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04/24/08 | 1 views | #20080095503 | Prev - Next | USPTO Class 385 | About this Page  385 rss/xml feed  monitor keywords

Ferrule for optical wave guide

USPTO Application #: 20080095503
Title: Ferrule for optical wave guide
Abstract: An apparatus includes an optical wave guide and a ferrule. The optical wave guide has a prespecified horizontal-positioning surface and a prespecified vertical-positioning surface. The ferrule is to precisely couple with the optical wave guide. The ferrule defines a first datum plane mating with the prespecified vertical-positioning surface of the optical wave guide to precisely mechanically vertically position the optical wave guide within the ferrule. The ferrule defines a second datum plane mating with the prespecified horizontal-positioning surface of the optical wave guide to precisely mechanically horizontally position the optical wave guide within the ferrule. (end of abstract)
Agent: Law Offices Of Michael Dryja - Gilbert, AZ, US
Inventors: Masaki Hasegawa, Fumiaki Yamada, Yoichi Taira
USPTO Applicaton #: 20080095503 - Class: 385 72 (USPTO)

The Patent Description & Claims data below is from USPTO Patent Application 20080095503.
Brief Patent Description - Full Patent Description - Patent Application Claims  monitor keywords

RELATED APPLICATIONS

[0001]The present patent application is a continuation of the previously filed and co-pending patent application entitled "Ferrule for optical wave guide," filed on Oct. 23, 2006, and assigned application Ser. No. 11/551,893.

FIELD OF THE INVENTION

[0002]The present invention relates generally to connecting optical wave guides of different components to one another, and more specifically to a ferrule for an optical wave guide to connect the optical wave guides of different components together.

BACKGROUND OF THE INVENTION

[0003]Traditionally, data communications among different components of computing devices and of computing systems have occurred via electrical wiring, such as copper wiring on printed circuit boards. However, with the increasing speed of various computing components, such as processors and memory, electrical wiring as a connection mechanism has become a bottleneck to transferring data among different components. Therefore, manufacturers have been looking to alternatives other than electrical wiring to connect different components together for data communication purposes.

[0004]One alternative is to communicate data among different components of computing devices and of computing systems using light. Such optical data transfer is typically significantly faster than electrical data transfer using electrical wiring, and further does not have the limits that electrical data transfer does. Optical wave guides in particular have become a seriously considered candidate for optically transferring data among different components.

[0005]To optically connect different printed circuit boards together, however, a connector is typically required. While light has excellent propagation characteristics in general, a large amount of loss of the light may occur at the connection point if a precise connection between the optical wave guides of two circuit boards is not achieved. A connector for optically connecting the optical wave guides of two such components to one another should also be able to be mechanically attached and detached as needed. Mechanical attachment of a connector to the optical wave guides of the components should thus provide for precise optical connection between the components.

[0006]For these and other reasons, therefore, there is a need for the present invention.

SUMMARY OF THE INVENTION

[0007]The invention relates generally to a ferrule for an optical wave guide. An apparatus of an embodiment of the invention includes an optical wave guide and a ferrule. The optical wave guide has a prespecified horizontal-positioning surface and a prespecified vertical-positioning surface. The ferrule is to precisely couple with the optical wave guide. The ferrule defines a first datum plane mating with the prespecified vertical-positioning surface of the optical wave guide to precisely mechanically vertically position the optical wave guide within the ferrule. The ferrule defines a second datum plane mating with the prespecified horizontal-positioning surface of the optical wave guide to precisely mechanically horizontally position the optical wave guide within the ferrule.

[0008]For instance, in one embodiment, the ferrule may include a bottom portion defining a center trench that has a lower horizontal surface defining the first datum plane. The optical wave guide may include a bottom substrate having a lower horizontal surface defining the prespecified vertical-positioning surface of the optical wave guide and mating with the lower horizontal surface of the center trench of the ferrule. The center trench of the ferrule may have a lug extending from the lower horizontal surface thereof that defines the second datum plane. The bottom substrate of the optical wave guide may further have a notch within its lower horizontal surface defining the prespecified horizontal-positioning surface of the optical wave guide and that corresponds to and mates with the lug extending from the center trench of the ferrule.

[0009]In another embodiment, the ferrule may include a bottom portion defining a center trench having a lower horizontal surface and one or more stepped upper horizontal surfaces to either side of the lower horizontal surface. The stepped upper horizontal surfaces define the first datum plane. The optical wave guide may include a cladding layer having one or more lower horizontal surfaces defining the prespecified vertical-positioning surface of the optical wave guide and mating with the stepped upper horizontal surfaces of the center trench of the ferrule. The center trench of the bottom portion of the ferrule may further have one or more vertical side surfaces, at least one of which define the second datum plane. The optical wave guide may further have a core pattern to transmit light, and a dummy core pattern that does not transmit light but that has one or more vertical side surfaces. At least one of the vertical side surfaces of the dummy core pattern define the prespecified horizontal positioning surface of the optical wave guide and mate with corresponding at least one of the vertical side surfaces of the center trench of the ferrule.

[0010]At least some embodiments of the invention provide for advantages over the prior art. The ends of two optical wave guides, such as extending from two different components of a computing device or of a computing system, may be precisely optically (and mechanically) mated with one another via the ferrule. The optical wave guides are both inserted into the ferrule, where the various aspects of the optical wave guides and of the ferrule as has been described provides for precise mechanical and optical mating between the optical wave guides and the ferrule and thus between the optical wave guides themselves. A cover, or top portion, of the ferrule snaps onto the bottom portion of the ferrule after insertion of the optical wave guides into the bottom portion, so that the optical wave guides remain connected to one another. Detaching the top portion of the ferrule thus allows for disconnection of the optical wave guides.

[0011]Still other aspects, advantages, and embodiments of the invention will become apparent by reading the detailed description that follows, and by referring to the accompanying drawings.

BRIEF DESCRIPTION OF THE DRAWINGS

[0012]The drawings referenced herein form a part of the specification. Features shown in the drawing are meant as illustrative of only some embodiments of the invention, and not of all embodiments of the invention, unless otherwise explicitly indicated, and implications to the contrary are otherwise not to be made.

[0013]FIG. 1 is a diagram in which the optical wave guides of two components are precisely connected to one another, according to an embodiment of the invention.

[0014]FIG. 2 is a cross-sectional diagram of a ferrule and an optical wave guide, according to an embodiment of the invention.

[0015]FIG. 3 is a partial cross-sectional diagram of the ferrule and the optical wave guide of FIG. 2, according to another embodiment of the invention.

[0016]FIG. 4 is a flowchart of a method for fabricating the optical wave guide of FIG. 2, according to an embodiment of the invention.

DETAILED DESCRIPTION OF THE DRAWINGS

[0017]In the following detailed description of exemplary embodiments of the invention, reference is made to the accompanying drawings that form a part hereof, and in which is shown by way of illustration specific exemplary embodiments in which the invention may be practiced. These embodiments are described in sufficient detail to enable those skilled in the art to practice the invention. Other embodiments may be utilized, and logical, mechanical, and other changes may be made without departing from the spirit or scope of the present invention. The following detailed description is, therefore, not to be taken in a limiting sense, and the scope of the present invention is defined only by the appended claims.

[0018]FIG. 1 shows a system 100, according to an embodiment of the invention. The system 100 includes two components 102 and 104. The components 102 and 104 may be printed circuit boards, memory, processors, or other types of computing components. The components 102 and 104 may be part of the same computing system, and/or parts of the same computing device. The component 102 includes an optical wave guide 106 for optical data communication therewith, and the component 104 includes an optical wave guide 108 for optical data communication therewith.

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Industry Class:
Optical waveguides

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