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    • 82. 发明授权
    • Auxiliary air flow control system for internal combustion engines
    • 内燃机辅助气流控制系统
    • US5651342A
    • 1997-07-29
    • US667273
    • 1996-06-20
    • Kenji Hara
    • Kenji Hara
    • F02M69/32F02D41/08F02M3/00
    • F02M3/00
    • An auxiliary air flow control system for an internal combustion engine, comprises an auxiliary air passage arranged parallel to an intake-air passage and bypassing a throttle valve disposed in the intake-air passage for diverting a part of intake air from an upstream side of the throttle valve to a downstream side of the throttle valve, an auxiliary air flow control valve disposed in the auxiliary air passage and responsive to operating conditions of the engine for producing therethrough a controlled flow rate of the auxiliary air, and an auxiliary air flow constricting valve sensitive to an engine coolant temperature for constricting the controlled flow rate of the auxiliary air from the auxiliary air flow control valve. The auxiliary air flow constricting vane has a substantially V-shaped coolant-temperature versus auxiliary air-flow constriction characteristic. According to this characteristic, the flow rate of auxiliary air is gradually decreased owing to a coolant-temperature rise when the coolant temperature is below a first predetermined temperature, and gradually increased owing to the temperature rise when the coolant temperature is below a second predetermined temperature, and held constant within a predetermined temperature range of the first and second predetermined temperatures.
    • 一种用于内燃机的辅助空气流量控制系统,包括与进气通道平行布置的辅助空气通道,并且绕过设置在进气通道中的节气门,用于将一部分进气从上游侧 节流阀到节流阀的下游侧,辅助空气流量控制阀设置在辅助空气通道中,并且响应于发动机的操作条件通过其产生受控的辅助空气的流量,以及辅助空气流限制阀 对发动机冷却剂温度敏感,用于收缩来自辅助空气流量控制阀的辅助空气的受控流量。 辅助气流收缩叶片具有大致V形的冷却剂 - 温度与辅助气流收缩特性。 根据该特征,当冷却剂温度低于第一预定温度时,辅助空气的流量由于冷却剂温度升高而逐渐降低,并且当冷却剂温度低于第二预定温度时由于温度升高而逐渐增加 并且在第一和第二预定温度的预定温度范围内保持恒定。
    • 87. 发明授权
    • Semiconductor device and ultrasonic diagnostic apparatus using the same
    • 半导体装置及其使用的超声波诊断装置
    • US09190992B2
    • 2015-11-17
    • US13282882
    • 2011-10-27
    • Kenji HaraJunichi Sakano
    • Kenji HaraJunichi Sakano
    • H03K17/687H03K17/06H03K17/081H03K17/10
    • H03K17/063A61B8/4483H03K17/08104H03K17/102H03K17/6874
    • The present invention provides a semiconductor device of a bi-directional analog switch having a high linearity and a low electric power loss. An ultrasonic diagnostic apparatus having a high degree of detection accuracy, comprising the semiconductor device, is also provided. A semiconductor device of a bi-directional analog switch, comprising a switch circuit capable of switching ON or OFF bi-directionally, and built-in driving circuits for the switch circuit, wherein the driving circuit is connected to first and second power supplies, and a first power supply voltage is higher than a maximum voltage of a signal applied to an input/output terminal of the switch circuit, a second power supply voltage is lower than a minimum voltage of a signal applied to an input/output terminal of the switch circuit, and the driving circuit comprises a Zener diode and a p-type MOSFET connected in series between the first power supply and the switch circuit.
    • 本发明提供具有高线性度和低功率损耗的双向模拟开关的半导体器件。 还提供了包括半导体器件的具有高检测精度的超声波诊断装置。 一种双向模拟开关的半导体器件,包括能够双向接通或断开的开关电路和用于开关电路的内置驱动电路,其中驱动电路连接到第一和第二电源,以及 第一电源电压高于施加到开关电路的输入/输出端子的信号的最大电压,第二电源电压低于施加到开关的输入/输出端子的信号的最小电压 电路,并且驱动电路包括串联连接在第一电源和开关电路之间的齐纳二极管和p型MOSFET。
    • 89. 发明申请
    • INFORMATION PROCESSING APPARATUS AND METHOD OF CONTROLLING SAME
    • 信息处理装置及其控制方法
    • US20130007367A1
    • 2013-01-03
    • US13611263
    • 2012-09-12
    • Kenji Hara
    • Kenji Hara
    • G06F12/08
    • G06F12/0866G06F12/0284G06F2212/284G06F2212/311
    • Disclosed is an information processing apparatus equipped with first and second CPUs, as well as a method of controlling this apparatus. When the first CPU launches an operating system for managing a virtual memory area that includes a first cache area for a device, the first CPU generates specification data, which indicates the corresponding relationship between the first cache and a second cache for the device and provided in a main memory, and transfers the specification data to the second CPU. In accordance with the specification data, the second CPU transfers data, which has been stored in the device, to a physical memory corresponding to a cache to which the first CPU refers. As a result, the first CPU accesses the first cache area is thereby capable of accessing the device at high speed.
    • 公开了一种配备有第一和第二CPU的信息处理装置,以及控制该装置的方法。 当第一CPU启动用于管理包括用于设备的第一高速缓存区域的虚拟存储器区域的操作系统时,第一CPU产生指定数据,其指示用于该设备的第一高速缓存和第二高速缓存之间的对应关系, 主存储器,并将规范数据传送到第二CPU。 根据规格数据,第二CPU将已经存储在设备中的数据传送到与第一CPU参考的高速缓存相对应的物理存储器。 结果,第一CPU访问第一高速缓存区域由此能够高速地访问设备。
    • 90. 发明申请
    • IMAGE FORMING APPARATUS THAT SHIFTS TO STATE WHERE QUICK ACTIVATION IS POSSIBLE, METHOD OF CONTROLLING THE SAME, AND STORAGE MEDIUM
    • 快速启动状态变化的图像形成装置,控制方法和存储介质
    • US20120320402A1
    • 2012-12-20
    • US13495464
    • 2012-06-13
    • Ryotaro OkuzonoKenji Hara
    • Ryotaro OkuzonoKenji Hara
    • G06K15/02
    • G03G15/80B41J23/32G03G15/5004
    • An image forming apparatus capable of shifting to a state where quick activation thereof can be performed in a shorter time period when a power switch is turned off. When the off operation of the power switch is detected, a first state is stored, and when the on operation of the power switch is detected next, the state of the image forming apparatus is shifted to a second state from which the image forming apparatus can return to the first state. When the state of the image forming apparatus is shifted to the second state, time starts to be measured. When the on operation of the power switch is detected in the second state, the value of the measured time is acquired. The image forming apparatus is caused to return to the stored first state depending on the value of the measured time.
    • 一种图像形成装置,其能够在电源开关被切断时在更短的时间内转换到能够进行快速启动的状态。 当检测到电源开关的关闭操作时,存储第一状态,并且当接下来检测到电源开关的接通操作时,图像形成装置的状态被转换到图像形成装置可以从第二状态 回到第一个状态。 当图像形成装置的状态转移到第二状态时,开始测量时间。 当在第二状态下检测到电源开关的接通操作时,获取测量时间的值。 使图像形成装置根据测量时间的值返回到所存储的第一状态。