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    • 21. 发明申请
    • Indicator control system with camera section
    • 带相机部分的指示灯控制系统
    • US20070120660A1
    • 2007-05-31
    • US10584112
    • 2004-12-16
    • Hideo YamadaIsao MurotaTomoaki OnoSatoshi Fujii
    • Hideo YamadaIsao MurotaTomoaki OnoSatoshi Fujii
    • B60Q1/00H04N7/18G03B17/18
    • E02F9/26
    • [PROBLEMS] An indicator control system with a camera section provided with a switching means for switching from a measurement value display mode to a camera display mode and vice versa to display a selected mode on a monitor section of an indicator, the measurement value display mode showing the measurement data of an object to be monitored of a construction machine, and the camera display mode being for the camera section mounted on the construction machine. [MEANS FOR SOLVING PROBLEMS] In an indicator (1) in which switching between the measurement value display mode and the camera display mode is performed by an input switching means (14) and a selected mode is displayed on a monitor section (2), the input switching means (14) consists of manual switching effected by an input means such as a predetermined switch provided near the operator's seat or on the indicator (1) or automatic switching effected by the detection of a previously registered operation of a predetermined operation member or effected when an indicator alarm judging means judges that the display of an alarm screen is necessary. Also, the camera section is connected to the indicator (1) through a camera control input means for sending a control signal to a camera control unit (65).
    • [问题]一种具有相机部分的指示器控制系统,其具有切换装置,用于从测量值显示模式切换到相机显示模式,反之亦然,以在指示器的监视器部分上显示所选择的模式,测量值显示模式 显示施工机械的待监测物体的测量数据,摄像机显示模式是安装在施工机器上的摄像机部分。 解决问题的手段在由输入切换装置(14)进行测量值显示模式与相机显示模式之间的切换并且在监视器部分(2)上显示所选模式的指示器(1)中, 输入切换装置(14)包括由诸如设置在驾驶员座椅附近的预定开关或者指示器(1)上的输入装置进行的手动切换,或通过检测预定操作构件的预先登记的操作而进行的自动切换 或者当指示器报警判断装置判断出需要显示报警画面时进行。 另外,摄像机部分通过摄像机控制输入装置连接到指示器(1),用于向摄像机控制单元(65)发送控制信号。
    • 23. 发明授权
    • Canister for evaporated fuel treatment apparatus
    • 蒸发燃料处理设备罐
    • US06425380B2
    • 2002-07-30
    • US09301765
    • 1999-04-29
    • Hideo YamadaTakashi Ishikawa
    • Hideo YamadaTakashi Ishikawa
    • F02M3704
    • F02M25/0854
    • In order to make a fuel in a vapor phase from a fuel tank to be easily liquefied in a liquid trap, reduce an amount of a gasoline vapor entering from the liquid trap to a diffusion of a canister and extend a service life of an activated carbon, in accordance with a canister for an evaporated fuel treatment apparatus, a fuel in a vapor phase from a fuel tank (24) enters into a liquid trap (21A) from an evaporated fuel passage (23) via a tank port (13A). Since an inner diameter of a canister communication port (22A) is small, an invasion of a gasoline vapor from the liquid trap (21A) to a first diffusion (12) is restricted, so that a liquefaction in the liquid trap (21A) is promoted. When the fuel tank (24) is cooled and an internal pressure of the tank becomes a negative pressure, a fuel in a liquid phase in the liquid trap (21A) flows backward so as to prevent a lot of fuel in a liquid phase from being collected within the liquid trap (21A).
    • 为了使来自燃料箱的气相中的燃料在液体捕集器中易于液化,减少从液体捕集器进入到罐的扩散的汽油蒸汽的量并延长活性炭的使用寿命 根据用于蒸发燃料处理装置的罐,来自燃料箱(24)的来自汽相的燃料经由罐口(13A)从蒸发的燃料通道(23)进入液体捕集器(21A)。 由于罐连通口(22A)的内径小,因此限制了从液体捕集器(21A)到第一扩散部(12)的汽油蒸气的侵入,使得液体捕集器(21A)中的液化是 晋升 当燃料箱(24)冷却并且罐的内部压力变为负压时,液体捕集器(21A)中的液相中的燃料向后流动,以防止大量液相中的燃料成为 收集在液体捕集器(21A)内。
    • 25. 发明授权
    • Encoder disc rotating device for a surveying instrument
    • 用于测量仪器的编码盘旋转装置
    • US5711080A
    • 1998-01-27
    • US594710
    • 1996-01-31
    • Hideo Yamada
    • Hideo Yamada
    • G01C1/02G01C1/00G01B11/26G01C15/00
    • G01C1/02
    • The encoder disc rotating device for a surveying instrument comprising a vessel-shaped cover member 30 rotating coaxially with a rotating axis 22 of an encoder disc rotating knob 21 and having an opening formed at the arcuate lateral side for protruding to expose the encoder disc rotating knob 21, in which the encoder disc rotating knob 21 is protruded to expose or concealed by the rotation of the cover member 30. The cover member can ensure a large space for arranging the operation system without changing the machine height and cover the encoder disc rotating knob for preventing erroneous operation without hindering the operation.
    • 用于测量仪器的编码器盘旋转装置包括与编码器盘旋转旋钮21的旋转轴线22同轴旋转的容器形盖构件30,并且具有形成在弓形侧面的开口用于突出编码器盘旋转旋钮 21,其中编码器盘旋转旋钮21突出以通过盖构件30的旋转而暴露或隐藏。盖构件可以确保用于布置操作系统的大空间而不改变机器高度并覆盖编码器盘旋转旋钮 用于防止错误操作而不妨碍操作。
    • 26. 发明授权
    • Electronic musical instrument having pre-assigned microprogram
controlled sound production channels
    • 电子乐器具有预分配的微程序控制声音产生通道
    • US5481065A
    • 1996-01-02
    • US422602
    • 1995-04-10
    • Hideo Yamada
    • Hideo Yamada
    • G10H1/18G10H1/24G10H5/00G10H7/00G10H7/08
    • G10H1/24G10H5/007G10H7/006
    • An electronic musical instrument of the present invention provides a tone generator which includes an exciter generating an excitation signal and a sound producer having an input apparatus which produces a musical tone signal in response to the excitation signal. The-tone generator delays the musical tone signal and feeds the musical tone signal back to the input apparatus. Furthermore, the electronic musical instrument provides a memory which stores a plurality of sound production algorithms and an assignment designating apparatus which designates one of the plurality of sound production algorithms and assigns the designated sound production algorithm to the musical tone generator. Moreover, the tone generator further includes the operation apparatus which performs the assigned sound production algorithm on the musical tone signal. In addition, the electronic musical instrument provides the extractor which extracts the musical tone signal.
    • 本发明的电子乐器提供了一种乐音发生器,其包括产生激励信号的激励器和具有响应于激励信号产生乐音信号的输入装置的声音发生器。 音调发生器延迟乐音信号,并将乐音信号反馈给输入装置。 此外,电子乐器提供存储多个声音产生算法的存储器和指定多个声音产生算法中的一个的分配指定装置,并将指定的声音产生算法分配给乐音发生器。 此外,音调发生器还包括对音调信号执行分配的声音产生算法的操作装置。 此外,电子乐器提供提取乐音信号的提取器。
    • 28. 发明授权
    • Atomic absorption spectrophotometer
    • 原子吸收分光光度计
    • US4728189A
    • 1988-03-01
    • US6170
    • 1987-01-23
    • Konosuke OishiKoichi UchinoHideo YamadaSeigo KamitakeMasao Hashimoto
    • Konosuke OishiKoichi UchinoHideo YamadaSeigo KamitakeMasao Hashimoto
    • G01N21/31G01J3/42G01N21/74
    • G01N21/3103
    • An absorption profile indicative of a relation in atomic absorption spectroscopy between the absorbance of a desired element and time has a constant half-width independent of the concentration of the desired element in a sample, and hence the half-width of absorption profile with respect to the desired element can be previously determined from data which is obtained by the measurement of a standard sample. In an atomic absorption spectrophotometer herein disclosed, the half-width of absorption profile is previously determined in the above-mentioned manner, and the true peak value of an absorption profile obtained by measuring a sample which contains the desired element at a high concentration, is calculated using the time width of this absorption profile at a predetermined absorbance and the previously-determined half-width.
    • 指示所需元素的吸光度与时间之间的原子吸收光谱中的关系的吸收曲线具有与样品中期望元素的浓度无关的恒定半宽,因此吸收曲线的半宽相对于 可以从通过测量标准样品获得的数据预先确定所需要的元素。 在本文公开的原子吸收分光光度计中,预先按照上述方式确定吸收曲线的半宽度,通过以高浓度测量含有所需元素的样品而获得的吸收曲线的真实峰值为 使用该吸收曲线的时间宽度以预定吸光度和预先确定的半宽度计算。