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    • 61. 发明授权
    • Battery charger
    • 充电器
    • US06969269B2
    • 2005-11-29
    • US10973435
    • 2004-10-27
    • Yoshihiro Sakai
    • Yoshihiro Sakai
    • H02J7/00H01M10/44H01R35/04H01R13/44
    • H01R35/04
    • An AC adaptor has an AC plug having wider contact portions facilitating better contact despite the displacement. AC plug 3 of AC adaptor 3 has a pair of conductive blades 4, an end surface with the blades projecting with a substantially right angle, a first surface and a first rotary shaft on a first side surface. On a second side surface opposite to the first side surface, there are provided a second surface and a second rotary shaft. A first and second planar contact portions which are electrically connected respectively to a first and second conductive blades are configured respectively to project slightly from the surfaces of the first and second rotary shafts. On a circuit board in the case, there are provided conductive spring terminals 17 with projecting portions thereof making resilient contact with the first and second planar contact portions 15.
    • AC适配器具有具有更宽接触部分的AC插头,其有利于更好地接触位移。 AC适配器3的AC插头3具有一对导电叶片4,具有大致直角的叶片的端面,第一表面和第一旋转轴在第一侧表面上。 在与第一侧面相对的第二侧面上设置有第二表面和第二旋转轴。 分别电连接到第一和第二导电叶片的第一和第二平面接触部分被分别配置成从第一和第二旋转轴的表面稍微突出。 在这种情况下的电路板上,设置有导电弹簧端子17,其突出部分与第一和第二平面接触部分15弹性接触。
    • 65. 发明授权
    • Disk-mounting structure for optical encoder
    • 光学编码器的磁盘安装结构
    • US06504146B1
    • 2003-01-07
    • US09743453
    • 2001-01-10
    • Yoshihiro SakaiKazuo Tashiro
    • Yoshihiro SakaiKazuo Tashiro
    • G01D534
    • G01D5/34707G01D5/3473G01D5/34738
    • An optical encoder is provided in which a disk is prevented from eccentric rotation. An optical encoder comprises a shaft (2) supported on a bearing (3) in a housing (1), a rotating disk (4) having a code pattern and fixed to the shaft (2), a photodetector element (12) which receives light passing through the rotating disk (4) from a light-emitting element (10) and converts it into an electric signal, and a substrate (13) on which is mounted a circuit for detecting a signal in the electric signal. The shaft (2) is inserted in a hole (4a) opened in the center of the rotating disk (4), the backside of which is seated on a step (2a) of the shaft (2). The optical encoder further comprises a spacer (5) fitted loosely over the shaft (2) and placed on an adhesive (6) spread on the rotating disk (4), a ring (7) for fixing the spacer (5) and the disk (4) tentatively to the shaft (2), and adhesive (8) spread on the spacer (5), the ring (7) and the shaft (2). This structure prevents the adhesive (8) from entering between the thinner part (2b) of the shaft (2) and the hole (4a) of the disk (4) and between the backside of the disk (4) and the step (2a).
    • 提供光学编码器,其中防止盘偏心旋转。 光学编码器包括支撑在壳体(1)中的轴承(3)上的轴(2),具有代码图案并固定到轴(2)的旋转盘(4),光接收器元件(12),其接收 光从发光元件(10)通过旋转盘(4)并将其转换为电信号,以及衬底(13),其上安装有用于检测电信号中的信号的电路。 轴(2)插入在旋转盘(4)的中心开口的孔(4a)中,孔的背面位于轴(2)的台阶(2a)上。 光学编码器还包括一个松套地安装在轴(2)上的垫片(5),并放置在旋转盘(4)上的粘合剂(6)上,一个用于固定间隔物(5)和盘 (4)暂时地连接到轴(2)上,粘合剂(8)分散在间隔件(5),环(7)和轴(2)上。 这种结构防止粘合剂(8)进入轴(2)的较薄部分(2b)和盘(4)的孔(4a)之间并且在盘(4)的背面与台阶(2a)之间 )。
    • 66. 发明授权
    • Speech signal coding system wherein non-periodic component feedback to
periodic excitation signal source is adaptively reduced
    • 语音信号编码系统,其中对周期性激励信号源的非周期性分量反馈被自适应地减少
    • US5828811A
    • 1998-10-27
    • US188124
    • 1994-01-28
    • Tomohiko TaniguchiYasuji OhtaYoshinori TanakaHideaki KuriharaYoshihiro Sakai
    • Tomohiko TaniguchiYasuji OhtaYoshinori TanakaHideaki KuriharaYoshihiro Sakai
    • G10L19/00G10L11/06G10L19/12G10L9/14
    • G10L19/12G10L25/93
    • Speech coding uses a periodic excitation signal source, a non-periodic signal excitation source, a synthesizing unit, a filter, and an error evaluating unit. The synthesizing unit synthesizes a periodic excitation signal and a non-periodic excitation signal output from the above-mentioned sources to generate an excitation sound source signal. The filter regenerates an input speech signal from the excitation sound signal. The error evaluating unit controls the periodic excitation signal source and the non-periodic excitation signal source so that the above-mentioned units output periodic and non-periodic excitation signals which minimize a difference of the regenerated signal from an input speech signal. When the error is minimized, the above-mentioned sound source is supplied to a feedback excitation signal modifying unit. The feedback excitation modifying unit reduces a non-periodic component in the above-mentioned supplied signal so that the non-periodic component is reduced more when the relative amount of the periodic component is greater. The modified signal is fed back to the periodic excitation signal source unit to modify the content thereof.
    • 语音编码使用周期性激励信号源,非周期信号激励源,合成单元,滤波器和误差评估单元。 合成单元合成从上述源输出的周期性激励信号和非周期性激励信号,以产生激发声源信号。 滤波器从激励声音信号再生输入语音信号。 误差评估单元控制周期性激励信号源和非周期激励信号源,使得上述单元输出使再生信号与输入语音信号的差异最小化的周期性和非周期性激励信号。 当误差最小化时,将上述声源提供给反馈激励信号修改单元。 反馈激励修正单元在上述提供的信号中减少非周期性分量,使得当周期性分量的相对量较大时,非周期分量更多地减小。 将修改的信号反馈到周期性激励信号源单元以修改其内容。
    • 70. 发明授权
    • Noiseless lug tires
    • 无声耳环轮胎
    • US4289183A
    • 1981-09-15
    • US107740
    • 1979-12-27
    • Masaru AbeYoshihiro SakaiYasutaka EnokiNoriyasu Sawada
    • Masaru AbeYoshihiro SakaiYasutaka EnokiNoriyasu Sawada
    • B60C11/11B60C3/00B60C5/00B60C11/00B60C11/03B60C11/04B60C11/117B60C11/13
    • B60C11/0316B60C11/0318B60C11/1315
    • A noiseless lug tire which runs at a high speed under a heavy load and which satisfies the following conditions.(1) A ratio Wg/Wl is equal to or smaller than 1.0.(2) Each transverse groove for delimiting lugs is not inclined toward an opening of the transverse groove at the kickout side of each lug.(3) Each transverse groove is inclined toward the opening at the stepin side of each lug at an angle of at most 22.degree..(4) Each portion of a center line of the transverse groove in a substantially total region of a length L of the transverse groove is inclined with respect to the meridian line of the tire at an angle within a range from at most 15.degree. measured in a direction opposite to the inclination direction of the transverse groove as a whole to at most 60.degree. measured in the same direction as the inclination direction of the transverse groove as a whole.(5) Each portion of the center line of the transverse groove in a region extending at least 60% of the length L of the transverse groove is inclined with respect to the meridian line of the tire at an angle within a range from at most 2.degree. measured in the direction opposite to the inclination direction of the transverse groove as a whole to at most 30.degree. measured in the same direction as the inclination direction of the transverse groove as a whole.(6) The inclination of the transverse groove as a whole toward the opening thereof in a region extending from the inner end of each transverse groove to a position which is at least 75% of the length L of the transverse groove and at the stepin side of each lug is increased in response to the advance of tread wear.
    • 无重负荷的轮胎在高负载下高速运转,满足以下条件。 (1)Wg / W1的比例等于或小于1.0。 (2)用于限定凸耳的每个横向槽不向每个凸耳的出口侧的横向槽的开口倾斜。 (3)每个横向槽在每个凸耳的阶梯侧以大于22度的角度倾斜。 (4)横向槽的长度L的大致整个区域的横向槽的中心线的各部分相对于轮胎的子午线以至多15°的范围内的角度倾斜, 与横向槽整体的倾斜方向相同的方向,与横向槽的倾斜方向整体相反至多为60°的方向。