会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 51. 发明授权
    • Apparatus for decoding a serial datastream of channel words into a datastream of information words
    • 用于将通道字的串行数据流解码为信息字的数据流的装置
    • US06717994B1
    • 2004-04-06
    • US09564616
    • 2000-05-04
    • Josephus Arnoldus Henricus Maria Kahlman
    • Josephus Arnoldus Henricus Maria Kahlman
    • H04L2706
    • H03M5/145G11B20/1426
    • The invention provides for an apparatus for decoding a serial datastream of channel words into a datastream of information words. The apparatus comprises an input terminal (10) for receiving the serial data stream of channel words, a serial-parallel converter unit (16) means for serial-to-parallel conversion of the serial datastream into a parallel datastream of n-bit intermediate channel words. Further, a clock signal generation unit (14) is present for deriving a first clock signal of a specific frequency from the serial datastream of channel words. A frequency division unit (18) is present for dividing the frequency of the clock signal generated by the generation means by a factor of n, so as to obtain a second clock signal of a reduced frequency. A sync word detection unit (24) is available for detecting sync words present in said serial datastream of channel words. Said sync word detection unit (24) is adapted to receive said n-bit intermediate channel words from said serial-parallel conversion unit (16) under the influence of said second clock signal and is further adapted to generate an offset control signal, said offset control signal being indicative of the relative offset, given in numbers of bits, between the start of a sync word and the location of this start position within an n-bit intermediate channel word. A converter unit (26,32) is present for converting said n-bit intermediate channel words into n-bit phase shifted channel words and for converting said phase shifted channel words into information words in response to said second clock signal and said offset signal.
    • 本发明提供一种用于将信道字的串行数据流解码为信息字的数据流的装置。 该装置包括用于接收信道字的串行数据流的输入端(10),用于将串行数据流串行/并行转换为n位中间信道的并行数据流的串行 - 并行转换器单元(16) 话。 此外,存在用于从通道字的串行数据流导出特定频率的第一时钟信号的时钟信号生成单元(14)。 存在用于将由发生装置产生的时钟信号的频率除以因子n的分频单元(18),以便获得降低频率的第二时钟信号。 同步字检测单元(24)可用于检测存在于通道字的所述串行数据流中的同步字。 所述同步字检测单元(24)适于在所述第二时钟信号的影响下从所述串行 - 并行转换单元(16)接收所述n位中间信道字,并且还适于产生偏移控制信号,所述偏移 控制信号指示同步字开始与n位中间信道字中该起始位置的位置之间以比特数给出的相对偏移量。 存在用于将所述n位中间信道字转换为n位相移信道字的A转换器单元(26,32),并且用于响应于所述第二时钟信号和所述偏移信号将所述相移信道字转换成信息字。
    • 52. 发明授权
    • Device for encoding/decoding n-bit source words into corresponding m-bit channel words, and vice versa
    • 将n位源字编码/解码为相应的m位通道字的装置,反之亦然
    • US06710724B2
    • 2004-03-23
    • US09833412
    • 2001-04-12
    • Josephus Arnoldus Henricus Maria Kahlman
    • Josephus Arnoldus Henricus Maria Kahlman
    • H03M700
    • H04L25/4908G11B20/14G11B20/1426H03M5/14H03M5/145
    • A device is provided for encoding a stream of data bits of a binary source signal (S) into a stream of data bits of a binary channel signal (C1), wherein the bit stream of the source signal is divided into n-bit source words (x1, X2). The device includes converting means adapted to convert the source words into corresponding m-bit channel words (y1, y2, y3). Each n-bit source word together with another n-bit source word forms a pair of source words. The values of the n-bit source words differ only in the value of the bit in the qth bit position, q being a constant. The pairs of source words are divided into a first part of pairs and a remaining part of pairs. The converting means are further adapted to convert n-bit source words belonging to the first part of pairs into corresponding m-bit channel words, in such a manner that the conversion for each of the n-bit source words is parity preserving, and to convert n-bit source words belonging to the remaining part of pairs into corresponding m-bit channel words, in such a manner that the conversion for each of the n-bit source words is parity inverting. A decoding device is also provided for decoding the channel signal obtained by means of the encoding device.
    • 提供了一种用于将二进制源信号(S)的数据比特流编码为二进制信道信号(C1)的数据比特流的装置,其中源信号的比特流被划分为n比特源字 (x1,X2)。 该装置包括适于将源字转换成相应的m位通道字(y1,y2,y3)的转换装置。 每个n位源字与另一个n位源字形成一对源字。 n位源字的值仅在q位位置的位的值不同,q是常数。 源字对被分为对的第一部分和对的剩余部分。 转换装置还适于将属于第一部分对的n比特源字转换为相应的m比特信道字,使得每个n比特源字的转换是奇偶校验,并且 将属于剩余部分对的n位源字转换成相应的m位通道字,使得每个n位源字的转换是奇偶校验反转。 还提供了一种解码装置,用于对通过编码装置获得的信道信号进行解码。
    • 59. 发明申请
    • MEANS AND METHOD FOR SENSING A MAGNETIC STRAY FIELD IN BIOSENSORS
    • 用于感应生物传感器中磁场的方法和方法
    • US20090224755A1
    • 2009-09-10
    • US11719953
    • 2005-11-28
    • Josephus Arnoldus Henricus Maria KahlmanBart Michiel De Boer
    • Josephus Arnoldus Henricus Maria KahlmanBart Michiel De Boer
    • G01R33/09
    • G01R33/093B82Y25/00G01R33/1269
    • A magnetic sensor (MS) comprising a magneto-resistive element (GMR) for sensing a magnetic stray field (SF) generated by a magnetizable object (SPB) when magnetized and for generating an electrical object signal (UOB) which depends on the sensed magnetic stray field (SF), the sensor (MS) comprising a magnetic field generator (WR1, WR2) for generating a magnetic field (H, Hext) having a first frequency (ω1) for magnetizing the magnetizable object (SPB), a current source (AC2) for at least generating an AC-current (I2 sin ω2t) having a second frequency (ω2t) through the magneto-resistive element (GMR), and electronic means for generating an electrical output signal (U0) derived from the electrical object signal (UOB), the electronic means comprising stabilization means for stabilizing the amplitude of the electrical output signal (U0), the stabilization means deriving its information which is needed for said stabilization from the amplitude of a signal component, which is present in the object signal (UOB) during operation, which is linearly dependent on the steepness of the magneto-resistive element (GMR), the steepness being defined as the derivative of the resistance of the magneto-resistive element (GMR) as a function of the magnetic field through the magneto-resistive element in a magnetically sensitive direction of the magneto-resistive element (GMR).
    • 一种磁传感器(MS),包括用于感测由磁化物体(SPB)产生的磁性杂散场(SFB)的磁阻元件(GMR),并且用于产生取决于感测的磁性的电物体信号(UOB) 杂散场(SF),包括用于产生具有用于磁化可磁化物体(SPB)的第一频率(ω))的磁场(H,Hext)的磁场发生器(WR1,WR2)的传感器(MS),电流源 (AC2),用于至少通过磁阻元件(GMR)产生具有第二频率(ω)的AC电流(I2sinω2t),以及用于产生从电气对象导出的电输出信号(U0)的电子装置 信号(UOB),所述电子装置包括用于稳定电输出信号(U0)的振幅的稳定装置,稳定装置从信号分量的幅度导出所述稳定所需的信息,该信号是预先 在操作期间发送在对象信号(UOB)中,其与磁阻元件(GMR)的陡度线性相关,陡度被定义为作为功能的磁阻元件(GMR)的电阻的导数 通过磁阻元件在磁阻元件(GMR)的磁敏感方向上的磁场。
    • 60. 发明授权
    • Means and method for reducing magnetic cross-talk in biosensors
    • 用于减少生物传感器中磁串扰的方法和方法
    • US07508200B2
    • 2009-03-24
    • US11719955
    • 2005-11-28
    • Josephus Arnoldus Henricus Maria KahlmanBart Michiel De Boer
    • Josephus Arnoldus Henricus Maria KahlmanBart Michiel De Boer
    • G01N27/72G01R33/12G01R33/02C12M1/34
    • G01R33/093B82Y25/00G01R33/1269
    • A magnetic sensor (MS) for sensing a magnetic stray field (SF) generated by magnetizable object (SPB) when magnetized and for generating an electrical object signal (UOB) which depends on the sensed magnetic stray field (SF), comprising a magnetic field generator (WR1, WR2) for generating a magnetic main field (H) for magnetizing the magnetizable object (SPB), and cross-talk reduction means for reducing the effect of a cross talk signal component in the electrical object signal (UOB) caused by magnetic cross-talk between the magnetic main field (H) and the magnetic stray field (SF), wherein the cross-talk reduction means is arranged for distinguishing a signal property between the cross-talk signal component and the remaining part of the electrical object signal (UOB) and for generating an electrical output signal (Uo).
    • 一种磁传感器(MS),用于感测由磁化物体(SPB)产生的磁性杂散场(SF),并且用于产生取决于感测的磁性杂散场(SF)的电对象信号(UOB),该电对象信号包括磁场 用于产生用于磁化可磁化物体(SPB)的磁性主场(H)的发生器(WR1,WR2)以及用于降低由电子对象信号(UOB)引起的串扰信号分量对其的影响的串扰降低装置 在磁主场(H)和磁杂散场(SF)之间的磁串扰,其中串扰减少装置被设置用于区分串扰信号分量和电气对象的剩余部分之间的信号特性 信号(UOB)和用于产生电输出信号(Uo)。