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    • 45. 发明授权
    • Low traffic network management method using estimated process execution
time for manager-agent synchronization
    • 低流量网络管理方法使用经理代理同步的估计进程执行时间
    • US6041342A
    • 2000-03-21
    • US109874
    • 1998-07-02
    • Yasuhiro Yamaguchi
    • Yasuhiro Yamaguchi
    • G06F15/16G06F9/46G06F13/00G06F17/00H04L12/24H04L12/26
    • H04L41/046G06F2213/0038H04L41/0213
    • In a communication network wherein a management station is connected to at least one agent station, an execution request message is first transmitted from the management station to the agent station for requesting it to execute a process. In response, the agent station estimates a length of time taken to execute the process and transmits a first reply message to the management station, and subsequently estimates a length of time remaining to complete the execution of the process. The management station sets a timer according to the length of time contained in the first reply message and starts the timer. When the timer expires, the management station transmits a time request message to the agent station. In response, the agent station transmits a second reply message containing the remaining time. In response to the second reply message, the management station determines that the requested process has been executed if the remaining time is zero. If the remaining time is nonzero, the management station sets the timer according to the second reply message, starts it and determines that the requested process has been executed when the timer expires.
    • 在其中管理站连接到至少一个代理站的通信网络中,首先从管理站向代理站发送执行请求消息,以请求其执行进程。 作为响应,代理站估计执行该处理所花费的时间长度并向管理站发送第一应答消息,并且随后估计剩余的时间长度以完成该过程的执行。 管理站根据包含在第一应答消息中的时间长度设置定时器,并启动定时器。 当定时器到期时,管理站向代理站发送时间请求消息。 作为响应,代理站发送包含剩余时间的第二回复消息。 响应于第二应答消息,如果剩余时间为零,则管理站确定所请求的进程已被执行。 如果剩余时间非零,则管理站根据第二应答消息设置定时器,启动它并确定当定时器到期时所请求的进程已被执行。
    • 49. 发明授权
    • Processing apparatus and method for plasma processing
    • 等离子体处理装置和方法
    • US5134965A
    • 1992-08-04
    • US538150
    • 1990-06-14
    • Mitsuo TokudaJunzou AzumaToru OtsuboYasuhiro YamaguchiIchirou Sasaki
    • Mitsuo TokudaJunzou AzumaToru OtsuboYasuhiro YamaguchiIchirou Sasaki
    • C23C16/44C23C16/455C23C16/511H01J37/32
    • C23C16/45502C23C16/4558C23C16/511H01J37/32192H01J37/32247H01J37/32449H01J2237/3321
    • Disclosed is a plasma CVD apparatus and a method therefor, the apparatus comprising: a microwave generating portion; a coaxial cavity resonator for making a microwave supplied from the microwave generating portion resonate; a plurality of gas leading inlets provided in under portions of an axis of the cavity resonator and in peripheral wall portions of the cavity resonator for leading-in a supplied CVD gas; and a plasma generating chamber in which the CVD gas lead into the plasma generating chamber through the gas leading inlets and made to flow uniformly onto a surface of a substrate is subject to the microwave made intensive through resonance in the cavity resonator and radiated through a coupling plate so that uniform plasma is generated to thereby form a thin film on the surface of the substrate.Further disclosed is a plasma processing apparatus and a method therefor, the apparatus comprising; a plasma chamber for maintaining plasma generated in the inside of the plasma chamber so as to perform plasma processing; a first microwave accumulating and intensifying cavity resonance chamber connected with the plasma chamber through a first slot plate; a second microwave accumulating and intensifying cavity resonance chamber connected with the first cavity resonance chamber through a second slot plate parallel to the first slot plate; and a microwave generator for leading a microwave into the second cavity resonance chamber through a waveguide.
    • 公开了一种等离子体CVD装置及其方法,该装置包括:微波产生部分; 用于使从微波产生部供给的微波共振的同轴空腔谐振器; 设置在空腔谐振器的轴的下部的多个气体导入口和用于引入所提供的CVD气体的空腔谐振器的周壁部; 以及等离子体产生室,其中CVD气体通过气体引入入口进入等离子体发生室并使其均匀地流动到衬底的表面上受到微波在空腔谐振器中通过谐振强化并通过耦合辐射 使得产生均匀的等离子体,从而在衬底的表面上形成薄膜。 另外公开了一种等离子体处理装置及其方法,该装置包括: 等离子体室,用于保持等离子体室内部产生的等离子体,以进行等离子体处理; 通过第一槽板与等离子体室连接的第一微波积聚和增强腔共振腔; 第二微波积聚和增强腔谐振室,通过与第一槽板平行的第二槽板与第一空腔共振室连接; 以及微波发生器,用于通过波导将微波引导到第二腔谐振室。
    • 50. 发明授权
    • Cassette holding structure for a cassette tape player
    • 用于盒式磁带播放器的盒式磁带结构
    • US5097367A
    • 1992-03-17
    • US425409
    • 1989-10-23
    • Mitsuru IdaYasuhiro Yamaguchi
    • Mitsuru IdaYasuhiro Yamaguchi
    • G11B15/18G11B15/675G11B25/06
    • G11B25/063G11B15/1883G11B15/67584
    • A cassette tape player utilizes a tape cassette having apertures formed through one side wall of its casing to accept a magnetic head and a pinch roller. The cassette tape player has a body assembly on which the tape cassette is freely loaded or unloaded and a lid supported by the body assembly so as to be freely rotatable for closing and opening the cassette tape player. The tape cassette is inserted into a loading region of the body assembly by closing the lid. A head assembly chassis is supported by one side end portion of the cassette loading portion so that its moves together with the lid. The head assembly also supports a magnetic head holder and the pinch roller. The tape cassette is supported by securing the upper surface wall of the cassette casing by inserting cassette holding members into the pinch roller insertion openings of the tape cassette. These holding members which are substantially parallel to the inner top wall of the lid support one side of the upper surface wall of the tape cassette while spring members provide opposing pressure to the opposite side of the upper surface wall of the tape cassette. The holding member and spring member combination hold the tape cassette for loading in a compact arrangement to ensure efficient use of space in the cassette tape player.
    • 盒式磁带播放器利用具有通过其壳体的一个侧壁形成的孔的磁带盒来接纳磁头和压紧辊。 盒式磁带播放器具有主体组件,磁带盒可自由地装载或卸载,以及由主体组件支撑的盖子,以便可自由旋转以关闭和打开盒式磁带播放器。 通过关闭盖将带盒插入主体组件的装载区域中。 头组件底盘由盒装载部分的一个侧端部支撑,使得其与盖一起移动。 头部组件还支撑磁头支架和夹送辊。 通过将盒保持构件插入带盒的压紧辊插入口中来固定盒壳体的上表面壁来支撑带盒。 这些保持构件基本上平行于盖的内顶壁支撑着带盒的上表面壁的一侧,而弹簧构件向带盒的上表面壁的相对侧提供相反的压力。 保持构件和弹簧构件组合将盒式磁带保持在紧凑的布置中以确保有效利用盒式磁带播放器中的空间。