IP Library Patent Application 11159234
Patent Application
App. No. 11/159,234

Lamp and driving device for backlight assembly having the same

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Quick Facts
Patent No.
US None
App. No.
11/159,234
Abstract

A lamp includes first and second glass tube portions for emitting light, respective one ends of the first and second glass tube portions being bent and connected integrally to each other, first and second electrodes respectively formed at respective other ends of the first and second glass tube portions, and a third electrode formed at the bent portion of the first and second glass tube portions.

Claims (89)

1 . A lamp comprising:

first and second glass tube portions for emitting light, respective one ends of the first and second glass tube portions being bent and connected integrally to each other;

first and second electrodes respectively formed at respective other ends of the first and second glass tube portions; and

a third electrode formed at the bent portion of the first and second glass tube portions.

2 . The lamp according to claim 1 , wherein each of the first and second electrodes are inside of respective other ends of the first and second glass tube portions.

3 . The lamp according to claim 1 , wherein each of the first and second electrodes are formed outside of respective other ends of the first and second glass tube portions.

4 . The lamp according to claim 1 , wherein the third electrode is formed around an outer periphery of the connected portion of the first and second glass tube portions.

5 . The lamp according to claim 1 , wherein the third electrode is formed by attaching a metal tape around an outer periphery of the connected portion of the first and second glass tube portions.

6 . The lamp according to claim 1 , wherein the third electrode is formed by coating an outer periphery of the connected portion of the first and second glass tube portions with a conductive material.

7 . A device for driving a backlight assembly, comprising:

a controller for outputting a control signal;

a switching unit for outputting a DC square wave voltage in response to the control signal;

an inverter for converting the DC square wave voltage into an AC voltage; and

a lamp for emitting light in response to the AC voltage,

the lamp including:

first and second glass tube portions having respective one ends bent and connected integrally to each other;

first and second electrodes respectively formed at respective other ends of the first and second glass tube portions; and

a third electrode formed at the bent portion of the first and second glass tube portions,

wherein the third electrode is grounded.

8 . The device according to claim 7 , wherein the third electrode is set as a reference point for compensating for an impedance difference between the first and second glass tube portions.

9 . The device according to claim 7 , wherein first and second AC voltages having opposite phases are supplied respectively to the first and second electrodes.

10 . The device according to claim 7 , wherein first and second AC voltages having the same phase are supplied respectively to the first and second electrodes.

11 . The device according to claim 7 , wherein the lamp is a U-shaped lamp or a zigzag shaped lamp.

12 . The device according to claim 7 , wherein the lamp is a CCFL (cold cathode fluorescent lamp) or an EEFL (external electrode fluorescent lamp).

13 . A device for driving a backlight assembly, comprising:

a controller for outputting a control signal;

a switching unit for outputting a DC square wave voltage in response to the control signal;

an inverter for converting the DC square wave voltage into an AC voltage; and

a lamp for emitting light in response to the AC voltage,

the lamp including:

first and second glass tube portions having respective one ends bent and connected integrally to each other;

first and second electrodes respectively formed at respective other ends of the first and second glass tube portions; and

a third electrode formed at the bent portion of the first and second glass tube portions,

wherein electrical characteristics of the lamp are detected through the third electrode.

14 . The device according to claim 13 , wherein the electrical characteristics include voltage, current and impedance of the lamp.

15 . The device according to claim 13 , wherein the controller controls the lamp in response to the detected electrical characteristics.

16 . The device according to claim 13 , wherein the lamp is a U-shaped lamp or a zigzag shaped lamp.

17 . The device according to claim 13 , wherein the lamp is a CCFL (cold cathode fluorescent lamp) or an EEFL (external electrode fluorescent lamp).

18 . A device for driving a backlight assembly, comprising:

a controller for outputting a control signal;

a switching unit for outputting a DC square wave voltage in response to the control signal;

an inverter for converting the DC square wave voltage into an AC voltage; and

a lamp for emitting light in response to the AC voltage,

the lamp including:

first and second glass tube portions having respective one ends bent and connected integrally to each other;

first and second electrodes respectively formed at respective other ends of the first and second glass tube portions; and

a third electrode formed at the bent portion of the first and second glass tube portions,

wherein an AC voltage having a phase opposite to a phase of an AC voltage supplied to the first and second electrodes is supplied to the third electrode.

19 . The device according to claim 18 , wherein the lamp is a U-shaped lamp or a zigzag shaped lamp.

20 . The device according to claim 18 , wherein the lamp is a CCFL (cold cathode fluorescent lamp) or an EEFL (external electrode fluorescent lamp).

21 . A liquid crystal display device comprising:

a liquid crystal panel for displaying an image; and

a unit for driving a backlight assembly to supply light to the liquid crystal panel,

the unit including:

a controller for outputting a control signal;

a switching unit for outputting a DC square wave voltage in response to the control signal;

an inverter for converting the DC square wave voltage into an AC voltage; and

a lamp for emitting light in response to the AC voltage,

the lamp including:

first and second glass tube portions having respective one ends bent and connected integrally to each other;

first and second electrodes respectively formed at respective other ends of the first and second glass tube portions; and

a third electrode formed at the bent portion of the first and second glass tube portions,

wherein the third electrode is grounded.

22 . A liquid crystal display device comprising:

a liquid crystal panel for displaying an image; and

a unit for driving a backlight assembly to supply light to the liquid crystal panel,

the unit including:

a controller for outputting a control signal;

a switching unit for outputting a DC square wave voltage in response to the control signal;

an inverter for converting the DC square wave voltage into an AC voltage; and

a lamp for emitting light in response to the AC voltage,

the lamp including:

first and second glass tube portions having respective one ends bent and connected integrally to each other;

first and second electrodes respectively formed at respective other ends of the first and second glass tube portions; and

a third electrode formed at the bent portion of the first and second glass tube portions,

wherein electrical characteristics of the lamp are detected through the third electrode.

23 . A liquid crystal display device comprising:

a liquid crystal panel for displaying an image; and

a unit for driving a backlight assembly to supply light to the liquid crystal panel,

the unit including:

a controller for outputting a control signal;

a switching unit for outputting a DC square wave voltage in response to the control signal;

an inverter for converting the DC square wave voltage into an AC voltage; and

a lamp for emitting light in response to the AC voltage,

the lamp including:

first and second glass tube portions having respective one ends bent and connected integrally to each other;

first and second electrodes respectively formed at respective other ends of the first and second glass tube portions; and

a third electrode formed at the bent portion of the first and second glass tube portions,

wherein an AC voltage having a phase opposite to a phase of an AC voltage supplied to the first and second electrodes is supplied to the third electrode.

Assignments (2)
CHANGE OF NAME Recorded Oct 17, 2008
From: LG. PHILIPS LCD CO., LTD.
To: LG DISPLAY CO., LTD.
Reel/Frame 021773/0029 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2005
From: AHN, JONG KI; PARK, SUNG YONG
To: L.G.PHILLIPS LCD CO. LTD.
Reel/Frame 016723/0527 →