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    • 1. 发明公开
    • 임의의 통신방식을 갖는 센서와 통신하기 위한 방법 및 이를 이용하는 제어장치
    • 与具有某种通信协议的传感器和使用相同方法的控制设备的通信方法
    • KR1020130121062A
    • 2013-11-05
    • KR1020130093359
    • 2013-08-06
    • 주식회사 하이드로넷
    • 박준기임우석
    • H04L29/12H04L29/10
    • H04L67/125H04L49/253
    • According to the example of the present inventive concept, disclosed in a controller for communicating with a sensor having a random communication protocol is the controller for comprising a plurality of interface circuits capable of processing the signal of a communication protocol corresponding to each different communication protocol and a switching circuit capable of selecting the corresponding interface circuit to the communication protocol of the sensor which is currently installed in the plurality of the interface circuits based on a control signal for setting the communication protocol between the controller and the sensor and capable of receiving the control signal. [Reference numerals] (10) Communication unit;(120) Sensor;(200) Remote server;(30) Memory;(40) Signal processing unit;(51) IR circuit;(52) RS 232 circuit;(53) RS 485 circuit;(60) Switch;(70) Port
    • 根据本发明构思的示例,在与具有随机通信协议的传感器进行通信的控制器中公开的是包括能够处理对应于每个不同通信协议的通信协议的信号的多个接口电路的控制器,以及 一种切换电路,其能够基于用于设置控制器和传感器之间的通信协议的控制信号,并且能够接收控制信号而选择当前安装在多个接口电路中的传感器的通信协议的对应接口电路 信号。 (10)通信单元;(120)传感器;(200)远程服务器;(30)存储器;(40)信号处理单元;(51)红外线电路;(52)RS 232电路;(53)RS 485电路;(60)开关;(70)端口
    • 2. 发明授权
    • 소형 풍력발전 충전이 가능한 지하수 수질 원격관측 장치
    • 用于充电电池的小风力发电的地面水质远程观测装置
    • KR101343932B1
    • 2013-12-20
    • KR1020130054370
    • 2013-05-14
    • 주식회사 하이드로넷
    • 임우석현민호김상훈이준형
    • G01N33/18F03D9/00
    • Y02E10/72G01N33/18F03D9/007
    • The present invention relates to a remote observation apparatus for ground water quality capable of charging with a small wind power generation, and the said apparatus comprises: an outer casing wherein a plurality of vents are formed at uniform intervals on the wall surface; an inspection body which is accommodated inside the outer casing and is in contact with a sensor to inspect the water quality of groundwater; solar radiation generating unit containing a solar radiation absorbing plate that generates first power necessary for operating the sensor and inspection body; a wind power generation unit which is placed on the upper part of the inspection body and generates second power necessary for operating the inspection body using rotating wings that rotate by incoming wind via the vent; a supporting shaft that supports the solar radiation absorbing plate about the inspection body; a rotating shaft which supports rotating wings to be rotatable about the inspection body; and a double bearing which is placed along the axis line of the supporting shaft and rotating shaft to support the supporting shaft to be fixed and support the rotating shaft to be rotatable.
    • 本发明涉及一种能够以小风力发电充电的地下水质量的远程观测装置,所述装置包括:外壳,其中在壁表面上以均匀的间隔形成多个通风口; 检查体容纳在外壳内并与传感器接触以检查地下水的水质; 太阳辐射发生单元包含产生用于操作传感器和检查体所需的第一功率的太阳辐射吸收板; 风力发电单元,其放置在检查体的上部,并且产生使用经由通风口由进入的风旋转的旋转翼来操作检查体所需的第二电力; 支撑轴,其围绕检查体支撑太阳辐射吸收板; 旋转轴,其支撑旋转翼部以围绕检查体旋转; 以及沿着支撑轴和旋转轴的轴线布置的双轴承,以支撑支撑轴固定并支撑旋转轴可旋转。
    • 3. 发明授权
    • 임의의 통신방식을 갖는 센서와 통신하기 위한 방법 및 이를 이용하는 제어장치
    • 与具有某种通信协议的传感器和使用相同方法的控制设备的通信方法
    • KR101309650B1
    • 2013-09-17
    • KR1020120043689
    • 2012-04-26
    • 주식회사 하이드로넷
    • 박준기임우석
    • H04L29/12H04L29/10
    • H04L12/12G08C17/02H04Q9/00
    • PURPOSE: A method of communicating with a sensor having an arbitrary communication method and a control device using the same are provided to communicate with a sensor having an arbitrary communication method without disassemble or change. CONSTITUTION: A CPU (20) reads configuration information data which is stored in a memory (30), confirms a communication method which communicates with a sensor (120) and produces a control signal for setting up the corresponding communication method based on the communication method which communicates with the sensor. An interface circuit (50) comprises multiple interface circuits (51,52,53) in which each different communication method processes the signal of a correspondence method. A signal processor (40) receives a sensing signal outputted from the interface circuit and performs a received signal processing according to need. A switch (60) selects an interface circuit corresponding to a communication method of an installed sensor among multiple interface circuits, connects the interface circuit with the sensor and interrupts the rest interface circuits. [Reference numerals] (10) Communication unit; (120) Sensor; (200) Remote server; (30) Memory; (40) Signal processing unit; (51) IR circuit; (52) RS232 circuit; (53) RS485 circuit; (60) Switch; (70) Port
    • 目的:提供一种与具有任意通信方式的传感器进行通信的方法和使用该通信方法的控制装置,与具有任意通信方式的传感器进行通信而无需拆卸或改变。 构成:CPU(20)读取存储在存储器(30)中的配置信息数据,确认与传感器(120)进行通信的通信方法,并且基于通信方法产生用于建立对应的通信方法的控制信号 其与传感器通信。 接口电路(50)包括多个接口电路(51,52,53),每个不同的通信方法处理对应方法的信号。 信号处理器(40)接收从接口电路输出的感测信号,并根据需要进行接收信号处理。 开关(60)在多个接口电路之中选择与安装的传感器的通信方式相对应的接口电路,将接口电路与传感器连接,并中断其余的接口电路。 (附图标记)(10)通信单元; (120)传感器; (200)远程服务器; (30)记忆; (40)信号处理单元; (51)红外电路; (52)RS232电路; (53)RS485电路; (60)开关; (70)港
    • 4. 发明授权
    • 수위 보정용 초음파센서를 구비한 다항목 지하수 수질계측기
    • 地下水质量监测装置用超声波传感器校准水位
    • KR101694342B1
    • 2017-01-24
    • KR1020150018071
    • 2015-02-05
    • 주식회사 하이드로넷
    • 임우석현민호김상훈강태진
    • G01D21/02G01F23/296G01K13/00G01N27/06G05D3/00
    • 본발명의일 실시예에따르면, 관정내투입되어관정내에존재하는물의수온, 수위, 및전도도를감지할수 있는다항목센서; 상기다항목센서에장착된초음파발생부; 상기다항목센서에장착되고상기초음파발생부에의해발생된초음파를감지할수 있는초음파센서; 및컨트롤러;를포함하며, 상기컨트롤러는, 상기다항목센서에의해감지되는전도도가변화될때 상기초음파발생부가초음파를발생하도록제어하고, 상기초음파센서가상기초음파발생부에의해발생된초음파를감지하면, 다음함수관정내의물의수위 = f(Δt, v) 에의해관정내의물의수위를산출하며, 여기서Δt = 초음파센서가초음파를수신한시각 - 초음파발생부의초음파발생시각이고, v는초음파속도인 것을특징으로하는수위보정용초음파센서를구비한다항목지하수수질계측기가개시된다.
    • 根据本发明的实施例,一种多物品地下水质量测量装置,其包括用于校正水位的超声波传感器,包括:多物品传感器,其被输入到井以感测温度,水平 ,以及井中水的导电性; 安装在多物品传感器上的超声波发生器单元; 所述超声波传感器安装在所述多物品传感器上并感测由所述超声波发生器单元产生的超声波; 和控制器。 当多物品传感器感测到的电导率改变时,控制器控制超声波发生器单元产生超声波,并且通过使用获得井中水位的功能来计算井中的水位,该功能可被描述为 当超声波传感器感测超声波发生器单元产生的超声波时,下一个功能中的水位井= f(t,v)。 在该功能中,t表示从超声波发生器单元的超声波产生时间中减去超声波接收超声波的时间。 这表示超声波的速度。
    • 5. 发明授权
    • MCU 내부의 ADC 포트를 이용한 아날로그/디지털 변환기의 분해능 향상 장치 및 방법
    • 使用MCU的ADC端口的模拟/数字转换器的分辨率进化装置及其方法
    • KR101291341B1
    • 2013-07-30
    • KR1020130001713
    • 2013-01-07
    • 주식회사 하이드로넷
    • 임우석김상훈이준형
    • H03M1/12
    • H03M1/20H03M1/123H03M1/361H03M2201/194H03M2201/2216H03M2201/6185H03M2201/625
    • PURPOSE: A resolution improving device and a method thereof using an analog to digital converter port inside a MCU are provided to improve the resolution of an analog signals inputted from outside. CONSTITUTION: A resolution improving device of an analog to digital converter (ADC) comprises a bisectional unit (110), an adding device (120), and a MCU (130). The bisectional part divides an analog input signal into 2 halves for outputting the signal of a sub part. The adding device adds the analog input signal to the signal of the sub part which is outputted from the bisectional part for outputting. The MCU receives the analog input signal through a first ADC port and receives the main part signal of the signal divided into 2 halves through a second ADC port or an input and output port. The MCU converts the main part signal into a digital signal when a signal is inputted through the input and output port and assigns 1 to an additional bit above the most significant bit for outputting. The MCU converts the analog signal into the digital signal when a signal is not inputted through the input and output port and assigns 0 to the additional bit above the most significant bit for outputting. [Reference numerals] (110) Bisection of a signal; (120) Adding device; (AA) Input signal; (BB) Upper signal of the bisectional signal
    • 目的:提供一种分辨率改进装置及其在MCU内使用模数转换器端口的方法,以提高从外部输入的模拟信号的分辨率。 构成:模数转换器(ADC)的分辨率改善装置包括二分单元(110),加法装置(120)和MCU(130)。 二等分部分将模拟输入信号分成两半,用于输出子部分的信号。 添加装置将模拟输入信号添加到从二分割部分输出的子部分的信号以进行输出。 MCU通过第一个ADC端口接收模拟输入信号,并通过第二个ADC端口或输入和输出端口将信号的主要部分信号分为两半。 当通过输入和输出端口输入信号时,MCU将主要部分信号转换为数字信号,并将1分配给高于最高有效位以用于输出。 当信号不通过输入和输出端口输入时,MCU将模拟信号转换为数字信号,并将0分配给最高有效位以上的附加位进行输出。 (附图标记)(110)信号的二等分; (120)添加设备; (AA)输入信号; (BB)二分信号的上位信号
    • 6. 发明公开
    • 수위 보정용 초음파센서를 구비한 다항목 지하수 수질계측기
    • 地下水质量监测装置与超声波传感器进行水位校准
    • KR1020160096768A
    • 2016-08-17
    • KR1020150018071
    • 2015-02-05
    • 주식회사 하이드로넷
    • 임우석현민호김상훈강태진
    • G01D21/02G01F23/296G01K13/00G01N27/06G05D3/00
    • G01D21/02G01F23/296G01K13/00G01N27/06G05D3/00
    • 본발명의일 실시예에따르면, 관정내투입되어관정내에존재하는물의수온, 수위, 및전도도를감지할수 있는다항목센서; 상기다항목센서에장착된초음파발생부; 상기다항목센서에장착되고상기초음파발생부에의해발생된초음파를감지할수 있는초음파센서; 및컨트롤러;를포함하며, 상기컨트롤러는, 상기다항목센서에의해감지되는전도도가변화될때 상기초음파발생부가초음파를발생하도록제어하고, 상기초음파센서가상기초음파발생부에의해발생된초음파를감지하면, 다음함수관정내의물의수위 = f(Δt, v) 에의해관정내의물의수위를산출하며, 여기서Δt = 초음파센서가초음파를수신한시각 - 초음파발생부의초음파발생시각이고, v는초음파속도인 것을특징으로하는수위보정용초음파센서를구비한다항목지하수수질계측기가개시된다.
    • 根据本发明的实施例,一种多物品地下水质量测量装置,其包括用于校正水位的超声波传感器,包括:多物品传感器,其被输入到井以感测温度,水平 ,以及井中水的导电性; 安装在多物品传感器上的超声波发生器单元; 所述超声波传感器安装在所述多物品传感器上并感测由所述超声波发生器单元产生的超声波; 和控制器。 当多物品传感器感测到的电导率改变时,控制器控制超声波发生器单元产生超声波,并且通过使用获得井中水位的功能来计算井中的水位,该功能可被描述为 当超声波传感器感测超声波发生器单元产生的超声波时,下一个功能中的水位井= f(t,v)。 在该功能中,t表示从超声波发生器单元的超声波产生时间中减去超声波接收超声波的时间。 这表示超声波的速度。
    • 7. 发明公开
    • 수위 보정용 초음파센서를 구비한 다항목 지하수 수질계측기
    • 地下水质量监测装置与超声波传感器进行水位校准
    • KR1020160098633A
    • 2016-08-19
    • KR1020150020002
    • 2015-02-10
    • 주식회사 하이드로넷
    • 임우석현민호김상훈강태진
    • G01D21/02G01F23/296G01F23/24G01N27/06G01K13/00G01N33/18
    • G01D21/02G01F23/241G01F23/2962G01K13/00G01N27/06G01N33/18
    • 본발명의일 실시예에따르면, 관정내투입되어관정내에존재하는물의수온, 수위, 및전도도를감지할수 있는다항목센서; 상기다항목센서에장착된초음파발생부; 상기다항목센서에장착되고상기초음파발생부에의해발생된초음파를감지할수 있는초음파센서; 및컨트롤러;를포함하며, 상기컨트롤러는, 상기다항목센서에의해감지되는전도도가변화될때 상기초음파발생부가초음파를발생하도록제어하고, 상기초음파센서가상기초음파발생부에의해발생된초음파를감지하면, 다음함수관정내의물의수위 = f(Δt, v) 에의해관정내의물의수위를산출하며, 여기서Δt = 초음파센서가초음파를수신한시각 - 초음파발생부의초음파발생시각이고, v는초음파속도인 것을특징으로하는수위보정용초음파센서를구비한다항목지하수수질계측기가개시된다.
    • 披露了一个多项目的地下水质量计。 根据本发明的一个实施例,多项目地下水质量计包括:多物品传感器,其可以放入井中以感测井中存在的水的水温,水位和电导率; 安装在多件传感器上的超声波发生器; 超声波传感器,安装在多物品传感器上,感测超声波发生器产生的超声波; 和控制器。 当多项目传感器感测到的电导率改变时,控制器控制超声波发生器产生超声波,并通过使用获得水位[f(t,v)]的方程来计算井中的水位 当超声波传感器感测超声波发生器产生的超声波时。 超声波传感器用于水位校正。 在该公式中,[t]表示超声波传感器接收到超声波发生器产生超声波的时间减去的超声波的时间。 字符v表示超声波的速度。