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    • 4. 发明专利
    • AIR CONDITIONER
    • JPH09152165A
    • 1997-06-10
    • JP31305595
    • 1995-11-30
    • TOSHIBA CORPTOSHIBA AVE KK
    • YAMASHITA TETSUJIHIRAHARA MORIOTAKAHASHI MITSUO
    • F24F11/02F25B1/00
    • PROBLEM TO BE SOLVED: To make it possible to detect a wall temperature in a room with accuracy and correct a setting temperature with this detected temperature and thereby form a comfortable air conditioned environment. SOLUTION: A correction setting room temperature determination unit 13 computes a correction setting temperature TSC from a wall temperature Tw detected with a wall temperature sensor 1, a room temperature sensor 3 and an open air temperature sensor 5, a room moisture Th and an open air temperature To . The difference between this correction setting room temperature TSC and a suction temperature Ta is supplied to a compressor frequency determination unit 17 and an indoor fan rotary speed determination unit 19, thereby computing a compressor frequency command and an indoor fan rotary speed command. A compressor and an indoor fan are controlled with an air conditioner/an environment system device 21, thereby forming a comfortable air conditioned environment with consideration given to the wall surface temperature.
    • 5. 发明专利
    • AIR CONDITIONER
    • JPH102601A
    • 1998-01-06
    • JP15229596
    • 1996-06-13
    • TOSHIBA CORPTOSHIBA AVE KK
    • TAKAHASHI MITSUOYAMASHITA TETSUJIHIRAHARA MORIO
    • F24F11/76F24F11/053
    • PROBLEM TO BE SOLVED: To suppress a decrease in follow-up performance to a detecting temperature in case of suppressing a variation in number of revolutions of a fan incorporated with a hysteresis at the time of heating and to ensure comfortableness by setting a plurality of sizes of temperature widths of hystereses of the detecting temperatures. SOLUTION: A hysteresis, i.e., variable allowing width is set to TH1 in the case that an indoor heat exchange temperature is between Tch1 and Tch2, and the hysteresis is set to TH2 in case that the temperature is Tc2 or more until the temperature becomes a set temperature. Thus, a region that the hysteresis is TH1=3deg and a region that the hysteresis is TH2=1deg are continuously provided. In this manner, since the hysteresis is set to 3deg while the temperature is relatively low, number of revolutions of a fan does not alter. Since a variation in the temperature Tc is reduced if the temperature becomes relatively high, a hysteresis width is set to 1deg, and the indoor temperature is delicately controlled.
    • 7. 发明专利
    • AIR CONDITIONER
    • JPH1030839A
    • 1998-02-03
    • JP18613996
    • 1996-07-16
    • TOSHIBA CORPTOSHIBA AVE KK
    • HIRAHARA MORIOYAMASHITA TETSUJITAKAHASHI MITSUO
    • F24F11/76F24F11/053
    • PROBLEM TO BE SOLVED: To realize a comfortable cooling air conditioning system without producing deviations between user's reported settings and room temperatures actually controlled by increasing the rotary speed of a fan as predetermined when room temperature control is in the transition period and decreasing the rotary speed as predetermined when the room temperature control is stabilized based on the temperature of an indoor heat exchanger. SOLUTION: An indoor blow off temperature Tf detected with an indoor blow-off temperature detection means 6 is added to the input to a target room temperature rotary speed determination means 4 in addition to the deviation produced between an indoor suction temperature Ta and a target room temperature Ts. Furthermore, a sequence, which includes control factors, which increases a target indoor fan rotary speed as predetermined when an indoor blow-off temperature Tf or the indoor heat exchanger temperature Tc is lower during the transition period of room temperature control, is incorporated in the target indoor fan rotary speed determination means 4. Or there is included a sequence which decreases the rotary speed of the target indoor fan rotary speed as predetermined if the indoor blow-off temperature Tf or the indoor heat exchanger temperature Tc is higher when the room temperature control is stabilized. This construction makes it possible to prevent the blow-off temperature from dropping excessively.
    • 9. 发明专利
    • APPARATUS FOR BREWING BEER
    • JPH10313848A
    • 1998-12-02
    • JP12848697
    • 1997-05-19
    • TOSHIBA CORPTOSHIBA AVE KK
    • YAMASHITA TETSUJIKAWAGUCHI TOSHIAKINARUSAKA KAZUHIROHIRAHARA MORIOSUZUKI SAWAKISHIMOTO TAKUYATSUKUNI TSUNEJITAKAHASHI MITSUO
    • C12C13/00
    • PROBLEM TO BE SOLVED: To provide an apparatus for brewing a beer, capable of carrying out the boiling and brewing in the same container and removing and washing the container and useful for brewing in the home. SOLUTION: This apparatus for brewing a beer is obtained by detachably housing an inner vessel 7 in a heat insulating container 6 and installing an induction heating heater 8 as a heating means, an electronic cooling device 9 using a Peltier element as a cooling and heating means and an inputting displaying part 10 in the heat insulating container 6, installing a lid 1 capable of covering the top surface of the inner vessel 7 housed in the heat insulating container 6, hermetically sealing the inner vessel 7 and equipped with a liquid extracting part 2 for extracting a liquid in the interior of the inner vessel 7, a stirring part 2c for stirring the liquid in the interior of the inner vessel 7, a gas venting part 3 for making a raised pressure in the interior of the inner vessel 7 escape to the outside at the time of boiling and fermenting, and a yeast charging part 4 for charging a brewer's yeast into the inner vessel 7. The liquid extracting part 2 and the stirring part 2c are composed of an integral structure. The liquid extracting part 2 is in the form of a J-shaped pipe having an end 2b thereof as a suction port. A sensor 5 for the temperature in the vessel 7 capable of measuring the liquid temperature is installed in the J-shaped pipe part 2a.