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    • 133. 发明申请
    • Localized signal radio adjusted clock
    • 本地化信号无线电调整时钟
    • US20050213433A1
    • 2005-09-29
    • US10809621
    • 2004-03-24
    • Pat Mah
    • Pat Mah
    • G04C11/02G04G5/00G04G19/00H04B1/18H04J3/00
    • H04B1/0053G04G19/00G04R20/08G04R20/10H04B1/18
    • An individual circuit control heuristic provides multi-system time broadcast system capability. A multi-band antenna is connected to a receiver integrated circuit having access to a series of filter banks corresponding to the propagation frequencies used by each broadcast transmission area. An MCU (microprocessor clock unit) is controllably connected to the receiver and to a clock display. An optional user input can enable a user's intervention, such as when changing time broadcast areas. Generally scanning for radio controlled clock signal is automatic and without user's intervention. A period of 2 minutes is allotted to synchronize the automatic clock time signal. The MCU will periodically check for the presence of this radio controlled clock signal at an average, but randomized time spacing to avoid any possible collision with a periodically occurring interference signal. A logic flow is used to limit radio frequency receiver usage in accord with pre-programmed precepts.
    • 单独的电路控制启发式提供多系统时间广播系统功能。 多频带天线连接到具有对应于每个广播传输区域使用的传播频率的一系列滤波器组的接收机集成电路。 MCU(微处理器时钟单元)可控地连接到接收器和时钟显示器。 可选的用户输入可以使用户的干预,例如在改变时间广播区域时。 通常扫描无线电控制的时钟信号是自动的,无需用户干预。 分配2分钟的时间段以使自动时钟时间信号同步。 MCU将以平均但随机的时间间隔周期性地检查该无线电受控时钟信号的存在,以避免与周期性发生的干扰信号的任何可能的冲突。 使用逻辑流程来限制射频接收机的使用,符合预编程的规则。
    • 134. 发明授权
    • Radio controlled clock
    • 无线电控制时钟
    • US06898152B2
    • 2005-05-24
    • US10397711
    • 2003-03-27
    • Raymond Chan
    • Raymond Chan
    • G04G21/04G04C11/02
    • G04G21/04G04R20/10
    • A radio controlled clock includes a main unit and interchangeable antenna modules. The main unit includes an operating circuit and contacts. The circuit has a CPU and decoders for decoding RF time signals having different carrier frequencies received by the modules. The decoders are connected to the contacts. Each module has a body connectable to main unit body, an operating circuit, and contacts connectable to the contacts of the main unit when a module is connected to the main unit. The circuit of the main body includes a receiver tuned to receive a RF time signal having a specific carrier frequency broadcast in a particular country and sends the signal received, via the contacts to a decoder, enabling the CPU to display the local time on a display.
    • 无线电控制时钟包括主单元和可互换的天线模块。 主机包括一个操作电路和触点。 电路具有用于解码由模块接收的具有不同载波频率的RF时间信号的CPU和解码器。 解码器连接到触点。 当模块连接到主单元时,每个模块具有可连接到主单元主体的主体,操作电路和可连接到主单元的触点的触点。 主体的电路包括被调谐以接收在特定国家中具有特定载波频率的RF时间信号的接收机,并且经由触点将接收的信号发送到解码器,使CPU能够在显示器上显示本地时间 。
    • 136. 发明申请
    • Radio controlled timepiece and method of controlling the same
    • 无线电控制时计及其控制方法
    • US20050094495A1
    • 2005-05-05
    • US10498701
    • 2003-09-05
    • Akinari TakadaTakashi IharaMasaaki NamekawaMasami FukudaMinoru Kobayashi
    • Akinari TakadaTakashi IharaMasaaki NamekawaMasami FukudaMinoru Kobayashi
    • G04G5/00G04G9/00G04G99/00G04R20/00G04R20/08G04C11/02
    • G04G9/0076G04R20/12
    • The invention is directed to obtaining a radio controlled timepiece that, in a case when the user who uses it moves from one country or one region to another where the time difference is different, has simplified an operation of correcting the time difference between the countries or regions and an operation of correcting the time difference due to daylight saving time's being executed. To this end, the invention provides a radio controlled timepiece 1 that, in addition to the radio controlled timepiece 1 in the prior art, it further includes offset time difference information storage means 8 that stores an offset time difference between a country where reference time information is formed and a country where a standard radio wave has been received and daylight saving time information storage means 9 that has stored therein for future use information on whether daylight saving time is being executed in the region where the standard radio wave has been received, and local standard time information forming means 10 that, with respect to the reference time information of the standard radio wave that has been received in a particular region, executes calculation processing by using at least either one of offset time difference information with respect to the reference time information corresponding to the particular region and daylight saving time information in the particular region, to thereby form local standard time information in the particular region.
    • 本发明旨在获得一种无线电控制的钟表,其在使用它的用户从时间差异的一个国家或一个区域移动到另一个区域的情况下简化了校正国家之间的时差的操作 区域和由于夏令时间执行而导致的时差的校正的操作。 为此,本发明提供了一种无线电控制时计1,除了现有技术中的无线电控制的钟表1之外,还包括偏移时间差信息存储装置8,其存储参考时间信息 并且已经收到标准无线电波的国家和已经存储在其中的夏令时信息存储装置9用于将来使用的信息,关于是否在已经接收到标准无线电波的区域中执行夏令时的信息,以及 本地标准时间信息形成装置10,对于在特定区域中已经接收的标准无线电波的参考时间信息,通过使用相对于参考时间的偏移时间差信息中的至少一个来执行计算处理 对应于特定区域的信息和夏季夏令时信息 从而在特定区域形成本地标准时间信息。
    • 137. 发明申请
    • Electronic prayer alert
    • 电子祷告提醒
    • US20050073911A1
    • 2005-04-07
    • US10960237
    • 2004-10-06
    • Steven Barnett
    • Steven Barnett
    • G04G5/00G04G9/00G04C11/02G04B47/00
    • G04G9/0076A47G33/008G04R20/02
    • An electronic prayer alert that is programmed to alert users at pre-determined moments in time to say a prayer. The alert device includes a clock system which preferably receives a signal transmitted from a GPS satellite to the alert device's antenna, a CPU to decode the received signal, ROM that stores at least one pre-determined time during each twenty-four (24) hour period, and signal means. When the time of day in the clock system matches the pre-determined time(s) stored in ROM the CPU activates the signal means. The CPU and signal means is disposed in a variety of items, preferably an item that is commonly kept on the person such as, but not limited to, a bracelet, a pendant, a necklace, etc. The signal means can be a visual signal, an audible signal, a vibration, or any other signal to provide an output signal detectable by the person in possession of the electronic prayer alert.
    • 一个电子祷告警报,被编程为在预先确定的时刻提醒用户说祷告。 警报装置包括时钟系统,其优选地接收从GPS卫星发送到警报装置的天线的信号,对接收到的信号进行解码的CPU,在每二十四(24)小时内存储至少一个预定时间的ROM 周期和信号装置。 当时钟系统中的时间与存储在ROM中的预定时间相匹配时,CPU激活信号装置。 CPU和信号装置被布置在各种项目中,优选地是通常保存在人身上的项目,例如但不限于手镯,吊坠,项链等。信号装置可以是视觉信号 ,可听信号,振动或任何其他信号,以提供由拥有电子祷告警报的人可检测的输出信号。
    • 139. 发明授权
    • Method for detecting the time messages in the faulty signal of a
time-signal transmitter
    • 用于检测时间信号发射机故障信号中的时间消息的方法
    • US5818851A
    • 1998-10-06
    • US631376
    • 1996-04-12
    • Bernd MemmlerGerhard Schafer
    • Bernd MemmlerGerhard Schafer
    • G04R20/12G06F11/00G04C11/02H04L1/00
    • G04R20/12
    • A method is described for detecting the time messages in the faulty signal of a time-signal transmitter comprising the steps below. Probabilities are assigned to the received information/bits as they are received and whose sign specifies the value of the bit and whose numerical value indicates the certainty of reception. Except for the bits designating the minute information, the probabilities of successive time messages are totaled with time correctness in a one-dimensional memory field. From the totaled probabilities, a reduced time message is reconstructed that initially contains no information on the minutes. If the reconstructed time message does not change over two successive time intervals, and if preset minimum values for the number of probabilities are exceeded for all bits, then the reduced time message is recognized as being correct. The minutes are determined separately and added to the time message recognized as being correct.
    • 描述了一种用于检测时间信号发射机的故障信号中的时间消息的方法,包括以下步骤。 概率被分配给接收到的信息/位,因为它们被接收,并且其符号指定位的值,并且其数值表示接收的确定性。 除了指定分钟信息的位之外,连续时间消息的概率在一维存储器字段中与时间正确性相加。 从总计概率中,重建缩短的时间消息,其最初不包含关于分钟的信息。 如果重建的时间消息在两个连续的时间间隔内没有改变,并且如果针对所有比特超过概率数量的预设最小值,则缩短的时间消息被识别为正确的。 分钟是单独确定的,并添加到被识别为正确的时间消息中。
    • 140. 发明授权
    • Silent alarm clock
    • 静音闹钟
    • US5764594A
    • 1998-06-09
    • US651250
    • 1996-05-23
    • Paul BermanNeal MarksBrad Zieg
    • Paul BermanNeal MarksBrad Zieg
    • G04B25/04G04C10/00G04G13/02G04G21/04G04B47/00G04B19/06G04C11/02
    • G04G21/04G04B25/04G04C10/00G04G13/02
    • A silent alarm clock including a portable receiver unit with a wrist watch-type configuration. The receiver unit includes a vibrator adapted to create a vibrating sensation upon the receipt of a radio signal. To provide power to the receiver unit a rechargeable battery is included with a pair of associated contacts and a charger adapted to allow the recharging thereof. Also included is a base transmitter unit with a recharging base having a pair of contacts for contacting those of the receiver unit in a recharge orientation. A clock unit is situated within the base transmitter unit having associated control circuitry and a speaker. The clock circuitry is adapted to define at least two predetermined times. The base transmitter unit is adapted to transmit an audio signal via the speaker at a predetermined time if the receiver unit is the recharge orientation thereof and further generate a radio signal via free space if the receiver unit is not in the recharge orientation. Thus, a first user is awakened via the vibrator at the first predetermined time and places the receiver unit within the recharging base thereafter. A second user is then awakened at the second predetermined time via the audio alarm.
    • 一个无声闹钟,包括带手表型配置的便携式接收器单元。 接收器单元包括适于在收到无线电信号时产生振动感的振动器。 为了向接收器单元提供电力,可再充电电池包括一对相关联的触点和适于允许充电的充电器。 还包括具有充电基座的基本发射器单元,该充电基座具有用于以再充电方向接触接收器单元的一对触点。 时钟单元位于具有相关联的控制电路和扬声器的基本发射器单元内。 时钟电路适于限定至少两个预定时间。 如果接收机单元是其充电取向,则基站发射机单元适于在预定时间通过扬声器发送音频信号,并且如果接收机单元不处于再充电方向,则还通过自由空间生成无线电信号。 因此,第一用户在第一预定时间通过振动器被唤醒,此后将接收器单元置于充电基座内。 然后,第二用户经由音频警报在第二预定时间被唤醒。