Assembly of components having different coefficients of thermal expansion

US11845257B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11845257-B2
Application numberUS-202117304248-A
CountryUS
Kind codeB2
Filing dateJun 17, 2021
Priority dateJul 10, 2013
Publication dateDec 19, 2023
Grant dateDec 19, 2023

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A component assembly includes a first component, such as an optical component, and a second component, such as a support component, having different coefficients of thermal expansion (CTEs). The component assembly also includes a spacer having a CTE matched to that of the first component, disposed between the first component and the second component. When the CTE of the first component is greater than that of the second component, the second component includes a protrusion, and the spacer includes a complementary opening for receiving the protrusion, such that a joint between the protrusion and the complementary opening is under compressive stress. The spacer also includes a mounting area for receiving the first component, and an air gap disposed between the first component and the protrusion.

First claim

Opening claim text (preview).

I claim: 1. An assembly comprising: a first component comprising an optical component having a first coefficient of thermal expansion (CTE); a second component comprising an optical support component having a second CTE different from the first CTE; and a spacer, disposed between the first component and the second component, having a third CTE different from the second CTE, the spacer including: an annular body having opposing upper and lower surfaces disposed at opposing axial ends of the annular body, wherein the annular body defines a hole in a center portion of the annular body axially extending between the upper and lower surfaces of the annular body; and a mounting area disposed on the upper surface of the annular body for receiving the first component, wherein the mounting area and a lower surface of the first component are joined via an adhesive; wherein the second component includes a protrusion axially extending from an upper surface of the second component into the hole in the center portion of the annular body, such that a joint between the protrusion and the spacer is under compressive stress; wherein the first component, the protrusion, and the annular body define, within the hole in center portion of the annular body, a first air gap disposed between the lower surface of the first component and the protrusion and surrounded by the annular body; and wherein the protrusion is adhered within the hole in center portion of the annular body to define a second air gap disposed between the upper surface of the second component and the lower surface of the annular body. 2. The assembly of claim 1 , wherein the optical component comprises one or more of: a lens, a prism, a mirror, or a diffraction grating. 3. The assembly of claim 1 , wherein the optical support component comprises one or more of: an optical bench, an optical platform, an optical package, or an optical housing. 4. The assembly of claim 1 , wherein the third CTE is substantially matched to the first CTE. 5. The assembly of claim 1 , wherein the first CTE and the third CTE are less than the second CTE. 6. An optical module, comprising: a first component comprising an optical component having a first coefficient of thermal expansion (CTE); a second component comprising a support component having a second CTE different from the first CTE; and a spacer, disposed between the first component and the second component, having a third CTE different from the second CTE, the spacer including: an annular body having opposing upper and lower surfaces disposed at opposing axial ends of the annular body, wherein the annular body defines a hole in a center portion of the annular body axially extending between the upper and lower surfaces of the annular body; and a mounting area disposed on the upper surface of the annular body for receiving the first component; wherein the mounting area and a lower surface of the first component are joined via an adhesive; wherein the second component includes a protrusion axially extending from an upper surface of the second component into the hole in the center portion of the annular body, such that a joint between the protrusion and the spacer is under compressive stress; wherein the first component, the protrusion, and the annular body define, within the hole in the center of the annular body, a first air gap disposed between the lower surface of the first component and the protrusion and surrounded by the annular body; and wherein the protrusion is adhered within the hole in the center portion of the annular body to define a second air gap disposed between the upper surface of the second component and the lower surface of the annular body. 7. The optical module of claim 6 , wherein the optical component comprises one or more of: a lens, a prism, a mirror, or a diffraction grating. 8. The optical module of claim 6 , wherein the support component comprises one or more of: an optical bench, an optical platform, an optical package, or an optical housing. 9. The optical module of claim 6 , wherein the third CTE is substantially matched to the first CTE. 10. The optical module of claim 6 , wherein the first CTE and the third CTE are less than the second CTE. 11. A wavelength selective switch, comprising: a first component comprising an optical component having a first coefficient of thermal expansion (CTE); a second component comprising a support component having a second CTE different from the first CTE; and a spacer, disposed between the first component and the second component, having a third CTE different from the second CTE, the spacer including: an annular body having opposing upper and lower surfaces disposed at opposing axial ends of the annular body, wherein the annular body defines a hole in a center portion of the annular body axially extending between the upper and lower surfaces of the annular body; and a mounting area disposed on the upper surface of the annular body for receiving the first component; wherein the mounting area and a lower surface of the first component are joined via an adhesive; wherein the second component includes a protrusion axially extending from an upper surface of the second component into the hole in the center portion of the annular body, such that a joint between the protrusion and the spacer is under compressive stress; wherein the first component, the protrusion, and the annular body define, within the hole in the center of the annular body, a first air gap disposed between the lower surface of the first component and the protrusion and surrounded by the annular body; and wherein the protrusion is adhered within the hole in the center portion of the annular body to define a second air gap disposed between the upper surface of the second component and the lower surface of the annular body. 12. The wavelength selective switch of claim 11 , wherein the optical component comprises one or more of: a lens, a prism, a mirror, or a diffraction grating. 13. The wavelength selective switch of claim 11 , wherein the support component comprises one or more of: an optical bench, an optical platform, an optical package, or an optical housing. 14. The wavelength selective switch of claim 11 , wherein the third CTE is substantially matched to the first CTE. 15. The wavelength selective switch of claim 11 , wherein the first CTE and the third CTE are less than the second CTE.

Assignees

Inventors

Classifications

  • B32B7/027Primary

    Thermal properties · CPC title

  • with means for compensating for changes in temperature or for controlling the temperature; thermal stabilisation · CPC title

  • with means for compensating for changes in temperature or for controlling the temperature; thermal stabilisation · CPC title

  • with means for compensating for changes in temperature or for controlling the temperature; thermal stabilisation · CPC title

  • Mechanical Engineering · mapped topic

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What does patent US11845257B2 cover?
A component assembly includes a first component, such as an optical component, and a second component, such as a support component, having different coefficients of thermal expansion (CTEs). The component assembly also includes a spacer having a CTE matched to that of the first component, disposed between the first component and the second component. When the CTE of the first component is great…
Who is the assignee on this patent?
Lumentum Operations Llc
What technology area does this patent fall under?
Primary CPC classification B32B7/027. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Dec 19 2023 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).