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    • 1. 发明专利
    • Solid sliding member injection method and solid sliding member injection device
    • 固体滑动构件注入方法和固体滑动构件注入装置
    • JP2011224947A
    • 2011-11-10
    • JP2010108732
    • 2010-04-15
    • Hiroaki Miyamoto宏晃 宮本
    • MIYAMOTO HIROAKI
    • B29C45/14F16C33/10
    • PROBLEM TO BE SOLVED: To provide a solid sliding member injection method which uniformly injects solid sliding member between two components, by solving the following conventional problems:when a solid sliding member is inserted into a small gap formed, for example, between the housing of a rod end and an inner wheel by means of a hydraulic press or the like, it is difficult to uniformly insert the member in the gap and to control press-fitting force, thereby damaging or breaking the product due to strong press-fitting force.SOLUTION: The solid sliding member 6 is heated to a melting temperature. The heated solid sliding member is pressurized by an injection molding method or transfer press or the like, and is injected into the gap between the two components through the hole 15 opened in one of the components constituting the product. The two components are fixed by a sleeve 9 and are fitted into the recess of a receiving pan 12. The melt solid sliding member passes through a nozzle 7 and is injected into the gap of the two components. Thereby, the sliding resistance and the rotational movement of the products is uniformed, while maintaining stability for a long time.
    • 要解决的问题:提供一种固体滑动构件注射方法,其通过解决以下常规问题将固体滑动构件均匀地注入两个部件之间:当将固体滑动构件插入形成的小间隙中时,例如介于 通过液压机等的杆端和内轮的壳体,难以将构件均匀地插入间隙中并且控制压配合力,从而由于强的冲压力而损坏或破坏产品, 配合力。 解决方案:将固体滑动构件6加热至熔融温度。 加热的固体滑动部件通过注射成型法或转印压力机等加压,并且通过在构成产品的构件中的一个部件中打开的孔15注入到两个部件之间的间隙中。 两个部件通过套筒9固定,并被装配到接收盘12的凹部中。熔体固体滑动部件通过喷嘴7并被注入到两个部件的间隙中。 因此,产品的滑动阻力和旋转运动是均匀的,同时保持长时间的稳定性。 版权所有(C)2012,JPO&INPIT
    • 3. 发明申请
    • WIRELESS TRANSMISSION SYSTEM, WIRELESS TRANSMISSION METHOD, AND WIRELESS COMMUNICATION APPARATUS
    • 无线传输系统,无线传输方法和无线通信设备
    • US20140177435A1
    • 2014-06-26
    • US14115845
    • 2012-05-24
    • Hiroaki MiyamotoShinichi Morimoto
    • Hiroaki MiyamotoShinichi Morimoto
    • H04L12/24
    • H04L41/0668H04L69/40H04W72/1263
    • A wireless transmission system includes an active wireless communication apparatus, a standby wireless communication apparatus, and a selecting apparatus for switching an operation. The standby wireless communication apparatus receives a signal transmitted from an opposing apparatus. When the standby wireless communication apparatus detects a failure information indicating that a failure has occurred in the active wireless communication apparatus as a result of reception, the standby wireless communication apparatus performs notification that the failure has occurred in the active wireless communication apparatus. The selecting apparatus that has received the notification performs switch control for switching the operation. Accordingly, it is possible to continue communication in a short switching time in case of a failure while maintaining high frequency utilization, for example.
    • 无线传输系统包括有源无线通信装置,备用无线通信装置和用于切换操作的选择装置。 备用无线通信装置接收从相对设备发送的信号。 备用无线通信装置在待机无线通信装置检测出作为接收结果的有源无线通信装置发生故障的故障信息时,在有源无线通信装置中进行发生故障的通知。 已经接收到通知的选择装置执行用于切换操作的切换控制。 因此,例如,在保持高频率利用的情况下,在故障的情况下,可以在短的切换时间内继续通信。
    • 7. 发明申请
    • Memory construction apparatus
    • 记忆构造装置
    • US20070180213A1
    • 2007-08-02
    • US11698856
    • 2007-01-29
    • Noritoshi YamakawaHiroaki MiyamotoYoshikatsu KouharaAkitsugu NakayamaKouichi Tanda
    • Noritoshi YamakawaHiroaki MiyamotoYoshikatsu KouharaAkitsugu NakayamaKouichi Tanda
    • G06F12/00
    • G06F17/505
    • A memory construction apparatus for automatically forming a logical memory space, thereby making it possible to design an integrated circuit efficiently. A logical memory construction-processing section reads several kinds of physical memories and registers prepared in advance as libraries, generates candidates for each logical memory, by combining only the physical memories or only the registers, or both the physical memories and the registers, with each other, so as to construct the logical memory that satisfies a logical conditions defining a memory space, and selects highest priority candidates for the logical memories from the candidates according to priorities. An optimum construction extraction-processing section extracts optimum logical memories satisfying the respective logical conditions from the highest priority candidates such that the limit numbers of usable physical memories and usable registers are satisfied. A circuit description-processing section executes circuit description by using the physical memories and the registers that construct each of the extracted optimum logical memories, to thereby generate a circuit description file.
    • 一种用于自动形成逻辑存储器空间的存储器构造装置,从而可以有效地设计集成电路。 逻辑存储器构造处理部分读取作为库预先准备的几种物理存储器和寄存器,通过仅结合物理存储器或仅存储寄存器或物理存储器和寄存器两者来产生每个逻辑存储器的候选,每个 构成满足定义存储器空间的逻辑条件的逻辑存储器,根据优先级从候选中选择逻辑存储器的最高优先级候选。 最佳构造提取处理部分从最高优先级候选中提取满足各个逻辑条件的最佳逻辑存储器,使得满足可用物理存储器和可用寄存器的限制数量。 电路描述处理部分通过使用构成每个提取的最佳逻辑存储器的物理存储器和寄存器来执行电路描述,从而生成电路描述文件。