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    • 5. 发明申请
    • ELECTRIC HEATER
    • 电加热器
    • WO1997038268A1
    • 1997-10-16
    • PCT/EP1996001764
    • 1996-04-26
    • EWT ELEKTROGERÄTE GMBH & CO. KGPETZ, GünterLANDAUER, Heinz
    • EWT ELEKTROGERÄTE GMBH & CO. KG
    • F24H09/20
    • F24H9/2071F24H3/0417
    • The invention relates to an electric heater, in particular a heating fan or air-conditioning device, air humidifier or the like with a receiving housing for a heating element, a blower and a thermostat for pre-selection of switching-on temperatures and supply and discharge openings for the blower-air flow. Connections for heat emission and air circulation and cold air supply are provided by thermostats (8, 9) and an electronic switching unit. One thermostat (9) which acts as the winter operational adjusting element, along with the other thermostat (8) which acts as the summer operational control element and the electronic switching unit, controls heating and air circulation in the room. The thermostat (8) acting as the summer operational control element controls, through the electronic switching unit, the supply of cold air by the blower when heating and air circulation are interrupted.
    • 在一个电加热装置,特别是加热器或Klimatisiergerät,加湿器,或类似物。 与用于加热元件的接收壳体,风扇和一个恒温器,以从角质,以及空气入口和出口开口用于风扇的空气流电路,以热负荷和空气变化和冷空气供应选择是由恒温器(8,9)和电子开关系统,其特征在于,恒温器(成为可能 9)作为冬季操作致动器控制的加热操作,并与其他的房间空气循环在一起的加法器操作的致动器,供应恒温器(8)和开关电子设备,并且通过鼓风机在加热和空气循环的中断的情况下作为夏季操作致动器恒温器(8)通过对冷空气的供给的开关电子设备的装置 控制。
    • 6. 发明申请
    • DEVICE FOR CONTROLLING HEATING BOILERS
    • 用于控制加热锅炉的装置
    • WO1994002787A1
    • 1994-02-03
    • PCT/SE1993000627
    • 1993-07-14
    • HALLSTRÖM, PeterMÅRTENSSON, Göran
    • HALLSTRÖM, Peter
    • F24H09/20
    • F24D19/1009G05D23/1917
    • A device for heating boilers (1) in heating plants comprises a means (2) for heating a heat carrying medium present in the boiler and circulating out thereof in the heating plant as well as a means (11) adapted to detect the temperature of the heat carrying medium present in the boiler and send signals to the heating means (2) to start and stop the heating of the medium when a first lower temperature level is underpassed and a second higher temperature level is exceeded, respectively, by the medium in the heating boiler (1). The device comprises further means (12) adapted to delay the start of the heating means (2) when the first temperature level is reached by the medium and this is detected by the detecting means (11).
    • 用于在加热设备中加热锅炉(1)的装置包括用于加热存在于锅炉中并在加热设备中循环的载热介质的装置(2)以及适于检测加热装置的温度的装置(11) 存在于锅炉中的载热介质,并且当第一较低温度水平低于第二较低温度水平并且分别超过第二较低温度水平时,将信号发送到加热装置(2)以启动和停止介质的加热 加热锅炉(1)。 该装置包括适于在介质达到第一温度水平时延迟加热装置(2)的启动并且由检测装置(11)检测的装置(12)。
    • 7. 发明申请
    • ELECTRICAL HEATING APPLIANCE
    • 电加热器具
    • WO1990000706A1
    • 1990-01-25
    • PCT/EP1989000780
    • 1989-07-07
    • PETZ, Günter
    • F24H09/20
    • F24H9/2071
    • Electrical heating appliance, in particular a fan heater with a generally prismatic housing for receiving electrical components together with their switching, regulating and control elements, and a safety switch which can operate in a heat-dependent manner. A simple, straightforward design of the switching, regulating and control elements is achieved by a strip-shaped housing section (7) for the electrical components accommodated in the housing, e.g. fan motor, electrical heating element; said strip-shaped housing section is arranged transversely and horizontally on the outside of a front wall (6) of the housing (1), the switching, regulating and control elements and their actuating elements being arranged on and/or in said strip-shaped housing section. Moreover, a harness (14), connected to the switching, regulating and control elements and having on its free extremity a multipoint connector, and a mains cable (13) extend from said housing section.
    • 9. 发明申请
    • ELECTRIC HOT WATER APPARATUS WITH OUTPUT TEMPERATURE REGULATION AND ELECTRONIC POWER REGULATING DEVICE
    • 具有输出温度调节和电子调节装置的电热水装置
    • WO1986000689A2
    • 1986-01-30
    • PCT/EP1985000329
    • 1985-07-06
    • ECKERFELD, Alfred
    • F24H09/20
    • F24H9/2014F24D10/00G05D23/1912G05D23/24
    • An electric hot-water apparatus produces with heating resistances (32-36) in heating channels (16-20) a base power and, with three heating resistances (38-42) in heating channels (22-26), and adjustable power. This adjustable power is controlled by a regulating device (44) via triacs (46, 50). In the case of a small water flow, two phases, a small base power and a small adjustable power are connected, to the heating resistances. In the case of a high water flow, the heating resistances are star-connected and the adjustable heating resistances are connected in triangular configuration. An electric power regulation device (44) includes a mains rectifier bridge (110), a Schmitt trigger (116) connected downstream and a frequency divider (120) with two outputs. The signals at the outputs are comprised of the edge of one pulse out of three and reset by the corresponding edge of the immediately following pulse, respectively the following pulse. A semiconductor relay (122) is controlled via a selective switch or a logic circuit optionally by the signals at the outputs and switch for one, two or three half-waves.
    • 电热水设备在加热通道(16-20)中产生加热电阻(32-36)的基本功率,并且在加热通道(22-26)中具有三个加热电阻(38-42)和可调节功率。 这种可调节功率由调节装置(44)通过三端双向可控硅(46,50)来控制。 在水流量小的情况下,将两相,小基本功率和小的可调电力连接到加热电阻。 在高水流的情况下,加热电阻是星形连接的,并且可调节的加热电阻以三角形配置连接。 电力调节装置(44)包括电源整流桥(110),连接在下游的施密特触发器(116)和具有两个输出的分频器(120)。 输出端的信号由三个脉冲中的一个脉冲的边沿组成,分别由紧随其后的脉冲的相应边沿复位。 半导体继电器(122)通过选择开关或逻辑电路可选地由输出端的信号控制,并切换一个,两个或三个半波。
    • 10. 发明申请
    • NATURAL CIRCULATION-TYPE HOT WATER STORAGE HEATER
    • 自然循环型热水储存加热器
    • WO1980002737A1
    • 1980-12-11
    • PCT/JP1980000113
    • 1980-05-28
    • MITSUBISHI DENKI KKYOSHIDA T
    • MITSUBISHI DENKI KK
    • F24H09/20
    • F24H1/186F24H9/2035
    • A natural circulation-type hot water storage heater for storing hot water obtained from a water storage tank (as water or hot water) at the bottom through a first circulation pipe, a heat exchanger and a second circulation pipe into a tank. A thermovalve is mounted within the second circulation pipe on the downstream side of the heat exchanger to vary its opening area in response to the hot water temperature to thereby substantially maintain constant the temperature of the hot water from the heat exchanger. As a result, the temperature distribution at the time the water is boiling in the water storage tank is rendered substantially constant instantaneously so as to increase the effective hot water storage amount. In addition, the hot water temperature is held constant without fluctuation regardless of the repetitive ON and OFF operation of a burner, and will not fluctuate even if the burner is turned ON when hot water is supplied. Instead, the time during which the hot water is continuously supplied at constant temperature is prolonged to provide an effective hot water storage amount which is greater than the inside volume of the water storage tank.