Claims
- 1. An optical connector standoff system for a planar array semiconductor chip of electro optical devices where said chip has one optical interface side and one electrical interface side, comprising
an integrated circuit substrate with contact points on a top surface for said electro optical devices, said planar array chip configured proximate and parallel said top surface, said electro optical devices being electrically connected at said contact points with said integrated circuit substrate, an integral bonding layer and perimeter standoff ridge, said bonding layer extending between said planar array chip and said top surface, said perimeter standoff ridge extending around the perimeter of said array chip and rising to a predetermined standoff distance above the optical surface of said electro optical devices.
- 2. An optical connector standoff system for a planar array semiconductor chip of electro optical devices according to claim 1, said electro optical devices comprising VCSELs.
- 3. An optical connector standoff system for a planar array semiconductor chip of electro optical devices according to claim 1, said electro optical devices comprising photodiodes.
- 4. An optical connector standoff system for a planar array semiconductor chip of electro optical devices according to claim 1, said flowable bonding agent being an epoxy based material.
- 5. A method for making an optical connector standoff system for a planar array semiconductor chip of electro optical devices where said chip has one optical interface side and one electrical interface side, comprising
using an integrated circuit substrate with contact points on a top surface for said electro optical devices, configuring said planar array chip proximate and parallel said top surface of said integrated circuit substrate with said electrical interface side adjacent said top surface, electrically bonding said electro optical devices at said contact points with said integrated circuit substrate, applying a flowable bonding agent to said top surface and around the sidewall of said chip for wicking of said bonding agent between said chip and said top surface, building up a perimeter wall of said bonding agent around the sidewalls of said chip to at least a predetermined final standoff height with respect to the height of the optical surface level within said chip, curing said flowable bonding agent so as to bond said chip to said integrated circuit substrate and harden said perimeter wall, lapping said optical interface surface of said chip and said perimeter wall to said predetermined final standoff height, and etching said optical interface side of said chip within said perimeter wall of cured said bonding agent to said optical surface level therein.
- 6. An optical connector standoff system for a planar array semiconductor chip of electro optical devices where said chip has one optical interface side and one electrical interface side, comprising
an integrated circuit substrate with contact points on a top surface for said electro optical devices, said planar array chip having a standoff cavity system let into said electrical interface side, said cavity system being deeper than the optical surface level within said chip by at least a predetermined standoff height, said planar array chip configured proximate and parallel said top surface with said electrical interface side adjacent said top surface, said electro optical devices being electrically connected at said contact points with said integrated circuit substrate, an integral bonding layer and standoff structure, said bonding layer extending between said planar array chip and said top surface, said standoff structure occupying said standoff cavity system and rising to said predetermined standoff distance above said optical surface level.
- 7. An optical connector standoff system for a planar array semiconductor chip of electro optical devices according to claim 6, said standoff structure being a grid within each rectangle of which is a said electro optical device.
- 8. An optical connector standoff system for a planar array semiconductor chip of electro optical devices according to claim 6, said standoff structure comprising a distributed pattern of posts within the optical surface area of said chip.
- 9. An optical connector standoff system for a planar array semiconductor chip of electro optical devices according to claim 6, said standoff structure comprising a perimeter ridge around said optical surface area of said chip.
- 10. An optical connector standoff system for a planar array semiconductor chip of electro optical devices according to claim 6, said electro optical devices comprising VCSELs.
- 11. An optical connector standoff system for a planar array semiconductor chip of electro optical devices according to claim 6, said electro optical devices comprising photodiodes.
- 12. A method for making an optical connector standoff system for a planar array semiconductor chip of electro optical devices where said chip has one optical interface side and one electrical interface side comprising the steps:
using an integrated circuit substrate with contact points on a top surface for said electro optical devices, evacuating a standoff cavity system in said electrical interface side of said planar array chip to a depth greater than the optical surface level within said chip by a predetermined standoff height configuring said planar array chip proximate and parallel said top surface with said electrical interface side adjacent said top surface, electrically connecting said electro optical devices at said contact points with said integrated circuit substrate, applying a flowable bonding agent to said top surface around the sidewall of said chip for wicking of said bonding agent between said chip and said top surface and into said standoff cavity system, curing said flowable bonding agent between said top surface and said chip so as to bond said chip to said integrated circuit substrate and within said standoff cavity system so as to form a conforming standoff structure, etching said optical interface side of said chip to said optical surface level within said chip, thereby exposing said standoff structure at said predetermined standoff height.
- 13. A method for making an optical connector standoff system for a planar array semiconductor chip of electro optical devices according to claim 12, said standoff structure being a grid within each rectangle of which is a said electro optical device.
- 14. A method for making an optical connector standoff system for a planar array semiconductor chip of electro optical devices according to claim 12, said standoff structure comprising a distributed pattern of posts within the optical surface area of said chip.
- 15. A method for making an optical connector standoff system for a planar array semiconductor chip of electro optical devices according to claim 12, said standoff structure comprising a perimeter ridge around said optical surface area of said chip.
- 16. A method for making an optical connector standoff system for a planar array semiconductor chip of electro optical devices according to claim 12, said electro optical devices comprising VCSELs.
- 17. A method for making an optical connector standoff system for a planar array semiconductor chip of electro optical devices according to claim 12, said electro optical devices comprising photodiodes.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application relates and claims priority for all purposes to pending U.S. application Ser. No. 60/199,099, filed Apr. 21, 2001, by at least one of the same inventors.
Provisional Applications (1)
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Number |
Date |
Country |
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60199099 |
Apr 2000 |
US |