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    • 81. 发明授权
    • Voltage sensing device for an individual cell of a group of battery cells
    • 用于一组电池单元的单个电池的电压感测装置
    • US08120209B2
    • 2012-02-21
    • US12553404
    • 2009-09-03
    • Toru TanakaAkio OguraKazuya OmagariNariaki Ogasawara
    • Toru TanakaAkio OguraKazuya OmagariNariaki Ogasawara
    • H01H31/10H01H33/59H01H47/00H01H85/46H01H19/14
    • H02J7/0021G01R19/0084G01R31/3658Y02T10/7055Y10T307/685Y10T307/74Y10T307/747Y10T307/76
    • A voltage sensing device with which high-precision voltage sensing is possible without the need to obtain a unique correction constant for each device. A pair of voltage input nodes NCk and NCk-1 is selected from voltage input nodes NC0-NCn in switch part 10, and they are connected to sensing input nodes NA and NB in two types of patterns with different polarity (forward connection, reverse connection). Sensing input nodes NA and NB are held at reference potential Vm by voltage sensing part 20, and current Ina and Inb corresponding to the voltage at voltage input nodes NCk and NCk-1 flows to input resistors RIk and RIk-1. Currents Ina and Inb are synthesized at different ratios in voltage sensing part 20, and sensed voltage signal S20 is generated according to the synthesized current Ic. Sensed voltage data S40 with low error is generated according to the difference between the two sensed voltage signals S20 generated in the two connection patterns.
    • 一种电压感测装置,可以进行高精度电压感测,而不需要为每个装置获得唯一的校正常数。 从开关部分10中的电压输入节点NC0-NCn选择一对电压输入节点NCk和NCk-1,它们以两种不同极性的模式连接到感测输入节点NA和NB(正向连接,反向连接 )。 感测输入节点NA和NB通过电压检测部分20保持在参考电位Vm,并且对应于电压输入节点NCk和NCk-1处的电压的电流Ina和Inb流入输入电阻器RIk和RIk-1。 电流Ina和Inb在电压感测部分20中以不同的比率合成,并且根据合成电流Ic产生感测的电压信号S20。 根据在两个连接图案中生成的两个检测电压信号S20之间的差异,产生具有低误差的感测电压数据S40。
    • 82. 发明申请
    • STORAGE SYSTEM
    • 存储系统
    • US20100205371A1
    • 2010-08-12
    • US12439731
    • 2009-02-09
    • Toru TanakaYuichi TaguchiNoriko Nakajima
    • Toru TanakaYuichi TaguchiNoriko Nakajima
    • G06F12/00
    • G06F3/0653G06F3/0605G06F3/061G06F3/067G06F11/32G06F11/3419G06F11/3452G06F11/3485
    • The threshold excess is judged by a peak value, and therefore, since the threshold excess is judged by a value of high-workload IO of backup or the like that is designed on the assumption that the workload of storage is high, whether the performance limit has been reached remains uncertain. Furthermore, although an optimistic prediction trend with low workload trend and a pessimistic prediction trend with high pessimistic workload trend are presented, LUs that require improvement remain uncertain. Moreover, the time to improve the configuration and the effect of the improvement remain uncertain, and therefore, an improved configuration cannot be determined.Configuration information, performance information, and operation information are acquired from a storage, a performance limit excess time is predicted based on the performance information excluding LUs exceeding the performance trend, and an optimal improved configuration is determined from the performance limit after improvement and the time required for the improvement.
    • 阈值过剩由峰值判断,因此,由于通过假设存储量高的设计设计的备份等的高工作负载IO的值来判断阈值过剩,因此性能极限 已经达到了不确定性。 此外,虽然呈现出低工作量趋势的乐观预测趋势,以及悲观的工作量倾向悲观的预测趋势,但需要改进的LU仍然不确定。 此外,改善配置的时间和改进的效果仍然不确定,因此,不能确定改进的配置。 从存储器获取配置信息,性能信息和操作信息,基于不超过性能趋势的LU的性能信息来预测性能限制超时,并且根据改进后的性能限制和时间来确定最佳改进配置 需要改进。
    • 83. 发明授权
    • Control apparatus for an internal combustion engine
    • 一种用于内燃机的控制装置
    • US07681540B2
    • 2010-03-23
    • US12146926
    • 2008-06-26
    • Shinji WatanabeToru TanakaTatsuhiko Takahashi
    • Shinji WatanabeToru TanakaTatsuhiko Takahashi
    • F01L1/34
    • F02D35/0007F01L1/3442F01L2001/3443F01L2800/05F02D41/062F02D2041/001F02D2041/1409F02D2041/1422
    • Provided is a control apparatus for an internal combustion engine which controls the internal combustion engine in such a manner as to prevent excessive overshoot of an actual phase angle at a time of phase angle feedback control. The control apparatus for an internal combustion engine includes: a unit for detecting an actual phase angle of a camshaft based on a crank angle signal and a cam angle signal; a unit for setting a target phase angle of the camshaft based on an operational state; and a unit for performing phase angle feedback control calculation such that the actual phase angle coincides with the target phase angle, to calculate an amount of operation for the hydraulic pressure control solenoid valve, in which: the phase angle feedback control calculation is started for a first time after a KEY is turned ON with an initial value of an integral term set to a predetermined value; the phase angle feedback control calculation is performed using a control gain obtained by multiplying a control gain at a time of normal control when a control difference is equal to or larger than a preset value during the phase angle feedback control; and the phase angle feedback control calculation is performed using the control gain at the time of normal control when the control difference is smaller than the preset value during the phase angle feedback control.
    • 提供一种用于内燃机的控制装置,其以相位角反馈控制时的方式控制内燃机以防止实际相位角的过度超调。 用于内燃机的控制装置包括:用于基于曲柄角信号和凸轮角信号检测凸轮轴的实际相位角的单元; 用于基于操作状态设定所述凸轮轴的目标相位角的单元; 以及用于执行相位角反馈控制计算的单元,使得实际相位角与目标相位角一致,以计算液压控制电磁阀的操作量,其中:开始相位角反馈控制计算 首先在将KEY设置为预定值的积分项的初始值开启之后, 当在相位角反馈控制期间当控制差等于或大于预设值时,使用通过将正常控制时的控制增益相乘而获得的控制增益执行相位角反馈控制计算; 并且在相位角反馈控制期间当控制差小于预设值时,使用正常控制时的控制增益来执行相位角反馈控制计算。
    • 84. 发明申请
    • CONTROL APPARATUS FOR AN INTERNAL COMBUSTION ENGINE
    • 内燃机控制装置
    • US20090125216A1
    • 2009-05-14
    • US12146926
    • 2008-06-26
    • Shinji WATANABEToru TanakaTatsuhiko Takahashi
    • Shinji WATANABEToru TanakaTatsuhiko Takahashi
    • F02D45/00
    • F02D35/0007F01L1/3442F01L2001/3443F01L2800/05F02D41/062F02D2041/001F02D2041/1409F02D2041/1422
    • Provided is a control apparatus for an internal combustion engine which controls the internal combustion engine in such a manner as to prevent excessive overshoot of an actual phase angle at a time of phase angle feedback control. The control apparatus for an internal combustion engine includes: a unit for detecting an actual phase angle of a camshaft based on a crank angle signal and a cam angle signal; a unit for setting a target phase angle of the camshaft based on an operational state; and a unit for performing phase angle feedback control calculation such that the actual phase angle coincides with the target phase angle, to calculate an amount of operation for the hydraulic pressure control solenoid valve, in which: the phase angle feedback control calculation is started for a first time after a KEY is turned ON with an initial value of an integral term set to a predetermined value; the phase angle feedback control calculation is performed using a control gain obtained by multiplying a control gain at a time of normal control when a control difference is equal to or larger than a preset value during the phase angle feedback control; and the phase angle feedback control calculation is performed using the control gain at the time of normal control when the control difference is smaller than the preset value during the phase angle feedback control.
    • 提供一种用于内燃机的控制装置,其以相位角反馈控制时的方式控制内燃机以防止实际相位角的过度超调。 用于内燃机的控制装置包括:用于基于曲柄角信号和凸轮角信号检测凸轮轴的实际相位角的单元; 用于基于操作状态设定所述凸轮轴的目标相位角的单元; 以及用于执行相位角反馈控制计算的单元,使得实际相位角与目标相位角一致,以计算液压控制电磁阀的操作量,其中:开始相位角反馈控制计算 首先在将KEY设置为预定值的积分项的初始值开启之后, 当在相位角反馈控制期间当控制差等于或大于预设值时,使用通过将正常控制时的控制增益相乘而获得的控制增益执行相位角反馈控制计算; 并且在相位角反馈控制期间当控制差小于预设值时,使用正常控制时的控制增益来执行相位角反馈控制计算。
    • 86. 发明授权
    • Engine controller
    • 发动机控制器
    • US07415343B2
    • 2008-08-19
    • US11797572
    • 2007-05-04
    • Yuji ZushiToru TanakaMichihisa YokonoAkihiro FukuiYusuke Matsuda
    • Yuji ZushiToru TanakaMichihisa YokonoAkihiro FukuiYusuke Matsuda
    • F02D45/00G06F19/00
    • G01R31/025F01N2560/02F02D41/1454F02D41/222G01R31/007G01R31/2829Y02T10/40
    • Respective positive terminal electric potentials of exhaust gas sensors are sequentially selectively inputted to an analog input terminal of a multi-channel AD converter through a multiplexer. An offset voltage is applied to respective negative terminals of the exhaust gas sensors. This offset voltage is inputted to another input terminal of the multi-channel AD converter. A microprocessor detects a generating voltage of the exhaust gas sensors by the difference between a digital converting value of the positive terminal electric potential and a digital converting value of the negative terminal electric potential. The microprocessor also individually judges that each of the digital converting values is excessively small and excessively large. Thus, the microprocessor judges the existence of ground, sky short circuit and disconnection abnormalities of the negative terminal and the positive terminal.
    • 废气传感器的正极端子电位通过多路复用器依次选择性地输入到多通道AD转换器的模拟输入端。 对排气传感器的各负极施加偏移电压。 该偏移电压被输入到多通道AD转换器的另一个输入端。 微处理器通过正极端子电位的数字转换值与负极端子电位的数字转换值之差来检测废气传感器的发电电压。 微处理器还单独地判断每个数字转换值过小和过大。 因此,微处理器判断负极和正极端子的接地,天线短路和断线异常的存在。
    • 87. 发明申请
    • Systems and methods for improved memory scan testability
    • 改进内存扫描可测性的系统和方法
    • US20070168776A1
    • 2007-07-19
    • US11243898
    • 2005-10-04
    • William GroseLonnie LambertJeanne Krayer PitzToru Tanaka
    • William GroseLonnie LambertJeanne Krayer PitzToru Tanaka
    • G11C29/00
    • G11C29/12G11C16/04G11C29/48G11C2029/3202
    • Systems, methods and circuits for implementing efficient device testing. As one example, a method is disclosed for testing a device that includes both a digital and analog portion. In some cases, the digital portion includes a plurality of latch devices, and the analog portion includes a plurality of memory cells and a plurality of selector devices. Each of the plurality of selector devices is electrically coupled to a respective one of the memory cells, is at least indirectly coupled to one of the plurality of latch, devices, and is controlled by a selector input. In the method, a load clock is applied to the plurality of latch devices such that a pattern is loaded into the plurality of latch devices. The selector input is asserted such that a derivative of the pattern is received by the plurality of selectors and returned to the plurality of latch devices. A system clock is applied to the plurality of latch devices such that the derivative of the pattern is loaded into the plurality of latch devices.
    • 用于实现高效设备测试的系统,方法和电路。 作为一个示例,公开了一种用于测试包括数字和模拟部分的设备的方法。 在一些情况下,数字部分包括多个锁存装置,并且模拟部分包括多个存储器单元和多个选择器装置。 多个选择器装置中的每一个电耦合到相应的一个存储单元,至少间接耦合到多个锁存器件中的一个,并由选择器输入端控制。 在该方法中,将负载时钟施加到多个锁存装置,使得模式被加载到多个锁存装置中。 选择器输入被断言,使得图案的导数被多个选择器接收并返回到多个锁存装置。 系统时钟被施加到多个锁存装置,使得图案的导数被加载到多个锁存装置中。
    • 89. 发明申请
    • Soil cleaning process
    • 土壤清洗过程
    • US20050207954A1
    • 2005-09-22
    • US11111789
    • 2005-04-22
    • Toru TanakaHiroshi Horiuchi
    • Toru TanakaHiroshi Horiuchi
    • B09C1/02C22B3/04C22B3/26C22B7/00
    • B09C1/02C22B3/0005C22B7/006Y02P10/234
    • A process for cleaning contaminated soil containing a heavy metal, comprising: (a) an extraction step where extracting the heavy metal contained in the soil as a heavy metal ion by bringing an extracting reagent into contact with the soil to obtain an extract “a” containing soil and the heavy metal ion; (b) a solid-liquid separation step where carrying out the solid-liquid separation of the extract “a” to obtain cleaned soil and an extract “b” containing the heavy metal ion; (c) a precipitation step where adjusting the pH of the extract “b” to 3 or more in the presence of an iron ion to precipitate the heavy metal together with ion so as to obtain an extract “c” containing iron and heavy metal precipitates; and (d) a heavy metal recovery step where foaming the extract “c” in the presence of a surfactant and collecting the iron and heavy metal precipitates by bubbles to recover them. The process can remove a heavy metal from the polluted soil containing the heavy metal efficiently.
    • 一种清洗含有重金属的污染土壤的方法,包括:(a)提取步骤,其中通过使提取试剂与土壤接触来提取土壤中包含的重金属为重金属离子,以获得提取物“a” 含有土壤和重金属离子; (b)固液分离步骤,其中进行提取物“a”的固液分离以获得清洁的土壤和含有重金属离子的提取物“b”; (c)沉淀步骤,其中在铁离子存在下将提取物“b”的pH调节至3以上以使沉淀物与离子一起沉淀,得到含有铁和重金属沉淀物的提取物“c” ; 和(d)重金属回收步骤,其中在表面活性剂存在下使提取物“c”发泡,并通过气泡收集铁和重金属沉淀物以回收它们。 该过程可以有效地从含有重金属的污染土壤中去除重金属。