Energy-efficient electromagnetic micropump system
Proposed is a micropump. The micropump includes a head portion including a first and second movement guides and a first tip, and includes a body portion having at least a portion thereof accommodated in the head portion, the body portion including a core, a winding body, a first permanent magnet, a second permanent magnet, a first fixing guide, and a second fixing guide. The first movement guide and the first fixing guide are famed so as to correspond to each other, the second movement guide and the second fixing guide are formed so as to correspond to each other, a pole of the first permanent magnet faces or opposes a lower end contact surface of the core, and a facing direction of a pole of the second permanent magnet is same as a facing direction of the first permanent magnet.
1 . A micropump comprising:
a head portion comprising a first movement guide and a second movement guide that are formed inside the head portion, the head portion comprising a first tip formed outside the head portion;
a body portion having at least a portion thereof accommodated in the head portion, the body portion comprising a core, a winding body surrounding the core, a first permanent magnet disposed at a lower end of a second side of the core, a second permanent magnet disposed at a lower end of a first side of the core, a first fixing guide disposed at an upper end of the second side of the core, and a second fixing guide disposed at an upper end of the first side of the core; and
a tube configured to be in contact with the first tip,
wherein the first movement guide and the first fixing guide are formed such that the first movement guide and the first fixing guide correspond to each other, the second movement guide and the second fixing guide are formed such that the second movement guide and the second fixing guide correspond to each other,
wherein the first permanent magnet is disposed such that a pole thereof faces or opposes a lower end contact surface of the core, and the second permanent magnet is disposed such that a facing direction of a pole thereof is same as a facing direction of the first permanent magnet, and
wherein the head portion is configured to be moved in a longitudinal direction with respect to the body portion, and according to movement of the head portion, the first tip presses at least a portion of the tube, and an inner diameter of the tube is changed, so that fluid inside the tube may flow or may not flow.
2 . The micropump of claim 1 , wherein the tube is configured such that the tube is disposed between the first tip and a support body.
3 . The micropump of claim 1 , further comprising a check valve disposed on the tube.
4 . A micropump comprising:
a head portion comprising a first movement guide and a second movement guide that are formed inside the head portion, the head portion comprising a first tip formed outside the head portion; and
a body portion having at least a portion thereof accommodated in the head portion, the body portion comprising a core, a winding body surrounding the core, a first permanent magnet disposed at a lower end of a second side of the core, a second permanent magnet disposed at a lower end of a first side of the core, a first fixing guide disposed at an upper end of the second side of the core, and a second fixing guide disposed at an upper end of the first side of the core,
wherein the first movement guide and the first fixing guide are formed such that the first movement guide and the first fixing guide correspond to each other, the second movement guide and the second fixing guide are formed such that the second movement guide and the second fixing guide correspond to each other,
wherein the first permanent magnet is disposed such that a pole thereof faces or opposes a lower end contact surface of the core, and the second permanent magnet is disposed such that a facing direction of a pole thereof is same as a facing direction of the first permanent magnet, and
wherein the head portion is configured to be moved to a first side thereof when electric current is applied to the winding body in a first direction, and the head portion is configured to be moved to a second side thereof when electric current is applied to the winding body in a second direction that is a direction opposite to the first direction.
5 . A micropump comprising:
a head portion comprising a first movement guide and a second movement guide that are formed inside the head portion, the head portion comprising a first tip formed outside the head portion; and
a body portion having at least a portion thereof accommodated in the head portion, the body portion comprising a core, a winding body surrounding the core, a first permanent magnet disposed at a lower end of a second side of the core, a second permanent magnet disposed at a lower end of a first side of the core, a first fixing guide disposed at an upper end of the second side of the core, and a second fixing guide disposed at an upper end of the first side of the core, the body portion further comprising:
a first height adjustment portion disposed at a lower side of the first permanent magnet; and
a second height adjustment portion disposed at a lower side of the second permanent magnet,
wherein the first movement guide and the first fixing guide are formed such that the first movement guide and the first fixing guide correspond to each other, the second movement guide and the second fixing guide are formed such that the second movement guide and the second fixing guide correspond to each other, and
wherein the first permanent magnet is disposed such that a pole thereof faces or opposes a lower end contact surface of the core, and the second permanent magnet is disposed such that a facing direction of a pole thereof is same as a facing direction of the first permanent magnet.