会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 11. 发明授权
    • Oscillation circuit
    • 振荡电路
    • US07560999B2
    • 2009-07-14
    • US11727153
    • 2007-03-23
    • Tomio Sato
    • Tomio Sato
    • H03B5/32
    • H03B5/364
    • An oscillation circuit, including: a complementary metal oxide semiconductor (CMOS) inverter coupled between a first potential and a second potential; a first element unit whose one terminal is coupled to an input terminal of the CMOS inverter; a second element unit whose one terminal is coupled to the input terminal of the CMOS inverter and whose other terminal is coupled to an output terminal of the CMOS inverter; a third element unit whose one terminal is coupled to the output terminal of the CMOS inverter; and a fourth element unit whose one terminal is coupled to the other terminal of the first element unit and to the other terminal of the third element unit, and whose other terminal is coupled to either the first potential or the second potential; in that: the first, second, third, and fourth element units are any of a quartz crystal resonator, a resistor, an inductor, and a capacitor; the oscillation circuit oscillating at a frequency determined by the first, second, and third element units.
    • 一种振荡电路,包括:耦合在第一电位和第二电位之间的互补金属氧化物半导体(CMOS)反相器; 第一元件单元,其一个端子耦合到CMOS反相器的输入端子; 第二元件单元,其一个端子耦合到CMOS反相器的输入端子,并且其另一个端子耦合到CMOS反相器的输出端子; 第三元件单元,其一个端子耦合到CMOS反相器的输出端子; 以及第四元件单元,其一个端子耦合到第一元件单元的另一端子和第三元件单元的另一端子,并且其另一端子耦合到第一电位或第二电位; 其中:第一,第二,第三和第四元件单元是石英晶体谐振器,电阻器,电感器和电容器中的任何一个; 振荡电路以由第一,第二和第三元件单元确定的频率振荡。
    • 12. 发明申请
    • KEY SWITCH DEVICE
    • 钥匙开关装置
    • US20070193869A1
    • 2007-08-23
    • US11617175
    • 2006-12-28
    • Tomio Sato
    • Tomio Sato
    • H01H13/70
    • H01H3/125
    • A first bearing member is provided on a key top. A second bearing member is provided on the key top. A first guide member is provided on a board. A second guide member is provided on the board. A first link member is disposed between the board and the key top, and has a first end portion rotatably supported by the first bearing member and a second end portion engaged with the first guide member. A second link member is disposed between the board and the key top, and has a third end portion rotatably supported by the second bearing member and a fourth end portion engaged with the second guide member. A third link member is disposed between the board and the key top. The first link member, the second link member, and the third link member are not in contact with each other. The second end portion is slidable relative to the first guide member in a first horizontal direction so that the first end portion is movable in a vertical direction. The fourth end portion is slidable relative to the second guide member in a second horizontal direction opposite to the first horizontal direction so that the third end portion is movable in the vertical direction. The first link member and the second link member are symmetrically arranged.
    • 第一轴承构件设置在键顶上。 第二轴承构件设置在键顶上。 第一引导构件设置在板上。 板上提供了第二个引导元件。 第一连杆构件设置在板和键顶之间,并且具有由第一轴承构件可旋转地支撑的第一端部和与第一引导构件接合的第二端部。 第二连杆构件设置在板和键顶之间,并且具有由第二轴承构件可旋转地支撑的第三端部和与第二引导构件接合的第四端部。 第三连杆构件设置在板和键顶之间。 第一连杆构件,第二连杆构件和第三连杆构件彼此不接触。 所述第二端部可相对于所述第一引导构件在第一水平方向上滑动,使得所述第一端部可在垂直方向上移动。 所述第四端部能够相对于所述第二引导构件在与所述第一水平方向相反的第二水平方向上滑动,使得所述第三端部能够在垂直方向上移动。 第一连杆构件和第二连杆构件对称地布置。
    • 15. 发明授权
    • Low mass grain support system for solid propellant rocket motors
    • 固体推进剂火箭发动机的低质量颗粒支撑系统
    • US4756248A
    • 1988-07-12
    • US101906
    • 1987-09-28
    • Tomio Sato
    • Tomio Sato
    • F02K9/34F02K9/36C06D5/06
    • F02K9/36F02K9/34
    • A reinforced split-flap hinge for supporting the unpressurized propellant grain of a rocket motor in a high acceleration environment includes a circular piece of material and an afterwardly spaced first annular piece of material bonded to the convex forward surface of the propellant grain, the material of the circular piece of material and the first annular piece of material being chopped fibers of insulating material in a rubber matrix, with a second annular piece of material bonded to the surface of the circular concave piece of material, the convex forward surface of the propellant grain, and the surface of the first annular piece of material, a third U-shaped annular piece of material having first and second skirts extending aft with a first skirt bonded to the surface of the second annular piece of material, the second and third annular pieces of material being made of fabric reinforced polyisoprene, and a fourth annular piece of insulating material made of powder filled polyisoprene positioned between the forward inner wall of the rocket motor case and the third annular piece of material and bonded on one side to the inner wall of the case and on the other side to the second skirt of the third annular piece of material.
    • 用于在高加速环境中支撑火箭发动机的非加压推进剂颗粒的增强分裂瓣铰链包括圆形材料片和与推进剂颗粒的凸形前表面结合的后隔开的第一环形片材料, 所述圆形件材料和所述第一环形件材料是在橡胶基体中切断绝缘材料的纤维,其中第二环形件材料结合到所述圆形凹形材料的表面,所述推进剂颗粒的所述凸起的前表面 以及所述第一环形件材料的表面,第三U形环形件材料,其具有第一和第二裙部,所述第一和第二裙部在后部延伸,第一裙部结合到所述第二环形件材料的表面,所述第二和第三环形件 材料由织物增强的聚异戊二烯制成,以及由粉末填充的聚异戊二烯制成的第四环形绝缘材料片 其定位在火箭发动机壳体的前内壁和第三环形件材料之间,并且在一侧结合到壳体的内壁,并且另一侧位于第三环形件材料的第二裙部。
    • 17. 发明授权
    • Semiconductor device of power compensation
    • 电源补偿半导体器件
    • US07786614B2
    • 2010-08-31
    • US12199493
    • 2008-08-27
    • Tomio Sato
    • Tomio Sato
    • H02J1/00
    • H02M3/07H02M1/36H02M3/1588Y02B70/1466Y10T307/398
    • According to an aspect of an embodiment, a semiconductor device includes: a reference line; a first line provided with a first voltage with respect to the reference line; a second line provided with a second voltage not less than the first voltage with respect to the reference line; a capacitor having a first capacitance arranged between the reference line and second line; a current limiting element arranged between the capacitor and the second line, for charging up the capacitor, the current limiting element limiting current flowing into the capacitor from the second line during charging up; a first switch connected between the first line and the capacitor; and a controller for controlling the first switch to discharge the capacitor.
    • 根据实施例的一个方面,半导体器件包括:基准线; 相对于所述参考线设置有第一电压的第一线; 第二线,其相对于所述基准线具有不小于所述第一电压的第二电压; 具有布置在所述基准线和所述第二线之间的第一电容的电容器; 布置在电容器和第二线路之间的限流元件,用于对电容器充电,限流元件在充电期间限制从第二线路流入电容器的电流; 连接在第一线路和电容器之间的第一开关; 以及用于控制第一开关以放电电容器的控制器。
    • 18. 发明申请
    • Oscillation circuit
    • 振荡电路
    • US20070241829A1
    • 2007-10-18
    • US11727153
    • 2007-03-23
    • Tomio Sato
    • Tomio Sato
    • H03B5/32
    • H03B5/364
    • An oscillation circuit, including: a complementary metal oxide semiconductor (CMOS) inverter coupled between a first potential and a second potential; a first element unit whose one terminal is coupled to an input terminal of the CMOS inverter; a second element unit whose one terminal is coupled to the input terminal of the CMOS inverter and whose other terminal is coupled to an output terminal of the CMOS inverter; a third element unit whose one terminal is coupled to the output terminal of the CMOS inverter; and a fourth element unit whose one terminal is coupled to the other terminal of the first element unit and to the other terminal of the third element unit, and whose other terminal is coupled to either the first potential or the second potential; in that: the first, second, third, and fourth element units are any of a quartz crystal resonator, a resistor, an inductor, and a capacitor; the oscillation circuit oscillating at a frequency determined by the first, second, and third element units.
    • 一种振荡电路,包括:耦合在第一电位和第二电位之间的互补金属氧化物半导体(CMOS)反相器; 第一元件单元,其一个端子耦合到CMOS反相器的输入端子; 第二元件单元,其一个端子耦合到CMOS反相器的输入端子,并且其另一个端子耦合到CMOS反相器的输出端子; 第三元件单元,其一个端子耦合到CMOS反相器的输出端子; 以及第四元件单元,其一个端子耦合到第一元件单元的另一端子和第三元件单元的另一端子,并且其另一端子耦合到第一电位或第二电位; 其中:第一,第二,第三和第四元件单元是石英晶体谐振器,电阻器,电感器和电容器中的任何一个; 振荡电路以由第一,第二和第三元件单元确定的频率振荡。
    • 19. 发明授权
    • Key switch device
    • 钥匙开关装置
    • US07199320B2
    • 2007-04-03
    • US11342542
    • 2006-01-31
    • Tomio Sato
    • Tomio Sato
    • H01H13/14
    • H01H13/7065H01H3/122
    • A first bearing member is provided on one of an upper face of a board member and a lower face of a key top member. A first guide member is provided on the other one of the upper face of the board member and the lower face of the key top member. A first link member is disposed between the board member and the key top member, and has a first end portion rotatably supported by the first bearing member and a second end portion engaged with the first guide member. The first link member is pivotable in a first direction about the first end portion thereof to allow the key top member to move in a vertical direction. The second end portion of the first link member is slidable relative to the first guide member in a horizontal direction in accordance with the movement of the key top member.
    • 第一轴承构件设置在板构件的上表面和键顶构件的下表面之一上。 第一引导构件设置在板构件的上表面和键顶构件的下表面中的另一个上。 第一连接构件设置在板构件和键顶构件之间,并且具有由第一轴承构件可旋转地支撑的第一端部和与第一引导构件接合的第二端部。 第一连杆构件可围绕其第一端部在第一方向上枢转,以允许键顶构件在垂直方向上移动。 第一连杆构件的第二端部根据键顶构件的移动在水平方向上相对于第一引导构件滑动。
    • 20. 发明授权
    • Walking support system
    • 步行支援系统
    • US06821229B2
    • 2004-11-23
    • US10645615
    • 2003-08-22
    • Tomio SatoKenji NishibayashiNaotaka Kajiya
    • Tomio SatoKenji NishibayashiNaotaka Kajiya
    • A63B2100
    • A61B5/4884A61B5/02438A61B5/222Y10S482/90
    • There is provided a system capable of estimating biological data such as a pulse at the time of walking (exercise) with good reproducibility. Biological data at the time of walking is estimated indirectly by acquiring a relationship between biological data and exercise stress levels in body burden capacity acquiring means 21 prior to walking, acquiring an exercise stress level at the time of walking in means 22 for acquiring an exercise stress level at the time of walking, and relating the exercise stress level at the time of walking to the relationship between biological data and exercise stress levels in means 23 for estimating biological data at the time of walking. Further, a walking amount is also computed by use of the biological data at the time of walking in walking amount computing means 24.
    • 提供了一种能够以良好的再现性估计步行(运动)时的脉搏等生物数据的系统。 通过在行走之前获取身体负担能力获取装置21中的生物学数据和运动压力水平之间的关系来间接地估计行走时的生物学数据,获取行走时的运动压力水平用于获取运动压力的装置22 并且将步行时的运动压力水平与用于估计行走时的生物数据的装置23中的生物学数据和运动应力水平之间的关系相关联。 此外,通过在行走量计算装置24中行走时的生物数据也可以计算步行量。