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    • 2. 发明授权
    • Cooling device with water proof structure
    • 具防水结构的冷却装置
    • US07100682B2
    • 2006-09-05
    • US10679161
    • 2003-10-03
    • Yoshiyuki OkamotoKiyoshi KawaguchiKoji Kishita
    • Yoshiyuki OkamotoKiyoshi KawaguchiKoji Kishita
    • F28D9/02H05K7/20F24F1/02H02B1/56
    • H05K7/206F28D9/0068
    • A cooling device for cooling an inner part of an approximately sealed box includes a casing and a heat exchanger disposed in the casing. Plural inside air passages through which air inside the box flows and plural outside air passages through which air outside the box flows are alternately adjacently arranged in the heat exchanger. In the cooling device, both outside air introduction port and outside air discharge port are provided in an outer side plate of the casing, and a drain space is provided between the heat exchanger and the outer side plate of the casing so that outside air passages communicate with the outside air discharge port through the drain space. Thus, even when rain water is introduced into the casing from the outside air discharge port, almost rain water flows downwardly through the drain space, and it can restrict rain water from being introduced into the heat exchanger.
    • 用于冷却大致密封的箱体的内部的冷却装置包括壳体和布置在壳体中的热交换器。 箱内空气的多个内部空气通道流动,并且箱体外部的空气流过的多个外部空气通道交替地相邻地布置在热交换器中。 在冷却装置中,外部空气导入口和外部空气排出口均设置在壳体的外侧板中,并且在热交换器与壳体的外侧板之间设置排水空间,使得外部空气通路连通 外部排气口通过排水空间。 因此,即使从外部空气排出口将雨水引入到壳体中,几乎雨水也通过排水空间向下流动,并且能够限制雨水被引入热交换器。
    • 3. 发明授权
    • Cooling device with waterproof structure
    • 防水结构冷却装置
    • US06789612B1
    • 2004-09-14
    • US09666697
    • 2000-09-21
    • Yoshiyuki OkamotoKiyoshi KawaguchiKoji Kishita
    • Yoshiyuki OkamotoKiyoshi KawaguchiKoji Kishita
    • F28D902
    • H05K7/206F28D9/0068
    • A cooling device for cooling an inner part of an approximately sealed box includes a casing and a heat exchanger disposed in the casing. Plural inside air passages through which air inside the box flows and plural outside air passages through which air outside the box flows are alternately adjacently arranged in the heat exchanger. In the cooling device, both outside air introduction port and outside air discharge port are provided in an outer side plate of the casing, and a drain space is provided between the heat exchanger and the outer side plate of the casing so that outside air passages communicate with the outside air discharge port through the drain space. Thus, even when rain water is introduced into the casing from the outside air discharge port, almost rain water flows downwardly through the drain space, and it can restrict rain water from being introduced into the heat exchanger.
    • 用于冷却大致密封的箱体的内部的冷却装置包括壳体和布置在壳体中的热交换器。 箱内空气的多个内部空气通道流动,并且箱体外部的空气流过的多个外部空气通道交替地相邻地布置在热交换器中。 在冷却装置中,外部空气导入口和外部空气排出口均设置在壳体的外侧板中,并且在热交换器与壳体的外侧板之间设置排水空间,使得外部空气通路连通 外部排气口通过排水空间。 因此,即使从外部空气排出口将雨水引入到壳体中,几乎雨水也通过排水空间向下流动,并且能够限制雨水被引入热交换器。
    • 8. 发明授权
    • Cooling system for cooling interior of substantially airtight housing
    • 冷却系统,用于冷却基本上气密的外壳的内部
    • US06430364B2
    • 2002-08-06
    • US09835955
    • 2001-04-16
    • Koji Kishita
    • Koji Kishita
    • F24H300
    • H05K7/206F24H9/2071G05D23/1909H05K7/207
    • A heater protective device of a cooling system includes a couple of thermostats and one thermal fuse. The thermostats are secured to opposing sides of one metal plate. When a temperature of each thermostat rises due to the heat conducted through the metal plate and substantially reaches 40 degrees Celsius or higher, an internal connection of the thermostat is turned off, i.e., is opened. When the temperature of the thermostat decreases substantially below 40 degrees Celsius, the internal contact of the thermostat is turned on, i.e., is closed. The metal plate is secured to a heat receiving bracket that is secured to a heater cover and that is heated upon receiving radiated heat from the electric heater. A thermal fuse extends through the metal plate in a thickness direction of the metal plate and is secured thereto.
    • 冷却系统的加热器保护装置包括一对恒温器和一个热熔丝。 恒温器固定在一个金属板的相对侧上。 当每个恒温器的温度由于通过金属板传导的热量而升高并且基本上达到40摄氏度或更高时,恒温器的内部连接被关闭,即打开。 当恒温器的温度显着降低到40摄氏度以下时,恒温器的内部接触被打开,即关闭。 金属板被固定到固定到加热器盖的热接收支架,并且在从电加热器接收辐射热时被加热。 热熔丝在金属板的厚度方向上延伸穿过金属板并固定在金属板上。