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    • 61. 发明授权
    • Apparatus and method for controlling a fan, cooling unit and a fresh air damper of an air conditioner through use of a Capno-Switch
    • 通过使用Capno-Switch来控制空调的风扇,冷却单元和新风风门的装置和方法
    • US07284382B2
    • 2007-10-23
    • US10684164
    • 2003-10-10
    • Jacob Y. Wong
    • Jacob Y. Wong
    • F25D17/08
    • G01N1/2247F24F11/30F24F2110/50F24F2110/70G01N21/3504G01N33/004Y02A50/244
    • A fresh air controller interfaces directly with the electromechanical circuit of an air-conditioner to control its operating settings based upon detected Carbon Dioxide (CO2) level in Parts-Per-Million (PPM) using a “Capno-Switch” which is in essence a specially designed single-beam NDIR CO2 sensor enhanced with features and specifications to render it rugged, compact and very low-cost; unlike conventional single-beam NDIR CO2 sensors, the “Capno-Switch” is capable of providing long-term stability and accuracy in CO2 measurements. The operating settings it can control for the air-conditioner include 1) shutting off the fan, cooling unit and fresh air damper to save energy when the detected CO2 level in the cold air duct is less than 600 PPM; 2) turning on only the fan when the CO2 level is between 600-1,000 PPM; 3) turning on both the fan and the cooling unit when the CO2 level is between 1,000-2,000 PPM and 4) starting to open the fresh air damper to let fresh air in when the CO2 level is in excess of 2,000 PPM. With the incorporation of the “Capno-Switch” as a fresh air controller, air-conditioners can now provide good indoor air quality while at the same time save energy by effectively shutting itself down when nobody is detected to be present.
    • 新鲜空气控制器直接与空调的机电回路接口,以使用“卡波诺开关”(Capno-Switch),根据检测到的二氧化碳(CO2)水平(PPM)来控制其运行设置,本质上是 特别设计的单束NDIR CO2传感器增强了功能和规格,使其坚固,紧凑,成本非常低; 与传统的单光束NDIR CO2传感器不同,“Capno-Switch”能够在CO2测量中提供长期的稳定性和准确性。 可以控制空调的操作设置包括:1)当冷气管内检测到的二氧化碳浓度低于600PPM时,关闭风扇,冷却单元和新风风门以节约能源; 2)当二氧化碳水平在600-1000PPM之间时,仅打开风扇; 3)当二氧化碳水平在1,000-2,000 PPM之间时,打开风扇和冷却单元; 4)当CO2水平超过2,000 PPM时,开始打开新鲜空气阻尼器以使新鲜空气进入。 随着“卡诺诺开关”作为新鲜空气控制器,空调现在可以提供良好的室内空气质量,同时通过在没有人被检测到存在的情况下有效关闭自身,节省能源。
    • 63. 发明申请
    • Apparatus and method for controlling a fan, cooling unit and a fresh air damper of an air conditioner through use of a Capno-Switch
    • 通过使用Capno-Switch来控制空调的风扇,冷却单元和新风风门的装置和方法
    • US20050076655A1
    • 2005-04-14
    • US10684164
    • 2003-10-10
    • Jacob Wong
    • Jacob Wong
    • F24F11/00G01N1/22G01N21/35G01N33/00G01N7/00G01N19/10F24F3/16F25D23/00
    • G01N1/2247F24F11/30F24F2110/50F24F2110/70G01N21/3504G01N33/004Y02A50/244
    • A fresh air controller interfaces directly with the electromechanical circuit of an air-conditioner to control its operating settings based upon detected Carbon Dioxide (CO2) level in Parts-Per-Million (PPM) using a “Capno-Switch” which is in essence a specially designed single-beam NDIR CO2 sensor enhanced with features and specifications to render it rugged, compact and very low-cost; unlike conventional single-beam NDIR CO2 sensors, the “Capno-Switch” is capable of providing long-term stability and accuracy in CO2 measurements. The operating settings it can control for the air-conditioner include 1) shutting off the fan, cooling unit and fresh air damper to save energy when the detected CO2 level in the cold air duct is less than 600 PPM; 2) turning on only the fan when the CO2 level is between 600-1,000 PPM; 3) turning on both the fan and the cooling unit when the CO2 level is between 1,000-2,000 PPM and 4) starting to open the fresh air damper to let fresh air in when the CO2 level is in excess of 2,000 PPM. With the incorporation of the “Capno-Switch” as a fresh air controller, air-conditioners can now provide good indoor air quality while at the same time save energy by effectively shutting itself down when nobody is detected to be present.
    • 新鲜空气控制器直接与空调的机电回路接口,以使用“卡波诺开关”(Capno-Switch),根据检测到的二氧化碳(CO2)水平(PPM)来控制其运行设置,本质上是 特别设计的单束NDIR CO2传感器增强了功能和规格,使其坚固,紧凑,成本非常低; 与传统的单光束NDIR CO2传感器不同,“Capno-Switch”能够在CO2测量中提供长期的稳定性和准确性。 可以控制空调的操作设置包括:1)当冷气管内检测到的二氧化碳浓度低于600PPM时,关闭风扇,冷却单元和新风风门以节约能源; 2)当二氧化碳水平在600-1000PPM之间时,仅打开风扇; 3)当二氧化碳水平在1,000-2,000 PPM之间时,打开风扇和冷却单元; 4)当CO2水平超过2,000 PPM时,开始打开新鲜空气阻尼器以使新鲜空气进入。 随着“卡诺诺开关”作为新鲜空气控制器,空调现在可以提供良好的室内空气质量,同时通过在没有人被检测到存在的情况下有效关闭自身,节省能源。
    • 64. 发明授权
    • CO2 sensor
    • CO2传感器
    • US06843101B2
    • 2005-01-18
    • US10398734
    • 2001-10-08
    • Bertil Hök
    • Bertil Hök
    • G01N29/024G01N29/22G01N29/32G01N29/38G01N33/00G01N29/02
    • G01N29/223G01N29/024G01N29/32G01N29/326G01N29/38G01N33/004G01N2291/014G01N2291/0215G01N2291/02836Y02A50/244
    • A sensor for the measurement of carbon dioxide concentration within an air flow being input to a measuring cell (1) connected to at least one electroacoustic element (2, 3) for transmitting and receiving airborne acoustic waves within the measuring cell (1). The output signal of the sensor corresponds to the propagation velocity of these waves and an indirect measure of carbon dioxide concentration, with an automatic offset correction functionality for compensation of undesired offset variations of the signal, caused by temperature or humidity variations. Preferably, an accumulating function for minimizing the influence of the offset variations is included, which for humidity variations may consist of a material with high porosity and surface density of polar molecular groups. Temperature control of the inner sheath (4) is effected by a temperature sensor (11), a resistive heating element (12) in good thermal contact with the inner sheath (4), and a control circuit (13).
    • 用于测量空气流中二氧化碳浓度的传感器被输入到连接到至少一个电声元件(2,3)的测量单元(1),用于在测量单元(1)内发送和接收机载声波。 传感器的输出信号对应于这些波的传播速度和二氧化碳浓度的间接测量,具有自动偏移校正功能,用于补偿由温度或湿度变化引起的信号的不期望的偏移变化。 优选地,包括用于最小化偏移变化的影响的累积功能,其对于湿度变化可由具有高孔隙率和极性分子基团的表面密度的材料组成。 内护套(4)的温度控制由温度传感器(11),与内护套(4)良好热接触的电阻加热元件(12)和控制电路(13)来实现。