IP Library › Granted Patent US 12,728,426
Granted Patent B2
US 12,728,426 · App. 17/869,519 · Granted Sep 8, 2026

Electrostatic precipitator and control method thereof

Inventors: Myungsoo Kang (Suwon-si, KR); Kyuho Shin (Suwon-si, KR); Hyongsoo Noh (Suwon-si, KR); Myungseob Song (Suwon-si, KR); Joonoh Shin (Suwon-si, KR); Kisup Lee (Suwon-si, KR)
Assignee: SAMSUNG ELECTRONICS CO., LTD.
B03C3/68B03C3/08B03C3/47
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Quick Facts
Patent No.
US 12,728,426
App. No.
17/869,519
Granted
Sep 8, 2026
Kind
B2
Abstract

A electrostatic precipitator includes a charger configured to charge foreign substances introduced thereinto, and a dust collecting sheet on which the charged foreign substances are collected. The dust collecting sheet includes a first electrode, a second electrode spaced apart from the first electrode to face the first electrode and on which the foreign substances passed through the charger are collected, a first power connector electrically connected to the first electrode so as to apply a voltage to the first electrode, a second power connector electrically connected to the second electrode so as to apply a voltage having a potential difference with the first electrode, to the second electrode, and a third power connector additionally electrically connected to the second electrode to apply additional voltage to allow the second electrode to generate heat.

Claims (42)

1 . An electrostatic precipitator comprising:

a charger configured to charge foreign substances introduced thereto; and

a dust collecting sheet on which the charged foreign substances are collected, the dust collecting sheet comprising:

a first electrode;

a second electrode spaced apart from the first electrode to face the first electrode and on which the foreign substances passed through the charger are collected, wherein the second electrode formed of a material having an electrical resistance greater than an electrical resistance of the first electrode, and the first electrode and the second electrode are arranged to be overlapped with each other in a first direction;

a first power connector electrically connected to the first electrode to apply a voltage to the first electrode;

a second power connector electrically connected to the second electrode to apply a voltage having a potential difference with the first electrode, to the second electrode;

a third power connector additionally electrically connected to the second electrode while not connecting to the first electrode, to apply additional voltage to allow the second electrode to generate heat;

a first sheet to cover one surface of the first electrode and the second electrode in the first direction; and

a second sheet to cover an other surface of the first electrode and the second electrode in the first direction, the second sheet including a connection hole opened in the first direction to connect the second electrode and the third power connector to each other so that the third power connector is in contact with the second electrode through the connection hole,

wherein:

the first power connector, the second power connector are arranged on the first sheet, and the third power connector is arranged on the second sheet;

at least a portion of the third power connector is inserted into the connection hole and deposited in the second sheet thereby covering the connection hole;

the at least a portion of the third power connector is in contact with at least a portion of the second electrode exposed to through the connection hole thereby electrically connecting the third power connector with the second electrode; and

both of the second power connector, provided to generate an electric field between the first electrode and the second electrode, and the third power connector, provided to allow the second electrode to generate heat, are connected to the second electrode.

2 . The electrostatic precipitator of claim 1 , wherein

the first power connector is arranged at one end of the dust collecting sheet in a second direction which is perpendicular to the first direction,

the second power connector is arranged at an other end of the dust collecting sheet in the second direction, and

the third power connector is arranged adjacent to the first power connector in the second direction.

3 . The electrostatic precipitator of claim 1 ,

wherein the dust collecting sheet comprises a first region in which the first sheet and the second sheet are overlapped and covered with each other in the first direction, and a second region arranged outside the second sheet in the first direction, and the first power connector and the second power connector are arranged in the second region.

4 . The electrostatic precipitator of claim 3 , wherein

the third power connector is arranged in the first region.

5 . The electrostatic precipitator of claim 3 , wherein

at least a portion of the second electrode is arranged in the second region, and

the third power connector is in contact with the at least a portion of the second electrode arranged in the second region.

6 . The electrostatic precipitator of claim 1 , wherein

the second electrode is made of a metal material.

7 . The electrostatic precipitator of claim 1 ,

wherein the dust collecting sheet further comprises a first plane on which the first electrode is arranged, a second plane on which the second electrode is arranged, and a bending part bent to allow the first plane and the second plane to face the first direction, and

at least a portion of each of the first power connector, the second power connector, and the third power connector is arranged in the bending part.

8 . The electrostatic precipitator of claim 7 , wherein

each of the first power connector, the second power connector, and the third power connector is extended along the first plane, the bending part, and the second plane, sequentially.

9 . The electrostatic precipitator of claim 1 , further comprising:

a first power supplier electrically connected to the first power connector;

a second power supplier electrically connected to the second power connector;

a third power supplier electrically connected to the third power connector; and

a controller configured to control the first power supplier, the second power supplier, and the third power supplier to respectively supply power to the first power connector, the second power connector, and the third power connector,

wherein the controller is configured to control the first power supplier, the second power supplier, and the third power supplier to selectively drive one of a first operation mode, in which the first power supplier and the second power supplier are controlled to apply a voltage to the first power connector and the second power connector, and a second operation mode, in which the second power supplier and the third power supplier are controlled to apply power to the second power connector and the third power connector.

10 . The electrostatic precipitator of claim 9 , wherein

the controller is configured to, based on a first selected time or an input value, control the first operation mode to be turned off after being turned on, and

in response to the first operation mode being turned off, the controller is configured to control the second operation mode to be turned off after being turned on for a second selected time.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 21, 2022
From: KANG, MYUNGSOO; SHIN, KYUHO; NOH, HYONGSOO; SONG, MYUNGSEOB; SHIN, JOONOH; LEE, KISUP
To: SAMSUNG ELECTRONICS CO., LTD.
Reel/Frame 060583/0052 →
Priority Claims (1)
KR 10-2021-0126333 · Sep 24, 2021 · national
Continuity (2)
Continuation PCTKR2022009864 · Jul 7, 2022
Related Publication 20230097963A1 · Mar 30, 2023
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