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    • 1. 发明专利
    • Ice making machine
    • 制冰机
    • JP2011058770A
    • 2011-03-24
    • JP2009211578
    • 2009-09-14
    • Toshiba Electric Appliance Co Ltd東芝機器株式会社
    • TAKADA MASAHIROHATORI TOSHIHISA
    • F25C1/00
    • PROBLEM TO BE SOLVED: To provide an ice making machine capable of increasing an ice making amount per a unit time. SOLUTION: This ice making machine includes two ice making sections 13a, 13b having ice making containers, making ice in the ice making containers by being connected with a cooling circuit 12, and separating and discharging the ice from the ice making containers by ice separation processing after completion of ice-making. One of the ice making sections 13a, 13b is connected to the cooling circuit 12, the connection to the cooling circuit 12 is switched to the other ice making section each completion of ice-making in one of the ice making sections, and the ice separation processing in the ice making section in which the ice-making is completed, is performed in parallel with the ice-making in the other ice making section. Thus, the ice can be continuously made without a stop time as the entire ice making machine 11, and the ice making amount per a unit time can be increased. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供能够每单位时间增加制冰量的制冰机。 解决方案:该制冰机包括具有制冰容器的两个制冰部分13a,13b,通过与冷却回路12连接而在制冰容器中形成冰,并且通过以下步骤将冰从制冰容器中分离和排出: 制冰完成后的冰分离处理。 其中一个制冰部分13a,13b连接到冷却回路12,与其中一个制冰部分的每个制冰部分完成切换到另一个制冰部分,并将冰分离 在制冰部分中完成制冰部分的处理与另一个制冰部分中的制冰并行地执行。 因此,作为整个制冰机11,可以不停止时间连续地制作冰,并且能够提高单位时间的制冰量。 版权所有(C)2011,JPO&INPIT
    • 2. 发明专利
    • Ice making machine
    • 制冰机
    • JP2011058732A
    • 2011-03-24
    • JP2009209195
    • 2009-09-10
    • Toshiba Electric Appliance Co Ltd東芝機器株式会社
    • TAKADA MASAHIROHATORI TOSHIHISA
    • F25C1/08F25C5/08
    • PROBLEM TO BE SOLVED: To provide an ice making machine capable of efficiently making ice, shortening an ice making time, and increasing an ice making amount per a unit time. SOLUTION: This ice making machine includes an ice making container 15 for storing ice making water W, and further includes an ice making unit 16 having an ice making element 33 disposed in the ice making water W of the ice making container 15, and a contact section 32 kept into contact with the ice making container 15 to transfer heat, and cooled by a cooling circuit. The ice making element 33 of the ice making unit 16 is directly disposed in the ice making water W of the ice making container 15 to efficiently cool the ice making water W, and the contact section 32 of the ice making unit 16 is kept into contact with the ice making container 15 to further efficiently cool the ice making water W from the ice making container 15. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供能够有效制冰的制冰机,缩短制冰时间,并且每单位时间增加制冰量。 解决方案:该制冰机包括用于储存制冰水W的制冰容器15,还包括制冰单元16,制冰单元16具有设置在制冰容器15的制冰水W中的制冰元件33, 以及与制冰容器15保持接触以传递热量并由冷却回路冷却的接触部32。 制冰单元16的制冰元件33直接设置在制冰容器15的制冰水W中,以有效地冷却制冰水W,制冰单元16的接触部分32保持接触 与制冰容器15进一步有效地从制冰容器15冷却制冰水W.版权所有(C)2011,JPO&INPIT
    • 3. 发明专利
    • Water level detection device
    • 水位检测装置
    • JP2010169501A
    • 2010-08-05
    • JP2009011603
    • 2009-01-22
    • Toshiba Electric Appliance Co Ltd東芝機器株式会社
    • SUZUKI MITSUOIRINO KENJI
    • G01F23/56
    • PROBLEM TO BE SOLVED: To provide a water level detection device 17 capable of using a float 21 made from a resin material, even under an operating environment where a cool heat cycle is applied. SOLUTION: An opening 15 of a water tank lid 12 is blocked up with a diaphragm 22. The float part 27 of the float 21 is arranged in a water tank 11, and the shaft 28 of the float 21 penetrates the diaphragm 22 and projects above the tank lid 12. The upper end of the shaft 28 of the float 21 which moves up and down in response to the water level inside the water tank 11, is detected with water-level detection sensors 58 and 59. As to the float 21, the float part 27 and the shaft 28 are integrally made into a hollow shape from resin material, and the atmospheric air inside the hollow part is opened up from the upper end of the shaft 28. The inside pressure of the float 21 is always kept at atmospheric pressure, so that breakage of the float 21 caused by a change in internal pressure is prevented. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:即使在施加冷热循环的操作环境下,也能够提供能够使用由树脂材料制成的浮子21的水位检测装置17。 解决方案:水箱盖12的开口15用隔膜22堵住。浮子21的浮子部分27布置在水箱11中,浮子21的轴28穿过隔膜22 并突出在罐盖12上方。浮子21的轴28的上端响应于水箱11内的水位上下移动,由水位检测传感器58和59检测。至于 浮子21,浮子部27和轴28从树脂材料一体制成中空形状,并且中空部分内的大气从轴28的上端开口。浮子21的内部压力 总是保持在大气压下,从而防止由内压变化引起的浮子21的破损。 版权所有(C)2010,JPO&INPIT
    • 4. 发明专利
    • Beverage supply device
    • 饮料供应设备
    • JP2010082046A
    • 2010-04-15
    • JP2008252442
    • 2008-09-30
    • Toshiba Electric Appliance Co Ltd東芝機器株式会社
    • KANEKO TOSHIO
    • A47J31/60A47J31/40
    • PROBLEM TO BE SOLVED: To provide a beverage supply device capable of detecting the clogging of a filter, thereby performing the cleansing operation of the filter. SOLUTION: The beverage supply device 1 includes: an extraction chamber 56 which is supplied with a powder material P; a hot water supply device 32 which supplies the extraction chamber 56 with pressurized hot water through a hot water path 32a; the filter 55 which filters the extracted liquid made to flow out from the extraction chamber 56; an extracted liquid flow out path through which the extracted liquid having passed through the filter 55 flows out; and a filter clogging detection means 35 provided in the path from the hot water supply device 32 through to the terminal of the extracted liquid flow out path. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种能够检测过滤器堵塞的饮料供应装置,从而进行过滤器的清洁操作。 饮料供应装置1包括:提供有粉末材料P的提取室56; 一个热水供应装置32,其通过热水通道32a向抽取室56提供加压的热水; 对从提取室56流出的抽出液进行过滤的过滤器55; 已经通过过滤器55的提取液体流出的提取液流出路径; 以及设置在从热水供给装置32到提取液流出路径的端子的路径中的过滤器堵塞检测装置35。 版权所有(C)2010,JPO&INPIT
    • 5. 发明专利
    • Beverage brewing device
    • 饮料烘焙设备
    • JP2010067210A
    • 2010-03-25
    • JP2008235436
    • 2008-09-12
    • Toshiba Electric Appliance Co Ltd東芝機器株式会社
    • SUZUKI MITSUO
    • G07F13/06A47J31/32A47J31/40A47J31/44
    • PROBLEM TO BE SOLVED: To provide a beverage brewing device 11 having smaller number of motors and reliably discharging waste materials for brewing. SOLUTION: The beverage brewing device is provided with: a driving mechanism 40 for driving a brewing container moving mechanism 37 which moves a brewing container 31 vertically with respect to a liquid receiving block 33, and a filter moving mechanism 38 which moves a filter 32 in a length direction. The driving mechanism 40 transmits driving force of one driving motor 39 to only the brewing container moving mechanism 37 when the driving motor is driven to rotate in one direction, and to only the filter moving mechanism 38 when the driving motor 39 is driven to rotate in the other direction. Consequently, the brewing container moving mechanism 37 and filter moving mechanism 38 never operate simultaneously, and the waste materials for brewing collected by a filter 32 are reliably discharged from between the brewing container 31 and liquid receiving block 33. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供具有较少数量的电动机并可靠地排出用于酿造的废料的饮料冲泡装置11。 饮料冲泡装置设置有:用于驱动冲泡容器移动机构37的驱动机构40,其使冲泡容器31相对于液体接收块33垂直移动;以及过滤器移动机构38,其移动 过滤器32在长度方向上。 驱动机构40在驱动电动机沿一个方向驱动而仅驱动冲泡容器移动机构37的一个驱动电机39的驱动力时,仅驱动电动机39驱动旋转时的过滤器移动机构38 另一个方向。 因此,冲泡容器移动机构37和过滤器移动机构38不能同时操作,并且由过滤器32收集的用于酿造的废料可靠地从冲泡容器31和液体接收块33之间排出。版权所有(C) )2010,JPO&INPIT
    • 6. 发明专利
    • Hot water supply apparatus
    • 热水供应设备
    • JP2009276033A
    • 2009-11-26
    • JP2008130283
    • 2008-05-19
    • Toshiba Electric Appliance Co Ltd東芝機器株式会社
    • YAGUCHI MASAHIKO
    • F24H1/18F24H1/00
    • PROBLEM TO BE SOLVED: To provide a hot water supply apparatus 11 capable of reducing a boiling-up time and power consumption by sufficiently reducing the loss of the quantity of heat ejected to the outside from a relief valve 33 in a boiling-up time. SOLUTION: Take-out pipelines 25, 26 connected to an upper part and an intermediate part of a hot water storage tank 17 respectively are connected to a mixing valve 28, and a hot water supply pipeline 29 for supplying hot water is connected to the mixing valve 28. The hot water supply pipeline 29 is provided with the relief valve 33 opened to release pressure when the inside of the hot water storage tank 17 reaches a predetermined pressure or higher in the boiling-up time. In the boiling-up time, it is adjusted to take out hot and cold water from the take-out pipeline 26 at the intermediate part by the mixing valve 28. Expanded water discharged to the outside from the relief valve 33 is not hot water of high temperature boiled up and stored on the upper side in the hot water storage tank 17 but water or warm water of low temperature at the intermediate part in the hot water storage tank 17. COPYRIGHT: (C)2010,JPO&INPIT
    • 解决的问题:提供一种热水供给装置11,其能够通过充分减少在沸腾状态下从安全阀33排出到外部的热量的损失而能够减少煮沸时间和功率消耗, 上班时间

      解决方案:连接到热水储存箱17的上部和中间部分的取出管道25,26分别连接到混合阀28,并且连接用于供应热水的热水供应管道29 热水供应管道29设置有打开的释放阀33,以在热水储存箱17的内部在沸腾时间达到预定压力或更高压力时释放压力。 在煮沸时间内,通过混合阀28调节从中间部分的取出管路26取出热水和冷水。从溢流阀33向外部排出的膨胀水不是热水 高温煮沸并储存在热水储存箱17的上侧,而在热水储存箱17的中间部分处于低温的水或温水。版权所有(C)2010,JPO&INPIT

    • 7. 发明专利
    • Hot water supply apparatus
    • 热水供应设备
    • JP2009276031A
    • 2009-11-26
    • JP2008130281
    • 2008-05-19
    • Toshiba Electric Appliance Co Ltd東芝機器株式会社
    • YAGUCHI MASAHIKO
    • F24H1/00F24H1/18
    • PROBLEM TO BE SOLVED: To provide a hot water supply apparatus 11 capable of determining that a boiling-up circuit 70 is in a reverse connected state between a tank unit 12 and a heat pump unit 13 utilizing a water supply temperature detecting sensor 84 and a boiling-up temperature detecting sensor 85 even when a boiling-up circulation pump 83 is on the heat pump unit 13 side. SOLUTION: The heat pump unit 13 and the boiling-up circulation pump 83 are operated, and when the detected temperature of the boiling-up temperature detecting sensor 85 is a predetermined boiling-up temperature or higher, the operation is stopped. Connection of a take-in line 49 of a reheating circuit 50 is then switched from a boiling-up return line 72 to a line toward a hot water storage tank 17 by selector valves 48, 75 via the heat pump unit 13 only for a predetermined time to operate a reheating circulation pump 47. During the predetermined time, if the detected temperature of the water supply temperature detecting sensor 84 reaches the predetermined boiling-up temperature or higher, the boiling-up circuit 70 is determined to be in a normal connected state, and if the detected temperature does not reach the predetermined boiling-up temperature or higher, the boiling-up circuit 70 is determined to be in the reverse connected state. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种热水供应装置11,其能够利用供水温度检测传感器确定在罐单元12和热泵单元13之间的反向连接状态下的煮沸回路70 84和煮沸温度检测传感器85,即使沸腾循环泵83在热泵单元13侧。 解决方案:热泵单元13和煮沸循环泵83操作,当煮沸温度检测传感器85的检测温度为预定的沸腾温度以上时,停止操作。 再加热回路50的接收管线49的连接然后通过热泵单元13从煮沸返回管线72切换到通过选择阀48,75的热水储存箱17,直到预定的 在预定时间内,如果检测到的供水温度检测传感器84的温度达到预定的沸腾温度或更高温度,则将沸腾回路70确定为正常连接 状态,并且如果检测到的温度未达到预定的沸腾温度或更高温度,则将煮沸电路70确定为反向连接状态。 版权所有(C)2010,JPO&INPIT
    • 8. 发明专利
    • Refrigerating cycle device of refrigerating apparatus
    • 制冷装置的制冷循环装置
    • JP2009121771A
    • 2009-06-04
    • JP2007297395
    • 2007-11-16
    • Toshiba Electric Appliance Co Ltd東芝機器株式会社
    • YAMADA TOKUZOSAKAGUCHI SHUICHI
    • F25D21/14F25D19/00
    • PROBLEM TO BE SOLVED: To provide a refrigerating cycle device 11 of refrigerating apparatus, increasing the number of shared parts for many kinds of product specifications. SOLUTION: In a mount 25, a second mount part 29 where an evaporation pan 23 is disposed is slidably connected to a first mount part 27 where a refrigerating cycle unit 13 is disposed to cope with a difference in mounting position of the evaporation pan 23. In an evaporation pipe 15, an expansion and contraction part 21 is interposed between a connecting part 19 connecting a compressor 14 and a condenser 16 to each other and an evaporation pan insert part 20 to cope with a difference in connecting position of connecting to the compressor 14 and the condenser 16 and a difference in position of the evaporation pan 23. The expansion and contraction part 21 of the evaporation pipe 15 is formed substantially like a U-shape or like a coil so that displacement can be performed without any unreasonable load to the evaporation pipe 15. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供制冷装置的制冷循环装置11,增加了许多种类的产品规格的共享部件的数量。 解决方案:在安装件25中,设置有蒸发盘23的第二安装部分29可滑动地连接到第一安装部分27,其中设置有冷冻循环单元13以应对蒸发器的安装位置的差异 在蒸发管15中,膨胀和收缩部分21插入在连接压缩机14和冷凝器16的连接部分19和蒸发盘插入部分20之间,以应对连接的连接位置的差异 到压缩机14和冷凝器16以及蒸发盘23的位置不同。蒸发管15的膨胀和收缩部分21基本上形成为U形或类似于线圈,使得可以在没有任何 对蒸发管15的不合理负荷。(C)2009年,JPO&INPIT
    • 9. 发明专利
    • Cup supplying device
    • 杯子供应装置
    • JP2008305111A
    • 2008-12-18
    • JP2007151082
    • 2007-06-07
    • Toshiba Electric Appliance Co Ltd東芝機器株式会社
    • UYAMA ITSUKI
    • G07F13/10
    • PROBLEM TO BE SOLVED: To provide a cup supplying device 11 capable of surely replenishing cup stacks 13 from a replenishment part 22 to a discharge part 23.
      SOLUTION: The replenishment part 22 and the discharge part 23 are adjacently arranged. A support part 24 for supporting the bottom of a cup stack 13 is formed on the bottom of the replenishment part 22, and a drop port 30 is opened on the bottom of the discharge part 23. A replenishment means 25 moves the cup stack 13 in the replenishment part 22 to the discharge part 23 to replenish the cup stack 13. A driving roller 34 to be rotationally driven is arranged on the end part of the support part 24 which faces the drop port 30 of the discharge part 23. When moving the cup stack 13 from the replenishment part 22 to the discharge part 23 by the replenishment means 25, the driving roller 34 is rotationally driven and the bottom of the cup stack 13 is forcedly sent to the drop port 30 of the discharge part 23.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够从补充部22向排出部23充分补充杯形堆叠13的杯供给装置11.解决方案:补充部22和排出部23相邻配置 。 在补充部22的底部形成有用于支撑杯子叠层13的底部的支撑部24,在排出部23的底部开口下落口30.补充装置25将杯形堆叠13移动到 补充部分22到排出部分23以补充杯组13。在支撑部分24的与排出部分23的下降口30相对的端部上布置有要旋转驱动的驱动辊34。当移动 通过补充装置25从补充部22到排出部23的杯组13,旋转驱动驱动辊34,并且将杯形堆叠13的底部强制送到排出部23的下降口30。

      版权所有(C)2009,JPO&INPIT

    • 10. 发明专利
    • Mixing device and beverage dispenser
    • 混合装置和饮料分配器
    • JP2008264085A
    • 2008-11-06
    • JP2007108629
    • 2007-04-17
    • Toshiba Electric Appliance Co Ltd東芝機器株式会社
    • IRINO KENJITSUKADA KOREHIRO
    • A47J31/40A47J31/00A47J31/44
    • PROBLEM TO BE SOLVED: To provide a mixing device 19 capable of reducing scattering of a part of a powder material supplied to a mixing bowl 36 due to the influence of a wind stream by the fan 97 of a cooling machine 91. SOLUTION: The powder material supplied from a powder material supply part 21 is sent to the mixing device 19 by a powder material chute 81. A lid body 32 is mounted on the upper face of the mixing bowl 36 of the mixing device 19. A powder material inlet port 41 through which the powder material is thrown in from the powder material chute 81 is provided in the lid body 32, and a wall part 43 is erected from the rear side edge position of the powder material inlet port 41 to the upper part of the height position of the lower edge of the powder material chute 81. The fan 97 of the cooling machine 91 for blowing air from the front toward the back is positioned behind the mixing device 19. The wind stream from the lower end of the powder material chute 81 to the powder material inlet port 41 of the lid body 32 is blocked by the wall part 43, so that scattering of a part of the powder material thrown from the powder material chute 81 into the powder material inlet port 41 is reduced. COPYRIGHT: (C)2009,JPO&INPIT
    • 解决的问题:提供一种混合装置19,其能够由于冷却机91的风扇97的风流的影响而减少供给到混合槽36的一部分粉末材料的飞散。 P>解决方案:从粉末材料供应部21供给的粉末材料通过粉末材料槽81送到混合装置19.盖体32安装在混合装置19的混合槽36的上表面上。 粉末材料入口41通过粉末材料滑槽81投入粉末材料入口41设置在盖体32中,壁部43从粉末材料入口41的后侧边缘位置竖立到 粉末材料槽81的下边缘的高度位置的上部。用于从前向后吹送空气的冷却机91的风扇97位于混合装置19的后面。来自下部的风流 将粉料料槽81送至粉末 盖体32的材料吸入口41被壁部43阻挡,从粉末材料滑槽81投入的粉末材料的一部分的粉末散射到粉末材料入口41中。 版权所有(C)2009,JPO&INPIT