Led tube lamp
US-2017211753-A1 · Jul 27, 2017 · US
US10935190B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10935190-B2 |
| Application number | US-201916585486-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 27, 2019 |
| Priority date | Sep 29, 2017 |
| Publication date | Mar 2, 2021 |
| Grant date | Mar 2, 2021 |
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A method of lamp assembly that etching a glass tube body to increase a texture of the surface of the sidewall of the glass tube body, the sidewall of the glass tube body enclosing a hollow interior; and positioning a circuit board including a plurality of light emitting diodes (LEDs) within the hollow interior of the glass tube, wherein the increase in the texture of the surface increases the light diffusivity of the glass tube body.
Opening claim text (preview).
What is claimed is: 1. A lamp tube comprising: a glass tube body having a perimeter defined by a sidewall of the glass tube body for enclosing a hollow interior, in which an interior surface of the sidewall is textured to increase light diffusivity, wherein a texture of the sidewall that is textured to increase light diffusivity includes a plurality of scallops defined by a peaked upper surface and tapered sidewalls extending to a base having a greater width than the peaked upper surface of the scallops. 2. The lamp tube of claim 1 , wherein the glass tube body is comprised of a soda lime silicate glass. 3. The lamp tube of claim 1 , wherein the glass tube body has a cross-sectional geometry that is perpendicular to a length of the glass tube body with a substantially cylindrical perimeter. 4. The lamp tube of claim 1 further comprising a low refractive index coating on the sidewall that is textured. 5. The lamp tube of claim 1 , wherein a height for each of said scallops ranges from 5 microns to 40 microns, wherein a diameter for said scallops ranges from 100 microns to 2000 microns. 6. The lamp tube of claim 5 , wherein said texture that provides at least one of said first roughness and said second roughness includes a plurality of plateaus each including surface projections having an inverted v-shaped side cross-sectional geometry, the upper surface of the projection provided by the apex of the inverted v-shape. 7. The lamp tube of claim 6 , wherein said plateaus have a diameter ranging from 10 micrometers to 100 micrometers in diameter, and having a density ranging from 25 to about 500 island per square millimeter. 8. The lamp tube of claim 1 , wherein the light diffusivity of the glass tube body is characterized by a scatter ratio of 0.5 or more for all wavelengths between 300 nm and 1200 nm. 9. A lamp tube comprising: a glass tube body having a perimeter defined by a sidewall of the glass tube body for enclosing a hollow interior, in which an interior surface of the sidewall is textured to increase light diffusivity, wherein an the exterior surface of the sidewall is textured to increase light diffusivity. 10. The lamp tube of claim 9 , wherein said exterior surface has a first roughness that has a root mean square (RMS) roughness greater than 250 nm and smaller than 1.5 microns. 11. The lamp tube of claim 9 , wherein said interior surface has a second roughness that has an root mean square (RMS) roughness greater than 250 nm and smaller than 1.5 microns. 12. A lamp tube comprising: a glass tube body having a perimeter defined by a sidewall of the glass tube body for enclosing a hollow interior, in which an interior surface of the sidewall is textured to increase light diffusivity, wherein an the exterior surface of the sidewall is textured to increase light diffusivity, wherein said texture on exterior surface has a first roughness substantially equal to a said texture on said interior surface having a second roughness.
Wavelength conversion means · CPC title
the material being glass · CPC title
Retrofit light sources for lighting devices with two fittings for each light source, e.g. for substitution of fluorescent tubes · CPC title
Methods of manufacture · CPC title
Details of globes or covers forming part of the light source · CPC title
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