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The present invention relates generally to a generator, and more particularly to an innovative generator structure with a built-in voltage controller.
A generator is a device that converts kinetic energy and/or other forms of energy into electrical energy. The large-scale generators currently in widespread use are alternators, which convert mechanical energy into electrical energy in the form of alternating current.
Alternating current generated by the operation of the alternator is usually configured through a commercially available transformer externally connected to the generator motor to increase or decrease its output voltage, so as to achieve the purpose of changing the output voltage. However, as far as practical experience in related industries is concerned, it was found that because the actual setting cost of the transformer is rather expensive, and as the power generation scale of the generator is larger, the coil winding cost required by the transformer device is relatively doubled, resulting in a problem and disadvantage of substantial increase in the price of generator products, which is indeed an important technical issue for the relevant industries to consider again.
The main purpose of the present invention is to provide a generator with a built-in voltage controller. The technical problem trying to solve is to break through a goal of how to develop a new type of generator structure that is more ideal and practical. Said generator comprises a motor, which includes a housing, a stator and a rotor accommodated in the housing, and the stator has a current output unit.
The technical feature of the present invention to solve the problem is mainly that the generator comprises a built-in voltage controller, which is disposed inside the motor housing and is in electrical connection with the stator. The built-in voltage controller has a voltage up-down adjustment control function and includes a current output unit; a first loop changeover switch, which is a three-pole knife switch type and includes three groups of first loop polar phase contact points; one side of which is corresponding to the current output unit of the built-in voltage controller through the three phase lines for electrical connection; the other side of the three groups of first loop polar phase contact points is electrically connected to the current output unit of the built-in voltage controller through the three extended first loop lines; a second loop changeover switch, which is a three-pole knife switch type and is in a spaced arrangement relationship with the first loop changeover switch; the second loop changeover switch includes three groups of second loop polar phase contact points; one side of the three groups of second loop polar phase contact points is electrically connected with the three phase lines; the other side is corresponding to the three loop lines through the three extended second loop lines for electrical connection; a three-phase short-circuit changeover switch, which is a three-pole knife switch type and is in a spaced arrangement relationship with the second loop changeover switch; the three-phase short-circuit changeover switch includes three groups of short-circuit polar phase contact points; one side of the three groups of short-circuit polar phase contact points is electrically connected to each other through a short-circuit wire; the other side is correspondingly to the ends of the three phase lines for electrical connection; three converted-voltage output lines, with one end electrically connected to the second loop polar phase contact points of the second loop changeover switch, is connected to one side of the second loop lines; the other end of the three converted-voltage output lines is used to connect to a power device.
The other preferred embodiment of the present invention includes a single built-in voltage controller disposed within the motor housing and in electrical connection with the stator. The built-in voltage controller has a voltage up-down adjustment control function and includes a current output unit; a loop changeover switch, which is a three-pole knife switch type and includes three groups of loop polar phase contact points; one side of which is electrically connected to the current output unit of the built-in voltage controller through the three phase lines, and the other side of the three groups of loop polar phase contact points is electrically connected to the current output unit of the built-in voltage controller through the three extended loop lines; a three-phase short-circuit changeover switch is a three-pole knife switch type and is in a spaced arrangement relationship with the loop changeover switch; the three-phase short-circuit changeover switch includes three groups of short-circuit polar phase contact points; one side of which is electrically connected to each other through the short-circuit wire, and the other side is corresponding to and electrically connected to three phase lines; three converted-voltage output lines, with one end electrically connected to the loop polar phase contact points of the loop changeover switch, is connected to one side of the loop lines; the other end of the three converted-voltage output lines is used to connect to a power device.
Referring to
Said generator A comprises a motor 10, which includes a housing 11, a stator 12 and a rotor 13 accommodated in the housing 11. The generator A further includes the following constituents: a built-in voltage controller 20 disposed inside the housing 11 of the motor 10 and electrically connected with the stator 12 (as shown in
As shown in
With the above structural configuration and technical features, in the actual application of the generator A disclosed in the present disclosure, the current generated by its operation can select different output voltages of 110V or 220V. This portion is first shown in
As shown in
It can be understood from the above embodiments that the loop changeover switch used in the present invention may be a single group configuration type (as shown in
The “generator with a built-in voltage controller” disclosed by the present invention is an innovative unique structure and technical feature, which is mainly composed of a voltage up-down controller, at least one loop changeover switch, three-phase short-circuit changeover switch, and converted-voltage output lines. In comparison with the conventional structure proposed by the prior art, the present invention can provide a new type of generator with a built-in voltage controller, which is matched with a mechanical loop switching mechanism of the three-pole knife switch to construct a voltage control switching mode of a generator. Compared with the conventional method of connecting a commercial transformer externally to the generator motor, the overall technical features of the present invention can greatly simplify the voltage transformation structure of the generator, reduce the cost, greatly reduce the installation volume, and improve the switching operation convenience and action accuracy and safety, which has practical advancement and better industrial economic benefits.
Number | Name | Date | Kind |
---|---|---|---|
1358735 | Hellmund | Nov 1920 | A |
1376015 | Hamilton | Apr 1921 | A |
1391295 | Barnum | Sep 1921 | A |
1406389 | James | Feb 1922 | A |
1417750 | Lammers, Jr. | May 1922 | A |
1425657 | James | Aug 1922 | A |
1431249 | Oberschmidt | Oct 1922 | A |
1725772 | Waite | Aug 1929 | A |
1764877 | Lewis | Jun 1930 | A |
1984187 | Hayward | Dec 1934 | A |
2133365 | Trofimov | Oct 1938 | A |
2325413 | McArthur | Jul 1943 | A |
2325454 | Wilcox | Jul 1943 | A |
2347917 | Daniel | May 1944 | A |
4142137 | Umpleby | Feb 1979 | A |
4142139 | Slaats | Feb 1979 | A |
6042349 | Ito | Mar 2000 | A |
7042122 | Dufala | May 2006 | B1 |
7492120 | Benn | Feb 2009 | B2 |
20040100102 | Wobben | May 2004 | A1 |
20090010782 | Bartsch | Jan 2009 | A1 |
20100013227 | Weitkamp | Jan 2010 | A1 |
20100109323 | Russberg | May 2010 | A1 |
20110254492 | Armstrong | Oct 2011 | A1 |
20120043760 | Hagedorn | Feb 2012 | A1 |
20120068656 | Fulton | Mar 2012 | A1 |
20120261927 | Gilpatrick | Oct 2012 | A1 |
20130175853 | Chamberlin | Jul 2013 | A1 |
20140008971 | Hoffmann | Jan 2014 | A1 |
20140062097 | Brown | Mar 2014 | A1 |
20140175796 | Rasmussen | Jun 2014 | A1 |
20140277791 | Lenard | Sep 2014 | A1 |
20140300987 | Otaguro | Oct 2014 | A1 |
20140312620 | Korber | Oct 2014 | A1 |
20150042254 | Kato | Feb 2015 | A1 |
20150291045 | Sugawara | Oct 2015 | A1 |
20160146191 | Berroteran Gil | May 2016 | A1 |
20160173008 | Waltuch | Jun 2016 | A1 |
20160181909 | Steimer | Jun 2016 | A1 |
20180302011 | Ganireddy | Oct 2018 | A1 |
20180331643 | Ganireddy | Nov 2018 | A1 |
20190149079 | Roesner | May 2019 | A1 |
20200008314 | Kuroiwa | Jan 2020 | A1 |
20200076337 | Abbott | Mar 2020 | A1 |
Number | Date | Country | |
---|---|---|---|
20190319518 A1 | Oct 2019 | US |