G02B6/3806

MULTI-FIBER SEMI-PERMANENT SPLICING SYSTEMS
20230314722 · 2023-10-05 ·

The present disclosure relates generally to a bare-fiber connection system that includes first and second multi-fiber fiber optic connectors mounted in a multi-fiber adapter. The multi-fiber fiber optic connectors are bare-fiber connectors that each include a connector body and a plurality of optical fibers extending through the connector body. The bare-fiber connection system includes a latching arrangement for securing the first and second multi-fiber fiber optic connectors respectively in first and second adapter ports. The first and second multi-fiber fiber optic connectors and the multi-fiber adapter lack integrated structures for releasing the first and second multi-fiber fiber optic connectors from the first and second adapter ports.

OPTICAL FIBER CONNECTING JIG AND OPTICAL CONNECTOR

An optical fiber connecting jig according to one embodiment includes: a plate-shaped base mounted on the optical connector so as to cover the optical connector; a wedge portion protruding from the base and inserted into a mechanical splice; an operation portion provided respectively on both sides of the base in a width direction and protruding in the width direction from the optical connector; a pair of first engagement portions provided respectively on both sides of the base in the width direction on one side of the base in a longitudinal direction and protruding toward the optical connector; and a pair of second engagement portions provided respectively on both sides of the base in the width direction on the other side of the base in the longitudinal direction and protruding toward the optical connector.

Fiber control collar
11747571 · 2023-09-05 · ·

An example fiber control collar is provided. The fiber control collar includes a body, an opening, and a protrusion. The body includes a front surface and an opposing rear surface. The opening is formed in and extends through the body from the front surface to the rear surface. The protrusion extends from the front surface. The fiber control collar is configured to be positioned within a complementary hollow section of a connector backshell component to maintain fibers of a fiber optic cable away from pinch points during assembly of the fiber optic connector.

Optical fiber alignment devices and systems

The present disclosure relates to optical fiber alignment devices and systems for use in implementing optical splices between optical fibers. In certain examples, the optical fiber alignment devices and systems can include fiber alignment structures capable of clamping optical fibers in a co-axially aligned orientation.

DEVICE FOR ALIGNING OPTICAL FIBERS

The present disclosure relates to a fiber alignment device including a guide feature defining a fiber alignment groove. The fiber alignment device also includes a fiber engagement component defining a reference surface arrangement and elastic cantilever arms for pressing optical fibers into the fiber alignment groove. First portions of the guide feature engage the reference surface arrangement. Second portions of the guide feature engage the cantilever arms to flex the cantilever arms to a staged position.

Fiber bragg grating multi-point pressure sensing guidewire with birefringent component

A system and method are presented for detecting and measuring pressure within a region of a body lumen or vessel. The pressure sensing system includes a light source for transmitting light through a pathway containing polarization-maintaining fiber optic wires. A distal portion of the polarization-maintaining fiber optic wire, which is engaged to and extends along a guidewire, includes pressure sensing station(s) made up of fiber Bragg gratings (FBG). The light transmitted to and reflected from the FBGs on the two polarization modes of the polarization-maintaining fiber optic wire can be analyzed to provide one or more pressure values.

DEVICE FOR ALIGNING OPTICAL FIBERS

The present disclosure relates to a fiber alignment device (20) including a guide feature (62a, b) defining a fiber alignment groove (48). The fiber alignment device (20) also includes a fiber engagement component (44) defining a reference surface arrangement and elastic cantilever arms (56a, b) for pressing optical fibers into the fiber alignment groove (48). First portions of the guide feature (62a, b) engage the reference surface arrangement. Second portions of the guide (62a, b) feature engage the cantilever arms (56a, b) to flex the cantilever arms to a staged position.

OPTICAL FIBER ALIGNMENT DEVICES AND SYSTEMS

The present disclosure relates to optical fiber alignment devices and systems for use in implementing optical splices between optical fibers. In certain examples, the optical fiber alignment devices and systems can include fiber alignment structures capable of clamping optical fibers in a co-axially aligned orientation.

Optical fiber connection system
11092750 · 2021-08-17 · ·

An optical fiber connection system includes a first and a second optical fiber, each with end portions that are terminated by a first and a second fiber optic connector, respectively. A fiber optic adapter connects the first and the second fiber optic connectors. A fiber alignment apparatus includes V-blocks and gel blocks. Each of the fiber optic connectors includes a connector housing and a sheath. The end portions of the optical fibers are positioned beyond distal ends of the respective connector housings. The sheath is slidably connected to the connector housing and slides between an extended configuration and a retracted configuration. The sheath covers the end portion of the respective optical fiber when the sheath is at the extended configuration and exposes the end portion when at the retracted configuration. The end portions of the optical fibers are cleaned when slid between the V-blocks and the gel blocks.

FERRULE ASSEMBLIES HAVING A LENS ARRAY
20210239912 · 2021-08-05 ·

Ferrule assemblies having a lens array are disclosed. In one embodiment, a ferrule assembly includes a ferrule body and a fiber array ferrule. The ferrule body includes a first end face and a second end face, at least one cavity for receiving one or more optical fibers disposed between the first end face and the second end face, and at least one body alignment feature at an outer surface of the body. The fiber array ferrule includes a first end face and a second end face, an array of alignment holes extending between the first end face and the second end face, and at least one ferrule alignment feature at an outer perimeter of the fiber array ferrule. The second end face of the fiber array ferrule is coupled to the first end face of the body.