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
    • 1. 发明授权
    • Compressed air production facility
    • 压缩空气生产设备
    • US06287083B1
    • 2001-09-11
    • US09526564
    • 2000-03-16
    • Masakazu HaseMasakazu AokiHiroyuki Matsuda
    • Masakazu HaseMasakazu AokiHiroyuki Matsuda
    • F04B4900
    • F04B41/06F04B49/025F04B2203/0209F04B2205/171
    • A compressed air production facility includes at least one variable speed compressor and a plurality of constant speed compressor, which are connected in parallel with one another. The variable speed compressor and the plurality of constant speed compressors are capacitively controlled with the use of a pressure in an air reservoir into which discharge air from these compressor are led. Both upper limit pressure at which the variable speed compressor is turned into its load operation mode into its unload operation mode and a lower limit pressure at which the variable speed compressor is turned into its unload operation mode into its load operation mode are set between an upper limit change-over pressure at which all of the plurality of constant speed compressors are turned into their load operation into their unload operation and a lower limit change-over pressure at which all of the plurality of constant speed compressors are changed over from their unload operation into their load operation. With this arrangement, it is possible to provide a power consumption characteristic which is substantially proportional to an air consumption.
    • 压缩空气生产设备包括彼此并联连接的至少一个变速压缩机和多个恒速压缩机。 变速压缩机和多个恒速压缩机通过使用来自这些压缩机的排放空气被引导到的储气器中的压力进行电容性控制。 将变速压缩机的负荷运转模式的上限压力设定为卸载运转模式,将变速压缩机变为卸载运转模式的下限压力设定为上部压力 所有多个恒速压缩机的所有多个恒速压缩机的负载运转转换为其卸载运转的极限转换压力以及多个恒速压缩机全部从其卸载运转转换的下限转换压力 进入其加载操作。 通过这种布置,可以提供基本上与空气消耗成正比的功耗特性。
    • 2. 发明授权
    • Compressed air manufacturing facility
    • 压缩空气制造设备
    • US08257053B2
    • 2012-09-04
    • US11688414
    • 2007-03-20
    • Masakazu HaseHiroyuki Matsuda
    • Masakazu HaseHiroyuki Matsuda
    • F04B49/06
    • F04B49/065F04B41/06F04B2205/05
    • In order to provide a compressed air manufacturing facility which can increase a stability of a supply pressure while obtaining an energy saving effect, in a compressed air manufacturing facility provided with a compressor compressing an air, an electric motor driving the compressor, and an inverter variably controlling a rotating speed of the electric motor, the compressed air manufacturing facility is provided with a pressure sensor detecting a discharge pressure of the compressor at an upstream side position of a discharge air system connected to a discharge side of the compressor, and a control apparatus computing a pressure loss of the discharge air system in correspondence to a rotating speed of the electric motor, and changing a control range of the discharge pressure of the compressor at the upstream side position of the discharge air system on the basis of the computation in such a manner that a terminal pressure at a downstream side position of the discharge air system comes to a predetermined range, and variably controlling the rotating speed of the electric motor via the inverter in such a manner that the discharge pressure of the compressor detected by the pressure sensor comes to the changed control range.
    • 为了提供一种能够在获得节能效果的同时提高供给压力的稳定性的压缩空气制造设备,在设置有压缩空气的压缩机的压缩空气制造设备,驱动压缩机的电动机以及可变的逆变器 控制电动机的转速,压缩空气制造设备设置有压力传感器,该压力传感器检测在与压缩机的排出侧连接的排出空气系统的上游侧位置处的压缩机的排出压力,以及控制装置 根据电动机的转速计算出排气系统的压力损失,根据这样的计算,改变排气系统的上游侧位置的压缩机的排出压力的控制范围 排气系统的下游侧位置的端子压力到达的方式 到预定范围,并且经由逆变器可变地控制电动机的转速,使得由压力传感器检测的压缩机的排出压力达到改变的控制范围。
    • 3. 发明申请
    • Compressed Air Manufacturing Facility
    • 压缩空气制造设施
    • US20080014097A1
    • 2008-01-17
    • US11688414
    • 2007-03-20
    • Masakazu HaseHiroyuki Matsuda
    • Masakazu HaseHiroyuki Matsuda
    • F04B49/06F04B41/06
    • F04B49/065F04B41/06F04B2205/05
    • In order to provide a compressed air manufacturing facility which can increase a stability of a supply pressure while obtaining an energy saving effect, in a compressed air manufacturing facility provided with a compressor compressing an air, an electric motor driving the compressor, and an inverter variably controlling a rotating speed of the electric motor, the compressed air manufacturing facility is provided with a pressure sensor detecting a discharge pressure of the compressor at an upstream side position of a discharge air system connected to a discharge side of the compressor, and a control apparatus computing a pressure loss of the discharge air system in correspondence to a rotating speed of the electric motor, and changing a control range of the discharge pressure of the compressor at the upstream side position of the discharge air system on the basis of the computation in such a manner that a terminal pressure at a downstream side position of the discharge air system comes to a predetermined range, and variably controlling the rotating speed of the electric motor via the inverter in such a manner that the discharge pressure of the compressor detected by the pressure sensor comes to the changed control range.
    • 为了提供一种能够在获得节能效果的同时提高供给压力的稳定性的压缩空气制造设备,在设置有压缩空气的压缩机的压缩空气制造设备,驱动压缩机的电动机以及可变的逆变器 控制电动机的转速,压缩空气制造设备设置有压力传感器,该压力传感器检测在与压缩机的排出侧连接的排出空气系统的上游侧位置处的压缩机的排出压力,以及控制装置 根据电动机的转速计算出排气系统的压力损失,根据这样的计算,改变排气系统的上游侧位置的压缩机的排出压力的控制范围 排气系统的下游侧位置的端子压力到达的方式 到预定范围,并且经由逆变器可变地控制电动机的转速,使得由压力传感器检测的压缩机的排出压力达到改变的控制范围。
    • 4. 发明申请
    • COMPRESSED AIR MANUFACTURING FACILITY
    • 压缩空气制造设施
    • US20090169396A1
    • 2009-07-02
    • US12400025
    • 2009-03-09
    • Masakazu HaseHiroyuki Matsuda
    • Masakazu HaseHiroyuki Matsuda
    • F04B41/06F04B49/06
    • F04B49/065F04B41/06F04B2205/05
    • In order to provide a compressed air manufacturing facility which can increase a stability of a supply pressure while obtaining an energy saving effect, in a compressed air manufacturing facility provided with a compressor compressing an air, an electric motor driving the compressor, and an inverter variably controlling a rotating speed of the electric motor, the compressed air manufacturing facility is provided with a pressure sensor detecting a discharge pressure of the compressor at an upstream side position of a discharge air system connected to a discharge side of the compressor, and a control apparatus computing a pressure loss of the discharge air system in correspondence to a rotating speed of the electric motor, and changing a control range of the discharge pressure of the compressor at the upstream side position of the discharge air system on the basis of the computation in such a manner that a terminal pressure at a downstream side position of the discharge air system comes to a predetermined range, and variably controlling the rotating speed of the electric motor via the inverter in such a manner that the discharge pressure of the compressor detected by the pressure sensor comes to the changed control range.
    • 为了提供一种能够在获得节能效果的同时提高供给压力的稳定性的压缩空气制造设备,在设置有压缩空气的压缩机的压缩空气制造设备,驱动压缩机的电动机以及可变的逆变器 控制电动机的转速,压缩空气制造设备设置有压力传感器,该压力传感器检测在与压缩机的排出侧连接的排出空气系统的上游侧位置处的压缩机的排出压力,以及控制装置 根据电动机的转速计算出排气系统的压力损失,根据这样的计算,改变排气系统的上游侧位置的压缩机的排出压力的控制范围 排气系统的下游侧位置的端子压力到达的方式 到预定范围,并且经由逆变器可变地控制电动机的转速,使得由压力传感器检测的压缩机的排出压力达到改变的控制范围。
    • 6. 发明授权
    • Compressed air manufacturing facility
    • 压缩空气制造设备
    • US08608450B2
    • 2013-12-17
    • US12400025
    • 2009-03-09
    • Masakazu HaseHiroyuki Matsuda
    • Masakazu HaseHiroyuki Matsuda
    • F04B41/06F04B49/06
    • F04B49/065F04B41/06F04B2205/05
    • The present invention is a compressor compressing air, an electric motor driving the compressor, and an inverter variably controlling a rotating speed of the electric motor, the compressed air manufacturing facility is provided with a pressure sensor detecting a discharge pressure of the compressor at an upstream side position of a discharge air system connected to a discharge side of the compressor, and a control apparatus computing a pressure loss of the discharge air system in correspondence to a rotating speed of the electric motor, and changing a control range of the discharge pressure of the compressor at the upstream side position of the discharge air system on the basis of the computation in such a manner that a terminal pressure at a downstream side position of the discharge air system comes to a predetermined range.
    • 本发明是压缩空气的压缩机,驱动压缩机的电动机和可变地控制电动机的转速的逆变器,压缩空气制造设备设置有检测压缩机在上游的排出压力的压力传感器 连接到压缩机的排出侧的排出空气系统的侧面位置,以及控制装置,根据电动机的转速来计算排出空气系统的压力损失,并且改变排出压力的排出压力的控制范围 基于排气系统的下游侧位置的端子压力达到预定范围的计算的基础,排气系统的上游侧位置处的压缩机。