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    • 21. 发明申请
    • TEMPERATURE CONTROL SYSTEM FOR SOLAR CELL MODULE
    • 太阳能电池模块温度控制系统
    • US20150027511A1
    • 2015-01-29
    • US14327311
    • 2014-07-09
    • LSIS Co., Ltd.
    • Sung Jin JANG
    • H01L31/052G01R31/40
    • H01L31/0521G05D7/0623G05D7/0676G05D23/1919H01L31/042H02S20/32H02S40/425H02S50/00Y02E10/50
    • An aspect of present invention is to provide a temperature control system for a solar cell module, capable of controlling a solar cell module to maintain a proper temperature, the temperature control system comprises: a temperature sensor configured to measure a temperature of the solar cell module; a fluid tube having therein a path along which a temperature controlling fluid flows; a pump configured to supply a temperature controlling fluid which flows along the fluid tube; and an inverter configured to drive the pump such that the temperature controlling fluid is supplied, if the current temperature of m the solar cell module is not lower than the pre-stored first pump driving reference temperature, or if the current temperature of the solar cell module is not higher than the pre-stored second pump driving reference temperature.
    • 本发明的一个方面是提供一种用于太阳能电池模块的温度控制系统,其能够控制太阳能电池模块以保持适当的温度,所述温度控制系统包括:温度传感器,被配置为测量太阳能电池组件的温度 ; 流体管,其中具有温度控制流体沿着该路径流动; 构造成供给沿着流体管流动的温度控制流体的泵; 以及如果太阳能电池模块的m的当前温度不低于预先存储的第一泵驱动参考温度,或如果太阳能电池的当前温度,则逆变器被配置为驱动泵,使得提供温度控制流体 模块不高于预先存储的第二个泵驱动参考温度。
    • 22. 发明申请
    • DEMAND MANAGEMENT SYSTEM FOR FLUID NETWORKS
    • 流体网络需求管理系统
    • US20140379143A1
    • 2014-12-25
    • US14236616
    • 2012-08-01
    • Rubicon Research Pty Ltd
    • David John AughtonSumith Choy
    • G05D7/06
    • G05D7/0623E03B1/00E03B1/02G05B13/048G05B15/02G05D7/0635G05D7/067
    • The invention provides a method of demand management for fluid networks. The method includes the steps of providing a computer controlled fluid network for delivery of fluid to at least one customer (14), maintaining a real time database (16) within the computer controlled fluid network of predetermined parameters, requesting a flow rate and time of delivery of said fluid from the fluid network through a user interface (22) to a customer (20), determining, using predetermined parameters from the real time database (16), the availability (24) of providing delivery of fluid from the fluid network to the customer (14) based on hydraulic capacity of the fluid network, and, if the hydraulic capacity is available, calculating parameters (38) using the real time database (16) to deliver fluid to the customer (14) through the computer controlled fluid network.
    • 本发明提供了一种流体网络的需求管理方法。 该方法包括以下步骤:提供用于将流体输送到至少一个顾客(14)的计算机控制的流体网络,将计算机控制的流体网络内的实时数据库(16)保持在预定参数内,请求流量和时间 将来自流体网络的所述流体通过用户界面(22)输送到客户(20),使用来自实时数据库(16)的预定参数确定从流体网络提供流体的可用性(24) 基于流体网络的液压能力向客户(14)提供流体网络的液压能力,并且如果液压容量可用,则使用实时数据库(16)计算参数(38)以通过计算机控制的流体向客户(14)输送流体 流体网络。
    • 30. 发明授权
    • Adjustable cycle timer for livewell bait pumps and such
    • 适用于活饵诱饵泵的可调周期定时器等
    • US5294840A
    • 1994-03-15
    • US969997
    • 1992-11-02
    • David G. VellengaJohn K. Standish
    • David G. VellengaJohn K. Standish
    • A01K97/05G05D7/06C02F11/02A01K97/00F04B49/02
    • G05D7/0623A01K97/05Y10T307/951
    • An adjustable cycle timer that controls on and off cycling of a livewell bait pump or similar device. The on time and off time of the cycle are each independently variable by adjusting the frequency of frequency generators, one generator (10) for on time and one generator (14) for off time in the cycle. The outputs of these frequency generators are gated to the clock input of a frequency divider (20), the output of which controls a relay driver (30) or similar device that switches the pump motor or other device to be controlled. When the output (22) of the frequency divider (20) changes state, a feedback switching circuit (29) blocks the output of one of the frequency generators, and gates the output of the other frequency generator to the input of the frequency divider (20). This allows the length of the on time segment of the cycle to be controlled by the frequency of one of the frequency generators, while the length of the off time segment of the cycle is controlled by the other frequency generator.
    • 一个可调整的循环计时器,用于控制活体诱饵泵或类似装置的开启和关闭循环。 循环的开启和关闭时间各自可以通过调整频率发生器的频率,一个发电机(10)及一个发电机(14)在周期中关闭时间来独立变化。 这些频率发生器的输出被选通到分频器(20)的时钟输入端,分频器(20)的输出端控制继电器驱动器(30)或类似的开关泵电动机或其他要被控制的装置的装置。 当分频器(20)的输出(22)改变状态时,反馈开关电路(29)阻止其中一个频率发生器的输出,并将另一个频率发生器的输出端分门限到分频器 20)。 这允许循环的导通时间段的长度由一个频率发生器的频率控制,而循环的关闭时间段的长度由另一个频率发生器控制。