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
    • 1. 发明申请
    • METHOD AND APPARATUS FOR UNIVERSAL TIME SIMULATION AND CO-ORDINATION FOR GENERATING FREQUENT ORIGIN MILESTONE
    • US20200326660A1
    • 2020-10-15
    • US16382236
    • 2019-04-12
    • Harish Sivaramakrishnan
    • Harish Sivaramakrishnan
    • G04C11/00G01C21/02G04G9/00G06F17/50
    • The invention with its state-of-the-art and innovative methods has established a time simulation phenomenon pertaining to celestial objects independently for (14) Universal Time (FIG. 1). The co-ordination between three celestial objects Earth, Moon, and Sun are the significant sources for back mapping and the method remains immaculate and perfect in ascertaining the Universal Time Co-Ordination (15). The invention has delivered the classified integrity while implementing the most impressive and innovative methods in bringing-out a novel concept (9) and (10) for Universal Time Simulation. The Universal Time (14) and Universal Time Co-ordination phenomenon provide a leap ahead in worldwide clocks and time regulation in which clocks would be (7) self-synchronizing based on specific locations. The location-specific Time would be incorporated to have a reality-based transition in the framework of Universal Time and Universal Time Co-Ordination that would benefit watch manufacturing industry massively (7). The invented method also provides a framework for high-level precision clocks in research labs to check their integrity in timescale (16). The pioneered method in this present invention would benefit space industry to the maximum possible extent (FIG. 4) with its limited kernel (3) memory usage statistics. The singularity in the definition of Universal Time (14) would enhance simultaneous space mission programs.Universal Time and Universal Time Co-Ordination are key aspects in the following areas namely: Regulation of Clock and Time, World Wide Web, Network Time Protocol, International Broadcast, Weather Forecast, Air Traffic Control, Radio Stations, Space Technology.
    • 4. 发明授权
    • Electronic timepiece and control method for an electronic timepiece
    • 电子钟表及电子表的控制方法
    • US09213319B2
    • 2015-12-15
    • US14581606
    • 2014-12-23
    • Seiko Epson Corporation
    • Teruhiko Fujisawa
    • G04R20/02G01S19/14G01S19/34G04G5/00G04C11/00G04R20/04
    • G04R20/04G01S19/14G01S19/34G04C11/02G04G5/002G04R20/02
    • A control method is provided for an electronic device that has a receiver to receive a satellite signal, and a time display unit to display time. The method includes selecting, by manual operation using a crown or a button, a first time correction processing or a second time correction processing. When the first time correction processing is selected, the control method further includes receiving a satellite signal, acquiring time information based on the received satellite signal, and correcting the displayed time based on the acquired time information. When the second time correction processing is selected, the control method further includes receiving a satellite signal, calculating the position of the electronic device based on satellite orbit information contained in the received satellite signal, and correcting the displayed time based on the calculated position.
    • 提供了一种用于具有接收卫星信号的接收机的电子设备和显示时间的时间显示单元的控制方法。 该方法包括通过使用表冠或按钮的手动操作来选择第一时间校正处理或第二时间校正处理。 当选择第一次校正处理时,控制方法还包括接收卫星信号,基于接收到的卫星信号获取时间信息,并且基于所获取的时间信息来校正所显示的时间。 当选择第二时间校正处理时,控制方法还包括接收卫星信号,基于接收到的卫星信号中包含的卫星轨道信息来计算电子设备的位置,并根据计算出的位置校正显示的时间。
    • 6. 发明授权
    • Marker detecting apparatus and radio-controlled timepiece
    • 标记检测装置和无线电控制时计
    • US08599650B2
    • 2013-12-03
    • US13171658
    • 2011-06-29
    • Teruhisa TokiwaTakashi Sano
    • Teruhisa TokiwaTakashi Sano
    • G04C11/00H04L7/00
    • G04R20/10
    • A marker detecting apparatus includes: a signal input section where a time code signal is inputted; a level detecting section detecting a signal level of a pulse signal of the time code signal at points in a marker characteristic interval to detect a match between the pulse signal and an ideal marker pulse signal in the signal level; a first calculating section calculating a number of the detected matches so as to obtain a value thereof, and correlating the obtained value with a pulse position of the pulse signal, the pulse position being a same in any of frames of the time code signal; a second calculating section adding up the obtained values correlated with the pulse position in the frames; and a marker determining section determining at which pulse position in the frames a marker pulse signal is disposed, based on the added-up value.
    • 标记检测装置包括:输入时间码信号的信号输入部; 电平检测部分,在标记特征区间的点处检测时间码信号的脉冲信号的信号电平,以检测信号电平中的脉冲信号和理想标记脉冲信号之间的匹配; 第一计算部分,计算检测到的匹配数以获得其值,并且将所获得的值与脉冲信号的脉冲位置相关联,所述脉冲位置在时间码信号的任何帧中相同; 第二计算部分将获得的与所述帧中的脉冲位置相关的值相加; 以及标记确定部分,基于所述相加值确定在所述帧中的哪个脉冲位置处设置标记脉冲信号。
    • 7. 发明授权
    • Performing a perform timing facility function instruction for sychronizing TOD clocks
    • 执行用于同步TOD时钟的执行定时设备功能指令
    • US08135978B2
    • 2012-03-13
    • US12540261
    • 2009-08-12
    • Eberhard EnglerMark S. FarrellKlaus MeissnerRonald M. Smith, Sr.Evangelyn K. Smith, legal representativeMark A. Check
    • Eberhard EnglerMark S. FarrellKlaus MeissnerRonald M. Smith, Sr.Mark A. Check
    • G06F1/04G04C11/00
    • G06F1/14
    • A system, method and computer program product for performing a Perform Timing Facility (PTFF) instruction for steering a Time of Day (TOD) clock of the computer system for synchronizing the TOD clock with TOD clocks of other computer systems. The computer system comprises a memory; and, a processor in communications with the computer memory. The processor is capable of performing a PTFF instruction comprising: obtaining a function code specified in a first general register, the function code for identifying any one of a query function or a control function to be performed; obtaining, from a second general register, a memory address of a parameter block; responsive to the function code specifying a query function, storing timing information of the computer system in the parameter block according to the specified query function; responsive to the function code specifying a control function, using timing information obtained from the parameter block to perform the specified control function; and setting a condition code value indicating an outcome of the specified function.
    • 一种用于执行用于使TOD时钟与其他计算机系统的TOD时钟同步的计算机系统的时间(TOD)时钟的执行定时设备(PTFF)指令的系统,方法和计算机程序产品。 计算机系统包括存储器; 以及与计算机存储器通信的处理器。 处理器能够执行PTFF指令,包括:获得在第一通用寄存器中指定的功能代码,用于识别要执行的查询功能或控制功能中的任何一个的功能代码; 从第二通用寄存器获取参数块的存储器地址; 响应于指定查询功能的功能代码,根据指定的查询功能将计算机系统的定时信息存储在参数块中; 响应于指定控制功能的功能代码,使用从参数块获得的定时信息来执行指定的控制功能; 并设置指示指定功能的结果的条件代码值。
    • 8. 发明申请
    • TIME CODE DISCRIMINATION APPARATUS AND WAVE CLOCK
    • 时间码识别装置和波形时钟
    • US20090323478A1
    • 2009-12-31
    • US12494639
    • 2009-06-30
    • Kaoru SOMEYA
    • Kaoru SOMEYA
    • G04C11/02G04C11/00
    • G04R20/10
    • Disclosed is a time code discrimination apparatus that discriminates a time code including one-minute digit and ten-minute digit codes. The time code discrimination apparatus includes: a first code acquiring section to acquire a plurality of sets of one-minute digit codes at a time interval in which the plurality of sets of one-minute digit codes are equal in value of one-minute digit; and a first code discrimination section to execute a process of reducing erroneous discrimination on the plurality of sets of one-minute digit codes acquired by the first code acquiring section, and to discriminate the one-minute digit codes.
    • 公开了一种时间码识别装置,其识别包括一分位数和十分位数码的时间码。 时间码识别装置包括:第一码获取部分,用于以一分一位数字的值相等的时间间隔获取多组一分一位数字码; 以及第一代码识别部分,执行减少由第一代码获取部分获取的多组一组数字代码的错误辨别的处理,并且识别一分钟的数字代码。
    • 9. 发明授权
    • Multi-event timer device
    • 多事件定时器设备
    • US07522477B1
    • 2009-04-21
    • US11432359
    • 2006-05-10
    • Gregory Scott Sheldon
    • Gregory Scott Sheldon
    • G04C11/00
    • G04G11/00G04F1/005
    • A multiple-event timer device for timing various infant-related biological functions such as diaper changes, feeding and sleeping is described herein. The timer device has a plurality of digital timers corresponding to a plurality of displays and a plurality of buttons. Each timer, display and button grouping functions independently. Each button includes an icon and/or is shaped to designate an event associated with that button. To reset a timer, its corresponding button is pressed-and-released. Each timer has an independent programmable upper limit or alarm setpoint. If the upper limit for a given timer is reached, an LED behind the associated button is illuminated. In some embodiments, audible alarms are activated. To set an alarm setpoint, the appropriate button is depressed and held, then the same button is pressed-and-released until the desired setpoint is reached. The timer device allows a user to monitor a plurality of events simultaneously.
    • 这里描述了一种用于计时各种婴儿相关生物学功能(例如尿布变化,喂养和睡眠)的多事件计时器装置。 定时装置具有与多个显示器和多个按钮对应的多个数字定时器。 每个定时器,显示和按钮分组功能独立。 每个按钮包括图标和/或成形以指定与该按钮相关联的事件。 要重置定时器,其相应的按钮被按下并释放。 每个定时器具有独立的可编程上限或报警设定值。 如果达到给定定时器的上限,相关按钮后面的LED将亮起。 在一些实施例中,声音报警被激活。 要设置报警设定值,按住并保持相应的按钮,然后按下并释放相同的按钮,直到达到所需的设定值。 定时器装置允许用户同时监视多个事件。
    • 10. 发明授权
    • Wireless synchronous time system
    • 无线同步时间系统
    • US07480210B2
    • 2009-01-20
    • US12062686
    • 2008-04-04
    • Michael A. PikulaRobin W. GollnickTerrence J. O'Neill
    • Michael A. PikulaRobin W. GollnickTerrence J. O'Neill
    • G04B47/00G04C11/00H04B1/00
    • G04G15/006G04R20/00G04R20/02
    • A wireless synchronous time keeping system includes a primary device and a secondary device. The primary device includes a receiving unit to receive a first signal, a processor coupled to the receiving unit and operable to process the first signal to produce a processed time component, an internal clock to store and increment the component to produce a first internal time, and a transmitting unit to transmit a second signal having the first internal time and an event having an instruction and a time element. The secondary device includes a receiving unit to receive the second signal, an internal clock to store and increment the first internal time to produce a second internal time, a memory operable to store one or more messages, a display operable to display the messages, and an event switch operable to execute the instruction when the second internal time matches the time element.
    • 无线同步计时系统包括主设备和次设备。 主设备包括接收单元以接收第一信号,处理器耦合到接收单元并且可操作以处理第一信号以产生经处理的时间分量,内部时钟用于存储和增加分量以产生第一内部时间, 以及发送单元,用于发送具有第一内部时间的第二信号和具有指令和时间元素的事件。 次设备包括:接收单元,用于接收第二信号;存储和递增第一内部时间以产生第二内部时间的内部时钟;可操作以存储一个或多个消息的存储器;可操作以显示消息的显示器;以及 事件开关,用于当第二内部时间与时间元素匹配时执行指令。