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    • 31. 发明授权
    • Control system for ignition timing of engine
    • 发动机点火正时控制系统
    • US4068634A
    • 1978-01-17
    • US602436
    • 1975-08-06
    • Minoru TanakaYouji IshiiTouru YagiSyoichi Otaka
    • Minoru TanakaYouji IshiiTouru YagiSyoichi Otaka
    • F02P5/10F02P5/04
    • F02P5/103F02P5/106
    • Timing control mechanism for an internal combustion engine employs a vacuum chamber connected to a solenoid valve operated by a thermal switch responsive to engine temperature. The solenoid valve connects the vacuum chamber to one of two vacuum outlets connected to the engine intake passage. The first of the outlets is positioned adjacent and upstream from the throttle valve and the second of the outlets is positioned downstream from the throttle valve. The passage from the first outlet to the solenoid valve contains orifice means to restrict flow and also contains a check valve in parallel with the orifice means to permit flow toward the solenoid valve. The passage from the second vacuum outlet contains a check valve preventing flow toward the solenoid valve.
    • 用于内燃机的定时控制机构采用根据发动机温度连接到由热开关操作的电磁阀的真空室。 电磁阀将真空室连接到连接到发动机进气通道的两个真空出口之一。 出口中的第一个定位在节流阀的邻近和上游,并且第二出口位于节流阀的下游。 从第一出口到电磁阀的通道包含用于限制流量的孔口装置,并且还包含与孔口装置平行的止回阀,以允许流向电磁阀。 来自第二真空出口的通道包含防止向电磁阀流动的止回阀。
    • 38. 发明申请
    • COMMUNICATION APPARATUS, SYSTEM, METHOD, AND RECORDING MEDIUM OF PROGRAM
    • 通信设备,系统,方法和程序记录介质
    • US20120072607A1
    • 2012-03-22
    • US13234322
    • 2011-09-16
    • Takahiro KAWASHIMAMinoru Tanaka
    • Takahiro KAWASHIMAMinoru Tanaka
    • G06F15/16
    • H04L67/32H04L45/122H04L67/1097H04L69/18
    • A communication apparatus including a memory, a processor, and a communication interface, wherein the memory stores a number of hops on a communication route from the communication apparatus to another communication apparatus, the processor selects from at least two communication protocols a communication protocol having a shorter transfer time than another communication protocol, where the transfer time is predicted based on the number of hops on the communication route from the communication apparatus to the other communication apparatus and a data size of the data, and controls transmission of the data using the selected communication protocol, and the communication interface transmits the data to the other communication apparatus based on the control of the processor.
    • 一种包括存储器,处理器和通信接口的通信装置,其中,所述存储器存储从通信装置到另一通信装置的通信路由上的跳数,所述处理器从至少两个通信协议中选择具有 基于从通信装置到其他通信装置的通信路由上的跳数预测传输时间和数据的数据大小,传送时间比其他通信协议短,并且控制使用所选择的数据的数据传输 通信协议,并且通信接口基于处理器的控制将数据发送到另一通信装置。
    • 40. 发明申请
    • BLOOD RESERVOIR
    • US20110118648A1
    • 2011-05-19
    • US12675053
    • 2008-08-21
    • Yutaka KatsunoMinoru Tanaka
    • Yutaka KatsunoMinoru Tanaka
    • A61M1/36
    • A61M1/3627A61M1/3632
    • A conduit tube (90) that communicates with an intracardiac blood inflow port (50) and a liquid medicine injection port (72) and allows blood from the intracardiac blood inflow port and a liquid medicine from the liquid medicine injection port to flow into a cardiotomy section (2) is inserted from above downward in the cardiotomy section 2. A blood flow channel (93) for the flow of blood and a liquid medicine flow channel (95) for the flow of a liquid medicine are formed independently of each other in the conduit tube. With respect to the vertical direction, the lower end of a blood conduit tube portion (94) that forms the blood flow channel is located at a lower position than the lower end of a liquid medicine conduit tube portion (96) that forms the liquid medicine flow channel. This prevents the generation of negative pressure in the liquid medicine flow channel due to the flow of blood. It also reduces the resistance to the inflow of a liquid medicine into the cardiotomy section.
    • 与心内血液流入口(50)连通的导管(90)和液体药剂注入口(72),使来自心内血液流入口的血液和来自药液注入口的药液流入心切开 从心脏切开部2的下方向下方插入截面(2)。另外,血液流动用的血流通道(93)和液体药液的药液流路(95)彼此独立地形成 导管。 相对于上下方向,形成血液流路的血液导管部(94)的下端位于比形成液体药物的药液导管部(96)的下端更低的位置 流通道。 这防止由于血液流动而在液体药物流动通道中产生负压。 它还降低了液体药物进入心切开术部分的流入阻力。