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    • 12. 发明申请
    • TEMPERATURE RESPONSIVE CONTROL UNITS
    • 温度响应控制单元
    • WO1983002832A1
    • 1983-08-18
    • PCT/GB1983000028
    • 1983-02-02
    • RANCO CONTROLS LIMITEDROSSI, Guglielmo
    • RANCO CONTROLS LIMITED
    • G05D23/275
    • H01H35/28F25B2700/2117F25D29/00F25D2400/30F25D2700/122F25D2700/14G05D23/1931G05D23/275
    • Une unité de commande sensible à la température pour la commande aussi bien d'un organe refroidisseur, tel qu'un congélateur ou réfrigérateur, que d'un dispositif de chauffage d'espace, utilise un premier élément de détection de température (3A) sensible à la température à proximité immédiate d'un évaporateur ou, dans le cas d'un dispositif de chauffage d'espace, un élément chauffant, et un deuxième élément de détection de température (4A) sensible à la température ambiante dans l'enceinte réfrigérée ou chauffée. Les deux éléments de détection de température agissent, par exemple par l'intermédiaire de soufflets respectifs (3, 4) et de leviers associés (5, 6), sur le bras d'actionnement (7) d'un dispositif commutateur commun (2) au moyen d'un organe mobile (8), l'organe mobile possédant une épaule (10) qui est engagée par le levier d'actionnement associé à l'élément de détection de température ambiante. Les deux leviers d'actionnement du commutateur (5, 6) sont actionnés indépendamment par des ressorts respectifs de rappel (13, 14) et l'agencement est tel que le dispositif commutateur (2) est actionné dans un sens par un élément de détection de température et dans le sens opposé par l'autre élément de détection de température. Lors de l'application à un réfrigérateur ou congélateur, par exemple, le commutateur peut être ouvert pour couper le compresseur en réponse à une température d'air prédéterminée détectée par l'élément de détection de température ambiante (4A) et peut être fermé pour mettre sous tension le compresseur uniquement en réponse à une température limite détectée par l'autre élément de détection (3A) associé à l'évaporateur.
    • 13. 发明申请
    • DEVICE AND METHOD FOR THE TEMPERATURE ADJUSTMENT OF A HEATING ELEMENT
    • WO2019145873A1
    • 2019-08-01
    • PCT/IB2019/050570
    • 2019-01-23
    • I.V.A.R. S.P.A.
    • BERTOLOTTI, Mr. Stefano
    • G05D23/275G05D23/19F24D19/10
    • The present invention relates to a device (1) for the temperature adjustment of a heating element, comprising a body (2), provided with an interception zone (3) destined to be placed in fluid communication with a conduit (50) carrying fluid to the inlet of the heating element, and a valve element operatively active in the interception zone and capable of operating in a plurality of configurations to vary the flow rate of fluid crossing the interception zone. The valve element comprises a thermostatic valve (10) provided with a shutter (15) that is axially movable and configured to move closer and further away, along a translation direction (X), with respect to a passage section defined in the interception zone (3), so as to vary the flow rate of fluid crossing the interception zone. The thermostatic valve comprises a thermostat (11) configured to vary its size according to the temperature perceived thereby; the thermostat is associated with or constrained to the shutter (15) for moving it along the translation direction (X). The device also comprises an actuator (20), operatively arranged upstream of the thermostatic valve (10) and in series with respect thereto, active on the thermostat (11) for moving it selectively along the translation direction, determining a corresponding movement of the shutter (15).
    • 15. 发明申请
    • DEPLOYABLE TEMPERATURE CONTROLLED SHED WITH REMOTE MANAGEMENT
    • 具有远程管理功能的可展开温度控制棚
    • WO2017087160A1
    • 2017-05-26
    • PCT/US2016/059855
    • 2016-11-01
    • REZAYAT, Mohasen
    • REZAYAT, Mohasen
    • F24F1/00F24F3/00F24F11/053G05D23/275
    • F25D29/00F25B27/002F25D13/00F25D13/04F25D29/008F25D2700/02F25D2700/12G05B2219/37431G06Q10/087G07C9/00134G07C9/00896G08B17/06G08B21/182H02S20/32Y02A40/966
    • A cold-shed may be deployed in areas with little or no electrical infrastructure in order to provide a cold storage area for perishable goods including agricultural, dairy products, medicines, vaccines, etc. A wireless communication device may be installed in the cold-shed to allow remote management, access control, and monitoring of the cold-shed devices, including cooling units, solar power cells, batteries, power conditioners, and a variety of sensors to determine internal and external temperatures, door positions, and other information. A mobile device configured to communicate with the wireless communication device may receive information and updates via cellular networks or text messaging. The mobile device may also be used to change temperature settings, lock and unlock doors, conduct inventory management and auditing, and make other changes. The corresponding application allows an owner to manage and monitor many cold-sheds from a single mobile device.
    • 冷棚可以被部署在具有很少或没有电力基础设施的区域中,以便为包括农业,乳制品,药品,疫苗等在内的易腐货物提供冷藏区。无线通信设备 可以安装在冷棚中,以允许远程管理,访问控制和监测冷棚装置,包括冷却装置,太阳能电池,电池,功率调节器和各种传感器,以确定内部和外部温度, 门位置等信息。 配置成与无线通信设备通信的移动设备可以经由蜂窝网络或文本消息接收信息和更新。 移动设备也可用于更改温度设置,锁定和解锁门,进行库存管理和审核,以及进行其他更改。 相应的应用程序允许所有者管理和监控来自单个移动设备的许多冷库。
    • 17. 发明申请
    • ON-CHIP COMPENSATION FOR A FULLY DIFFERENTIAL VOICE COIL MOTOR CONTROL
    • 全面差分语音线圈电机控制的片上补偿
    • WO2007121189A2
    • 2007-10-25
    • PCT/US2007/066343
    • 2007-04-10
    • TEXAS INSTRUMENTS INCORPORATEDDEGANG, Xia
    • DEGANG, Xia
    • G05D23/275
    • G11B5/5526G11B5/59605H02P25/034
    • A disk drive controller including a differential voice coil motor control function is disclosed. The differential voice coil motor control function includes an on-chip compensation network for the inner control loop, including a resistor formed of one or more MOS transistors connected in series. The gate of the MOS transistors in the compensation network is driven with a bias voltage based on a tuning current, where the tuning current is derived so that it varies with process and temperature variations of the integrated circuit, for example with variations in an on-chip capacitor. The on-chip compensation network can be tuned with sufficient precision to properly compensate the inner control loop to provide the desired frequency response in driving the voice coil motor in the disk drive.
    • 公开了一种包括差分音圈电机控制功能的磁盘驱动器控制器。 差分音圈电机控制功能包括用于内部控制回路的片上补偿网络,包括由串联连接的一个或多个MOS晶体管形成的电阻器。 补偿网络中的MOS晶体管的栅极由基于调谐电流的偏置电压驱动,其中调谐电流被导出,使得其随集成电路的过程和温度变化而变化,例如, 片式电容器。 可以以足够的精度调整片上补偿网络,以正确补偿内部控制回路,以在驱动盘驱动器中的音圈电机时提供所需的频率响应。
    • 18. 发明申请
    • ADAPTIVE COMMAND FILTERING FOR SERVOMECHANISM CONTROL SYSTEMS
    • 用于伺服控制系统的自适应指令过滤
    • WO2005114348A2
    • 2005-12-01
    • PCT/US2005/016719
    • 2005-05-12
    • ELECTRO SCIENTIFIC INDUSTRIES, INC.WATT, DavidALPAY, MehmetUNRATH, MarkWEN, JohnPOTSAID, Ben
    • WATT, DavidALPAY, MehmetUNRATH, MarkWEN, JohnPOTSAID, Ben
    • G05D23/275
    • G05B13/041
    • Preferred embodiments of the invention implement techniques for modifying the command trajectory, the architecture of a servomechanism control system (10), or both, to reduce the servo error during and/or after the command trajectory. An iterative refinement procedure generates for use by the servomechanism control system a corrective input, du , which significantly reduces the error ( e ) between the desired ( y d ) and actual ( y ) servomechanism control system outputs. In one embodiment, a uniquely identified plant model is employed in the iterative refinement procedure to compute an approximate gradient that improves the performance and reliability of the refinement procedure. In another embodiment, the actual plant response is used in place of the identified model in the iterative refinement procedure. This is accomplished by time-reversing the stored error signal from a training run, before applying it to the plant (12) to generate an update to the corrective input signal du .
    • 本发明的优选实施例实现了用于修改命令轨迹,伺服机构控制系统(10)或两者的架构的技术,以减少在命令轨迹期间和/或之后的伺服误差。 对伺服机构控制系统产生的迭代细化程序进行校正输入du,这显着地减少了期望(yd)和实际(y)伺服机构控制系统输出之间的误差(e)。 在一个实施例中,在迭代细化过程中采用唯一识别的植物模型来计算提高细化过程的性能和可靠性的近似梯度。 在另一个实施例中,在迭代细化过程中使用实际植物响应来代替所识别的模型。 这是通过在将其应用于工厂(12)之前对来自训练运行的存储的误差信号进行时间反转来产生对校正输入信号du的更新来实现的。
    • 19. 发明申请
    • IMPROVEMENTS RELATING TO WATER HEATING VESSELS
    • 关于水加热容器的改进
    • WO01006334A1
    • 2001-01-25
    • PCT/GB2000/002814
    • 2000-07-20
    • G05D23/275H05B1/02
    • H05B1/0213G05D23/2754H05B2203/013H05B2203/017
    • A water boiling vessel has a thick film heating element (3) provided with a bimetallic overtemperature protection control for switching off the heating element if it overheats, for example because the vessel is switched on empty and, to enable the vessel selectively to be operated to produce hot water at a selected temperature lower than boiling, an auxiliary heater (11) is provided on the thick film heating element in the region thereof to which the bimetallic control is responsive and a resistive track is connected in series with the auxiliary heater and is contactable selectively along its length so as to vary its effective resistance and thereby vary the current through the auxiliary heater. The auxiliary heater increases the heating of the bimetallic control above that normally received in operation of the vessel so that it operates at a lower temperature than it normally would, thereby switching off the vessel prematurely before it had time to boil. Also disclosed is an integrated 360 DEG cordless appliance inlet connector and dry boil control which includes a means to connect selectively to the resistive track.
    • 水沸腾容器具有厚膜加热元件(3),其设置有双金属过热保护控制器,用于在加热元件过热时关闭加热元件,例如因为容器被打开,并使得容器选择性地被操作 在低于沸点的选定温度下产生热水,在双层金属控制响应的区域中的厚膜加热元件上设置辅助加热器(11),并且电阻轨道与辅助加热器串联连接,并且 沿着其长度选择性地接触,以便改变其有效电阻,从而改变通过辅助加热器的电流。 辅助加热器将双金属控制器的加热增加到高于通常在容器中操作的容器的加热,使得其在比通常情况下低的温度下运行,从而在其沸腾之前过早关闭容器。 还公开了一种集成的360°无绳电器入口连接器和干式沸腾控制,其包括用于选择性地连接到电阻轨道的装置。