Ultra-small form factor fiber optic connector and adapter with stubbing prevention features
A modified housing and adapter prevent unwanted contact during the mating of fiber-optic connectors by using positive features and negative features in the housing, while the modified adapter presents negative features and positive features in mating of the two structures.
1 . An optical assembly with stubbing prevention features for fiber-optic connectors, the optical assembly comprising:
a first fiber optic connector having at least one ferrule at least partially disposed inside the first fiber optic connector;
a second fiber optic connector having at least one ferrule partially disposed inside the second fiber optic connector opposite the first fiber optic connector, one of the first fiber optic connector and second fiber optic connector having guide pins; and
an adapter having at least two ports on each of a first side and a second side of the adapter to mate at least one pair of fiber optic connectors, a first port of the at least two ports on the first side receiving the first fiber optic connector and a first port of the at least two ports on the second side receiving the second fiber optic connector for mating, and a second port of the at least two ports being side-by-side with the first port, respectively, on each of the first side and the second side,
wherein each of the first fiber optic connector and the second fiber optic connector has a top wall and a bottom wall separated by opposing side walls, at least one of the top wall and the bottom wall having a first flat surface extending upward from one of the side walls and a second flat surface extending upward from the other of the side walls, the first flat surface and the second flat surface being parallel to and offset from one another,
wherein at least one of the top wall and the bottom wall has a third flat surface and a fourth flat surface, the third flat surface and the fourth flat surface being parallel to and offset from one another and disposed between the first flat surface and the second flat surface and on a same top wall or bottom wall as the first flat surface and the second flat surface, and
wherein at least one of the flat surfaces engages a corresponding surface in the adapter to prevent unwanted engagement of end faces or guide pins of the at least one ferrule of the first fiber optic connector and the second fiber optic connector disposed within the adapter.
2 . The optical assembly according to claim 1 , wherein each of the first fiber optic connector and the second fiber optic connector is always positioned within the first port on the first side and the second side, respectively, until the mating of the first fiber optic connector and the second fiber optic connector.
3 . The optical assembly according to claim 1 , wherein the third flat surface and the fourth flat surface are on a polarity key extending upward from one of the top wall and the bottom wall.
4 . The optical assembly according to claim 1 , wherein the flat surfaces extend from both the top wall and the bottom wall.
5 . The optical assembly according to claim 1 , wherein the first and the second fiber optic connectors engage a latch disposed within the adapter before the guide pins or front faces of the respective at least one ferrule of each of the first and the second fiber optic connectors mate with one another.
6 . The optical assembly according to claim 1 , wherein the at least two ports on each of the first side and the second side of the adapter each have at least two flat surfaces within a central opening of the adapter to engage at least two of the flat surfaces on the first and the second fiber optic connectors.
7 . The optical assembly according to claim 6 , wherein the at least two flat surfaces within the central opening of the adapter to engage at least two of the flat surfaces on the first and the second fiber optic connectors are on guide partitions extending from the top wall and bottom wall.
8 . The optical assembly according to claim 1 , wherein the at least two ports on each of the first side and the second side of the adapter each have at least four flat surfaces within a central opening of the adapter to engage four of the flat surfaces on the first and the second fiber optic connectors.
9 . The optical assembly according to claim 1 , wherein each of the at least two ports of the adapter and the first and the second fiber optic connectors have four flat surfaces.
10 . A fiber optic connector comprising:
a top wall;
a bottom wall;
opposing side walls that separate the top wall from the bottom wall,
wherein at least one of the top wall and the bottom wall having a first flat surface extending upward from one of the side walls and a second flat surface extending upward from the other of the side walls, the first flat surface and the second flat surface being parallel to and offset from one another, and wherein at least one of the top wall and bottom wall has a third flat surface and a fourth flat surface, the third flat surface and the fourth flat surface being parallel to and offset from one another and disposed between the first flat surface and the second flat surface and on a same top wall or same bottom wall as the first flat surface and the second flat surface, wherein at least one of the flat surfaces engages a corresponding surface in an adapter to prevent unwanted engagement of end faces or guide pins of an at least one ferrule of the fiber optic connector disposed within the adapter.
11 . The fiber optic connector according to claim 10 , wherein the flat surfaces extend from both the top wall and the bottom wall.
12 . The fiber optic connector according to claim 10 , wherein the third flat surface and a fourth flat surface are on a polarity key extending upward from one of the top wall and the bottom wall.
13 . An optical assembly with stubbing prevention features for fiber-optic connectors, the optical assembly comprising:
an adapter having at least one port to mate at least one pair of fiber optic connectors, the adapter having one of a projection and a receiver to prevent stubbing;
a first fiber optic connector of the at least one pair of fiber optic connectors having at least one ferrule at least partially disposed inside the first fiber optic connector; and
a second fiber optic connector of the at least one pair of fiber optic connectors having at least one ferrule partially disposed inside the adapter opposite the first fiber optic connector,
wherein each of the first fiber optic connector and the second fiber optic connector has the other of the projection and the receiver located rearward of a latch receptacle thereof to prevent stubbing to prevent unwanted engagement of the end faces or guide pins of the at least one ferrule of the first fiber optic connector and the second fiber optic connector disposed within the adapter.
14 . The optical assembly according to claim 13 , wherein the projection is a projection extending from a top portion of a housing of each of the at least one pair of fiber optic connectors.
15 . The optical assembly according to claim 13 , wherein the receiver is a groove within the adapter.
16 . The optical assembly according to claim 13 , wherein the adapter has a central wall with openings for at least a portion of the at least one ferrule, respectively, of each of the at least one pair of fiber optic connectors to pass therethrough.
17 . The optical assembly according to claim 13 , wherein the projection is a guide partition extending from a top wall of the adapter into an opening in the adapter toward the bottom wall or is a guide partition extending from a bottom wall of the adapter into the opening in the adapter toward the top wall.
18 . The optical assembly according to claim 13 , wherein the receiver is a guide rail on an outside portion of each of the at least one pair of fiber optic connectors.