Claims
- 1. A butt joined electrical apparatus for coupling millimeter wavelength frequency electrical signals to and from a mating opto-electrical apparatus comprising:
a carrier having an open end face and an electrical element positioned on the carrier with an electrical device formed on at least one horizontal surface of the electrical element; a coplanar transmission structure formed on at least one horizontal surface of the electrical element being electrically coupled to the electrical device, the coplanar transmission structure being independently aligned in three mutually perpendicular planes and in a proximate abutting relationship with another coplanar transmission structure formed on an opto-electrical element positioned on an open end face carrier of the mating opto-electrical apparatus; the carrier of the electrical apparatus and carrier of the opto-electrical apparatus being independently positioned in a proximate abutting relationship at the open end faces and mechanically joined together as a single module by a securing member with the carrier of the electrical apparatus and carrier of the opto-electrical apparatus being linearly and rotationally positionable in three mutually perpendicular planes relative to each other to align the coplanar transmission structures of the electrical apparatus and the opto-electrical apparatus; and substantially flat electrical conductors electrically coupling the coplanar transmission structures of the electrical apparatus and the opto-electrical apparatus together.
- 2. The butt joined electrical apparatus as recited in claim 1 further comprising a mounting dielectric substrate having an end face, with the mounting dielectric substrate mounted on the open end face carrier having the electrical element positioned thereon.
- 3. The butt joined electrical apparatus as recited in claim 1 wherein the electrical element has an end face and the butt joined electrical apparatus further comprises a standoff dielectric substrate positioned on the open end face carrier and having opposing vertical end walls and at least one horizontal surface with a coplanar transmission structure formed on at least one horizontal surface and extending to the vertical end walls with one of the opposing vertical end walls abutting the end face of the electrical element and the coplanar transmission structure on the electrical element and the coplanar transmission structure on the standoff dielectric substrate being coplanar and electrically coupled via substantially flat electrical conductors.
- 4. The butt joined electrical apparatus as recited in claim 3 wherein the coplanar transmission structure on the electrical element and the coplanar transmission structure on the standoff dielectric coplanar transmission structure are impedance and dimensionally matched.
- 5. The butt joined electrical apparatus as recited in claim 3 wherein the coplanar transmission structure of the standoff dielectric substrate is an impedance maintaining dimensional transition coplanar waveguide structure.
- 6. The butt joined electrical apparatus as recited in claim 3 further comprising a mounting dielectric substrate having an end face, with the mounting dielectric substrate mounted on the open end face carrier having the standoff dielectric substrate and the abutting electrical element positioned thereon.
- 7. The butt joined electrical apparatus as recited in claim 1 wherein the electrical device comprises at least a first sampling diode.
- 8. The butt joined electrical apparatus as recited in claim 1 wherein the electrical device comprises a laser driver.
- 9. The butt joined electrical apparatus as recited in claim 1 wherein the open end face carrier further comprises a housing having sidewalls and end walls and a cavity formed in the housing bounded on three sides by the sidewalls and one of the end walls with the cavity intersecting the other end wall defining an open end face on the housing with the electrical element positioned in the cavity at the open end face of the housing.
- 10. The butt joined electrical apparatus as recited in claim 9 wherein the electrical element has an end face and the butt joined electrical apparatus further comprises a standoff dielectric substrate positioned in the cavity of the housing and having opposing vertical end walls and at least one horizontal surface with a coplanar transmission structure formed on at least one horizontal surface and extending to the vertical end walls with one of the opposing vertical end walls abutting the end face of the electrical element and the coplanar transmission structure on the electrical element and the coplanar transmission structure on the standoff dielectric substrate being coplanar and electrically coupled via substantially flat electrical conductors.
- 11. The butt joined electrical apparatus as recited in claim 10 wherein the coplanar transmission structure on the electrical element and the coplanar transmission structure on the standoff dielectric coplanar transmission structure are impedance and dimensionally matched.
- 12. The butt joined electrical apparatus as recited in claim 10 wherein the coplanar transmission structure of the standoff dielectric substrate is an impedance maintaining dimensional transition coplanar waveguide structure.
- 13. A butt joined electrical module for coupling millimeter wavelength frequency electrical signals to and from a mating opto-electrical module comprising:
a housing having sidewalls and end walls and a cavity formed in the housing bounded on three sides by the sidewalls and one of the end walls with the cavity intersecting the other end wall defining an open end face on the housing with an electrical element positioned in the cavity of the housing having an electrical device formed on at least one horizontal surface of the electrical element; a coplanar transmission structure formed on at least one horizontal surface of the electrical element and being electrically coupled to the electrical device, the coplanar transmission structure being independently aligned in three mutually perpendicular planes and in a proximate abutting relationship with another coplanar transmission structure formed on an opto-electrical element positioned in a cavity of a similar open end face housing of the mating opto-electrical module; the housing of the electrical module and housing of the opto-electrical module being independently positioned in a proximate abutting relationship at the open end faces and mechanically joined together as a single module by a securing member with the open end face housing of the electrical module and open end face housing of the opto-electrical module being linearly and rotationally positionable in three mutually perpendicular planes relative to each other to align the coplanar transmission structures of the electrical module and the opto-electrical module; and substantially flat electrical conductors electrically coupling the coplanar transmission structures of the electrical module and the opto-electrical module together.
- 14. The butt joined electrical module as recited in claim 13 further comprising a mounting dielectric substrate having an end face, the mounting dielectric substrate mounted in the cavity of the open end face housing and having the electrical element secured thereon.
- 15. The butt joined electrical module as recited in claim 13 wherein the electrical element has an end face and the butt joined electrical module further comprises a standoff dielectric substrate positioned in the cavity of the open end face housing and having opposing vertical end walls and at least one horizontal surface with a coplanar transmission structure formed on at least one horizontal surface and extending to the vertical end walls with one of the opposing vertical end walls abutting the end face of the electrical element and the coplanar transmission structure on the electrical element and the coplanar transmission structure on the standoff dielectric substrate being coplanar and electrically coupled via substantially flat electrical conductors.
- 16. The butt joined electrical module as recited in claim 15 wherein the coplanar transmission structure on the electrical element and the coplanar transmission structure on the standoff dielectric coplanar transmission structure are impedance and dimensionally matched.
- 17. The butt joined electrical module as recited in claim 15 wherein the coplanar transmission structure of the standoff dielectric substrate is an impedance maintaining dimensional transition coplanar waveguide structure.
- 18. The butt joined electrical module as recited in claim 15 further comprising a mounting dielectric substrate having an end face, the mounting dielectric substrate mounted in the cavity of the open end face housing having the standoff dielectric substrate and the abutting electrical element positioned thereon.
- 19. The butt joined electrical module as recited in claim 13 wherein the electrical device comprises at least a first sampling diode.
- 20. The butt joined electrical module as recited in claim 13 wherein the electrical device comprises a laser driver.
- 21. The butt joined electrical module as recited in claim 13 wherein the open end face housing further comprise a removable top cover mounted on the end wall and the sidewalls bounding the cavity.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of the U.S. Provisional Application No. 60/366,357, filed Mar. 20, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60366357 |
Mar 2002 |
US |