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    • 1. 发明专利
    • Temperature control system, and temperature controller applied to temperature control system
    • 温度控制系统和温度控制器适用于温度控制系统
    • JP2007280121A
    • 2007-10-25
    • JP2006106589
    • 2006-04-07
    • Okano Electric Wire Co Ltd岡野電線株式会社
    • KIMURA TOSHIHIROTANAKA SEIICHI
    • G05D23/20G05D23/19
    • PROBLEM TO BE SOLVED: To provide a temperature control system and a temperature controller, which heat or cool exactly a temperature control object over a wide range. SOLUTION: A plurality of Peltier modules 1 overlappedly arranged vertically, and a temperature variable operation for the temperature-controlled object 9 arranged on an upper end in the uppermost stage of Peltier module 1 is carried out with control by the temperature controller. The temperature of the temperature-controlled object 9 is detected by a temperature sensor 10, and the temperature controller determines electric power for driving all the plurality of Peltier modules to make a difference between a target temperature of the temperature-controlled object 9 and the temperature detected by the temperature sensor 10 get near to zero, distributes the determined electric power to the each Peltier module 1 at an electric power distribution rate predetermined for every of the Peltier modules 1, and drives every Peltier module 1 by the distributed electric power. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供温度控制系统和温度控制器,其在宽范围内精确地加热或冷却温度控制对象。 解决方案:多个珀耳帖模块1垂直重叠布置,并且通过温度控制器的控制来执行布置在珀耳帖模块1的最上层的上端的温度控制对象9的温度可变操作。 温度控制对象9的温度由温度传感器10检测,温度控制器确定用于驱动所有多个珀耳帖模块的电力,以使温度控制对象9的目标温度与温度控制对象9的温度 由温度传感器10检测的接近零的情况下,以每个帕尔贴模块1所预定的电力分配率将确定的电力分配给每个珀耳帖模块1,并通过分布式电力驱动每个珀耳帖模块1。 版权所有(C)2008,JPO&INPIT
    • 2. 发明专利
    • Temperature test device
    • 温度测试装置
    • JP2010256041A
    • 2010-11-11
    • JP2009103140
    • 2009-04-21
    • Okano Electric Wire Co Ltd岡野電線株式会社
    • NIEKAWA JUNKIMURA TOSHIHIROMORICHI HISASHINAKABEPPU AKIRAIDE KAZUMITSU
    • G01R31/26H01L33/00
    • PROBLEM TO BE SOLVED: To provide an inexpensively temperature test device for efficiently and precisely performing a temperature test of a component to which a signal line is connected. SOLUTION: A plurality of component accommodation parts 3 of a groove-like accommodating components subjected to the temperature test such as of optical devices 20 are arranged in a single row at a device surface for arranging the components subjected to the temperature test to form a temperature test stage 4. The temperature test stage 4 is formed in a vertically long shape with the arrangement direction of the component accommodation parts 3 as the longitudinal direction. A line lead-out guide part 7 is formed at each component accommodation part 3, for leading out the signal line such as an optical fiber 22 connected to the component subjected to the temperature test accommodated in the component accommodation part 3 in the lateral direction of the temperature test stage 4. A heat insulating part 8 for thermally shielding the temperature test stage 4 from the exterior is formed in continuity with the outer circumferential side of the temperature test stage 4. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种低成本的温度测试装置,用于有效和精确地执行连接信号线的部件的温度测试。 解决方案:经过温度测试的诸如光学器件20的槽状容纳部件的多个部件容纳部件3以单列布置在用于将经受温度测试的部件布置成的器件表面 形成温度测试台4.温度测试台4形成为纵向长的形状,其中部件容纳部件3的排列方向作为纵向方向。 在每个部件容纳部分3处形成一个引出引导部分7,用于引出诸如连接到容纳在部件容纳部分3中的受温度测试的部件连接的光纤22的信号线在横向方向上 与温度试验台4的外周侧连续地形成用于将温度试验台4与外部进行热屏蔽的隔热部8。版权所有(C)2011,JPO&INPIT
    • 3. 发明专利
    • Temperature control system and temperature control apparatus applied to the temperature control system
    • 温度控制系统和温度控制装置适用于温度控制系统
    • JP2007041947A
    • 2007-02-15
    • JP2005226846
    • 2005-08-04
    • Okano Electric Wire Co Ltd岡野電線株式会社
    • KIMURA TOSHIHIROTANAKA SEIICHI
    • G05D23/19G05D23/20
    • PROBLEM TO BE SOLVED: To implement precise temperature control of a variable temperature device even for a complicated temperature profile. SOLUTION: A temperature control system has an operation part 13 for inputting set point temperature information including a plurality of time points on a time series and set point temperatures at the respective time points, an operation part 14 for inputting PID control information for temperature controls at the respective time points, an information display part 19 for displaying the information, a variable temperature device manipulated variable calculation part 31 for computing a manipulated control variable of a Peltier module 1 for each of a plurality of time divisions of the intervals of the time points with the set point temperatures set, according to the PID control information, and a variable temperature device manipulated variable control means 32 for controlling the manipulated control variable of the Peltier module 1 such that the temperature of a temperature-varied object 9 (temperature detected by a temperature detection element 10) matches the set point temperature information, according to the calculation of the manipulated control variable of the variable temperature device computed by the variable temperature device manipulated variable calculation part 31. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:即使对于复杂的温度曲线,也可实现可变温度装置的精确温度控制。 解决方案:温度控制系统具有操作部13,用于输入包括时间序列上的多个时间点的设定点温度信息和各时间点的设定点温度,操作部14,用于输入用于 各个时间点的温度控制,用于显示信息的信息显示部分19,可变温度装置操作量计算部分31,用于计算珀尔帖模块1的操纵控制变量, 根据PID控制信息设定设定点温度的时间点,以及用于控制珀尔帖模块1的操纵控制变量的可变温度装置操纵变量控制装置32,使得温度变化对象9( 由温度检测元件10检测的温度)与设定点温度i匹配 根据由可变温度装置操作变量计算部31计算出的可变温度装置的操纵控制变量的计算的信息。(C)2007年,JPO&INPIT
    • 4. 发明专利
    • Communication apparatus and communication system using the communication apparatus
    • 使用通信设备的通信设备和通信系统
    • JP2010193370A
    • 2010-09-02
    • JP2009037980
    • 2009-02-20
    • Okano Electric Wire Co Ltd岡野電線株式会社
    • NIEKAWA JUNKIMURA TOSHIHIROSAITO MASAMIWATANABE SHINGO
    • H04N7/15H04M11/00
    • PROBLEM TO BE SOLVED: To provide a communication apparatus and system in which speeches, videos or the like can be simultaneously transferred between a plurality of positions being away from each other. SOLUTION: The apparatus is interposed on a transmission path and used, wherein either one preferential direction of an upward direction and a downward direction of a signal to be passed through the signal path is set by a preferential direction setting section 9. Based on the setting, a video signal transmission/reception control section 6 stops outputting a video signal of the apparatus's own captured by a camera 10 while another video signal moves forward from upstream side to downstream side in the preferential direction, branches the video signal and guides it to a side of a display section 11 and a side of a signal transmitting section 4 after the video signal flowing from upstream side in the preferential direction is received by a signal receiving section 3. While the other signal does not flow from the upstream side in the preferential direction, the video signal transmission/reception control section 6 transmits the video signal of the apparatus's own from the signal transmitting section 4. Audio signals are received from both an upward direction and a downward direction of the signals and transmitted toward both the upward direction and the downward direction. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种可以在彼此远离的多个位置之间同时传送话音,视频等的通信装置和系统。 解决方案:设备插入传输路径并使用,其中通过优先方向设置部分9设置要通过信号路径的信号的向上方向的一个优先方向和向下方向。基于 在该设置中,视频信号发送/接收控制部分6停止输出由照相机10拍摄的设备本身的视频信号,而另一视频信号在优先方向从上游侧向下游侧向前移动,将视频信号和引导 在信号接收部分3接收到从优先方向的上游侧流出的视频信号之后,显示部分11和信号发送部分4的一侧被接收。另一个信号不从上游侧流出 在优先方向上,视频信号发送/接收控制部分6从信号传输发送装置本身的视频信号 从信号的向上方向和向下方向接收音频信号,并朝向上方向和向下方向传送。 版权所有(C)2010,JPO&INPIT
    • 5. 发明专利
    • High and low-temperature test device
    • 高低温测试装置
    • JP2008128833A
    • 2008-06-05
    • JP2006314470
    • 2006-11-21
    • Okano Electric Wire Co Ltd岡野電線株式会社
    • KIMURA TOSHIHIROMIYAHARA MASATOTANAKA SEIICHISAKAMOTO TOSHIKI
    • G01R31/00G01R31/26H01L35/28H01L35/30
    • PROBLEM TO BE SOLVED: To provide a high- and low-temperature test device capable of efficiently performing temperature testing on an object to be temperature-tested.
      SOLUTION: The high- and low-temperature test device includes sandwiching the temperature test object with the face of one end side of a Peltier module 1 and an electric heater 4; driving the cooling side of the Peltier module 1 so that the face of one end side of the Peltier module 1 becomes a heat-absorbing face, when the detected temperature of the temperature test object, in which an object temperature detection means 12 detects, is higher than a target temperature; driving the heating side of the Peltier module so that the face of one end side of the Peltier module 1 and driving the electric heater 4, until a Peltier end face detected with a Peltier end face temperature detection means 28 reaches a preset Peltier heating stop standard temperature that is lower than the target temperature, when the detection temperature is lower than the target temperature; and heating the temperature test object with only the electrical heater 4, by stopping the drive of the Peltier module 1 on, after the Peltier end face temperature reaches the Peltier heating stop standard temperature.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供能够对要进行温度测试的对象进行有效的温度测试的高温和低温测试装置。

      解决方案:高低温试验装置包括将温度测试对象与珀耳帖模块1和电加热器4的一端的面夹着; 驱动珀尔帖模块1的冷却侧,使得当珀尔帖模块1的一端侧的表面成为吸热面时,当物体温度检测装置12检测到的温度测试对象的检测温度为 高于目标温度; 驱动帕尔贴模块的加热侧,使得珀尔帖模块1的一端侧的面并驱动电加热器4,直到用珀尔帖端面温度检测装置28检测到的珀尔帖端面达到预设的珀尔帖加热停止标准 当检测温度低于目标温度时,其温度低于目标温度; 并且在珀尔帖端面温度达到帕尔帖加热停止标准温度之后,通过停止帕尔贴模块1的驱动,仅用电加热器4加热温度测试对象。 版权所有(C)2008,JPO&INPIT

    • 6. 发明专利
    • Data communication apparatus
    • 数据通信设备
    • JP2006128801A
    • 2006-05-18
    • JP2004311106
    • 2004-10-26
    • Okano Electric Wire Co Ltd岡野電線株式会社
    • TAKAGI SEISHIKIMURA TOSHIHIRO
    • H04N7/01
    • PROBLEM TO BE SOLVED: To provide a data communication apparatus capable of transceiving sharp image data and excellent sound data.
      SOLUTION: A frame data capture section 21 respectively captures moving picture information and sound information from a digital video camera 3 or the like as unit frame image data and unit frame sound data by each setting unit time, a frame data separation section 22 separates the unit frame image data from the unit frame sound data and thereafter, a frame image data interleave section 23 interleaves the unit frame image data at a setting frequency of interleaving and transmits the resulting unit frame image data and the unit frame sound data. The data communication apparatus receives a plurality of the unit frame sound data from a plurality of places via a communication line 2 and a plurality of the unit frame image data whose number of frames is smaller than that of the sound data, supplements the deficient data of the unit frame image data by copying, arranges the supplemented unit frame image data and the unit frame sound data respectively along a time base and provides an output of the resulting data.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供能够收发清晰图像数据和优良声音数据的数据通信装置。 解决方案:帧数据捕获部分21通过每个设置单位时间分别从数字摄像机3等捕获运动图像信息和声音信息作为单位帧图像数据和单位帧声音数据,帧数据分离部分22 将单位帧图像数据与单位帧声音数据分离,之后,帧图像数据交错部23以交织的设定频率对单位帧图像数据进行交织,并发送所得到的单位帧图像数据和单位帧声音数据。 数据通信装置经由通信线路2从多个地方接收多个单位帧声音数据,并且多个帧数小于声音数据的单位帧图像数据,补充缺陷数据 通过复制的单位帧图像数据,分别沿着时基排列补充单位帧图像数据和单位帧声音数据,并提供所得到的数据的输出。 版权所有(C)2006,JPO&NCIPI
    • 7. 发明专利
    • Optical calling device and optical communication system using same
    • 光通信设备和光通信系统
    • JP2010183179A
    • 2010-08-19
    • JP2009022821
    • 2009-02-03
    • East Japan Railway CoFurukawa Electric Co Ltd:TheOkano Electric Wire Co Ltd古河電気工業株式会社岡野電線株式会社東日本旅客鉄道株式会社
    • NIIKURA YUKIOKORAI RYUICHITASHIRO HISAONIEKAWA JUNKIMURA TOSHIHIRO
    • H04M1/00H04B10/00
    • PROBLEM TO BE SOLVED: To provide an optical calling device enabling a plurality of groups to perform simultaneous communications at a plurality of distant places.
      SOLUTION: First and second media converters 3 and 4 having a bidirectional conversion function between an electric signal and an optical signal are paired and provided, and are connected to an electric circuit 10. An optical fiber 2 connected to the media converters 3 and 4 is used to perform bidirectional optical communications while using an audio signal as an optical time division multiplex signal having a plurality of time slots. For example, a time slot of optical time division multiplex communication is set per group previously defined by an optical calling device 1, and then, a signal allocated to the set time slot is extracted. The optical calling device has a function of compositing this extracted signal to an audio signal input from a microphone 32 and transmitting the composited signal to the first and second media converters 3 and 4, and a function of compositing the extracted signal and causing a speaker 31 to output the composited signal.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种允许多个组在多个远处进行同时通信的光学呼叫装置。 解决方案:具有电信号和光信号之间的双向转换功能的第一和第二介质转换器3和4配对并提供,并连接到电路10.连接到介质转换器3的光纤2 和4用于执行双向光通信,同时使用音频信号作为具有多个时隙的光时分复用信号。 例如,光学时分复用通信的时隙是由光学主叫装置1预先定义的组设置的,然后提取分配给设定时隙的信号。 光调用装置具有将该提取的信号与从麦克风32输入的音频信号合成并将合成信号发送到第一和第二媒体转换器3和4的功能,以及合成所提取的信号并产生扬声器31的功能 输出合成信号。 版权所有(C)2010,JPO&INPIT
    • 8. 发明专利
    • High-low temperature testing device
    • 高低温测试装置
    • JP2008202885A
    • 2008-09-04
    • JP2007041042
    • 2007-02-21
    • Okano Electric Wire Co Ltd岡野電線株式会社
    • KIMURA TOSHIHIROMIYAHARA MASATOTANAKA SEIICHISAKAMOTO TOSHIKI
    • F25B21/02H01L35/30
    • PROBLEM TO BE SOLVED: To provide a high-low temperature testing device capable of efficiently heating and cooling a temperature testing object, by using a Peltier module.
      SOLUTION: A heating-cooling object 9 is placed on the Peltier module 1, and a jacket 12 having a flowing area 11 is thermally connected to and arranged on the lower side of the Peltier module 1. When cooling the heating-cooling object by the Peltier module 1, a heating medium is introduced into the flowing area 11 from the lower end side of a first heating medium tank 31, and is stored in a second heating medium tank 32 by deriving from a heating medium deriving passage 21. When heating the heating-cooling object 9 by the Peltier module 1, the heating medium is introduced into the flowing area 11 from the upper end side of the second heating medium tank 32, and is stored in the first heating medium tank 31 by deriving from the heating medium deriving passage 21, and the temperature of the heating medium passing through into the flowing area 11, is set higher in heating time than cooling time of the heating-cooling object 9 by the Peltier module 1.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:通过使用珀耳帖模块来提供能够有效地对温度测试对象进行加热和冷却的高低温测试装置。 解决方案:将加热冷却对象9放置在珀尔帖模块1上,并且具有流动区域11的护套12热连接并布置在珀尔贴模块1的下侧。当冷却加热冷却 通过珀耳帖模块1对象,从第一加热介质罐31的下端侧将热介质引入流动区域11,并通过从加热介质导出通道21导出而被存储在第二加热介质箱32中。 当通过珀尔帖模块1加热加热冷却对象9时,加热介质从第二加热介质箱32的上端侧被引入到流动区域11中,并通过从第 加热介质导出通道21以及通过流动区域11的加热介质的温度在加热时间比通过帕尔贴模块1的加热冷却对象9的冷却时间设定得更高。版权所有: C)2008,JPO&INPIT
    • 9. 发明专利
    • Peltier module deterioration determination system, and peltier module drive system
    • PELTIER模块测定系统和PELTIER模块驱动系统
    • JP2008091442A
    • 2008-04-17
    • JP2006268206
    • 2006-09-29
    • Okano Electric Wire Co Ltd岡野電線株式会社
    • KIMURA TOSHIHIROMORICHI HISASHIMIYAHARA MASATOTANAKA SEIICHISAKAMOTO TOSHIKI
    • H01L35/28H02N13/00
    • PROBLEM TO BE SOLVED: To accurately determine deterioration of a Peltier module and also control damage on a drive system. SOLUTION: The Peltier module deterioration determination system includes a connecting circuit of a plurality of thermoelectric conversion elements 5 provided therein. A divided circuit drive value detecting means 21 continuously or intermittently detects a drive current or a drive voltage of each divided circuit (for example, each Peltier module 1a, 1b) that is formed by dividing a connecting circuit of the thermoelectric conversion element 5 for each section including one or more thermoelectric converting elements. Moreover, a module deterioration determination means 22 determines deterioration of a divided circuit when a resistance deviation value is deviated exceeding the allowable range from a determination standard value on the basis of a resistance deviation value obtained based on a difference or a ratio of the detected value of the drive current or drive voltage of the predetermined pair of each divided circuit and a predetermined determination standard value and also outputs a deterioration determination signal of the divided circuit that is determined to involve deterioration when deterioration of the divided circuit has been determined. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:准确地确定珀尔帖模块的劣化,并控制驱动系统的损坏。 解决方案:珀耳帖模块劣化判定系统包括设置在其中的多个热电转换元件5的连接电路。 分割电路驱动值检测装置21连续地或间歇地检测通过将热电转换元件5的连接电路分成每个分开的电路(例如,每个珀耳帖模块1a,1b)而形成的驱动电流或驱动电压 包括一个或多个热电转换元件。 此外,模块劣化确定装置22根据基于根据检测值的差异或比率获得的电阻偏差值,确定电阻偏差值从确定标准值偏离超出容许范围的情况下,判定分割电路的劣化 每个划分的电路的预定对的驱动电流或驱动电压和预定的确定标准值,并且还输出被确定为包括在划分的电路的劣化时劣化的分割电路的劣化判定信号。 版权所有(C)2008,JPO&INPIT
    • 10. 发明专利
    • Light loss measuring system
    • 光损失测量系统
    • JP2006250797A
    • 2006-09-21
    • JP2005069498
    • 2005-03-11
    • Okano Electric Wire Co Ltd岡野電線株式会社
    • KIMURA TOSHIHIROTAKAGI SEISHI
    • G01M11/00G01M11/02H04B10/07H04B10/077H04B10/079H04B17/00
    • PROBLEM TO BE SOLVED: To safely, accurately, and with high workability measure the propagation loss of an optical fiber of which the light loss is measured.
      SOLUTION: First and second light transmitting/receiving apparatuses 1 and 2 are interconnected via an optical fiber 3, and mutually transmit and receive light. Information of at least one of voice and display is inputted from an information input section 40, the electrical signal is converted into a light signal, it is transmitted from a light source 5 to a connection partner side through an optical fiber 3, the optical signal is received by a light receiving device 15 and is converted into an electrical signal, and the information possessed by the electrical signal is output from information output 41, thereby performing two-way communication between the first and second light transmitting/receiving apparatuses 1 and 2. While the optical fiber 3 connected between the light transmitting/receiving apparatuses 1 and 2 is recognized by this communication, light for measuring the loss of the optical fiber is outputted from the light source 5a of the first light transmitting/receiving apparatus 1, the light is received by the light transmitting/receiving apparatus 2, and the loss of the optical fiber 3 is detected and reported based on the intensity of the received light.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了安全,准确和高加工性,测量测量光损耗的光纤的传播损耗。 解决方案:第一和第二光发射/接收设备1和2经由光纤3互连,并相互发送和接收光。 从信息输入部40输入至少一个声音和显示的信息,电信号被转换为光信号,通过光纤3从光源5发送到连接对方侧,光信号 被光接收装置15接收并被转换为电信号,并且从信息输出端41输出电信号所拥有的信息,从而在第一和第二光发射/接收装置1,2之间进行双向通信 当通过该通信识别连接在光发射/接收设备1和2之间的光纤3时,从第一光发射/接收设备1的光源5a输出用于测量光纤损耗的光, 光被光发射/接收装置2接收,并且基于强度来检测和报告光纤3的损耗 收到的光。 版权所有(C)2006,JPO&NCIPI