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    • 4. 发明公开
    • PLANT MONITORING SYSTEM AND METHOD
    • 植物监测系统和方法
    • EP3257354A1
    • 2017-12-20
    • EP17172201.0
    • 2017-05-22
    • Beijing Xiaomi Mobile Software Co., Ltd.
    • FU, QiangZHOU, ShiquanHOU, Enxing
    • A01G1/00A01G25/16
    • A01G22/00A01G9/00A01G25/16G01J1/18G01K13/00G01N27/04G01N33/24G09B5/02G09B19/00H04Q9/02H04Q2209/40H04Q2209/82
    • The present disclosure relates to a plant monitor, a method and an apparatus for generating information and a system for monitoring a plant. The plant monitor (140) comprises a main control chip (141; 241), a wireless communication chip (142; 242) connected with the main control chip (141; 241), and at least one growth environment monitoring sensor (143) connected with the main control chip (141; 241), wherein the at least one growth environment monitoring sensor (143) comprises at least one of an illumination sensor (143a; 243), a temperature sensor (143b; 244), a humidity sensor (143c; 245), and a soil conductivity sensor (143d; 246); the main control chip (141; 241) is configured to acquire growth environment data collected by the at least one growth environment monitoring sensor (143), and to send the growth environment data to a mobile terminal (120) via the wireless communication chip (142; 242), such that the mobile terminal (120) generates plant cultivation reference information according to the growth environment data.
    • 本公开涉及工厂监视器,用于生成信息的方法和装置以及用于监视工厂的系统。 工厂监控器(140)包括主控制芯片(141; 241),与主控制芯片(141; 241)连接的无线通信芯片(142; 242)以及连接的至少一个生长环境监控传感器(143) 与主控制芯片(141; 241)连接,其中所述至少一个生长环境监测传感器(143)包括照度传感器(143a; 243),温度传感器(143b; 244),湿度传感器 143c; 245)和土壤电导率传感器(143d; 246); 所述主控芯片(141; 241)用于获取所述至少一个生长环境监测传感器(143)采集的生长环境数据,并将所述生长环境数据通过所述无线通信芯片发送给移动终端(120) 142; 242),使得移动终端(120)根据生长环境数据生成植物栽培参考信息。
    • 5. 发明公开
    • HOUSING FOR ELECTRONIC SPRINKLER CONTROLLER
    • 电子喷头控制器的外壳
    • EP3225103A1
    • 2017-10-04
    • EP17164085.7
    • 2017-03-31
    • Aeon Matrix Inc.
    • TSAI, Ming-JeLIU, Chiang-Wei
    • A01G25/16G06F1/16H05K5/06
    • H05K7/1427A01G25/16G06F1/1656H05K5/03
    • A housing for an electronic sprinkler controller and the electronic sprinkler controller are disclosed. The electronic sprinkler controller has a first circuit board and a terminal block electrically connected with the first circuit board. The housing includes a back cover, a first front cover attached to the back cover to cover the first circuit board, a terminal block cover, a first seal and a second seal. The first circuit board is disposed on the back cover. The first front cover has an opening to expose the terminal block. The terminal block cover is rotatable between a closed position covering the opening and the terminal block and an open position not covering the opening and the terminal block. The first seal is disposed between the back cover and the front cover, and the second seal is disposed between the front cover and the terminal block cover.
    • 公开了一种用于电子喷洒器控制器和电子喷洒器控制器的壳体。 电子喷洒器控制器具有第一电路板和与第一电路板电连接的接线盒。 壳体包括后盖,附接到后盖以覆盖第一电路板的第一前盖,接线盒盖,第一密封件和第二密封件。 第一电路板设置在后盖上。 第一个前盖有一个露出接线盒的开口。 接线盒盖可在覆盖开口和接线盒的关闭位置和不覆盖开口和接线盒的打开位置之间转动。 第一密封件设置在后盖和前盖之间,并且第二密封件设置在前盖和接线盒盖之间。
    • 6. 发明公开
    • EMITTER AND DRIP IRRIGATION TUBE
    • EMITTER UNDTROPFBEWÄSSERUNGSSCHLAUCH
    • EP3092892A4
    • 2017-08-30
    • EP15735077
    • 2015-01-06
    • ENPLAS CORP
    • KIDACHI MASAHIRO
    • A01G25/02B05B1/20B05B1/30
    • A01G25/023A01G25/16Y02A40/237
    • Provided is an emitter (120) comprising a flow path that leads from an intake path (221) for taking in irrigation liquid that is within a tube to a recessed section (252). The flow path comprises opening/closing sections (248) that are arranged with a gap (249) therebetween. The gap (249) communicates with a discharge section. When the opening/closing sections (248) are pushed by the pressure of the irrigation fluid within a recessed section (242), the tip sections of each of the opening/closing sections (248) are brought into contact and one part of the gap (249) is blocked. The flow rate of the irrigation fluid within the emitter (120) is controlled by the remaining amount of said irrigation fluid that is capable of passing through the gap (249).
    • 提供了一种发射器(120),其包括流动路径,该流动路径从用于接收管内的冲洗液体的进入路径(221)通向凹陷部分(252)。 流动路径包括布置成在其间具有间隙(249)的打开/关闭部分(248)。 间隙(249)与排出部分连通。 当通过凹部(242)内的冲洗液的压力推开开闭部(248)时,开闭部(248)的前端部接触,并且间隙的一部分 (249)被阻止。 通过能够穿过间隙(249)的所述冲洗流体的剩余量来控制发射器(120)内的冲洗流体的流率。
    • 7. 发明公开
    • SPRINKLER APPARATUS AND SYSTEM FOR IRRIGATION
    • SPRINKLERVORRICHTUNG系统ZUMBEWÄSSERN
    • EP3131683A1
    • 2017-02-22
    • EP14889314.2
    • 2014-12-31
    • Cote, Kristy
    • COTE, Cameron
    • B05B12/08A01G25/00A01G25/16
    • B05B15/70A01G25/02A01G25/16B05B1/02B05B1/04B05B1/14B05B1/3026B05B1/323B05B3/021B05B12/00B05B12/12B05B15/18B05B15/72
    • A sprinkler apparatus, a flow rate control valve assembly, and a sprinkler irrigation system for providing an even distribution of water across an asymmetrically shaped water receiving area. The sprinkler apparatus comprises a pop-up sprinkler head with a base housing for confiningly receiving a pressurized water flow that actuates a nozzle housing slidingly and rotationally cooperating with the base housing to pop-up into an operating position for discharge of water through at least one pair of nozzle assemblies. The pair of nozzle assemblies comprise an upper nozzle assembly and a lower nozzle assembly near the top end of the nozzle housing. A flow rate control valve assembly comprises a flow control valve assembly that can be coupled to a pop-up sprinkler head to supply the pressurized water flow.
    • 一种喷洒装置,流量控制阀组件和用于提供水分布在不对称形状的水接收区域上的喷淋冲洗系统。 喷洒装置包括一个弹出式喷洒头,其具有底座,用于限制地接收加压水流,该压力水流使喷嘴壳体滑动地与基座壳体旋转配合,以弹起到操作位置,以通过至少一个 一对喷嘴组件。 一对喷嘴组件包括在喷嘴壳体的顶端附近的上喷嘴组件和下喷嘴组件。 流量控制阀组件包括流量控制阀组件,该流量控制阀组件可联接到弹出式喷洒头以供应加压水流。
    • 9. 发明公开
    • PLANT MOISTURE MOVEMENT STATE SENSOR
    • PFLANZENFEUCHTIGKEITSBEWEGUNGSZUSTANDSSENSOR
    • EP3104135A1
    • 2016-12-14
    • EP15743603.1
    • 2015-01-26
    • National University Corporation Kagawa University
    • SHIMOKAWA, FusaoTAKAO, HidekuniSUZUKI, TakaakiKOBAYASHI, TsuyoshiKATAOKA, Ikuo
    • G01F1/684A01G7/00G01F1/692G01P5/12
    • G01P5/08A01G7/00A01G7/06A01G22/00A01G25/16A01G25/167G01N27/04G01N33/0098G01P5/12
    • To provide a plant water dynamics sensor usable for measuring the dynamics of water flowing in a fine point of a plant such as a distal end of a new branch or a pedicel.
      The plant water dynamics sensor comprises: a heater-equipped temperature probe 10 including a temperature sensor 11 and a heater 12; a temperature probe 20 including a temperature sensor 21; an electrical resistance probe 30 including an electrical resistance measurement electrode 33; and a support 80 that supports the probes 10, 20, and 30 while the probes are aligned parallel to each other. The position of a xylem XY can be detected based on an electrical resistance measured at the electrical resistance probe 30, so that each of the temperature sensors 11 and 21 can be arranged correctly in a position at a phloem PH or at the xylem XY. This facilitates attachment of a plant water dynamics sensor 1 and water dynamics in a plant can be measured with high accuracy.
    • 提供一种植物水动力学传感器,其可用于测量在植物的细微点(例如新分枝或花梗的远端)流动的水的动力学。 植物水动力传感器包括:装有加热器的温度探头10,包括温度传感器11和加热器12; 包括温度传感器21的温度探测器20; 包括电阻测量电极33的电阻探针30; 以及当探针彼此平行对准时支撑探针10,20和30的支撑件80。 可以基于在电阻探针30处测量的电阻来检测木质部XY的位置,使得每个温度传感器11和21可以正确布置在韧皮部PH或木质部XY处的位置。 这样便于植物水动力学传感器1的附着和植物中的水动力学可以高精度地测量。