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    • 1. 发明授权
    • Facing material spray apparatus
    • 面料喷涂装置
    • US5196066A
    • 1993-03-23
    • US783416
    • 1991-10-28
    • Motoo KusudaHirokazu UedaHitoshi Masuda
    • Motoo KusudaHirokazu UedaHitoshi Masuda
    • B22C23/02B05B9/04B05B13/00B05B15/00
    • B05B15/003B05B9/0403
    • A facing material spray apparatus including a first tank for housing a facing material and regulating its concentration, first agitating means for agitating the facing material in the first tank, a second tank, for receiving the facing material from the first tank, provided in the vicinity of the first tank with its bottom positioned below the bottom of the first tank, second agitating means for agitating the facing material in the second tank, a connecting pipe for connecting the first and second tanks to each other and causing the facing material in the first tank to naturally flow into the second tank, a valve attached to the connecting pipe for opening and closing a facing material supply passage, a facing pump removably attached to the second tank for sucking the facing material in the second tank, a nozzle attached to the facing pump through a hose for spraying the sucked facing material on a mold, and a facing material receiving base provided in the vicinity of the second tank for receiving the facing material sprayed on the mold and recovering the received facing material to the second tank by virtue of its natural flow.
    • 一种面向材料喷涂装置,包括用于容纳面料并调节其浓度的第一罐,用于搅拌第一罐中的面料的第一搅拌装置,用于接收来自第一罐的面向材料的第二罐,设置在附近 所述第一罐的底部位于所述第一罐的底部下方的第二搅拌装置,用于搅拌所述第二罐中的所述面料的第二搅拌装置,用于将所述第一罐和所述第二罐相互连接并使所述第一罐中的所述面材料 罐自然流入第二罐,附接到连接管的阀,用于打开和关闭面向材料供给通道;可拆卸地附接到第二罐的面对泵,用于吸入第二罐中的面料,附接到第二罐的喷嘴 通过软管将吸入的面料材料喷射到模具上,以及设置在第二罐体f附近的面对材料容纳基座 或接收喷射在模具上的面料,并且通过其自然流动将接收到的面材料回收到第二罐。
    • 2. 发明授权
    • Optical cross-connect device
    • 光交叉设备
    • US07013060B2
    • 2006-03-14
    • US11182143
    • 2005-07-15
    • Teruya SugiyamaMitsuteru InoueDong-Hak ShinHitoshi Masuda
    • Teruya SugiyamaMitsuteru InoueDong-Hak ShinHitoshi Masuda
    • G02B6/26G02B6/42
    • G02B5/32G02B6/3556G02B6/356G02F1/0338G11C13/042H04Q11/0005H04Q2011/0028H04Q2011/0035H04Q2011/0039
    • An optic switch for cross-connecting input light signals incoming from inlet fiber cables to outlet fiber cables is disclosed that makes use of a holographic filter (5) having a series of preformed different speckle patterns, each in the form of a hologram (H1, H2, . . . ). Associated with input light signals guided past respective inlet passages (4in) of a multimode waveguide (4), different speckle patterns are formed by applying different control voltages across respective electrode pairs (10, 10a) provided thereon. These speckle patterns past a single outlet passage (4out) of the multimode waveguide (4) into which the inlet passages (4in) converge are joined together and enter the holographic filter (5) in which an input light signal is selectively switched, addressed and cross-connected to an outlet waveguide (2) through a region thereof where a formed speckle pattern coincides with a preformed speckle pattern. The multi mode waveguides (4) is formed in, e.g., a LiNbO3 photorefractive substrate (3).
    • 公开了一种用于交叉连接从入口光缆到出口光纤电缆的输入光信号的光开关,其利用具有一系列预制的不同散斑图案的全息滤光片(5),每个都具有全息图形式(H < SUB> 1,H 2,...,...)。 与通过多模波导(4)的相应入口通道(4 in)引导的输入光信号相关联,通过在其上提供的各个电极对(10,10a)施加不同的控制电压来形成不同的散斑图案。 通过入口通道(4 in)会聚在其中的多模波导(4)的单个出口通道(4 out)上的这些斑点图案被连接在一起并进入选择性地切换输入光信号的全息滤光器(5) 寻址并通过其出口波导(2)交叉连接,其中形成的斑点图案与预先形成的斑点图案重合。 多模波导(4)形成在例如LiNbO 3光折射基板(3)中。
    • 3. 发明授权
    • Extendable telephone
    • 可扩展电话
    • US5335274A
    • 1994-08-02
    • US843460
    • 1992-02-28
    • Hitoshi MasudaMasataka SuzukiMasataka OhnoKazuyoshi KobayashiHiromitsu Nakamura
    • Hitoshi MasudaMasataka SuzukiMasataka OhnoKazuyoshi KobayashiHiromitsu Nakamura
    • H04M1/02H04M1/03H04M1/00
    • H04M1/0237H04M1/0202H04M1/03
    • An improved extendible telephone having a main casing incorporating a receiver and an auxiliary casing incorporating a transmitter and dial keys and slidably mounted on the main casing. Guide grooves are formed in each of the slide surface of the main casing and a back plate which is fastened to the auxiliary casing. Rail members are fitted in the slide surface of the main casing. The auxiliary casing is slidable along the rail members toward and away from an extended position while being guided by the guide grooves. The rail members each has an angled lug while the back plate is formed with two spaced pairs of angled recesses. When the auxiliary casing is slid to the extended position or a contracted position, the angled lugs selectively mate with either of the two pairs of angled recesses to lock the auxiliary casing in position.
    • 一种改进的可延伸电话,其具有包括接收器的主壳体和包括发射器和拨号键并可滑动地安装在主壳体上的辅助壳体。 引导槽形成在主壳体的每个滑动表面和紧固到辅助壳体上的后板。 导轨构件安装在主壳体的滑动面上。 辅助壳体可以沿着轨道构件朝向和远离延伸位置滑动,同时被引导槽引导。 轨道构件每个都具有倾斜的凸耳,而后板形成有两个间隔开的一对成角度的凹部。 当辅助壳体滑动到延伸位置或收缩位置时,倾斜的凸耳选择性地与两对成角度的凹槽中的任一个配合,以将辅助壳体锁定就位。
    • 4. 发明授权
    • Method of analyzing input speech and speech analysis apparatus therefor
    • 分析输入语音和语音分析设备的方法
    • US4827516A
    • 1989-05-02
    • US917509
    • 1986-10-10
    • Yusuke TsukaharaHitoshi MasudaMikio YamaguchiMasao Tanabe
    • Yusuke TsukaharaHitoshi MasudaMikio YamaguchiMasao Tanabe
    • G10L15/00G10L5/00
    • G10L15/00
    • A speech analysis apparatus according to the invention, comprising a transforming section for receiving a spectrum envelope, for transforming the spectrum envelope such magnitude data thereof becomes suitable, and for generating a transformed spectrum envelope, an integrator for receiving the transformed spectrum envelope output from the transforming section, for integrating the input spectrum envelope with respect to a predetermined variable, and for outputting an integrated spectrum envelope, and a projection circuit for receiving the transformed spectrum envelope from the transform circuit and the integrated spectrum envelope from the integrator, and for projecting the spectrum envelope with respect to the integrated data. Therefore, the analysis result inherent to the phoneme can be obtained regardless of vocal tract lengths. The spectrum envelope to be projected can be integrated by the integrator, along the frequency axis or the mel axis. The analysis apparatus further includes a spectrum envelope-extractor for obtaining the spectrum envelope, by using cepstrum analysis and smoothing the resultant spectrum envelope. A spectrum envelope in the transition from a consonant to a vowel can be obtained.
    • 根据本发明的语音分析装置,包括用于接收频谱包络的​​变换部分,用于将其幅度数据变换为频谱包络,并且为了产生变换频谱包络,积分器用于从 变换部分,用于将输入频谱包络相对于预定变量积分,并用于输出积分频谱包络;以及投影电路,用于从变换电路接收变换频谱包络和从积分器接收积分频谱包络,并用于投影 关于集成数据的频谱包络。 因此,不管声道长度如何,可以获得音素固有的分析结果。 要投影的光谱包络可以由积分器沿着频率轴或者梅尔轴积分。 分析装置还包括用于通过使用倒谱分析和平滑所得到的频谱包络来获得频谱包络的​​频谱包络 - 提取器。 可以获得从辅音到元音的转换中的频谱包络。
    • 5. 发明申请
    • Optical cross-connect device
    • 光交叉设备
    • US20050249456A1
    • 2005-11-10
    • US11182143
    • 2005-07-15
    • Teruya SugiyamaMitsuteru InoueDong-Hak ShinHitoshi Masuda
    • Teruya SugiyamaMitsuteru InoueDong-Hak ShinHitoshi Masuda
    • G02B5/32G02F1/03G11C13/04H04Q11/00G02B6/26
    • G02B5/32G02B6/3556G02B6/356G02F1/0338G11C13/042H04Q11/0005H04Q2011/0028H04Q2011/0035H04Q2011/0039
    • An optic switch for cross-connecting input light signals incoming from inlet fiber cables to outlet fiber cables is disclosed that makes use of a holographic filter (5) having a series of preformed different speckle patterns, each in the form of a hologram (H1, H2, . . . ). Associated with input light signals guided past respective inlet passages (4in) of a multimode waveguide (4), different speckle patterns are formed by applying different control voltages across respective electrode pairs (10, 10a) provided thereon. These speckle patterns past a single outlet passage (4out) of the multimode waveguide (4) into which the inlet passages (4in) converge are joined together and enter the holographic filter (5) in which an input light signal is selectively switched, addressed and cross-connected to an outlet waveguide (2) through a region thereof where a formed speckle pattern coincides with a preformed speckle pattern. The multi mode waveguides (4) is formed in, e.g., a LiNbO3 photorefractive substrate (3).
    • 公开了一种用于交叉连接从入口光缆到出口光纤电缆的输入光信号的光开关,其利用具有一系列预制的不同散斑图案的全息滤光片(5),每个都具有全息图形式(H < SUB> 1,H 2,...,...)。 与通过多模波导(4)的相应入口通道(4 in)引导的输入光信号相关联,通过在其上提供的各个电极对(10,10a)施加不同的控制电压来形成不同的散斑图案。 通过入口通道(4 in)会聚在其中的多模波导(4)的单个出口通道(4 out)上的这些斑点图案被连接在一起并进入选择性地切换输入光信号的全息滤光器(5) 寻址并通过其出口波导(2)交叉连接,其中形成的斑点图案与预先形成的斑点图案重合。 多模波导(4)形成在例如LiNbO 3光折射基板(3)中。
    • 8. 发明授权
    • Optical cross-connect device
    • 光交叉设备
    • US06947626B2
    • 2005-09-20
    • US10402464
    • 2003-03-28
    • Teruya SugiyamaMitsuteru InoueShin Dong-HakHitoshi Masuda
    • Teruya SugiyamaMitsuteru InoueShin Dong-HakHitoshi Masuda
    • G02B5/32G02F1/03G11C13/04H04Q11/00G02B6/26G02B6/42
    • G02B5/32G02B6/3556G02B6/356G02F1/0338G11C13/042H04Q11/0005H04Q2011/0028H04Q2011/0035H04Q2011/0039
    • An optic switch for cross-connecting input light signals incoming from inlet fiber cables to outlet fiber cables is disclosed that makes use of a holographic filter (5) having a series of preformed different speckle patterns, each in the form of a hologram (H1, H2, . . . ). Associated with input light signals guided past respective inlet passages (4in) of a multimode waveguide (4), different speckle patterns are formed by applying different control voltages across respective electrode pairs (10, 10a) provided thereon. These speckle patterns past a single outlet passage (4out) of the multimode waveguide (4) into which the inlet passages (4in) converge are joined together and enter the holographic filter (5) in which an input light signal is selectively switched, addressed and cross-connected to an outlet waveguide (2) through a region thereof where a formed speckle pattern coincides with a preformed speckle pattern. The multi mode waveguides (4) is formed in, e. g., a LiNbO3 photorefractive substrate (3).
    • 公开了一种用于交叉连接从入口光缆到出口光纤电缆的输入光信号的光开关,其利用具有一系列预制的不同散斑图案的全息滤光片(5),每个都具有全息图形式(H < SUB> 1,H 2,...,...)。 与通过多模波导(4)的相应入口通道(4 in)引导的输入光信号相关联,通过在其上提供的各个电极对(10,10a)施加不同的控制电压来形成不同的散斑图案。 通过入口通道(4 in)会聚在其中的多模波导(4)的单个出口通道(4 out)上的这些斑点图案被连接在一起并进入选择性地切换输入光信号的全息滤光器(5) 寻址并通过其出口波导(2)交叉连接,其中形成的斑点图案与预先形成的斑点图案重合。 多模波导(4)形成在,例如, 例如,LiNbO 3光折射基板(3)。