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    • 31. 发明申请
    • RADIO-CONTROLLED TIMEPIECE AND METHOD OF ASSEMBLING THE SAME
    • 无线电控制时序及其组装方法
    • US20100097895A1
    • 2010-04-22
    • US12449544
    • 2008-03-05
    • Tatsuo SumidaKazuo SakamotoTadashi Yasuoka
    • Tatsuo SumidaKazuo SakamotoTadashi Yasuoka
    • G04C11/02G04B19/24G04D3/00H01Q7/08
    • H01Q7/06G04R60/12H01Q1/273H01Q7/08Y10T29/49018Y10T29/49579
    • A radio-controlled timepiece in which its reception sensitivity is further enhanced. The radio-controlled timepiece includes: an antenna core 11 made of a magnetic material and formed as a single integrated body including a coiled portion (11a) wound with a coil 19 and extension portions 11b and 11c which are located respectively on the end-portion sides; additional cores 15 and 16 made of a magnetic material; magnetism-collection members 17 and 18 made of a magnetic material; a main plate 31 (timepiece substrate) made of a non-magnetic material; a guide member 33 made of a non-magnetic material; and a liquid-crystal-panel supporting frame 32 (magnetism-collection-member supporting members, pressing member) made of a non-magnetic material and having protrusions 32a and 32b (pressing members) formed thereon. When the main plate 31, the guide member 33, and the liquid-crystal-panel supporting frame 32 are assembled together, the protrusions 32a and 32b press the magnetism-collection members, respectively. Thus, the magnetism-collection members 17 and 18 come into contact respectively with the additional cores 15 and 16, and, at the same time, the additional cores 15 and 16 come into contact respectively with the extension portions 11b and 11c of the antenna core 11. Accordingly an antenna-core body with a large single body is formed, which enhances the reception performance.
    • 其接收灵敏度进一步提高的无线电控制式钟表。 无线电遥控钟表包括:由磁性材料制成并形成为单个集成体的天线芯11,其包括卷绕有线圈19的线圈部分(11a)和分别位于端部部分上的延伸部分11b和11c 侧面 由磁性材料制成的附加芯15和16; 由磁性材料制成的磁集合件17和18; 由非磁性材料制成的主板31(钟表基板) 由非磁性材料制成的引导构件33; 以及由非磁性材料制成的具有形成在其上的突起32a和32b(按压构件)的液晶面板支撑框架32(集磁构件支撑构件,按压构件)。 当主板31,引导构件33和液晶面板支撑框架32组装在一起时,突起32a和32b分别按压磁性收集构件。 因此,磁性收集构件17和18分别与附加芯15和16接触,并且同时,附加芯15和16分别与天线芯的延伸部分11b和11c接触 因此,形成具有大的单体的天线芯体,这增强了接收性能。
    • 32. 发明申请
    • Radio-Controlled Adjustment Timepiece
    • 无线电调节时计
    • US20090296530A1
    • 2009-12-03
    • US11922654
    • 2005-06-30
    • Kenji Ozawa
    • Kenji Ozawa
    • G04C11/02
    • G04G9/0076G04R20/12
    • A start date and an end date of a daylight saving time input by a user is stored in the daylight saving time information storage unit (41). The radio-controlled adjustment section (20) generates a time to adjust the time which the clocking unit (10) is clocking, by daylight saving time information and a standard time received via an antenna (AT) and a reception circuit (21), and adjusts the time of the clocking unit (10) by use of the generated time. Here, the daylight saving time determination unit (42) references to the daylight saving time period stored in the daylight saving time information storage unit (41), and adjusts the time of the clocking unit (10) so that the time becomes one which corresponds to the user-set daylight saving time.
    • 用户输入的夏令时的开始日期和结束日期存储在夏令时信息存储单元(41)中。 无线电控制调整部(20)通过夏令时间信息和通过天线(AT)和接收电路(21)接收的标准时间产生调整时钟单元(10)正在计时的时间的时间, 并且通过使用所产生的时间来调整计时单元(10)的时间。 这里,夏令时确定单元(42)参考存储在夏令时信息存储单元(41)中的夏令时间,并且调整时钟单元(10)的时间,使得时间变为对应于 到用户设置的夏令时。
    • 33. 发明申请
    • Radio-Controlled Timepiece And Control Method For A Radio-Controlled Timepiece
    • 无线电控制时计及无线电控制时计的控制方法
    • US20090274011A1
    • 2009-11-05
    • US12427425
    • 2009-04-21
    • Teruhiko Fujisawa
    • Teruhiko Fujisawa
    • G04C11/02
    • G04R20/10
    • A radio-controlled timepiece that receives a standard time signal containing a time code and adjusts internal time data, the radio-controlled timepiece including a reception unit that receives the standard time signal, and a control unit that controls the reception unit. The reception unit has an amplifier circuit that amplifies a reception signal of the standard time signal, and an analog/digital conversion circuit that digitizes the amplified reception signal and acquires a time code. The control unit sets the reception mode of the reception unit to a normal reception mode or to a high sensitivity reception mode that improves reception performance compared with the normal reception mode, sets the reception mode to the high sensitivity reception mode for a specific period that is set based on the time code of the standard time signal after establishing at least second synchronization with the time code of the standard time signal, and otherwise sets the reception mode to the normal reception mode.
    • 一种无线电控制时计,其接收包含时间码并调节内部时间数据的标准时间信号,所述无线电控制时计包括接收标准时间信号的接收单元和控制接收单元的控制单元。 接收单元具有对标准时间信号的接收信号进行放大的放大电路和对经放大的接收信号进行数字化并取得时间码的模/数转换电路。 控制单元将接收单元的接收模式设置为正常接收模式或与正常接收模式相比提高接收性能的高灵敏度接收模式,将接收模式设置为高灵敏度接收模式一段特定时间段 在与标准时间信号的时间码建立至少第二同步之后,基于标准时间信号的时间码设置,否则将接收模式设置为正常接收模式。
    • 34. 发明申请
    • Local time amendment method and navigation apparatus
    • 本地时间修改方法和导航仪
    • US20090271110A1
    • 2009-10-29
    • US12385686
    • 2009-04-16
    • Wataru Sugiura
    • Wataru Sugiura
    • G01C21/00G04C11/02G04B47/00
    • G01C21/005G04R20/06
    • In a local time amendment system, a navigation apparatus has a clock section to count a clock time (UTC, Universal Time Coordinated) in units of hours, minutes, and seconds based on an atomic clock of a GPS Satellite. In contrast, a cellular phone acquires information on local time wirelessly via a base station, which is connected to a mobile radio communication network. The information on local time signifies a local time of each administrative area, for instance, a country, state, city, etc. The navigation apparatus acquires data in units of hours indicated by an internal clock section of the cellular phone to thereby amend the clock time counted by the clock section with respect to the units of hours to thereby amend the clock time, which is indicated by the clock section, to the local time accurate with respect to units of hours in addition to units of minutes and seconds.
    • 在本地时间修正系统中,导航装置具有时钟部分,以基于GPS卫星的原子钟计算以小时,分钟和秒为单位的时钟时间(UTC,世界时间协调)。 相比之下,蜂窝电话通过连接到移动无线电通信网络的基站无线地获取关于本地时间的信息。 本地时间的信息表示每个行政区域的当地时间,例如国家,州,城市等。导航装置以蜂窝电话的内部时钟部分指示的小时为单位获取数据,从而修改时钟 由时钟部分相对于小时数单位计算的时间,从而将由时钟部分指示的时钟时间修改为除了分钟和秒的单位之外的相对于小时单位的准确的本地时间。
    • 35. 发明申请
    • RADIO WAVE RECEIVING DEVICE WITH MAGNETIC DRIVE UNIT AND ANTENNA STRUCTURE AND ELECTRONIC APPARATUS USING THE RADIO WAVE RECEIVING DEVICE
    • 使用无线电波接收装置的具有磁驱动装置的无线电波接收装置和天线结构以及电子装置
    • US20090251997A1
    • 2009-10-08
    • US12416283
    • 2009-04-01
    • Soh KIMURA
    • Soh KIMURA
    • G04C11/02H01Q7/08H01Q1/24
    • H01Q1/273G04C3/146G04G21/04G04R60/10H01Q7/08
    • A radio wave receiving device includes at least one magnetic drive unit and an antenna structure having a narrow core formed of magnetic material and a coil wound around the central part of the core. The device further includes two external magnetic members, each having a connecting part connected magnetically to one end part of the core. One magnetic member has a magnetism collecting part expanded in one side of the antenna structure from the connecting part to exclude the antenna structure, and the other magnetic member has a magnetism collecting part expanded in the other side of the antenna structure from the connecting part to exclude the antenna structure. These external magnetic members cover the drive unit in the both sides and shut off magnetic flux of external magnetic field from the both sides and collect magnetic flux of radio wave on the one end part of the core.
    • 无线电波接收装置包括至少一个磁驱动单元和具有由磁性材料形成的窄芯体和缠绕在芯的中心部分上的线圈的天线结构。 该装置还包括两个外部磁性构件,每个外部磁性构件具有磁性地连接到芯的一个端部的连接部。 一个磁性构件具有从连接部分在天线结构的一侧膨胀的磁集合部分,以排除天线结构,另一磁性构件具有在天线结构的另一侧从连接部扩展到 排除天线结构。 这些外部磁性构件覆盖两侧的驱动单元,并且从两侧切断外部磁场的磁通量,并且在芯的一端部收集无线电波的磁通量。
    • 36. 发明申请
    • TIME ACQUISITION APPARATUS AND RADIO WAVE CLOCK
    • 时间采集装置和无线电波时钟
    • US20090248357A1
    • 2009-10-01
    • US12414868
    • 2009-03-31
    • Hideo ABE
    • Hideo ABE
    • G04C11/02G06F15/00
    • G04R20/10
    • A received waveform memory 22 stores one (1) frame of received waveform data acquired by sampling a signal including a time code with a predetermined sampling period, where each sample is represented by a plurality of bits. Correlation value calculating sections 24-26 compare the received waveform data with one (1) frame of first prediction code data corresponding to a code of a position marker or a marker, where each sample is represented by a plurality of bits, one (1) frame of second prediction code data corresponding to a code “0”, and one (1) frame of third prediction code data corresponding to a code “1” respectively. Correlation value comparing section 27 compares the first, second and third correlation values with one another to specify the prediction code data whose correlation is largest to output the code data.
    • 接收波形存储器22存储通过采样包含具有预定采样周期的时间码的信号而获得的接收波形数据的一(1)帧,其中每个采样由多个比特表示。 相关值计算部分24-26将接收到的波形数据与对应于位置标记或标记的代码的一(1)帧进行比较,其中每个样本由多个比特表示,一(1) 对应于代码“0”的第二预测代码数据的帧和分别对应于代码“1”的第一预测代码数据的一帧(1)。 相关值比较部分27将第一,第二和第三相关值彼此进行比较,以指定相关性最大的预测码数据以输出代码数据。
    • 37. 发明申请
    • Electronic Timepiece With Internal Antenna
    • 内置天线电子钟表
    • US20090201771A1
    • 2009-08-13
    • US12361635
    • 2009-01-29
    • Fumiaki Miyahara
    • Fumiaki Miyahara
    • H01Q7/08G04C11/02
    • G04G21/04G04R60/12H01Q1/273H01Q7/06H01Q7/08
    • An electronic timepiece with an internal antenna includes an outside case including a metal back cover, an antenna for receiving external radio frequency information, the antenna including a magnetic core that is long in one direction and is made from a magnetic material, and a coil that is wound around the magnetic core, a reception processor that processes the external radio frequency information received by the antenna, a module that houses the antenna and the reception processor and is housed inside the outside case, and a metal magnetic foil member that has greater magnetic permeability than the back cover and is positioned outside at least the lead-facing areas opposite the lead parts on the inside surface of the back cover facing the module. The magnetic core has a coil winding part around which is wound the coil positioned in the middle part in the lengthwise direction, and a pair of lead parts projecting from both sides of the coil winding part.
    • 具有内部天线的电子钟表包括:外壳,包括金属后盖,用于接收外部射频信息的天线,所述天线包括在一个方向上长并且由磁性材料制成的磁芯;以及线圈, 缠绕在磁芯上的接收处理器,处理由天线接收的外部射频信息的接收处理器,容纳天线和接收处理器并容纳在外部壳体内的模块以及具有较大磁性的金属磁性箔构件 并且至少位于与面向模块的后盖的内表面上的引线部分相对的至少引导区域的外侧。 磁芯具有卷绕在长度方向上位于中间部的线圈的线圈绕组部以及从线圈绕组部的两侧突出的一对引导部。
    • 39. 发明授权
    • Time correction device, timepiece having a time correction device, and time correction method
    • 时间校正装置,具有时间校正装置的时计和时间校正方法
    • US07474594B2
    • 2009-01-06
    • US11777898
    • 2007-07-13
    • Osamu UranoTeruhiko FujisawaKatsuyuki HondaJun Matsuzaki
    • Osamu UranoTeruhiko FujisawaKatsuyuki HondaJun Matsuzaki
    • G04C11/02G01S5/14H04B7/185
    • G01S19/14G01S19/23G01S19/34G01S19/35G04R20/04
    • A time correction device including a positioning unit that receives signals from positioning information satellites orbiting the Earth and determines the position of the positioning unit; a time correction information storage unit that stores time correction information for correcting time information produced by a time information generating unit; a time information correction unit that corrects the time information based on the time correction information; a time correction basis information storage unit that stores time correction basis information, which is basis information for generating the time correction information; a time correction information generating unit that generates the time correction information based on the time correction basis information; and a selection information storage unit for storing selection information. The time correction basis information includes plural-satellite-referenced time correction basis information; single-satellite-referenced time correction basis information and partial-satellite-signal-referenced time correction basis information. The selection information is used by the time correction information generating unit to select from the time correction basis information and apply the plural-satellite-referenced time correction basis information, the single-satellite-referenced time correction basis information, or the partial-satellite-signal-referenced time correction basis information.
    • 一种时间校正装置,包括:定位单元,其接收来自定位在绕地球运动的信息卫星的信号,并确定定位单元的位置; 时间校正信息存储单元,其存储用于校正由时间信息生成单元生成的时间信息的时间校正信息; 时间信息校正单元,其基于时间校正信息校正时间信息; 时间校正基准信息存储单元,其存储作为用于生成时间校正信息的基础信息的时间校正基础信息; 时间校正信息生成单元,其基于时间校正基准信息生成时间校正信息; 以及选择信息存储单元,用于存储选择信息。 时间校正基础信息包括多个卫星参考时间校正基础信息; 单卫星参考时间校正基准信息和部分卫星信号参考时间校正基准信息。 时间校正信息生成部使用选择信息,从时间校正基准信息中选择并应用多卫星参考时间校正基础信息,单卫星参考时间校正基准信息或部分卫星参考时间校正基准信息, 信号参考时间校正基础信息。