IP Library Granted Patent US 9,879,852
Granted Patent B2
US 9,879,852 · App. 15/087,088 · Granted Jan 30, 2018

LED tube lamp

Inventor: Tao Jiang (Zhejiang, CN)
Assignee: JIAXING SUPER LIGHTING ELECTRIC APPLIANCE CO., LTD
F21V29/83F21K9/272F21V29/508H05B33/0809F21K9/66F21V3/02F21V17/101F21V23/02F21V23/023F21Y2103/10F21Y2115/10H05K1/118H05K1/189H05K2201/10106
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Quick Facts
Patent No.
US 9,879,852
App. No.
15/087,088
Granted
Jan 30, 2018
Kind
B2
Abstract

An LED tube lamp including a glass lamp tube, an LED light strip disposed inside the glass lamp tube, and an end cap attached over an end of glass lamp tube is disclosed. The glass lamp tube includes a main body region, a rear end region, and a two-arc-shaped transition region connecting the main body region and the rear end region. The LED light strip includes a bendable circuit sheet being longer than the glass lamp tube to form a freely extending end portion. In addition, the end cap has at least one opening on surface to dissipating heat resulting from power supply and/or the process of heating of a hot melt adhesive.

Claims (42)

1. An LED tube lamp, comprising:

a glass lamp tube extending in a first direction along a length of the glass lamp tube comprising a main body region, a rear end region, and a two-arc-shaped transition region connecting the main body region and the rear end region, the main body region and the rear end region are substantially parallel;

an end cap disposed at one end of the glass lamp tube, wherein the end cap comprises an electrically insulating tubular part sleeved with the end of the glass lamp tube having an inner circumferential surface with a plurality of protruding portions formed thereon and extending inwardly in a radial direction of the electrically insulating tubular part, a socket for connection with a power supply, at least one opening on surface to dissipate heat, and a magnetic metal member fixedly disposed between the protruding portions of the inner circumferential surface of the electrically insulating tubular part of the end cap and the end of the glass lamp tube, wherein each of the protruding portions is disposed between an outer circumferential surface of the magnetic metal member and the inner circumferential surface of the electrically insulating tubular part thereby forming a space therebetween with a hot melt adhesive contained in the space, and the glass lamp tube and the end cap are secured by the hot melt adhesive;

a power supply provided inside the end cap having a metal pin at one end, while the end cap having a hollow conductive pin to accommodate the metal pin of the power supply; and

an LED light strip disposed inside the glass lamp tube with a plurality of LED light sources mounted on the LED light strip;

wherein the LED light strip has a bendable circuit sheet electrically connect the LED light sources and the power supply, and the length of the bendable circuit sheet is larger than the length of the glass lamp tube and the bendable circuit sheet has a first end and a second end opposite to each other along the first direction, and at least the first end of the bendable circuit sheet is bent away from the glass lamp tube to form a freely extending end portion along a longitudinal direction of the glass lamp tube, and the freely extending end portion is electrically connected to the power supply.

2. The LED tube lamp of claim 1 , wherein the at least one opening on surface is to dissipate heat resulting from the power supply.

3. The LED tube lamp of claim 1 , wherein the at least one opening on surface is to dissipate heat resulting from the process of heating of a hot melt adhesive.

4. The LED tube lamp of claim 1 , wherein the at least one opening on surface is to dissipate heat resulting from the power supply and the process of heating of a hot melt adhesive.

5. The LED tube lamp of claim 1 , wherein the at least one opening is located on an end surface of the electrically insulating tubular part.

6. The LED tube lamp of claim 5 , wherein the at least one opening is adjacent to an edge of the end surface of the electrically insulating tubular part.

7. The LED tube lamp of claim 5 , wherein the at least one opening comprises openings arranged to form a circle or a partial circle.

8. The LED tube lamp of claim 5 , wherein the at least one opening comprises openings arranged to form concentric circles or concentric partial circles.

9. The LED tube lamp of claim 1 , wherein at least one opening is located on an end surface of the electrically insulating tubular part, and at least one opening is located on an outer circumferential surface of the electrically insulating tubular part.

10. The LED tube lamp of claim 1 , wherein the at least one opening is located on an outer circumferential surface of the electrically insulating tubular part.

11. An LED tube lamp, comprising:

a glass lamp tube extending in a first direction along a length of the glass lamp tube comprising a main body region, a rear end region, and a two-arc-shaped transition region connecting the main body region and the rear end region, the main body region and the rear end region are substantially parallel;

two end caps with different sizes respectively disposed at two ends of the glass lamp tube, wherein the end cap comprises an electrically insulating tubular part sleeved with the end of the lamp tube having an inner circumferential surface with a plurality of protruding portions formed thereon and extending inwardly in a radial direction of the electrically insulating tubular part, at least one opening on surface to dissipate heat; and a magnetic metal member, fixedly disposed between the protruding portions of the inner circumferential surface of the electrically insulating tubular part of the end cap and the end of the glass lamp tube, wherein each of the protruding portions is disposed between an outer circumferential surface of the magnetic metal member and the inner circumferential surface of the electrically insulating tubular part thereby forming a space therebetween with a hot melt adhesive contained in the space, and the glass lamp tube and the end cap are secured by the hot melt adhesive;

a power supply provided inside one of the end caps, the power supply has a metal pin at one end, while the end cap has a hollow conductive pin to accommodate the metal pin of the power supply; and

an LED light strip disposed inside the glass lamp tube with a plurality of LED light sources mounted on the LED light strip;

wherein the LED light strip has a bendable circuit sheet electrically connect the LED light sources and the power supply, and the length of the bendable circuit sheet is larger than the length of the glass lamp tube and the bendable circuit sheet has a first end and a second end opposite to each other along the first direction, and at least the first end of the bendable circuit sheet is bent away from the glass lamp tube to form a freely extending end portion along a longitudinal direction of the glass lamp tube, and the freely extending end portion is electrically connected to the power supply.

12. The LED tube lamp of claim 11 , wherein the at least one opening on surface is to dissipate heat resulting from the power supply.

13. The LED tube lamp of claim 11 , wherein the at least one opening on surface is to dissipate heat resulting from the process of heating of a hot melt adhesive.

14. The LED tube lamp of claim 11 , wherein the at least one opening on surface is to dissipate heat resulting from the power supply and the process of heating of a hot melt adhesive.

15. The LED tube lamp of claim 11 , wherein the size of one end cap is 30%-80% of the size of the other end cap.

16. The LED tube lamp of claim 11 , wherein the at least one opening is located on an end surface of the electrically insulating tubular part.

17. The LED tube lamp of claim 13 , wherein the at least one opening is adjacent to an edge of the end surface of the electrically insulating tubular part.

18. The LED tube lamp of claim 13 , wherein the at least one opening comprises openings arranged to form a circle or a partial circle.

19. The LED tube lamp of claim 13 , wherein the at least one opening comprises openings arranged to form concentric circles or concentric partial circles.

20. The LED tube lamp of claim 11 , wherein at least one opening is located on an end surface of the electrically insulating tubular part, and at least one opening is located on an outer circumferential surface of the electrically insulating tubular part.

21. The LED tube lamp of claim 11 , wherein the at least one opening is located on an outer circumferential surface of the electrically insulating tubular part.

22. An LED tube lamp, comprising:

a glass lamp tube extending in a first direction along a length of the glass lamp tube comprising a main body region, a rear end region, and two transition regions connecting the main body region and the rear end region, the main body region and the rear end region are substantially parallel;

two end caps disposed at one end of the glass lamp tube; and

an LED light strip disposed inside the glass lamp tube with a plurality of LED light sources mounted on the LED light strip;

wherein the end cap comprises at least one opening to dissipate heat, the glass lamp tube and the end cap are secured by a hot melt adhesive, and a power supply is provided inside the end cap, the LED light strip has a bendable circuit sheet to electrically connect the LED light sources with the power supply, and a length of the bendable circuit sheet is larger than the length of the glass lamp tube and the bendable circuit sheet has a first end and a second end opposite to each other along the first direction, and at least the first end of the bendable circuit sheet is bent away from the glass lamp tube to form a freely extending end portion along a longitudinal direction of the glass lamp tube, and the freely extending end portion is electrically connected to the power supply.

23. The LED tube lamp of claim 22 , wherein the at least one opening is to dissipate heat resulting from the power supply.

24. The LED tube lamp of claim 22 , wherein the at least one opening is to dissipate heat resulting from the process of heating of a hot melt adhesive.

25. The LED tube lamp of claim 22 , wherein the at least one opening is to dissipate heat resulting from the power supply and the process of heating of a hot melt adhesive.

26. The LED tube lamp of claim 25 , wherein the end cap comprises an electrically insulating tubular part, and the at least one opening is located on an end surface of the electrically insulating tubular part.

27. The LED tube lamp of claim 26 , wherein the at least one opening comprises openings arranged to form concentric circles or concentric partial circles.

28. The LED tube lamp of claim 22 , wherein the at least one opening is in a shape of arc on surface.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 31, 2016
From: JIANG, TAO
To: JIAXING SUPER LIGHTING ELECTRIC APPLIANCE CO.,LTD
Reel/Frame 038163/0454 →
Priority Claims (30)
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Continuity (2)
Continuation In Part 14865387 · Sep 25, 2015
Related Publication 20160215936A1 · Jul 28, 2016