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    • 2. 发明申请
    • TEMPERATURE SENSOR AND SENSING PROCESS
    • 温度传感器和传感过程
    • US20140278842A1
    • 2014-09-18
    • US13840479
    • 2013-03-15
    • NEXLEAF ANALYTICS
    • Martin L. LUKACEric GRAHAM
    • G04F10/00G06Q30/04G06Q30/02
    • G06Q30/04G06Q30/0207G07C3/04
    • An apparatus for encoding a stove usage time includes a circuit, a temperature switch, an input device, and an output device. The circuit includes a processor and an internal timer. The temperature switch is communicatively linked to the circuit. The input device is electrically connected to the circuit and transmits a status request to the processor in response to receiving a user input. The internal timer increments an accumulated time of the internal timer by a usage time. The usage time is based on a duration the temperature switch detects temperatures higher than the minimum threshold. The processor accesses the incremented accumulated time of the internal timer and stores the accumulated time in a memory. The processor reads the incremented accumulated time from the memory, encodes the incremented accumulated time into an encoded value, and causes the output device to produce the encoded value in response to the status request.
    • 用于编码炉子使用时间的装置包括电路,温度开关,输入装置和输出装置。 电路包括处理器和内部定时器。 温度开关与电路通信连接。 输入设备电连接到电路,并响应于接收用户输入而将状态请求发送到处理器。 内部定时器将内部定时器的累计时间增加一个使用时间。 使用时间是基于温度开关检测温度高于最小阈值的持续时间。 处理器访问内部定时器的增加的累加时间并将累积的时间存储在存储器中。 处理器从存储器读取递增的累加时间,将增加的累积时间编码为编码值,并使输出设备响应状态请求产生编码值。
    • 4. 发明授权
    • Monitoring device for connectors
    • 连接器监控装置
    • US08081730B2
    • 2011-12-20
    • US11828358
    • 2007-07-26
    • Guang-Dong YuanXian-Ming WangChung-Chi HuangRong Hu
    • Guang-Dong YuanXian-Ming WangChung-Chi HuangRong Hu
    • G07C3/02
    • G07C3/04
    • An exemplary monitoring device includes: a time chip connected to a connector to generate a time signal and a count signal when the connector is working, the time signal indicating how long the connector is in use, the count signal indicating that the total number of times the connector has been used should be incremented by one; a processor connected to the time chip to receive the time signal and count signal, and generate a data signal including a total service time and a total number of times the connector has been used; a clock generator connected to the processor to provide a clock signal; and an output port connected to the processor to output the data signal. The monitoring device keeps a watch on a connector for showing the service information about the connector to make an operator know if the connector needs to be replaced.
    • 示例性监视装置包括:时间芯片,连接到连接器以在连接器工作时产生时间信号和计数信号,时间信号表示连接器正在使用多长时间,指示总次数的计数信号 连接器已被使用,应该增加一个; 连接到所述时间芯片的处理器,接收所述时间信号和计数信号,并产生包括所述连接器已被使用的总服务时间和总次数的数据信号; 连接到所述处理器以提供时钟信号的时钟发生器; 以及连接到处理器以输出数据信号的输出端口。 监控设备在连接器上保持观察显示有关连接器的服务信息,以使操作员知道连接器是否需要更换。
    • 5. 发明申请
    • ROBUST POWER-ON METER AND METHOD USING A LIMITED-WRITE MEMORY
    • 稳定的上电仪和使用有限写入存储器的方法
    • US20040136273A1
    • 2004-07-15
    • US10340439
    • 2003-01-09
    • Peter Chambers
    • G04F010/00G04F008/00
    • G07C3/04
    • A data word is used to represent the total amount of time duration or predefined events a device has experienced during its lifetime. The data word is incremented count by count while the device is powered on and each updated data word is backed up to a non-volatile memory. A two-version redundancy scheme is employed to ensure failsafe backup and restoration of the data word. At any time at least one valid version of the data word exists in the non-volatile memory. In another aspect, a partitioned memory configuration is implemented to backup the data word and its associated error correction code to the non-volatile memory. In this way the non-volatile memory is able to store a range of counts whose maximum number far exceeds the memory's endurance limit.
    • 数据字用于表示设备在其使用寿命期间经历的持续时间或预定义事件的总量。 当设备通电时,数据字递增计数,每个更新的数据字备份到非易失性存储器。 采用双版本冗余方案来确保数据字的故障安全备份和恢复。 在非易失性存储器中存在至少一个有效版本的数据字。 在另一方面,实现分区存储器配置以将数据字及其相关联的纠错码备份到非易失性存储器。 以这种方式,非易失性存储器能够存储最大数量远超过存储器的耐久极限的计数范围。
    • 7. 发明授权
    • Engine operation detecting circuit for a visual display
    • 用于视觉显示的发动机操作检测电路
    • US06377168B1
    • 2002-04-23
    • US09656578
    • 2000-09-07
    • Arthur James Harvey
    • Arthur James Harvey
    • B60Q100
    • G07C3/04
    • A timing circuit for providing an output to a microcontroller indicating whether an engine is operating, wherein the engine has a magneto. The circuit includes a triac coupled to the magneto for switching output generating circuitry between an engine on condition to an engine off condition in response to an operating condition of the engine. The output generating circuitry provides a signal indicating that the engine is not operating to the microcontroller when the circuitry is in an engine off condition and provides a signal indicating that the engine is operating to the microcontroller when the circuitry is in an engine on condition.
    • 一种用于向微控制器提供指示发动机是否正在运行的输出的定时电路,其中发动机具有磁电。 电路包括耦合到磁电机的三端双向可控硅,用于响应于发动机的运行状态在发动机处于发动机关闭状态之间切换输出生成电路。 当电路处于发动机关闭状态时,输出产生电路提供指示发动机不对微控制器操作的信号,并且当电路处于发动机处于状态时提供指示发动机正在操作到微控制器的信号。
    • 8. 发明申请
    • Microwave oven with an apparatus for detecting life time of components thereof
    • 微波炉具有用于检测其部件寿命的装置
    • US20020014486A1
    • 2002-02-07
    • US09917221
    • 2001-07-30
    • Yun-Bong Chun
    • H05B006/68
    • G07C3/04
    • A microwave oven with an apparatus for detecting life time of components detects a frequency of opening and closing of a door switch even when AC power supply is cut-off, and detects a driving time of a high voltage transformer or a magneton according to their driving status, and accumulates and stores the detected driving time in a memory. The microwave oven includes a high frequency generation detecting portion connected to a high frequency generating portion for detecting driving status of high frequency generating components such as the high voltage transformer or the magnetron, and a door opening/closing detecting portion for detecting opening and closing of the door. A microcomputer counts the driving time of We high frequency components and the frequency of door opening and closing, and accumulates and stores the counted result in the memory. The accumulated result stored in the memory is displayed in as display portion by a key manipulating portion for a notice of a user so that the user can check the driving time of the components.
    • 具有用于检测部件的寿命的装置的微波炉即使在交流电源被切断时也检测到门开关的打开和关闭的频率,并且根据其驱动来检测高压变压器或磁铁的驱动时间 状态,并且将检测到的驾驶时间累积并存储在存储器中。 微波炉包括连接到高频产生部分的高频发生检测部分,用于检测诸如高压变压器或磁控管的高频产生部件的驱动状态,以及用于检测开关闭合的门打开/关闭检测部分 门。 微型计算机对高频部件的行驶时间和门打开和关闭的频率进行计数,并将计数结果累积并存储在存储器中。 存储在存储器中的累积结果通过用于用户通知的键操作部分显示在显示部分中,使得用户可以检查部件的驾驶时间。
    • 10. 发明授权
    • Method of detecting bender operating time
    • 弯曲机工作时间检测方法
    • US5676004A
    • 1997-10-14
    • US719397
    • 1996-09-24
    • Shigeharu MatsumotoNobuo SakuraiIchiro Kojima
    • Shigeharu MatsumotoNobuo SakuraiIchiro Kojima
    • B21D5/02G05B19/406G07C3/04B21B37/00
    • B21D5/02G05B19/406G07C3/04G05B2219/31407G05B2219/37336G05B2219/45143
    • In a bender (e.g., press brake), work (plate material) can be bent by a bending tool composed of a pair of punch and die. A position detector (17) mounted on a movable side of the bending tool generates a limit point pulse (ULi) whenever the tool reaches a limit point. A timer (29) measures a time interval between the two limit point pulses (ULi). A time compare discriminate section (31) compares the time interval measured by the timer with a reference time interval (TR), and further discriminates the current bending as a trial bending when the time interval is longer than the reference time but as an actual bending when shorter than the reference time. Further, an arithmetic section 33 calculates a sum total number of times of the bending and the sum total time period spent in the bendings, separately in both of the trial and actual bendings. The obtained bending data are displayed or recorded to obtain an accurate man-hour in the bending processing.
    • 在弯曲机(例如,压力制动器)中,工件(板材)可以通过由一对冲头和模具组成的弯曲工具弯曲。 安装在弯曲工具的可移动侧的位置检测器(17)每当刀具达到极限点时产生极限点脉冲(ULi)。 定时器(29)测量两个极限点脉冲(ULi)之间的时间间隔。 时间比较鉴别部分(31)将由定时器测量的时间间隔与参考时间间隔(TR)进行比较,并且当时间间隔长于参考时间时,进一步将当前弯曲判断为弯曲弯曲,而作为实际弯曲 比参考时间短。 此外,算术部33在试验弯曲和实际弯曲两者中分别计算弯曲的总和次数和弯曲时的总和时间。 获得的弯曲数据被显示或记录,以在弯曲加工中获得准确的工时。