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    • 61. 发明申请
    • Touch screen generated processed signals in multiple communication systems and networks
    • 触摸屏在多个通信系统和网络中产生处理过的信号
    • US20080181151A1
    • 2008-07-31
    • US12058299
    • 2008-03-28
    • Kamilo Feher
    • Kamilo Feher
    • H04B7/00G06F3/041H04Q7/20
    • H04N5/4401H04M11/04H04N5/40H04N7/20H04W84/06
    • Method, system and process for touch screen generated signals used in multiple communication systems and networks with reception and processing of Radio Frequency (RF) signal for generating processed location finder signal. Processing of input signal into time division multiple access (TDMA) processed filtered signal used in a cellular system and into orthogonal frequency division processed orthogonal frequency division multiplexed (OFDM) or orthogonal frequency division multiple access (OFDMA) signal used in a wireless local area network (WLAN) or a wide area network (WAN), wherein cellular system and WLAN, WAN are distinct systems and networks. Processing input signals into cross-correlated in-phase and quadrature-phase processed filtered signals for quadrature modulation and into signals for non-quadrature modulation and transmission. Communication system and network wherein touch screen processed signal provides direct access to launch browsers from the screen by touching the screen. Receiving a Radio Frequency (RF) signal from a satellite system and from a distinct land based system.
    • 用于多个通信系统和网络中的用于触摸屏产生的信号的方法,系统和过程,具有用于生成经处理的位置查找器信号的射频(RF)信号的接收和处理。 将输入信号处理为在蜂窝系统中使用的时分多址(TDMA)处理的滤波信号,并且用于无线局域网中使用的正交频分处理的正交频分复用(OFDM)或正交频分多址(OFDMA)信号 (WLAN)或广域网(WAN),其中蜂窝系统和WLAN,WAN是不同的系统和网络。 将输入信号处理成交叉相位和正交相位处理的滤波信号进行正交调制,并将其转换为用于非正交调制和传输的信号。 通过触摸屏幕,触摸屏处理信号可以直接访问屏幕上的启动浏览器的通信系统和网络。 从卫星系统和不同的陆基系统接收射频(RF)信号。
    • 63. 发明授权
    • Location finder, tracker, communication and remote control system
    • 定位器,跟踪器,通讯和遥控系统
    • US07260369B2
    • 2007-08-21
    • US11197610
    • 2005-08-03
    • Kamilo Feher
    • Kamilo Feher
    • H04B17/02
    • H04N5/4401H04M11/04H04N5/40H04N7/20H04W84/06
    • A radio frequency identification (RFID) device, locator, wired and/or wireless communicator system comprising one or more than one antennas for receiving Radio Frequency (RF) signals from one or more RFID and or location determining and/or communication transmitters. The system has one or more receivers and demodulators for reception and demodulation of signals to baseband signals. A processor circuit processes the baseband signals and provides them to a cross-correlator circuit for cross-correlating the processed baseband signals and for generation of cross-correlated baseband signals. One or more modulators modulate the baseband signals and provide them to one or more transmitters. circuitry.
    • 射频识别(RFID)设备,定位器,有线和/或无线通信器系统,其包括用于从一个或多个RFID和/或位置确定和/或通信发射器接收射频(RF)信号的一个或多于一个的天线。 该系统具有一个或多个用于接收和解调基带信号的接收器和解调器。 处理器电路处理基带信号并将它们提供给交叉相关器电路,用于对经处理的基带信号进行交叉相关并产生交叉相关的基带信号。 一个或多个调制器调制基带信号并将其提供给一个或多个发射机。 电路。
    • 64. 发明授权
    • FMOD transceivers including continuous and burst operated TDMA, FDMA, spread spectrum CDMA, WCDMA and CSMA
    • FMOD收发器包括连续和突发操作的TDMA,FDMA,扩频CDMA,WCDMA和CSMA
    • US06928101B2
    • 2005-08-09
    • US10180234
    • 2002-06-26
    • Kamilo Feher
    • Kamilo Feher
    • H03C3/00H04L27/20H04L27/36H04L27/38H04B1/69
    • H04L27/362H03C3/005H04L27/2032H04L27/38
    • Binary and Quadrature Feher's Modulation (F-Modulation, or FMOD) Transmitter-Receiver systems and circuits exhibit reduced envelope fluctuation and peak radiation, and increased efficiency. A subclass of these systems has a constant envelope. They advantageously provide lower power operation with improved performance including robust BER performance, and compatibility with both linearly and nonlinearly amplified narrow spectrum, and without disadvantages of conventional BPSK, DBPSK QPSK and pi/4-QPSK. Feher's BPSK (FBPSK) is an improved efficiency transmitter which is compatible with conventional BPSK receivers. FBPSK modems are based on using quadrature structure where Q-channel data is inserted in quadrature with I-channel data for certain applications. The Q-channel data may be “offset” from the I-channel data by an amount selectable between zero and a specified time. Further improvement in the spectrum is attained using correlation between I and Q channels. FBPSK modem is shown to meet the IEEE 802.11 specified spectral direct sequence spread spectrum mask (−30 dB point) for wireless LAN, and leads to an output power gain of 6.5 dB over conventional BPSK modems. The cross-coupled quadrature FMOD structure is also suitable for continuous mode and for burst operated TDMA, FDMA, CDMA, WCDMA and CSMA Frequency Modulation Quadrature AM (QAM), QPSK and offset QPSK, as well as pi/4-shifted QPSK modems/processors. Reduced modulation index Gaussian FSK (GFSK), multilevel FM and cross-coupled Quadrature Amplitude Modulated (QAM) transmitters and combinations of these modulations and corresponding coherent demodulators are disclosed. Controlled rise and fall time descriptions of burst operated systems are included.
    • 二进制和正交法尔调制(F调制或FMOD)发射机 - 接收机系统和电路显示减少的包络波动和峰值辐射,并提高效率。 这些系统的子类具有恒定的包络。 它们有利地提供具有改进性能的较低功率操作,包括鲁棒的BER性能,以及与线性和非线性放大窄谱的兼容性,并且没有常规BPSK,DBPSK QPSK和pi / 4-QPSK的缺点。 Feher的BPSK(FBPSK)是一种改进的效率发射机,与传统的BPSK接收机兼容。 FBPSK调制解调器基于使用正交结构,其中Q通道数据与特定应用的I通道数据正交插入。 Q通道数据可以从I通道数据“0”偏移到指定时间之间的量。 使用I和Q通道之间的相关性来获得光谱的进一步改进。 FBPSK调制解调器被显示为符合IEEE 802.11指定的频谱直接序列扩频掩码(-30 dB点)用于无线局域网,与传统的BPSK调制解调器相比,输出功率增益为6.5 dB。 交叉耦合正交FMOD结构也适用于连续模式和脉冲串操作的TDMA,FDMA,CDMA,WCDMA和CSMA频率调制正交AM(QAM),QPSK和偏移QPSK以及pi / 4移位QPSK调制解调器/ 处理器。 公开了降低的调制指数高斯FSK(GFSK),多电平FM和交叉耦合正交幅度调制(QAM)发射机以及这些调制和对应的相干解调器的组合。 包括突发操作系统的控制上升和下降时间描述。
    • 66. 发明授权
    • Time jitter determining apparatus
    • 时间抖动判定装置
    • US4350879A
    • 1982-09-21
    • US89585
    • 1979-10-29
    • Kamilo Feher
    • Kamilo Feher
    • G01R19/175G01R25/00H04L1/20G06M3/08
    • H04L1/205G01R19/175G01R25/005
    • The jitter determining apparatus uses only a jittery clock signal of period T.sub.b recovered from the received data signal to determine peak to peak jitter J.sub.pp and jitter distribution. The apparatus includes an AND gate having a pair of inputs. The inputs are coupled to a first signal which is the jittery clock signal delayed by a fixed amount nT.sub.b where n is preferably greater than 5, and to a second signal which is a jittery pulse signal generated from the jittery clock signal. The second signal is also controllably delayed by a factor greater than twice the jitter J.sub.pp. The AND gate produces output pulses when coincidence occurs between the two signals as the delay of the second signal is selectively varied. A counter counts the pulses for each selected delay position and thus provides the peak to peak time jitter J.sub.pp of the clock signal.
    • 抖动判定装置仅使用从接收数据信号恢复的周期Tb的抖动时钟信号来确定峰峰值抖动Jpp和抖动分布。 该装置包括具有一对输入的“与”门。 输入耦合到作为抖动时钟信号的延迟了固定量nTb的第一信号,其中n优选地大于5,以及第二信号,其是从抖动时钟信号产生的抖动脉冲信号。 第二个信号也被可控地延迟了大于抖动Jpp的两倍的因子。 当门选择性地改变第二信号的延迟时,与门产生一致时产生输出脉冲。 计数器对每个选定的延迟位置计数脉冲,从而提供时钟信号的峰值峰值时间抖动Jpp。
    • 67. 发明申请
    • Data communications, processing of camera, sensor and other digital signals, in 5G, 4G, 3G and 2G wireless and wired systems -networks
    • US20210105159A1
    • 2021-04-08
    • US17124168
    • 2020-12-16
    • Kamilo Feher
    • Kamilo Feher
    • H04L27/00H04M11/04H04N21/426H04N7/20H04W84/06H04N5/40H04L27/26
    • Automobile receiving, demodulating and processing signal for location finding. Processing a sensor and touchscreen generated signal for control of communication, location finding or operation of the automobile. Automobile receiving and processing a digital wireless network or a digital cellular communication system generated signal for processing the received digital signal into a processed digital communication signal. Signals received from 5G, 4G, 3G and 2G wireless and wired systems and networks are received, demodulated and processed.
      Processing the processed digital communication signal into a further processed baseband signal and modulating and transmitting the processed baseband signal. Processing a camera generated signal into a processed camera signal and providing processed camera signal to an interface unit of automobile.
      Processing in an automobile a signal into a processed cross-correlated Time Constrained Signal (TCS) wave form and Long Response (LR) filtered baseband signal, modulating in a quadrature modulator the cross-correlated TCS wave form and LR filtered signal and transmitting the modulated cross-correlated signal
      Receiving in an automobile a wireless modulated remote control (RC) signal, demodulating and processing modulated RC signal into a demodulated processed RC signal and providing the processed RC signal to a processor and control unit, for control of operation of the automobile.
      Transmitting a signal to an emergency 911 (emergency 911 or enhanced emergency E-911) wireless service provider or to a Public Safety Answering Point (PSAP).
    • 68. 发明申请
    • Automobile Mobile Communication Networks and Remote Controlled Devices
    • US20190268189A1
    • 2019-08-29
    • US16397973
    • 2019-04-29
    • Kamilo Feher
    • Kamilo Feher
    • H04L27/00H04L27/26H04N5/44H04M11/04H04W84/06H04N7/20H04N5/40
    • Automobile communication networks for direct multimode communications of automobiles with automobiles, automobiles with base stations, automobiles with a variety of mobile devices, and automobiles with computers. Digital mobile communications devices and methods for mobile peer to peer direct communications. Processing a touch screen generated signal into a processed touch screen control signal for controlling mobile devices. Processing fingerprint signal for authenticating a user of a mobile device. Processing in a mobile device a motion detector generated signal into a motion detector generated control signal, for navigation control of mobile device. Remote Control (RC) Signal reception, demodulation and processing for control of automobile communication, location and navigation. Modulation and demodulation, transmission and reception of one Orthogonal Frequency Division Multiplexed (OFDM) signals and conversion of the received OFDM signal into a different OFDM signal. Received spread spectrum signals from 3G or 4G or 5G cellular systems and networks are converted into OFDM signals and transmitted in a wireless network, e.g. a Wi-Fi network. One or more receivers and demodulators for receiving demodulating and processing received signals into location finder information. A video camera in mobile device generates video signal and transmits video signal with location finder information signal.
    • 69. 发明授权
    • Telematics 5G and multimode 4G and 3G mobile modulation format selectable (MFS) communications
    • US10277437B2
    • 2019-04-30
    • US16001948
    • 2018-06-07
    • Kamilo Feher
    • Kamilo Feher
    • H04L27/00H04M11/04H04N7/20H04W84/06H04N5/40H04N5/44H04L27/26
    • Telematics, telemetry, including medical telemetry and telematics, one or multiple Remote Control (RC) or Universal Remote Control (URC) devices, Multimode 5G, 4G and 3G Mobile Modulation Format Selectable (MFS) communications wireless and wired communication networks, cellular systems and devices with fingerprint signal authentication. Touchscreen and motion detectors are controlling mobile devices. Processing, modulating and transmitting stored analog or digital information, such as stored music or stored video, or stored images, or stored scanned data information or other stored information. Method and system for processing and displaying and/or transmitting in mobile devices a heart rate sensor and/or pacemaker provided signal. Remote Control (RC) or Universal Remote Control (URC) signals and devices are used to control home security systems and automobiles. Device receiving, demodulating and processing spread spectrum signal into processed Orthogonal Frequency Division Multiplexed (OFDM) signal. Mobile devices modulate and transmit processed OFDM signal. Processing spread spectrum or OFDM signals into Bit Rate Adaptable (BRA), Modulation Format Selectable (MFS) and cross-correlated in-phase and quadrature-phase Time Constrained Signal (TCS) wave form and Long Response (LR) filtered cross-correlated filtered baseband signals. Generation of video signals and processing video signals into cross-correlated signals and modulation and transmission of video cross-correlated signals. Photo camera generated photo signal in mobile device is processed with baseband location finder GPS signal. The photo camera generated photo with baseband location finder signal is modulated and transmitted.