Alignment adapter and alignment design for a connector therefor
10890723 ยท 2021-01-12
Assignee
Inventors
- Hiep V. Nguyen (Fort Mill, SC, US)
- Darrell R. Childers (Hickory, NC)
- Michael E. Hughes (Hickory, NC, US)
- Jillcha Fekadu Wakjira (Hickory, NC, US)
- Joseph P. Howard (Hickory, NC, US)
Cpc classification
G02B6/3825
PHYSICS
G02B6/3879
PHYSICS
G02B6/3885
PHYSICS
International classification
Abstract
An adapter with novel alignment features engages alignment features on a plug, providing general alignment of the ferrule holders and ferrules in the plug. After the plug engages the adapter, the ferrule holders engage a second set of alignment features in the adapter to provide fine alignment for the ferrules.
Claims
1. An adapter for aligning a first fiber optic ferrule inserted from a first side and a second fiber optic ferrule inserted from a second side, comprising: a main body having an opening defined by two opposing side walls, a top surface and a bottom surface, the opening extending between the first side and the second side, the first side and the second side separated by a central portion inside the main body; and a plurality of grooves disposed in a second top surface and a plurality of grooves disposed in a second bottom surface of the central portion, the second top surface and the second bottom surface being different from the top surface and the bottom surface in the main body, each of the plurality of grooves extending into the central portion from each of the first side and the second side.
2. The adapter according to claim 1, the opening having at least one groove in one of the bottom surface and top surface and extending in a direction from the first side to the second side.
3. The adapter according to claim 1, further comprising a wall disposed within and across the central portion of the main body and between the first side and the second side, the wall having at least one passage therein to allow at least a portion of the fiber optic ferrules inserted from the first and second sides to pass therethrough.
4. The adapter according to claim 3, wherein the at least one passage comprises a plurality of passages, the plurality of passages corresponding to the number of fiber optic ferrules.
5. The adapter according to claim 1, wherein the opening in the central portion of the main body is smaller than the opening in the first and second sides.
6. The adapter according to claim 1, further comprising an conduc-tive elastomeric gasket encircling an external surface of the adapter to provide EMI shielding to the adapter.
7. The adapter according to claim 1, wherein the first and second sides are configured to receive a plurality of optical ferrules.
8. The adapter according to claim 1, wherein the plurality of grooves in the top surface of the central portion have a first width and the plurality of grooves in the bottom surface of the central portion have a second width, and the first and second widths are different.
9. The adapter according to claim 4, wherein the plurality of passages are sized to allow a ferrule holder to enter therein.
10. An adapter for aligning fiber optic ferrules inserted from opposing sides comprising; a main body having an opening extending between a first side and a second side, the first side and the second side separated by a central portion inside the main body, the main body having at least one groove in the opening and extending in a direction from the first side to the second side; and a plurality of grooves disposed in a top surface and bottom surface of the central portion, each of the plurality of grooves extending into the central portion from each of the first side and the second side, the plurality of grooves in the top surface configured to receive a plurality of fiber optic ferrules from each of the first side and the second side.
11. The adapter according to claim 10, further comprising a wall disposed within and across the central portion of the main body and between the first side and the second side, the wall having at least one passage therein to allow at least a portion of the fiber optic ferrules inserted from the first and second sides to pass therethrough.
12. The adapter according to claim 11, wherein the at least one passage comprises a plurality of passages, the plurality of passages corresponding to the number of fiber optic ferrules.
13. The adapter according to claim 10, wherein the opening in the central portion of the main body is smaller than the opening in the first and second sides.
14. The adapter according to claim 10, further comprising an conduc-tive elastomeric gasket encircling an external surface of the adapter to provide EMI shielding to the adapter.
15. The adapter according to claim 10, wherein the first and second sides are configured to receive a plurality of optical ferrules.
16. The adapter according to claim 10, wherein the plurality of grooves in the top surface of the central portion have a first width and the plurality of grooves in the bottom surface of the central portion have a second width, and the first and second widths are different.
17. The adapter according to claim 12, wherein the plurality of passages are sized to allow a ferrule holder to enter therein.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12)
(13)
(14)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(15) Reference will now be made in detail to the present preferred embodiment(s) of the invention, examples of which are illustrated in the accompanying drawings. Whenever possible, the same reference numerals will be used throughout the drawings to refer to the same or like parts.
(16) Referring to
(17) As illustrated in
(18) The plug 200 will now be described relative to
(19) The outside surface 202 also has a projection 220 on the top of the plug 200, seen in
(20) The plug 200 also has two cantilevered latches 230 on the sides to engage corresponding structure on the adapter 100. There are also latch receptacles 232 on the top side of the plug 200 to engage the latches 316 of the ferrule holders 300.
(21) As noted above, the grooves 208 and 212 in plug 200 are dimensioned to accept the projections 320,322 from the ferrule holders 300. There is sufficient movement in the ferrule holders 300 relative to the plug 200 that when the plug 200 and ferrule holders 300 as assembled is inserted into the adapter 100, that the ferrule holders 300 can move to allow the projections 320,322 from the ferrule holders 300 to engage corresponding grooves in the adapter 100 as described below in more detail.
(22) Returning to
(23) The adapter has the center portion 110. Center portion 110 preferably has a wall 130 that extends across the opening 104 in the adapter 100 and divides the center portion 110 in half. The center portion 110 also has a raised bottom portion 132 and a dropped top portion 134 that narrows the opening 104 in the center portion 110. The wall 130 preferably extends from the raised bottom portion 132 and a dropped top portion 134 or it may be excluded completely if there is no EMI concerns with the adapter 100. The wall 130 has a plurality of openings or passageways 136 that are sized to allow the ferrules 12 to pass therethrough to engage a corresponding ferrule 12. As noted above, if the ferrules 12 only extend to the end of the ferrule holder 330, then the openings or passageways 136 should be sized to allow the ferrule holders to also extend therethrough. The adapter 100 may also have an elastomeric gasket 150 that encircles an external surface of the adapter 100 to provide EMI shielding.
(24) The raised bottom portion 132 and a dropped top portion 134 also have a plurality of grooves 140, 142, respectively, that extend completely across the central portion 110. The grooves 140, 142 are like those in the plug 200, in that they are to engage the projections 320,322 from the ferrule holders 300. The grooves 140,142 preferably extend completely across the center portion 110 as they are formed with the same insert in the mold. Therefore, the grooves 140,142 are sure to align the ferrule holders 300 on each side of the adapter 100 as they are inserted into the adapter 100.
(25) As the plug 200 with the ferrule holders 300 positioned therein are inserted into the adapter 100, the projections 220,222 from the plug 200 engage the grooves 116,118 on the top surface 112 and the bottom surface 114 to roughly align the ferrule holders 300 with the center portion 110 and the plurality of grooves 140 in particular. Then, as the plug 200 is inserted farther into the adapter 100, the projections 320,322 from the ferrule holders 300 engage plurality of grooves 140, 142 to align the ferrule holders 300 with the adapter and the openings or passageways 136 in the wall 130. When a plug 200 is inserted on the second side, the ferrules in the ferrule holders on the other side will be in alignment with the first side.
(26) The position of the ferrule holders 300 on the first side 106 of the adapter relative to the ferrule holders 300 on the second side 108 is what allows the optical ferrules to be aligned with one another. There is no need, as discussed above, to worry about the stacking of tolerances as in the prior art. The positioning of the projections 320,322 on the ferrule holders 300 relative to the plurality of grooves 140, 142 is important. With reference to
(27) A cross section of the adapter assembly 10 is illustrated in
(28) It will be apparent to those skilled in the art that various modifications and variations can be made to the present invention without departing from the spirit and scope of the invention. Thus it is intended that the present invention cover the modifications and variations of this invention provided they come within the scope of the appended claims and their equivalents.