Liquid crystal display device including backlight unit
View Patent ↗A liquid crystal display device includes a backlight unit having at least one lamp with an electrode at one end thereof, and at least one temperature controller adjacent to the electrode of the at least one lamp. The at least one temperature controller has a first thermocouple junction device electrically connected to a second thermocouple junction device.
1. A backlight unit, comprising:
at least one lamp having an electrode at one end thereof; and
at least one temperature controller adjacent to the electrode of the at least one lamp, the at least one temperature controller including a first thermocouple junction device electrically connected to a second thermocouple junction device,
wherein the first thermocouple junction device supplies the second thermocouple junction device with a power source.
2. The backlight unit according to claim 1 , wherein the first thermocouple junction device includes a hot junction and a cold junction, the hot junction being closer to the at least one lamp than the cold junction.
3. The backlight unit according to claim 2 , wherein the hot junction is closer to the electrode of the at least one lamp than the cold junction.
4. The backlight unit according to claim 1 , wherein the second thermocouple junction device includes a heat-absorbing portion and a heat-evolving portion, the heat-absorbing portion being closer to the electrode of the at least one lamp than the heat-evolving portion.
5. The backlight unit according to claim 4 , wherein the heat-absorbing portion of the second thermocouple junction device is closer to the electrode of the at least one lamp than a hot junction of the first thermocouple junction device.
6. The backlight unit according to claim 1 , wherein the first thermocouple junction device generates a thermo electromotive force from heat of the at least one lamp and supplies the thermo electromotive force to the second thermocouple junction device, and the second thermocouple junction device absorbs the heat of the at least one lamp due to the thermo electromotive force.
7. The backlight unit according to claim 1 , wherein the first thermocouple junction device includes a thermoelectric device and the second thermocouple junction device includes a Peltier device.
8. The backlight unit according to claim 6 , wherein the second thermocouple junction device uses a Peltier effect and the first thermocouple junction device uses a Seebeck effect.
9. The backlight unit according to claim 3 , wherein at least one portion of the first thermocouple junction device except for the hot and the cold junctions is cut off from heat of the at least one lamp.
10. The backlight unit according to claim 3 , wherein at least one portion of the first thermocouple junction device except for the hot and cold junctions is covered with an adiabatic tape.
11. A liquid crystal display device, comprising:
a backlight unit includes;
at least one lamp having an electrode at one end thereof, and
at least one temperature controller adjacent to the electrode of the at least one lamp, the at least one temperature controller having a first thermocouple junction device electrically connected to a second thermocouple junction device;
a liquid crystal panel arranged over the backlight unit; and
a driving circuit to drive the liquid crystal panel,
wherein the first thermocouple junction device supplies the second thermocouple junction device with a power source.
12. The liquid crystal display device according to claim 11 , wherein the first thermocouple junction device includes a hot junction and a cold junction, the hot junction being closer to the at least one lamp than the cold junction.
13. The liquid crystal display device according to claim 12 , wherein the hot junction is closer to the electrode of the at least one lamp than the cold junction.
14. The liquid crystal display device according to claim 11 , wherein the second thermocouple junction device includes a heat-absorbing portion and a heat-evolving portion, the heat-absorbing portion being closer to the electrode of the at least one lamp than the heat-evolving portion.
15. The liquid crystal display device according to claim 14 , wherein the heat-absorbing portion of the second thermocouple junction device is closer to the electrode of the at least one lamp than a hot junction of the first thermocouple junction device.
16. The liquid crystal display device according to claim 11 , wherein the first thermocouplejunction device generates a thermo electromotive force from heat of the at least one lamp and supplies the thermo electromotive force to the second thermocouple junction device, and the second thermocouple junction device absorbs the heat of the at least one lamp due to the thermo electromotive force.
17. The liquid crystal display device according to claim 11 , wherein the first thermocouple junction device includes a thermoelectric device and the second thermocouple junction device includes a Peltier device.
18. The liquid crystal display device according to claim 16 , wherein the second thermocouple junction device uses a Peltier effect and the first thermocouple junction device uses a Seebeck effect.
19. The liquid crystal display device according to claim 13 , wherein at least one portion of the first thermocouple junction device except for the hot and the cold junctions is cut off from heat of the at least one lamp.
20. The liquid crystal display device according to claim 13 , wherein at least one portion of the first thermocouple junction device except for the hot and cold junctions is covered with an adiabatic tape.