Abstract:
PURPOSE: An electricity quality control device, a method thereof, and a power usage analysis device thereof are provided to handle power quality by informing a manager of the sensed information in real time. CONSTITUTION: A sensor(100,102,104,106,108) senses the state of a power line. A sensing part(110,112,114,116,118) generates sensing information by collecting information from the sensor. An inner temperature sensor senses self inner temperature compared to the sensing information. A data recorder(180) stores the sensing information. A controller(150) disconnects power inputted to a load according to the sensing information. The controller protects saved information by supplying a disconnection command which disconnects the sensing information and power. A switch part disconnects at least one connection between the data recorder and the load according to the disconnection command.
Abstract:
PURPOSE: A power controller and a remote power control apparatus are provided to realize power control more suitable for a place based on collected data by remotely monitoring of a current and power of a first power source. CONSTITUTION: A power controller(130) includes a power input line, a primary winding, a secondary winding, at least one tap and switching unit, and output line. The primary winding wraps an iron core while being connected to a power input line, and the secondary winding is common with a part of the primary winding at least. At least one tap is connected to a predetermined point of the primary winding, and at least one tap specifies the winding number of the primary winding and the secondary winding. At least the end of one switching unit is connected to at least the tap respectively. At least the other end of the switching unit is connected to a common line.
Abstract:
According to the present invention, provided is a power regulator (130), comprising: a power inlet line (181); a primary coil connected to the power inlet line (181) and covering an iron core; a secondary coil, at least a portion of which is shared with the primary coil turn; one or more taps (132, 133, 134) connected to a predetermined point of the primary coil to define the number of turns of both the primary coil and the secondary coil; one or more switching means (S1, S2, S3), one end of each of which is connected to the one or more taps (132, 133, 134), respectively, and the other end of each of which is connected to a common line (183) to change the number of turns of both the primary coil and the secondary coil; and an outlet line (182) for outputting power generated by the secondary coil excited by the primary coil, wherein any one of switching means (S1, S2, S3) is closed to determine the number of turns of both the primary coil and the secondary coil.
Abstract:
A power regulator 130 includes a power input line 181, a primary winding connected to the power input line 181 and wound on a core, a secondary winding, at least part of the secondary winding being in common with the primary winding, at least one tap 132, 133, and 134 connected to the primary winding at a predetermined position thereof to specify respective numbers of turns of the primary winding and the secondary winding, at least one switch S1, S2, and S3 having one end connected respectively to the at least one tap 132, 133, and 134 and another end connected to a common line 183 to change the respective numbers of turns of the primary winding and the secondary winding, and an output line 182 for outputting power that the secondary winding generates as the secondary winding is excited by the primary winding, wherein the respective numbers of turns of both the primary winding and the secondary winding are determined as one of the at least one switch S1, S2, and S3 is closed.
Abstract:
According to the present invention, provided is a power regulator (130), comprising: a power inlet line (181); a primary coil connected to the power inlet line (181) and covering an iron core; a secondary coil, at least a portion of which is shared with the primary coil turn; one or more taps (132, 133, 134) connected to a predetermined point of the primary coil to define the number of turns of both the primary coil and the secondary coil; one or more switching means (S1, S2, S3), one end of each of which is connected to the one or more taps (132, 133, 134), respectively, and the other end of each of which is connected to a common line (183) to change the number of turns of both the primary coil and the secondary coil; and an outlet line (182) for outputting power generated by the secondary coil excited by the primary coil, wherein any one of switching means (S1, S2, S3) is closed to determine the number of turns of both the primary coil and the secondary coil.
Abstract:
A power regulator 130 includes a power input line 181, a primary winding connected to the power input line 181 and wound on a core, a secondary winding, at least part of the secondary winding being in common with the primary winding, at least one tap 132, 133, and 134 connected to the primary winding at a predetermined position thereof to specify respective numbers of turns of the primary winding and the secondary winding, at least one switch S1, S2, and S3 having one end connected respectively to the at least one tap 132, 133, and 134 and another end connected to a common line 183 to change the respective numbers of turns of the primary winding and the secondary winding, and an output line 182 for outputting power that the secondary winding generates as the secondary winding is excited by the primary winding, wherein the respective numbers of turns of both the primary winding and the secondary winding are determined as one of the at least one switch S1, S2, and S3 is closed.
Abstract:
A power regulator 130 includes a power input line 181, a primary winding connected to the power input line 181 and wound on a core, a secondary winding, at least part of the secondary winding being in common with the primary winding, at least one tap 132, 133, and 134 connected to the primary winding at a predetermined position thereof to specify respective numbers of turns of the primary winding and the secondary winding, at least one switch S1, S2, and S3 having one end connected respectively to the at least one tap 132, 133, and 134 and another end connected to a common line 183 to change the respective numbers of turns of the primary winding and the secondary winding, and an output line 182 for outputting power that the secondary winding generates as the secondary winding is excited by the primary winding, wherein the respective numbers of turns of both the primary winding and the secondary winding are determined as one of the at least one switch S1, S2, and S3 is closed.
Abstract:
A power regulator 130 includes a power input line 181, a primary winding connected to the power input line 181 and wound on a core, a secondary winding, at least part of the secondary winding being in common with the primary winding, at least one tap 132, 133, and 134 connected to the primary winding at a predetermined position thereof to specify respective numbers of turns of the primary winding and the secondary winding, at least one switch S1, S2, and S3 having one end connected respectively to the at least one tap 132, 133, and 134 and another end connected to a common line 183 to change the respective numbers of turns of the primary winding and the secondary winding, and an output line 182 for outputting power that the secondary winding generates as the secondary winding is excited by the primary winding, wherein the respective numbers of turns of both the primary winding and the secondary winding are determined as one of the at least one switch S1, S2, and S3 is closed.
Abstract:
A power regulator 130 includes a power input line 181, a primary winding connected to the power input line 181 and wound on a core, a secondary winding, at least part of the secondary winding being in common with the primary winding, at least one tap 132, 133, and 134 connected to the primary winding at a predetermined position thereof to specify respective numbers of turns of the primary winding and the secondary winding, at least one switch S1, S2, and S3 having one end connected respectively to the at least one tap 132, 133, and 134 and another end connected to a common line 183 to change the respective numbers of turns of the primary winding and the secondary winding, and an output line 182 for outputting power that the secondary winding generates as the secondary winding is excited by the primary winding, wherein the respective numbers of turns of both the primary winding and the secondary winding are determined as one of the at least one switch S1, S2, and S3 is closed.