会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明授权
    • Humidity control system
    • 湿度控制系统
    • US07886551B2
    • 2011-02-15
    • US11921296
    • 2006-05-30
    • Nobuki MatsuiYoshinori Narikawa
    • Nobuki MatsuiYoshinori Narikawa
    • F25D17/06
    • F24F3/1411F24F3/1429F25B13/00F25B2600/21F25B2600/2513
    • A humidity control system (10) includes a refrigerant circuit (50) including a compressor (53), a first adsorption heat exchanger (51) carrying an adsorbent thereon, an expansion valve (55) adjustable in opening and a second adsorption heat exchanger (52) carrying an adsorbent thereon, supplies humidity-controlled air to a room by operating alternately in a first batch mode in which the second adsorption heat exchanger (52) adsorbs moisture in air and the first adsorption heat exchanger (51) releases moisture to air and a second batch mode in which the first adsorption heat exchanger (51) adsorbs moisture in air and the second adsorption heat exchanger (52) releases moisture to air, and controls the opening of the expansion valve (55), when a valve control start time has come a predetermined time after the start of each batch mode, so that the degree of superheat of refrigerant in the refrigerant circuit (50) reaches a predetermined value.
    • 湿度控制系统(10)包括:制冷剂回路(50),包括压缩机(53),在其上承载吸附剂的第一吸附热交换器(51),可开启的膨胀阀(55)和第二吸附热交换器 52),其上携带有吸附剂,通过以第一间歇模式交替操作向空间供应湿气控制的空气,其中第二吸附热交换器(52)吸收空气中的水分,并且第一吸附热交换器(51)将空气释放到空气中 以及第二批次模式,其中第一吸附热交换器(51)吸收空气中的水分,并且第二吸附热交换器(52)在气门控制开始时将水分释放到空气中,并且控制膨胀阀(55)的打开 每批次模式开始之后的时间已经到了预定时间,使得制冷剂回路(50)中制冷剂的过热度达到预定值。
    • 4. 发明申请
    • HUMIDITY CONTROLLER
    • 湿度控制器
    • US20100170292A1
    • 2010-07-08
    • US12664307
    • 2008-06-03
    • Yoshinori NarikawaShuji IkegamiNobuki Matsui
    • Yoshinori NarikawaShuji IkegamiNobuki Matsui
    • F25B15/00
    • F24F3/1411F24F3/1429F24F3/147F24F11/0008
    • In a casing (11) of a humidity controller (10), a first heat exchanger chamber (37) which accommodates a first adsorption heat exchanger (51), and a second heat exchanger chamber (38) which accommodates a second adsorption heat exchanger (52) are arranged next to each other in the left-to-right direction. An indoor air side passage (32) and an outdoor air side passage (34) are provided on the rear panel portion (13) side of the heat exchanger chambers (37, 38), and a supply side passage (31) and exhaust side passage (33) are provided on the front panel portion (12) side of the heat exchanger chambers (37, 38). The rear panel portion (13) is provided with an outdoor air intake opening (24) and an indoor air intake opening (23) at locations close to a center of the rear panel portion (13) in the left-to-right direction. A first side panel portion (14) is provided with a supply opening (22) at a location close to the front, and a second side panel portion (15) is provided with an exhaust opening (21) at a location close to the front. A supply fan (26) is connected to the supply opening (22), and an exhaust fan (25) is connected to the exhaust opening (21). By this structure, a pressure loss at a time when air flows in the casing can be reduced.
    • 在湿度控制器(10)的壳体(11)中,容纳第一吸附热交换器(51)的第一热交换器室(37)和容纳第二吸附热交换器(38)的第二热交换器室 52)在左右方向上彼此相邻布置。 在热交换器室(37,38)的后面板部(13)侧设置有室内空气侧通路(32)和室外空气侧通路(34),供给侧通路(31)和排气侧 通道(33)设置在热交换器室(37,38)的前面板部分(12)侧。 后板部(13)在靠近后板部(13)的中心的左右方向的位置设有室外空气吸入口(24)和室内空气吸入口(23)。 第一侧板部分(14)在靠近前部的位置处设置有供应开口(22),并且第二侧板部分(15)在靠近前部的位置设置有排气开口(21) 。 供给风扇26连接到供给开口22,排气扇25与排气口21连接。 通过这种结构,可以减少空气在壳体中流动时的压力损失。
    • 5. 发明授权
    • Optical disk device having motor with spacer assembly
    • 具有带间隔件组件的电动机的光盘装置
    • US07712112B2
    • 2010-05-04
    • US11784245
    • 2007-04-05
    • Nobuki Matsui
    • Nobuki Matsui
    • G11B17/28
    • G11B17/056G11B7/08
    • An optical disk drive includes a spindle motor for rotating an optical disk, and an optical pickup head. On a base plate, a pickup moving motor moves the optical pickup head in a disk radial direction. A motor plate supports the spindle motor. A spacer holder has a small thickness, and is secured to the base plate. A spacer boss is disposed to project from the spacer holder toward the motor plate. A first hole is formed through the spacer boss. A retaining screw has first and second shaft portions. A screw hole is formed in the base plate, for engagement with the first shaft portion inserted through the first hole, to retain the retaining screw. A great diameter peripheral surface is positioned at the second shaft portion, for applying pressure to fit the spacer boss tightly on the motor plate. Further, the spacer is formed from plastic material.
    • 光盘驱动器包括用于旋转光盘的主轴电动机和光学拾取头。 在基板上,拾取器移动电动机沿光盘径向移动光学拾取头。 电机板支撑主轴电机。 间隔架的厚度较小,并且固定在基板上。 间隔件凸台设置成从间隔件支架朝向马达板突出。 通过间隔件凸台形成第一孔。 固定螺钉具有第一和第二轴部分。 在基板上形成螺纹孔,以与通过第一孔插入的第一轴部分啮合,以保持固定螺钉。 大直径圆周表面位于第二轴部分,用于施加压力以将间隔件凸台紧紧地配合在电动机板上。 此外,间隔件由塑料材料形成。
    • 6. 发明申请
    • HUMIDITY CONTROL SYSTEM
    • 湿度控制系统
    • US20090230203A1
    • 2009-09-17
    • US11921244
    • 2006-05-30
    • Nobuki MatsuiYoshinori Narikawa
    • Nobuki MatsuiYoshinori Narikawa
    • F24F3/14F25D23/00
    • F24F3/1411F24F3/1429F25B13/00F25B2600/2513
    • A humidity control system (10) includes a refrigerant circuit (50) including a compressor (53), a first adsorption heat exchanger (51) carrying an adsorbent thereon, an expansion valve (55) adjustable in opening and a second adsorption heat exchanger (52) carrying an adsorbent thereon, supplies humidity-controlled air to a room by operating alternately in a first batch mode in which the second adsorption heat exchanger (52) adsorbs moisture in air and the first adsorption heat exchanger (51) releases moisture to air and a second batch mode in which the first adsorption heat exchanger (51) adsorbs moisture in air and the second adsorption heat exchanger (52) releases moisture to air, controls the opening of the expansion valve (55), sets, upon start of the first batch mode, the opening of the expansion valve (55) to that at the end of the preceding first batch mode and sets, upon start of the second batch mode, the opening of the expansion valve (55) to that at the end of the preceding second batch mode.
    • 湿度控制系统(10)包括:制冷剂回路(50),包括压缩机(53),在其上承载吸附剂的第一吸附热交换器(51),可开启的膨胀阀(55)和第二吸附热交换器 52),其上携带有吸附剂,通过以第一间歇模式交替操作向空间供应湿气控制的空气,其中第二吸附热交换器(52)吸收空气中的水分,并且第一吸附热交换器(51)将空气释放到空气中 以及第二批次模式,其中第一吸附热交换器(51)吸收空气中的水分,并且第二吸附热交换器(52)将空气释放到空气中,控制膨胀阀(55)的开度, 第一批模式,将膨胀阀(55)打开为在前一批次模式结束时,并且在第二批次模式开始时将膨胀阀(55)的开度设定为 前面的 第二批模式。
    • 8. 发明申请
    • Air conditioning system
    • 空调系统
    • US20090038326A1
    • 2009-02-12
    • US11921239
    • 2006-05-25
    • Nobuki Matsui
    • Nobuki Matsui
    • F25D23/00F25B15/00F25B39/02F25B1/00F25D9/00
    • F24F3/1411F24F3/1429F24F13/20F25B13/00F25B21/02
    • Heat exchangers of a refrigerant circuit 50 are constructed of a first adsorption heat exchanger 51 and a second adsorption heat exchanger 52, both of which have an adsorbent supported thereon, and are constructed so as to be switched into an evaporator and a condenser. An air passage 60 is constructed so as to be switched into states in which air flowing from the outside of a room to the inside of the room and air flowing from the inside of the room to the outside of the room flow through either of the first adsorption heat exchanger 51 and the second adsorption heat exchanger 52. A dehumidifying operation mode and a humidifying operation mode can be performed by switching the flow of refrigerant and the flow of air at specified intervals, a cooling operation mode and a heating operation mode can be performed without switching the flow of refrigerant and the flow of air, and an ventilating operation mode can be performed by flowing air through the air passage 60 in a state where the refrigerant circuit 50 is stopped.
    • 制冷剂回路50的热交换器由第一吸附热交换器51和第二吸附热交换器52构成,二者都具有负载在其上的吸附剂,并被构造成切换到蒸发器和冷凝器。 空气通道60被构造成切换到从房间外部流动到室内的空气,并且从房间内部流动到室外的空气流过第一 吸附热交换器51和第二吸附热交换器52.除湿运转模式和加湿运转模式可以通过以规定的间隔切换制冷剂的流量和空气的流量来进行,制冷运转模式和加热运转模式可以 在不切换制冷剂的流动和空气的流动的情况下进行,并且可以通过在制冷剂回路50停止的状态下使空气通过空气通道60来进行通气运行模式。
    • 9. 发明申请
    • Air conditioning system
    • 空调系统
    • US20090025408A1
    • 2009-01-29
    • US11920239
    • 2006-05-24
    • Nobuki MatsuiTetsuyuki Kondo
    • Nobuki MatsuiTetsuyuki Kondo
    • F25B49/00F24F3/14F25B39/02
    • F24F3/1429F24F3/1411F24F5/0042F24F11/0008F24F11/30F24F11/62
    • In an input section (30), a set temperature Ts which becomes a control target temperature of a humidity controller (10), and a set relative humidity Rs which becomes a control target humidity of the humidity controller (10) are set. An air conditioning control section (42) adjusts the temperature adjusting capacity of the humidity controller (10) such that the room temperature may come very close to the set temperature Ts. Further, an arithmetic section (33) calculates, as the target absolute humidity As, the absolute humidity which becomes the relative humidity set value Rs at the set temperature Ts. A humidity adjustment section (41) adjusts the humidity adjusting capacity of the humidity controller (10) such that the absolute humidity of the room may come very close to the target absolute humidity As.
    • 在输入部(30)中,设定成为湿度控制器(10)的控制对象温度的设定温度Ts和成为湿度控制器(10)的控制对象湿度的设定相对湿度Rs。 空调控制部42调节湿度控制器10的温度调节能力,使得室温可能非常接近设定温度Ts。 此外,运算部33将作为相对湿度设定值Rs的绝对湿度作为目标绝对湿度As来计算设定温度Ts。 湿度调节部(41)调整湿度调节部(10)的湿度调节能力,使得房间的绝对湿度可能非常接近目标绝对湿度As。