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
    • 1. 发明授权
    • Optical control device
    • 光控装置
    • US08644647B2
    • 2014-02-04
    • US12225787
    • 2007-03-30
    • Junichiro IchikawaFutoshi YamamotoYuhki KinparaKatsutoshi KondouSatoshi Oikawa
    • Junichiro IchikawaFutoshi YamamotoYuhki KinparaKatsutoshi KondouSatoshi Oikawa
    • G02F1/035
    • G02F1/0356G02F1/2255G02F2201/063G02F2201/066G02F2201/121
    • It is an object to provide an optical control device capable of realizing speed matching between a microwave and a light wave or impedance matching of microwaves and of reducing a driving voltage. An optical control device including a thin plate 1 (11) which has an electro-optical effect and has a thickness of 10 μm or less, an optical waveguide 2 formed in the thin plate, and control electrodes for controlling light passing through the optical waveguide is characterized in that the control electrodes are configured to include a first electrode and a second electrode disposed to interpose the thin plate therebetween, the first electrode has a coplanar type electrode including at least a signal electrode 4 and a ground electrode 5, and the second electrode has at least a ground electrode 54 (55, 56) and is configured to apply an electric field to the optical waveguide in cooperation with the signal electrode of the first electrode.
    • 本发明的目的是提供一种能够实现微波和光波之间的速度匹配或微波的阻抗匹配以及降低驱动电压的光学控制装置。 一种光学控制装置,包括具有电光效应并且具有10μm或更小的厚度的薄板1(11),形成在薄板中的光波导2和用于控制通过光波导的光的控制电极 其特征在于,控制电极被配置为包括第一电极和设置成将薄板夹在其间的第二电极,第一电极具有至少包括信号电极4和接地电极5的共面型电极,第二电极 电极至少具有接地电极54(55,56),并且被配置为与第一电极的信号电极协作地向光波导施加电场。
    • 3. 发明授权
    • Method for reducing oxidic slags and dusts using inductively heated furnace
    • 使用感应加热炉减少氧化炉渣和粉尘的方法
    • US08361187B2
    • 2013-01-29
    • US13066639
    • 2011-04-20
    • Alfred Edlinger
    • Alfred Edlinger
    • C22B7/02C22B7/04
    • C22B5/10C21B13/002C21C5/5241C21C5/567C22B7/04C22B9/003F27B1/10Y02P10/136Y02P10/216Y02P10/253
    • A method for reducing oxidic slags and dusts possibly loaded with organics uses an inductively heatable coke bed extending in the axial direction and having a temperature gradient. Reaction gas is sucked off in an axial region of the coke bed between two induction bodies and metal regulus and slag melt are tapped on the lower end. An inductively heatable shaft furnace chargeable with a lumpy coke bed for the reduction of metallic slags is made of an electrically insulating refractory material, has an adjustable temperature gradient includes at least one cooled induction body on the head side, a suction connection in an axial region where the prevailing temperature exceeds the condensation point of the substances to be removed, located below the cooled induction body on the head side, and an opening for tapping metal regulus and slag melt is provided on the lower end of the furnace.
    • 减少可能装有有机物的氧化渣和粉尘的方法使用沿轴向延伸并且具有温度梯度的可感应加热的焦炭床。 反应气体在两个诱导体之间的焦炭床的轴向区域中被吸出,并且金属沉降物被抽出,熔渣熔化在下端。 一种用于还原金属渣的块状焦炭床可感应加热的竖炉由电绝缘耐火材料制成,具有可调节的温度梯度,其包括在头部侧上的至少一个冷却的感应体,轴向区域中的吸入连接 其中主要温度超过要去除的物质的冷凝点,其位于头部侧的冷却的感应体下方,并且在炉的下端设置用于攻丝金属腐蚀和熔渣的开口。
    • 7. 发明授权
    • Apparatus for access control, and read/write device
    • 用于访问控制和读/写设备的设备
    • US08045920B2
    • 2011-10-25
    • US12308968
    • 2007-06-26
    • Reinhard Pöllabauer
    • Reinhard Pöllabauer
    • H03B5/00
    • G07C9/00111G07C9/00309H04B13/005
    • In an access control device including a lock with a locking element, an actuating element for the locking element, an electronic key, a receiver unit for receiving key identification data and an evaluation circuit for determining access authorization based on the received identification data, the evaluation circuit cooperates with the actuating element and/or the locking element for selectively locking or unlocking the lock. The electronic key includes means for generating a capacitive near field via which the identification data is emitted. Furthermore, a device for coupling the capacitive near field to the person carrying the key is provided. The receiver unit is designed as a device separate from the lock and comprises at least one capacitive coupling surface such that, at a contact of the capacitive coupling surface or an approach of the capacitive coupling surface by said person, an alternating current circuit is closed and an electric flux is created across the receiver unit, which can be detected by the receiver unit.
    • 在包括具有锁定元件的锁定器,用于锁定元件的致动元件,电子钥匙,用于接收钥匙识别数据的接收器单元和用于基于接收的识别数据确定访问授权的评估电路的访问控制设备中,评估 电路与致动元件和/或锁定元件协作以选择性地锁定或解锁锁。 电子钥匙包括用于产生通过其发射识别数据的电容近场的装置。 此外,提供了用于将电容近场耦合到携带钥匙的人的装置。 接收器单元被设计为与锁分开的装置,并且包括至少一个电容耦合表面,使得在电容耦合表面的接触处或所述人的电容耦合表面的接近处,交流电路闭合,并且 在接收器单元之间产生电流,其可以由接收器单元检测。
    • 8. 发明授权
    • Method and device for controlling bias of optical modulator
    • 用于控制光调制器偏置的方法和装置
    • US07899338B2
    • 2011-03-01
    • US10550770
    • 2004-03-26
    • Yoshihiro HashimotoJunichiro IchikawaKaoru HigumaTakahisa Fujita
    • Yoshihiro HashimotoJunichiro IchikawaKaoru HigumaTakahisa Fujita
    • H04B10/04H04B10/121
    • G02F1/0327G02F1/0123G02F1/035G02F1/225G02F2201/58
    • A method and device for adequately controlling the DC bias of each of the optical modulating sections of an optical modulator even while the optical modulator is operating in normal mode and even with a simple structure. An optical modulator bias controller (B) for controlling the DC bias of each optical modulating section of an optical modulator (1) is characterized by comprising DC bias application means (3) for applying a DC bias to each of the optical modulating sections, a low-frequency signal superimposing circuit (2) for superimposing a low-frequency signal fB with a specific frequency on a modulating signal b applied to each optical modulating section, optical sensing means (9) for sensing a change of the intensity of the light wave passing through the combining section, and bias control means (4) for extracting the change of the intensity of light corresponding to the low-frequency signal from the optical sensing means and controlling the DC bias application means according to the extracted change of the intensity of light.
    • 即使在光调制器以正常模式操作并且甚至具有简单结构的情况下也可以充分地控制光调制器的每个光调制部分的DC偏置的方法和装置。 用于控制光调制器(1)的每个光调制部分的DC偏压的光调制器偏置控制器(B)的特征在于包括用于向每个光调制部分施加DC偏压的DC偏压施加装置(3) 低频信号叠加电路(2),用于将具有特定频率的低频信号fB叠加到施加到每个光调制部分的调制信号b上;光检测装置(9),用于感测光波强度的变化 通过组合部分,以及用于从光学感测装置中提取与低频信号相对应的光强变化的偏压控制装置(4),并根据提取的光强度变化对DC偏压施加装置进行控制 光。
    • 9. 发明授权
    • Light control device
    • 灯光控制装置
    • US07873244B2
    • 2011-01-18
    • US12311442
    • 2007-09-28
    • Yuhki KinparaJunichiro IchikawaSatoshi Oikawa
    • Yuhki KinparaJunichiro IchikawaSatoshi Oikawa
    • G02F1/035G02F1/01G02B6/26G02B6/42
    • G02F1/0356G02F1/0316G02F1/2255G02F2001/212G02F2201/127
    • To provide a light control device which is possible to realize a velocity matching between a microwave and an optical wave or an impedance matching of microwaves even through a signal oath having a high impedance of 70Ω or more, and is possible to reduce a driving voltage. The light control device having an electro-optical effect includes a thin plate 1 having a thickness of 10 μm or less, an optical waveguide 2 formed in the thin plate, and a controlling electrode from controlling light which passes through the optical waveguide, wherein the controlling electrode includes a first electrode and a second electrode which are disposed so as to interpose the thin plate, wherein the first electrode has a coplanar type electrode which includes at least a signal electrode 4 and a grounding electrode 5 (51), wherein the second electrode includes at least a grounding electrode 54 and is configured so as to apply an electric field to the optical waveguide in cooperation with the signal electrode of the first electrode, and wherein the signal electrode of the first electrode includes a branched signal path in which at least one signal path is branched into two or more in the middle of the path.
    • 提供一种能够实现微波和光波之间的速度匹配或微波的阻抗匹配的光控制装置,即使通过具有高阻抗70&OHgr的信号誓言, 以上,能够降低驱动电压。 具有电光效应的光控制装置包括厚度为10μm以下的薄板1,形成在薄板中的光波导2,以及控制电极,其控制通过光波导的光,其中, 控制电极包括设置成插入薄板的第一电极和第二电极,其中第一电极具有至少包括信号电极4和接地电极5(51)的共面型电极,其中第二电极 电极至少包括接地电极54,并且被配置为与第一电极的信号电极协作地向光波导施加电场,并且其中第一电极的信号电极包括分支信号路径,其中在 至少一条信号路径在路径的中间分支为两个或更多个。
    • 10. 发明授权
    • Circulation conveyor for food and drink
    • 循环输送机用于食品和饮料
    • US07810427B2
    • 2010-10-12
    • US11667571
    • 2005-11-09
    • Haruki IshinoYuichi IshinoShigeki Ishino
    • Haruki IshinoYuichi IshinoShigeki Ishino
    • A47G23/08
    • A47F10/06Y10S198/952
    • A circulation conveyor for foods and drinks effectively controls internal temperature of a tunnel section covering an upper portion of a circulation-type conveyor path for foods and drinks. The conveyor has a tunnel section covering an upper portion of and in the longitudinal direction of the carrying path. A cooling and heating pipe 24 inside the tunnel section in its longitudinal direction controls internal temperature of the tunnel section. In the tunnel section, upper and lower ventilation openings 32 and 33, disposed above and below, respectively, of the cooling and heating pipe 24 are provided. The ventilation openings communicate via communication pipes 30a to 30c to circulate air, and an air blowing section 34 circulates air in the tunnel section by drawing air from one of the upper or lower ventilation openings, into the pipes, and discharges the air from the other opening.
    • 用于食品和饮料的循环输送机有效地控制覆盖食品和饮料的循环式输送路径的上部的隧道段的内部温度。 输送机具有覆盖承载路径的上部和纵向方向的隧道段。 隧道部分内的冷却加热管24在其纵向方向上控制隧道部分的内部温度。 在隧道部分设置有分别设置在冷却和加热管24上下的上下通风口32和33。 通气开口通过连通管30a至30c连通以使空气循环,并且空气吹送部分34通过将空气从上部或下部通风口中的一个吸入管道中而使通道中的空气循环,并将空气从另一个排出 开放