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    • 44. 发明申请
    • ENGINE CONTROLLER
    • 发动机控制器
    • US20080002377A1
    • 2008-01-03
    • US11768401
    • 2007-06-26
    • Masaru KAMOSHIDAMasahiro SasakiTakeshi IgarashiMasahiko Asano
    • Masaru KAMOSHIDAMasahiro SasakiTakeshi IgarashiMasahiko Asano
    • H05K5/00
    • H05K5/062H05K5/0052
    • There is proposed an engine controller which is excellent in reliability in that the outer peripheral edge face (cut surface) of covering member can be prevented from being rusted while securing the water-proofness and dust-proofness. This engine controller comprises a circuit board (12) for controlling an engine; an aluminum die-cast main case body (20) having an open top; and a covering member (30) made of an iron-based metal plate which is preliminarily applied with surface treatment, the covering member (30) being fixedly clamped to the main case body (20) by means of a setscrew (40) so as to hermetically close the open top of the main case body (20); wherein the main case body (20) is provided thereon with a pedestal (24) or groove (25) on which a liquid or jellied water-proofing adhesive (50) is coated or filled (piled), thereby enabling entire outer peripheral edge face (33a) of the covering member (30) to be covered by the water-proofing adhesive (50).
    • 提出了一种可靠性优异的发动机控制器,可以防止覆盖部件的外周缘(切割面)在防水性和防尘性的同时防止生锈。 该发动机控制器包括用于控制发动机的电路板(12) 具有开口顶部的铝压铸主壳体(20) 以及预先进行表面处理的铁基金属板制成的覆盖部件(30),所述覆盖部件(30)通过固定螺丝(40)固定地夹在主壳体(20)上,以便 以封闭主壳体(20)的开口顶部; 其中,所述主壳体(20)上设置有基座(24)或凹槽(25),液体或凝胶状防水粘合剂(50)被涂覆或填充(堆叠),从而使得整个外周边缘面 (30)的所述防水粘合剂(50)覆盖的所述覆盖部件(33a)。
    • 47. 发明授权
    • Machining apparatus for workpiece and method therefor
    • 工件加工装置及其方法
    • US06767275B2
    • 2004-07-27
    • US09789547
    • 2001-02-22
    • Hiroshi ShindouMasahiro SasakiAkio OgawaTetsuo AbeMasaki KouzuMasao Yamaguchi
    • Hiroshi ShindouMasahiro SasakiAkio OgawaTetsuo AbeMasaki KouzuMasao Yamaguchi
    • B24B900
    • G11B5/3103B24B37/048B24B49/16G11B5/3116G11B5/3163G11B5/3169G11B5/3173G11B5/3967
    • To provide an apparatus that may impart a complicated bend deformation to an object to be machined such as a ceramic bar elongated in one direction or the like, and may reduce the non-uniformity in machining amount of the object to be machined upon the machining work of the object to be machined, specifically a correcting mechanism for deforming the object to be machined together with a jig holding the object to be machined is provided in a machining apparatus. The correcting mechanism includes a base, a plurality of levers provided at first ends with pins, a shaft fixed to the base for rotatably supporting the levers, and a plurality of correcting drive means coupled to second ends of said levers for pivoting the levers to the shaft to thereby pivoting the pins. The jig includes a plurality of load receiving portions arranged in a holding portion elongated on one direction for holding the object to be machined whereby portions corresponding to the load receiving portion in the holding portion are deformed together with the object to be machined in accordance with pivoting of each pin.
    • 为了提供一种能够对诸如在一个方向等上延伸的陶瓷棒等被加工物体施加复杂的弯曲变形的装置,并且可以减少加工时加工对象物的加工量的不均匀性 具体地说,一种用于使待加工物体与夹具被加工物的夹具一起变形的校正机构设置在加工装置中。 校正机构包括基座,多个杆,其在第一端设置有销,固定到基座的轴可旋转地支撑杠杆;以及多个校正驱动装置,联接到所述杠杆的第二端,用于将杠杆转动到 从而枢转销。 夹具包括多个负载接收部,其布置在沿一个方向伸长的保持部分中,用于保持待加工物体,从而与保持部分中的负载接收部分相对应的部分与待加工物体一起根据枢转 的每个引脚。
    • 49. 发明授权
    • GPS receiver
    • GPS接收机
    • US06320536B1
    • 2001-11-20
    • US09558672
    • 2000-04-26
    • Masahiro Sasaki
    • Masahiro Sasaki
    • H04B7185
    • G01S19/29G01S19/235G01S19/28G01S19/34
    • A GPS receiver for shortening the time for locking onto a satellite includes a detector having an oscillator and plural reception channels, a navigational-message-receiver for analysing the message demodulated at the detector from a signal transmitted by a GPS satellite, a position-determiner for acquiring information of the receiver's position, a satellite-selector for selecting a receivable GPS satellite, a stationary-satellite-receiver for receiving a signal from a stationary satellite and measuring an offset frequency of the oscillator. The satellite selector sets a scanning range on a center frequency for each channel, the scanning range being formed by adding the Doppler-shift frequency to the offset frequency of the oscillator, the offset frequency being measured by the stationary-satellite-receiver. The stationary-satellite-receiver always receives signals from the stationary satellite to measure the offset frequency of the oscillator while a main power source is turned off. Therefore, the satellite selector immediately sets a correct frequency scanning range for the satellites upon turning on the main power source, thereby shortening the time for locking onto the satellite.
    • 用于缩短锁定到卫星上的时间的GPS接收机包括具有振荡器和多个接收信道的检测器,用于根据由GPS卫星发送的信号分析在检测器处解调的消息的导航消息接收器,位置确定器 用于获取接收机位置的信息,用于选择可接收的GPS卫星的卫星选择器,用于从固定卫星接收信号的固定卫星接收机和测量振荡器的偏移频率。 卫星选择器为每个通道设置中心频率上的扫描范围,扫描范围通过将多普勒频移添加到振荡器的偏移频率而形成,该偏移频率由固定卫星接收机测量。 固定卫星接收机总是从固定卫星接收信号,以测量主电源关闭时振荡器的偏移频率。 因此,卫星选择器在接通主电源时立即为卫星设置正确的频率扫描范围,从而缩短锁定在卫星上的时间。