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    • 1. 发明申请
    • VEHICLE THEFT PREVENTION SYSTEM
    • 车辆防盗系统
    • WO2004085214B1
    • 2004-12-29
    • PCT/JP2004004365
    • 2004-03-26
    • KUBOTA KKMATSUMOTO ATSUSHIMIURA KEISUKENISHI EIJI
    • MATSUMOTO ATSUSHIMIURA KEISUKENISHI EIJI
    • E05B49/00B60R25/04B60R25/24E05B83/00F02D45/00F02N15/00B60R25/10
    • B60R25/24B60R25/04
    • It is possible to start engine economically and easily without deteriorating the theft prevention function even when an engine start key is lost. A vehicle theft prevention system includes permission tools (5C, 5D) for permitting rewrite or write-in of an ID code. The system has a start key registration function for corresponding the ID code of an engine key (5) to the ID code of an immobilizer control section (17), so that the engine key (5) functions as an engine start key (5A, 5B) when the ID code of the permission tools (5C, 5D) is correlated with the ID code recorded in the immobilizer control section (17) and matching is established. Accordingly, when the engine start key is lost or the like, a new engine start key is created for starting the engine economically and easily without requiring replacement of the entire theft prevention device.
    • 即使发动机起动钥匙丢失,也可以经济而简单地启动发动机,而不会降低防盗功能。 车辆防盗系统包括用于允许重写或写入ID码的许可工具(5C,5D)。 系统具有用于将发动机钥匙(5)的ID码与防盗器控制部(17)的ID码相对应的起动钥匙登记功能,使得发动机钥匙(5)用作发动机起动钥匙(5A, 当许可工具(5C,5D)的ID码与记录在防盗锁控制部分(17)中的ID码相关并且建立匹配时, 因此,当发动机启动钥匙丢失等时,不需要更换整个防盗装置就可以经济而简单地创建用于启动发动机的新的发动机启动钥匙。
    • 2. 发明申请
    • FERTILIZING AMOUNT SETTING METHOD, FERTILIZING AMOUNT SETTING DEVICE, AND FERTILIZING AMOUNT SETTING PROGRAM
    • 肥料设定方法,肥料设定装置和肥料设定方案
    • WO2013168482A9
    • 2014-01-03
    • PCT/JP2013059390
    • 2013-03-28
    • KUBOTA KK
    • MIURA KEISUKETAKAHARA KAZUHIROUOYA YASUHISAFUJIMOTO YOSHITOMOTANAKA ISAO
    • A01C21/00G01N33/10
    • A01C21/007G01N33/02
    • This fertilizing amount setting device is capable of setting the fertilizing amount allowing realization of high yields and excellent taste in grain cultivation. This fertilizing amount setting device (5) is provided with a fertilizing amount setting unit (50) which sets the fertilizing amount, which relates to grain yield and grain taste, on the basis of a target taste value for grain taste and a target yield for the grain yield. The fertilizing amount setting unit (50) is provided with a yield difference calculation unit (51) which calculates the yield difference, which is the difference between the target yield and the actual yield performance of the grain, and a taste difference calculation unit (52) which calculates the taste difference, which is the difference between the target taste and the actual taste performance of the grain. The fertilizing amount is set on the basis of the calculated yield difference and the calculated taste difference.
    • 这种施肥量设定装置能够设定施肥量,从而实现高产量和优良的品种栽培。 该施肥量设定装置(5)具有施肥量设定单元(50),该施肥量设定单元基于谷物味的目标味道值和目标产量来设定与谷粒产量和谷物味道有关的施肥量 粮食产量。 施肥量设定单元(50)具有收率差计算单元(51),该收益率差计算单元计算作为目标产量与谷物的实际收获率性能之间的差的收益率差异和味觉差异计算单元(52 ),其计算味道差异,其是目标味道与谷物的实际味觉表现之间的差异。 施肥量基于计算的产量差异和计算出的味道差异设定。
    • 3. 发明申请
    • TREATMENT SYSTEM AND TREATMENT METHOD FOR NITROGEN-CONTAINING ORGANIC WASTE WATER
    • 含氮有机废水处理系统及处理方法
    • WO2013084972A8
    • 2014-04-10
    • PCT/JP2012081599
    • 2012-12-06
    • KUBOTA KK
    • MATSUZAKI TOMOKOWAKAHARA SHINICHIROOKUMURA YOUICHIKOBAYASHI MAIHO
    • C02F3/34C02F11/04
    • C02F3/307
    • A treatment system for nitrogen-containing organic waste water: having an autotrophic denitrifying device (30) that denitrifies water to be treated that contains suspended organic matter, dissolved organic matter, and ammonia, by performing nitritation, whereby ammonia is oxidated into nitrous acid by autotrophic microbes under aerobic conditions, and anaerobic ammonium oxidation using autotrophic microbes under anaerobic conditions; comprising, in the stage before the autotrophic denitrifying device (30), a suspended organic matter separation device (10) that separates suspended organic matter from the water to be treated, and a dissolved organic matter decomposition device (20) that biologically decomposes dissolved organic matter contained in the water to be treated having the suspended organic matter separated therefrom; and capable of efficiently performing anaerobic ammonium oxidation by supplying to the autotrophic denitrifying device (30) water to be treated which has reduced suspended organic matter and reduced dissolved organic matter therein.
    • 含氮有机废水处理系统:具有通过进行氮化使含有悬浮有机物,溶解有机物质和氨的待处理水进行脱氮的自养反硝化装置(30),由此氨被氧化成亚硝酸 在有氧条件下的自养微生物,在厌氧条件下使用自养微生物进行厌氧铵氧化; 其特征在于,在所述自养性脱氮装置(30)之前的阶段,包含从被处理水中分离悬浮有机物质的悬浮有机物质分离装置(10)和溶解有机物质分解装置(20) 包含在被分离的悬浮有机物的被处理水中的物质; 并且能够通过向自养反硝化装置(30)供给具有减少的悬浮有机物质和减少其中溶解的有机物质的被处理水,从而有效地进行厌氧铵氧化。
    • 4. 发明申请
    • PROCESSING SYSTEM AND PROCESSING METHOD FOR NITROGEN-CONTAINING ORGANIC WASTE WATER
    • 含氮有机废水处理系统及处理方法
    • WO2013084973A1
    • 2013-06-13
    • PCT/JP2012081600
    • 2012-12-06
    • KUBOTA KK
    • MATSUZAKI TOMOKOWAKAHARA SHINICHIROOKUMURA YOUICHIKOBAYASHI MAIHO
    • C02F3/34C02F11/04
    • C02F3/34C02F3/302
    • A processing system for nitrogen-containing organic waste water, configured by: comprising an autotrophic denitrifying device (30) that denitrifies by performing nitrification, whereby ammonia contained in water to be treated is oxidized into nitrous acid by autotrophic microbes under aerobic conditions, and anaerobic ammonia oxidation by autotrophic microbes under anaerobic conditions, using ammonia nitrogen as an electron donor and nitrate nitrogen as an electron receptor; comprising, at the stage before the autotrophic denitrifying device (30), a suspended organic matter separation device (10) that separates suspended organic matter contained in the water to be treated, and a sludge anaerobic digestion device (40) that anaerobically digests the suspended organic matter separated by the suspended organic matter separation device (10); and comprising a first transfer path (R1) that supplies digestive fluid from the sludge anaerobic digestion device (40) to the autotrophic denitrifying device (30). The processing system for nitrogen-containing waste water efficiently performs anaerobic ammonia oxidation using autotrophic microbes, even if the waste water has a low ammonia concentration and includes suspended organic matter.
    • 一种含氮有机废水处理系统,包括:通过进行硝化反硝化的自养反硝化装置(30),由待处理的水中所含的氨在有氧条件下被自养微生物氧化成亚硝酸,而厌氧 在厌氧条件下通过自养微生物进行氨氧化,使用氨氮作为电子供体,硝态氮作为电子受体; 在所述自养性脱氮装置(30)之前的阶段,包含分离待处理水中含有的悬浮有机物的悬浮有机物质分离装置(10)和厌氧消化装置(40),所述污泥厌氧消化装置 由悬浮有机物分离装置(10)分离的有机物质; 并且包括从污泥厌氧消化装置(40)向自养反硝化装置(30)供给消化液的第一输送路径(R1)。 含氮废水的处理系统,即使废水的氨浓度低,含有悬浮有机物,也能有效地进行厌氧氨氧化,使用自养微生物。
    • 5. 发明申请
    • LAWN MOWER WITH GRASS STRIPING MECHANISM
    • 带有条纹机械的LAWN MOWER
    • WO2008042894A3
    • 2008-07-03
    • PCT/US2007080179
    • 2007-10-02
    • KUBOTA KKHAGEN KYLESIMON SHANE
    • HAGEN KYLESIMON SHANE
    • A01D43/00
    • A01D42/00
    • The lawn mower includes a vehicle body supporting front and rear wheels and a mower unit suspended from the vehicle body between the front and rear wheels by front and rear links. The links are movable to raise and lower the mower unit. A grass striping mechanism is associated with the vehicle body. The mechanism includes a stay arm connected to the mower unit and a roller support member movably connected to the stay arm so that the member is capable of movement in a vertical direction. A grass striping roller is rotationally supported by the roller support arm. A lift link is pivotally connected to the vehicle body and is associated with the roller support member. The lift link interfaces with the rear link such that upward movement of the rear link imparts movement to the lift link and roller support arm to lift the roller from the ground.
    • 割草机包括支撑前轮和后轮的车身和通过前后连杆在前轮和后轮之间从车体悬挂的割草机单元。 连杆可移动以升高和降低割草机单元。 草坪划线机构与车体相关联。 该机构包括连接到割草机单元的支撑臂和可移动地连接到支撑臂的辊支撑构件,使得该构件能够在垂直方向上移动。 刮条辊由辊支撑臂旋转地支撑。 升降连杆枢转地连接到车身并与滚轮支撑构件相关联。 提升连杆与后连杆接合,使得后连杆的向上运动将运动提供给提升连杆和滚轮支撑臂,以将滚子从地面提升。
    • 7. 发明公开
    • 콤바인
    • KR20180071167A
    • 2018-06-27
    • KR20170170130
    • 2017-12-12
    • KUBOTA KK
    • YUMOTO MASAAKIIKEDA MASARUHAYASHI NANAMIYAZAKI MAKOTO
    • A01D41/12A01D67/04
    • 곡립탱크의내부의메인터넌스작업을용이하게행할수 있도록할 것이요망되고있었다. 또한, 수확한곡립을양호하게저류할수 있는것이면서, 곡립탱크의내부의메인터넌스작업을용이하게행할수 있도록할 것이요망되고있었다. 내부의저류공간에수확한곡립을저류하는곡립탱크(7)가구비되고, 곡립탱크(7)의측판(50)이저류공간을폐색하여곡립의저류를가능하게하는저류상태와, 저류공간을외부에개방하여저류공간에의액세스를가능하게하는메인터넌스상태로전환가능하게설치되어있다. 또한, 곡립탱크(7)에있어서의측판(50)이저류공간을폐색하여곡립의저류를가능하게하는저류상태와, 저류공간을외부에개방하여저류공간에의액세스를가능하게하는메인터넌스상태로전환가능하게설치되고, 곡립탱크(7)는측판(50)과그 이외의탱크본체부(46)를구비하고, 저류상태로전환된측판(50)을탱크본체부(46)에연결하는연결장치가구비되고, 연결장치는, 측판(50)에설치된걸림지지부재(77)와, 탱크본체부(46)에설치됨과함께, 걸림지지부재(77)가걸림지지되는프레임체(58)를구비하고있다.
    • 8. 发明公开
    • 콤바인
    • KR20200126950A
    • 2020-11-09
    • KR20200139545
    • 2020-10-26
    • KUBOTA KK
    • KITANO TATSUYATAKAHARA KAZUHIROOSHITANI MAKOTOMATSUFUJI KAZUNORI
    • A01D41/127A01F12/60
    • 본발명의과제는, 내부품질계측장치의진애부착을구조간단하게회피하기쉬운콤바인을제공하는것이다. 또한, 본발명의과제는, 내부품질계측장치를곡립탱크의전방부에배치하면서, 내부품질계측장치의온도상승을효과적으로방지할수 있는콤바인을제공하는것이다. 또한, 본발명의과제는, 소형의내부품질계측장치로곡립의내부품질을계측할수 있고, 또한내부품질계측장치에의한검출정밀도를높게할 수있는콤바인을제공하는것이다. 곡립탱크(10)의측벽(10F)보다도내측에, 곡립탱크(10)의곡립저류공간(10b)과구획된상태의계측실(70)을설치하고있다. 내부품질계측장치(40)를계측실(70)에배치하고있다. 또한, 엔진냉각풍을주행기체횡내측방향으로공급하는냉각팬과, 엔진의후방에배치된곡립탱크(10)를구비하고있다. 곡립탱크(10)의전방부에, 주행기체전방방향으로개방된상태의계측실(70)을구비하고, 곡립의내부품질을계측하는내부품질계측장치(40)를계측실(70)에배치하고있다. 내부품질계측장치(70)에, 검출부및 계측제어부를수용하는하우징(74)을구비하고, 하우징(74)에, 계측제어부를냉각하는제어부냉각풍을도입가능한흡인구(76)와, 제어부냉각풍을배출가능한배출구(77)를구비하고있다. 흡인구(76)를하우징(74) 중주행기체횡외측부근의부위에구비하고있다. 또한, 곡립탱크(10)에공급된곡립의일부를내부품질계측장치(40)의계측대상으로서샘플링하여일시적으로유지하는샘플링부(50)를구비하고있다. 샘플링된곡립을유지하는수용유지부(52)의하부에설치한배출구(52a)를폐색하는상승폐쇄위치와, 배출구(52a)를개방하는하강개방위치로전환가능한개폐판(54)을구비하고있다. 개폐판(54)을, 상승폐쇄위치에위치한상태에있어서, 개폐축심 X를따르는방향에서볼 때상방향으로굴곡된형상으로형성하고, 또한굴곡부의최상단부개소(54t)가내부품질계측장치(40)의검출영역의최하단부보다도낮은위치로되도록배치하고있다.