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    • 1. 发明授权
    • Open access sleeve for heated fluid units
    • 用于加热流体单元的开放式接近套筒
    • US09114218B2
    • 2015-08-25
    • US13887604
    • 2013-05-06
    • C Change Surgical LLC
    • Patrick KammerKevin Joseph RackersMark MartelTodd Cassidy
    • G05D23/12F27D11/00H05B3/00A61M5/44G05D23/20G05D23/22A61B19/02
    • A61M5/445A61B2050/0018G05D23/1909G05D23/1931G05D23/20G05D23/22
    • A series of implementations of open access sleeves for holding one or more closed containers of sterile fluid for use in medical procedures are disclosed. The open access sleeves may be adapted to provide heat to maintain the containers of sterile fluid above the ambient air temperature of the room. The provision of heat may be controlled by a control system. The control system may use a temperature measurement device to obtain a temperature representative of the container of sterile fluid and of the sterile fluid in the container. The access sleeve may be included in a device for maintaining an open volume of sterile fluid within a range of a target temperature to maintain the closed containers of sterile fluid at a temperature near target temperature for open volume of sterile fluid.
    • 公开了用于保持用于医疗程序的无菌流体的一个或多个封闭容器的开放式进入套筒的一系列实施方式。 开放进入套筒可以适于提供热量以将无菌流体的容器保持在房间的环境空气温度之上。 提供热量可以由控制系统控制。 控制系统可以使用温度测量装置来获得代表容器中无菌流体和无菌流体的容器的温度。 进入套管可以被包括在用于将无菌流体的开放体积保持在目标温度范围内的装置中,以将无菌流体的密闭容器保持在接近目标温度的温度下,用于开放体积的无菌流体。
    • 5. 发明申请
    • TEMPERATURE CONTROL CIRCUIT
    • 温度控制电路
    • US20110160931A1
    • 2011-06-30
    • US12755401
    • 2010-04-06
    • MING-CHIH HSIEH
    • MING-CHIH HSIEH
    • G05D23/00
    • G05D23/24G05D23/1909
    • A temperature control circuit includes a microprocessor, a protection module, a temperature detecting module, and a heating module. The temperature detecting module includes a thermistor and a first switch. The thermistor is operable to sense a temperature to turn on or off the first switch for outputting a detection signal to the microprocessor and the protection module. The protection module is operable to control the microprocessor to work or reset according to the detection signal. The heating module includes a heater and a second switch. The microprocessor controls the second switch to turn on or off for making the heater work or stop working according to the detection signal.
    • 温度控制电路包括微处理器,保护模块,温度检测模块和加热模块。 温度检测模块包括热敏电阻和第一开关。 热敏电阻可操作以感测温度以打开或关闭第一开关,以将检测信号输出到微处理器和保护模块。 保护模块可操作以根据检测信号控制微处理器工作或复位。 加热模块包括加热器和第二开关。 微处理器控制第二开关打开或关闭,使加热器工作或根据检测信号停止工作。
    • 6. 发明申请
    • Supplemental Transport Heater for Tanker Trailers
    • 油轮拖车补充运输加热器
    • US20100132916A1
    • 2010-06-03
    • US12347921
    • 2008-12-31
    • Norman M. Stauffer
    • Norman M. Stauffer
    • B60H1/00F28D15/00G05D23/00
    • G05D23/1909B60P3/2295
    • A supplemental heating apparatus for use in conjunction with the coolant system of a truck engine provides a supplemental source of heat energy to the heat exchanger within a tanker trailer. The supplemental heating apparatus is activated when the truck engine is shut-off. A control system undertakes a testing cycle in which a circulator pulls coolant out of the tanker trailer and the temperature of the coolant is sensed after a delay of time so that the coolant from within the heat exchanger is tested. The burner draws fuel from the truck's fuel tanks to provide heat energy when the sensed temperature is below a threshold. The coolant is circulated between the boiler associated with the burner and the heat exchanger until the return coolant is raised above a second threshold. The testing cycle continues through a loop of a predetermined duration independent of the activation of the heating cycle.
    • 与卡车发动机的冷却剂系统一起使用的补充加热装置为油罐拖车内的热交换器提供补充的热能源。 当卡车发动机关闭时,辅助加热装置被启动。 控制系统进行一个测试循环,其中循环器将冷却剂从油罐拖车中拉出,并且在延迟时间之后感测冷却剂的温度,使得来自热交换器内的冷却剂被测试。 当检测到的温度低于阈值时,燃烧器从卡车的燃料箱中抽取燃料以提供热能。 冷却剂在与燃烧器相关联的锅炉和热交换器之间循环,直到回流冷却剂升高到高于第二阈值。 测试周期持续经过一个预定持续时间的循环,而与加热循环的激活无关。
    • 7. 发明申请
    • PORTABLE MOXIBUSTION ENERGY GENERATOR BY USING WAVELIKE TEMPERATURE VARIATION
    • 便携式电力发电机使用波形温度变化
    • US20100082085A1
    • 2010-04-01
    • US12243971
    • 2008-10-01
    • Ching-Chang PaiMing-Hung Tsai
    • Ching-Chang PaiMing-Hung Tsai
    • A61F7/00G05D23/19
    • A61F7/007A61F2007/0095G05D23/1909
    • A portable moxibustion energy generator by using wavelike temperature variation comprises a box body; a heat unit; a temperature detection unit being connected to the heat unit; an operation unit installed within the box body and being electrically connected the temperature detection unit for determining a tendency of the heat generated from the heat unit; a circuit control unit electrically connected to the operation unit; and a power supply unit being electrically connected to the circuit control unit; the power supply unit supplying power to the heat unit for converting electric energy into heat energy. The temperature detection unit detects a temperature of the heat unit and determines a tendency of heat generated from the heat unit for determination; the heat unit supplying power dynamically so as to adjust the temperature of the heat unit. The method for performing the same is also included.
    • 使用波浪温度变化的便携式艾灸能量发生器包括箱体; 加热单元 温度检测单元连接到加热单元; 操作单元,其安装在所述盒体内并与所述温度检测单元电连接,用于确定从所述加热单元产生的热的趋势; 电连接到所述操作单元的电路控制单元; 以及电源单元,其电连接到所述电路控制单元; 供电单元向加热单元供电以将电能转换成热能。 温度检测单元检测加热单元的温度,并且确定从加热单元产生的热量的趋势用于确定; 所述加热单元动态地供给动力以调节所述加热单元的温度。 还包括执行该方法的方法。
    • 9. 发明授权
    • Temperature adjusting device for an LED light source
    • LED光源温度调节装置
    • US07438439B2
    • 2008-10-21
    • US11533269
    • 2006-09-19
    • Shoichi Nakano
    • Shoichi Nakano
    • F21V33/00F21V23/04
    • G05D23/1909
    • A temperature adjusting device of the present invention is provided with: an LED light source 11r, 11g and 11b, a temperature sensor 9 for detecting an ambient temperature of the LED light source 11r, 11g and 11b, a cooling fan for cooling the LED light source 11r, 11g and 11b, a driving circuit 22 for driving the cooling fan 20, a control unit 4 that controls a voltage to be applied to the cooling fan 20 so as to set the ambient temperature within a predetermined range based upon the results of detection by the temperature sensor 9 and a heater placed near the LED light source 11r, 11g and 11b, and in this arrangement, the control unit is designed to control the applied voltage to the heater so as to reduce the heating value of the heater in cooperation with lighting of the LED light source 11r, 11g and 11b.
    • 本发明的温度调节装置设置有:LED光源11r,11g和11b,用于检测LED光源11r,11g和11b的环境温度的温度传感器9,冷却 用于冷却LED光源11r,11g和11b的风扇,用于驱动冷却风扇20的驱动电路22;控制单元4,其控制施加到冷却风扇20的电压,以便设定环境温度 基于温度传感器9的检测结果和放置在LED光源11r,11g和11b附近的加热器的结果,在预定范围内,并且在该布置中,控制单元被设计成控制施加到 加热器,以便与LED光源11r,11g和11b的照明协同降低加热器的发热量。