会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 52. 发明授权
    • Fuel injection amount control apparatus of internal combustion engine
    • 内燃机燃油喷射量控制装置
    • US07885755B2
    • 2011-02-08
    • US12438007
    • 2007-08-28
    • Daisuke KobayashiSatoshi Masuda
    • Daisuke KobayashiSatoshi Masuda
    • B60T7/12G05D1/00G06F7/00G06F17/00
    • F02D41/065F02D41/40F02D2200/0414F02D2400/08Y02T10/44
    • A fuel injection amount control apparatus controlling an amount of fuel supplied to an internal combustion engine is disclosed. An intake passage extends from the engine, and the intake passage is branched into a plurality of branch passages in an upstream section. The apparatus includes a plurality of intake air temperature sensors and an ECU. Each of the intake air temperature sensors is provided in one of the intake passages and detects an intake air temperature in the corresponding intake passage. The ECU selects an intake air temperature that most directly expresses the engine state or the environment from the intake air temperatures detected by the intake air temperature sensors. The ECU controls the amount of the fuel supplied to the engine by using the selected intake air temperature.
    • 公开了一种控制供给内燃机的燃料量的燃料喷射量控制装置。 进气通道从发动机延伸,并且进气通道在上游段分支成多个分支通道。 该装置包括多个进气温度传感器和ECU。 每个进气温度传感器设置在一个进气通道中,并检测相应的进气通道中的进气温度。 ECU根据由进气温度传感器检测到的进气温度来选择最直接表示发动机状态或环​​境的进气温度。 ECU通过使用所选择的进气温度来控制供应给发动机的燃料量。
    • 54. 发明申请
    • THRUST ROLLER BEARING
    • 推力滚子轴承
    • US20090123105A1
    • 2009-05-14
    • US11993900
    • 2006-06-22
    • Satoshi MasudaHiromichi Takemura
    • Satoshi MasudaHiromichi Takemura
    • F16C19/30
    • F16C33/64F16C19/30F16C33/543F16C33/547
    • A thrust roller bearing 10 is provided in which one half of total gap which results from adding up an outer diameter side in-bearing gap 22 and an inner diameter side in-bearing gap 23 in diametrical direction is made larger than the amount of eccentricity between a member 51 which supports an outer ring 11 and a member 53 which supports an inner ring 14. When inside diameter at distal end of an outer locking portion 19 along a distal edge portion of an outer flange 13 is φD1, outside diameter of a cage 18 is φD2, outside diameter at a distal end of an inner locking portion 20 along a distal edge portion of an inner flange 16 is φD3, inside diameter of the cage 18 is φD4 and thickness of the cage 18 is t, A, B are defined as A=(D2−D1)/t and B=(D3−D4)/t, 0.1≦A, B≦5 is satisfied.
    • 提供了一种推力滚子轴承10,其中通过将外径侧承载间隙22和内径侧承载间隙23沿直径方向相加而产生的总间隙的一半被制成大于在径向方向上的偏心量 支撑外圈11的构件51和支撑内环14的构件53.当沿着外凸缘13的远端边缘部分的外锁定部分19的远端的内径为phiD1时,保持架的外径 18是phiD2,沿着内凸缘16的前端部的内锁定部20的前端的外径为phiD3,保持器18的内径为phiD4,保持架18的厚度为t,A,B为 定义为A =(D2-D1)/ t和B =(D3-D4)/ t,0.1 <= A,B <= 5。
    • 55. 发明申请
    • FIELD-EFFECT TRANSISTOR
    • 场效应晶体管
    • US20090050900A1
    • 2009-02-26
    • US12192187
    • 2008-08-15
    • Satoshi MASUDA
    • Satoshi MASUDA
    • H01L29/267
    • H01L29/7787H01L29/2003H01L29/41758H01L29/42316H01L29/66462
    • At least two drain ohmic contacts are arranged to intersect with an active area. A source ohmic contact is arranged between the drain ohmic contacts. A drain coupling portion on an element separating area couples ends of the drain ohmic contacts on the same side thereof. A gate power supply wiring on the element separating area couples gate fingers at the end thereof on the opposite side of the arrangement side of the drain coupling portion. A gate edge coupling portion couples two gate fingers adjacent to each other, sandwiching the source ohmic contact at the end thereof on the arrangement side of the drain coupling portion. The gate edge coupling portion does not intersect with the drain ohmic contact and the drain coupling portion.
    • 至少两个漏极欧姆接触件布置成与有源区域相交。 源极欧姆接触器布置在漏极欧姆接触件之间。 元件分离区域上的漏极耦合部分将漏极欧姆触点的端部连接在同一侧。 元件分离区域上的栅极电源布线在漏极耦合部分的布置侧的相对侧的端部连接栅极指状物。 栅极边缘耦合部分将彼此相邻的两个栅极指耦合在一起,将源极欧姆接触件的端部夹在漏极耦合部分的布置侧。 栅极边缘耦合部分不与漏极欧姆接触和漏极耦合部分相交。
    • 57. 发明授权
    • Knock detecting apparatus and method for internal combustion engine
    • 内燃机爆震检测装置及方法
    • US07347081B2
    • 2008-03-25
    • US11106546
    • 2005-04-15
    • Masaomi InoueYuichi TakemuraSatoshi MasudaKenji KasashimaRihito Kaneko
    • Masaomi InoueYuichi TakemuraSatoshi MasudaKenji KasashimaRihito Kaneko
    • G01L23/22
    • G01L23/225
    • The signal levels of vibration waveform signals outputted by knock sensors are extracted at a filter processing section for each of a plurality of frequency bands. The mean value of the signal levels in the frequency bands at a point in time when variation of the signal levels in the frequency bands is minimum computed, and the mean value is detected as a background level. A knock characteristic parameter, which represents the characteristics of knock, is computed based on the extracted signal levels in the frequency bands. The knock characteristic parameter is compared with the background level to obtain a knock intensity. If the knock intensity is equal to or greater than a knock determination value, it is determined that knock that exceeds a permissible level is occurring. If the knock intensity is less than the knock determination value, it is determined that knock that exceeds the permissible level is not occurring. This configuration permits the background level of the output of the knock sensors to be accurately detected without being influenced by knock or noise.
    • 对于多个频带中的每一个,在滤波处理部分提取由爆震传感器输出的振动波形信号的信号电平。 在频带中的信号电平的变化被计算的时间点的频带中的信号电平的平均值被计算,并且平均值被检测为背景电平。 基于在频带中提取的信号电平来计算表示爆震特性的爆震特征参数。 将敲击特征参数与背景水平进行比较以获得爆震强度。 如果敲击强度等于或大于爆震判定值,则确定发生超过允许水平的爆震。 如果爆震强度小于爆震判定值,则确定没有发生超过允许水平的爆震。 该配置允许在不受敲击或噪声影响的情况下精确地检测爆震传感器的输出的背景水平。
    • 60. 发明授权
    • Apparatus and method for controlling internal combustion engine
    • 内燃机控制装置及方法
    • US07054735B2
    • 2006-05-30
    • US11106568
    • 2005-04-15
    • Satoshi MasudaMasaomi InoueYuichi TakemuraKenji KasashimaRihito Kaneko
    • Satoshi MasudaMasaomi InoueYuichi TakemuraKenji KasashimaRihito Kaneko
    • G01L23/22F02D45/00
    • F02D35/027G01L23/225
    • An ECU obtains two data values (a peak value and a waveform correlation coefficient) that show the characteristics of a knock from the output of a knock sensor. The ECO approximately obtains the mean of each data value by smoothing each data value, and approximately obtains a variance by smoothing the squared deviation between the data values before and after the smoothing process. The ECU then computes the square root of the variance to approximately obtain a standard deviation. The ECU normalizes each data value using the mean and the standard deviation, obtains a distribution of the normalized two data values, and calculates a correlation coefficient that shows the correlation between the obtained distribution and an ideal knock distribution. Based on the correlation coefficient, the ECU corrects a knock determination threshold value. Therefore, the mean and the standard deviation of the data values are computed with a small RAM capacity.
    • ECU从爆震传感器的输出中获得表示敲击特性的两个数据值(峰值和波形相关系数)。 ECO通过平滑每个数据值大致获得每个数据值的平均值,并且通过平滑平滑处理之前和之后的数据值之间的平方偏差近似地获得方差。 ECU然后计算方差的平方根,大致获得标准偏差。 ECU使用平均值和标准偏差对每个数据值进行归一化,获得归一化的两个数据值的分布,并计算显示所获得的分布与理想的爆震分布之间的相关性的相关系数。 基于相关系数,ECU校正爆震判定阈值。 因此,以小的RAM容量计算数据值的平均值和标准偏差。