40) based on the initial RF frequency signal and the sensing signal, the adjusting circuit (100) comprising an arithmetic unit for calculating a value of the control signal.
    • 本发明涉及一种用于在第一频带中发射准恒定功率输出RF信号的均衡器系统,该系统包括用于提供调制信号的可编程RF信号发生器(10) 用于接收所述调制信号并向天线(70)产生RF信号的可变增益放大器(40)。 该系统还包括用于提供感测信号的感测装置(60,61,62),所述感测信号是与RF信号成比例的信号或与可变增益放大器的电源电流成比例的信号;以及用户接口(110),用于 基于所述初始RF频率信号和所述感测信号,确定初始RF频率信号和调整电路(100),用于向所述可变增益放大器(40)提供控制信号,所述调整电路(100)包括用于计算 控制信号的值。
    • 6. 发明申请
    • Radio frequency antenna in a wireless device
    • 射频天线在无线设备中
    • US20060125696A1
    • 2006-06-15
    • US10559561
    • 2004-05-27
    • Anthony KerselaersEdwin Van De Vonder
    • Anthony KerselaersEdwin Van De Vonder
    • H01Q1/38
    • H01Q21/28H01Q1/243H01Q3/24H01Q9/30H04B7/0837H04R5/033H04R2420/07
    • Devices (1) comprising antenna (24, or 2, 3, 5) for receiving radio frequency signals are provided with first conductor (2) for receiving the radio frequency signals and for converting the radio frequency signals into electromagnetic fields and second conductor (3) for receiving at least a part of the electromagnetic fields and for converting the received electromagnetic fields into input signals. The second conductor (3) are coupled to radio frequency circuits (10) for processing the input signals. The resonant frequencies of these antennas (24, or 2, 3, 5) can be selected by designing the dimensions of the second conductor (3) and their positions with respect to the first conductor (2). The radio frequency circuits (10) comprise antenna diversity units (20) coupled to the second conductors (3) and to third conductors (4, 5). The third conductor (4) mainly receive the electromagnetic fields, or the third conductor (5) mainly receive the radio frequency signals. The devices (1) comprise wireless headphones.
    • 包括用于接收射频信号的天线(24或2,3,5)的设备(1)设置有用于接收射频信号并将射频信号转换为电磁场的第一导体(2)和第二导体(3 ),用于接收至少一部分电磁场并将所接收的电磁场转换为输入信号。 第二导体(3)耦合到用于处理输入信号的射频电路(10)。 可以通过设计第二导体(3)的尺寸及其相对于第一导体(2)的位置来选择这些天线(24或2,3,5)的谐振频率。 射频电路(10)包括耦合到第二导体(3)和第三导体(4,5)的天线分集单元(20)。 第三导体(4)主要接收电磁场,或者第三导体(5)主要接收射频信号。 设备(1)包括无线耳机。
    • 7. 发明申请
    • Multiband Antenna
    • 多频天线
    • US20120223863A1
    • 2012-09-06
    • US13406550
    • 2012-02-28
    • Anthony Kerselaers
    • Anthony Kerselaers
    • H01Q9/04
    • H01Q1/3275H01Q1/38H01Q5/371H01Q9/38H01Q21/30
    • A multiband antenna comprising a substrate having first and second surfaces. A first conductive plate is provided on the first surface and a second conductive plate is provided on the second surface. The second conductive plate at least partially overlaps the first conductive plate in the plane of the substrate. The antenna also comprises a ground plane, wherein the substrate is connected to and is substantially perpendicular to the ground plane, and a feeding port (412) that is electrically coupled to both the first and second conductive plates. The first conductive plate is configured to transmit or receive signals in a first frequency band and the second conductive plate (408) is configured to transmit or receive signals in a second frequency band.
    • 一种多频带天线,包括具有第一表面和第二表面的基底。 第一导电板设置在第一表面上,第二导电板设置在第二表面上。 第二导电板在衬底的平面中至少部分地与第一导电板重叠。 天线还包括接地平面,其中基板连接到接地平面并且基本上垂直于接地平面;馈电端口(412),电耦合到第一和第二导电板。 第一导电板被配置为在第一频带中发送或接收信号,并且第二导电板(408)被配置为在第二频带中发送或接收信号。
    • 8. 发明申请
    • RADIO RECEIVER AND TRANSMITTER CIRCUITS AND METHODS
    • 无线电接收机和发射机电路及方法
    • US20110300801A1
    • 2011-12-08
    • US13151779
    • 2011-06-02
    • Anthony Kerselaers
    • Anthony Kerselaers
    • H04B5/00
    • H04B5/0087H04B5/0031
    • A transmitter/receiver circuit comprises a wireless transmission/reception circuit having a first inductor for generating/detecting a magnetic induction field onto which an output of a radio frequency circuit is modulated and a second inductor in series with the first inductor for generating/detecting an electric induction field onto which the output of the radio frequency circuit is modulated. The second inductor comprises an electrically conductive track which at least partially surrounds a grounded electrically conductive core.The invention thus provides the transmitter and receiver for a communication system using near fields, and in which the input/output of the radio frequency circuitry can be balanced. The first coil produces the main magnetic induction field and the second coil is activated as an antenna producing an electric induction field. By this method, the operating range is increased and the relative positioning between both communication ends is less sensitive.
    • 发射机/接收机电路包括具有第一电感器的无线发射/接收电路,用于产生/检测射频电路的输出被调制的磁感应场和与第一电感器串联的第二电感器,用于产生/检测 电感应场,射频电路的输出被调制到该感应场上。 第二电感器包括至少部分地围绕接地导电芯的导电轨道。 因此,本发明为使用近场的通信系统提供发射机和接收机,并且可以平衡射频电路的输入/输出。 第一线圈产生主磁感应场,第二线圈作为产生电感应场的天线被激活。 通过这种方法,增加了操作范围,并且两个通信端之间的相对定位不那么敏感。
    • 9. 发明申请
    • Radio Receiver, Radio Transmitter, and Hearing Aid
    • 无线电接收器,无线电发射器和助听器
    • US20080267436A1
    • 2008-10-30
    • US12158314
    • 2006-12-15
    • Anthony KerselaersFelix Elsen
    • Anthony KerselaersFelix Elsen
    • H01Q21/00H04R25/00
    • H01Q7/00H01Q9/20H01Q9/30H01Q21/29
    • A receiver (30) with an antenna circuit is disclosed, which antenna circuit comprises a coil (31) and either a monopole (35) or a dipole connected to the coil (31). The antenna circuit captures a signal with a wavelength transmitted by a transmitter (1). The coil (31) captures the signal and generates therefrom a current having a frequency corresponding to the wavelength. The coil (31) is dimensioned such that the current is distributed uniformly within the coil (31) at each point in time. Preferably, the monopole (35) or a leg of the dipole has a length corresponding to less than 5% of the wavelength. The invention further relates to a radio transmitter of the same kind. Finally, the invention relates to an RFID tag, a smart card, a mobile device, and a hearing aid, each comprising an inventive receiver (30) and/or an inventive transmitter.
    • 公开了一种具有天线电路的接收器(30),该天线电路包括线圈(31)和连接到线圈(31)的单极(35)或偶极子。 天线电路捕获由发射器(1)发送的波长的信号。 线圈(31)捕获信号并由此生成具有对应于波长的频率的电流。 线圈(31)的尺寸使得电流在每个时间点均匀分布在线圈(31)内。 优选地,单极子(35)或偶极子的腿具有对应于小于波长的5%的长度。 本发明还涉及同类的无线电发射机。 最后,本发明涉及一种RFID标签,智能卡,移动设备和助听器,每个都包括本发明的接收器(30)和/或本发明的发射器。
    • 10. 发明申请
    • Receiver and transmitter of a frequency-modulated signal
    • 频率调制信号的接收机和发射机
    • US20060234647A1
    • 2006-10-19
    • US10555053
    • 2004-04-29
    • Anthony Kerselaers
    • Anthony Kerselaers
    • H04B1/38
    • H04B1/16
    • The receiver of the invention consists of a non-baseband component (1), a frequency demodulator (3), and a baseband component (5). The non-baseband component (1) causes a first group delay variation in a frequency-modulated non-baseband signal while processing the non-baseband signal. The first group delay variation in the frequency modulated non-baseband signal results in a second group delay variation in the demodulated baseband signal. The baseband component (5) is able to substantially compensate the second group delay variation in the demodulated baseband signal. The transmitter of the invention consists of a baseband component (21), a frequency modulator (23), and a non-baseband component (25). The baseband component (21) is able to cause a first group delay variation in an unmodulated baseband signal. The first group delay variation in the unmodulated baseband signal results in a second group delay variation in the frequency-modulated nonbaseband signal. The non-baseband component (25) for processing the frequency-modulated non-baseband signal has a certain group delay characteristic. This certain group delay characteristic is substantially compensated by the second group delay variation.
    • 本发明的接收机由非基带部件(1),频率解调器(3)和基带部件(5)组成。 非基带分量(1)在处理非基带信号时引起调频非基带信号中的第一组延迟变化。 频率调制的非基带信号中的第一组延迟变化导致解调的基带信号中的第二组延迟变化。 基带分量(5)能够基本上补偿解调的基带信号中的第二组延迟变化。 本发明的发射机由基带部件(21),频率调制器(23)和非基带部件(25)组成。 基带分量(21)能够引起未调制的基带信号中的第一组延迟变化。 未调制基带信号中的第一组延迟变化导致调频非基带信号中的第二组延迟变化。 用于处理调频非基带信号的非基带部件(25)具有一定的组延迟特性。 该特定组延迟特性基本上被第二组延迟变化补偿。