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公开(公告)号:US20230232600A1
公开(公告)日:2023-07-20
申请号:US18001691
申请日:2021-06-03
Applicant: Primozone Production AB
Inventor: Fredrik Stoltz , Joakim Van Der Schaaf
IPC: H05K9/00
CPC classification number: H05K9/0007 , H05K9/0064
Abstract: The present invention relates to a grounding method and system for providing grounding and electromagnetic shielding to a cabinet configured for containing an ozone generator.
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公开(公告)号:US20220135405A1
公开(公告)日:2022-05-05
申请号:US17310724
申请日:2020-02-24
Applicant: Primozone Production AB
Inventor: Mikael Scott
Abstract: The present invention relates to a method of operating an ozone generator, a transformer assembly and an ozone generator apparatus configured to be operated at an operational frequency range between 25-40 kHz, such as between 30 and 40 kHz.
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公开(公告)号:US09126832B2
公开(公告)日:2015-09-08
申请号:US13779645
申请日:2013-02-27
Applicant: Primozone Production AB
Inventor: Mikael Hansson
IPC: H02M3/335 , C01B13/11 , H02M7/5381 , H01F27/24
CPC classification number: C01B13/11 , C01B13/115 , C01B2201/64 , C01B2201/90 , H01F27/24 , H02M7/5381 , Y02B70/1441 , Y02P20/121
Abstract: The invention provides a method for using an ozone generating apparatus containing a power supply apparatus and ozone generating device. The apparatus can be operated by controlling the power supplied from the power supply apparatus to the ozone generating device, supplying a flow of oxygen-containing gas to the ozone generating device, and controlling the flow of the oxygen-containing gas. The power supplied to the ozone generating device and flow of oxygen to the ozone generating device can be controlled to obtain a predetermined yield of ozone and to minimize the consumption of resources of the ozone generating apparatus.
Abstract translation: 本发明提供一种使用含有电源装置和臭氧发生装置的臭氧发生装置的方法。 可以通过控制从电源装置向臭氧发生装置供给的电力,向臭氧发生装置供应含氧气体流并控制含氧气体的流动来操作该装置。 可以控制提供给臭氧发生装置的电力和向臭氧发生装置的氧气流,以获得预定的臭氧产率并使臭氧发生装置的资源消耗最小化。
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公开(公告)号:US20220162098A1
公开(公告)日:2022-05-26
申请号:US17440434
申请日:2020-04-03
Applicant: Primozone Production AB
Inventor: Fredrik Stoltz
Abstract: The present invention relates to an ozone generator apparatus (5) comprising a fastening and grounding system (14) for fastening and providing earth connection between the ozone generator apparatus (5) and a mounting plate (13), an ozone generator apparatus mounting kit, a method of fastening an ozone generator apparatus (5), a method of grounding an ozone generator apparatus (5) and a method of providing heat exchange between an ozone generator apparatus (5) and a mounting plate (13).
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公开(公告)号:US20130169397A1
公开(公告)日:2013-07-04
申请号:US13779586
申请日:2013-02-27
Applicant: Primozone Production AB
Inventor: Mikael Hansson
IPC: H01F27/24
CPC classification number: C01B13/11 , C01B13/115 , C01B2201/64 , C01B2201/90 , H01F3/14 , H01F27/24 , H01F27/2804 , H01F27/2823 , H01F27/324 , H01F2027/2819 , H02M7/5381 , Y02B70/1441 , Y02P20/121
Abstract: The invention provides a power supply apparatus for supplying electric power to a capacitive load. The apparatus has a transformer, a positive half-period driver and a negative half-period driver supplying positive and negative half-periods of voltage to the first coil. The second coil forms an electric resonance circuit and supplies electric voltage to the load. Zero crossings of the voltage supplied to the first coil are determined from a third coil on the transformer, and alternation between positive and negative half-periods of voltage supplied to the first coil is done at the zero crossings of the voltage supplied to the first coil.
Abstract translation: 本发明提供了一种用于向电容性负载提供电力的电源装置。 该装置具有变压器,正半周期驱动器和负半周期驱动器,向第一线圈提供正半周期和负半周期的电压。 第二线圈形成电谐振电路并向负载提供电压。 提供给第一线圈的电压的零交叉由变压器上的第三线圈确定,并且在提供给第一线圈的电压的正和负半周期之间的交替在提供给第一线圈的电压的过零点处进行 。
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公开(公告)号:US20130168230A1
公开(公告)日:2013-07-04
申请号:US13779645
申请日:2013-02-27
Applicant: PRIMOZONE PRODUCTION AB
Inventor: Mikael Hansson
IPC: C01B13/11
CPC classification number: C01B13/11 , C01B13/115 , C01B2201/64 , C01B2201/90 , H01F27/24 , H02M7/5381 , Y02B70/1441 , Y02P20/121
Abstract: The invention provides a power supply apparatus for supplying electric power to a capacitive load. The apparatus has a transformer, a positive half-period driver and a negative half-period driver supplying positive and negative half-periods of voltage to the first coil. The second coil forms an electric resonance circuit and supplies electric voltage to the load. Zero crossings of the voltage supplied to the first coil are determined from a third coil on the transformer, and alternation between positive and negative half-periods of voltage supplied to the first coil is done at the zero crossings of the voltage supplied to the first coil.
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