WO2012167102A1

Rugged passively cooled high power laser fiber optic connectors and methods of use

Abstract

There are provided high power laser connectors and couplers and methods that are capable of providing high laser power without the need for active cooling to remote, harsh and difficult to access locations and under difficult and harsh conditions and to manage and mitigate the adverse effects of back reflections.

WO2012167102A1, drawing sheet 1
Sheet 1 of 67

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

96 claims: 21 independent, 75 dependent

  1. 1
    What is claimed:1 . A high power laser connector comprising: a. an optical assembly;b. the optical assembly comprising a back reflection chamber in optical association with an optical block;and, c. the optical block having a launch face for propagating a high power laser beam along a laser beam path in a direction away from the connector;d. whereby, substantially all back reflections entering the launch face are directed back out the launch face substantially along the laser beam path.
  2. 37
    A passively cooled high power laser connector comprising:a. a tail end and a face end;b. a housing defining a cavity, the cavity located between the tail end and the face end;c. an optics package, comprising an optical fiber having a core, a first chamber, a back reflection chamber, an optical block, and a window;and, d. the optics package defining a portion of a laser beam path, the laser beam path extending from the tail end to the face end, and capable of transmitting a laser beam having a power of at least about 15 kW.
  3. 47
    A high power laser connector comprising:a. a tail end and a face end;b. a housing defining a cavity, the cavity located between the tail end and the face end;c. an optics package, comprising an optical fiber having a core, a first chamber, and an optical block;d. the optics package defining a portion of a laser beam path, the laser beam path extending from the tail end to the face end, and capable of transmitting a laser beam having a power of at least about 15 kW;e. at least a portion of the optics package in the cavity;and, f. the optics block having ear structures.
  4. 51
    A high power laser beam transmission assembly comprising:a housing having an outer surface and an inner surface, wherein the inner housing surface is positioned toward a path of a laser beam through the transmission assembly and the outer housing surface is positioned away from the laser beam path;the housing defining a cavity and isolating the cavity from fluid flow;ahigh power optical fiber within the cavity and comprising a core and a cladding;the high power optical fiber in optical communication with a laser beam transmission optical surface;and a mode stripper positioned within the cavity and optically associated with the cladding and thermally associated with the housing.
  5. 56
    The transmission assembly of claims 51 wherein the laser beam transmission optical surface is a lens.
  6. 58
    The transmission assembly of claims 53, wherein the optical block has a diffusing surface.
  7. 59
    The transmission assembly of claims 51 , wherein the laser beam transmission optical surface is the distal end of the transmission assembly.
  8. 68
    The transmission assembly of claims 51 , wherein the housing comprises two sections.
  9. 70
    A high power laser beam transmission component comprising:a housing having an outer surface and an inner surface, wherein the inner housing surface is positioned toward a path of a laser beam through the housing;the housing defining a cavity and isolating the cavity from fluid flow;at least one high power optical assembly being at least partially contained within the cavity;the high power optical assembly comprising a laser beam transmission optical surface;and a means to manage back reflections.
  10. 75
    The transmission device of claims 70, comprising a means for managing cladding modes.
  11. 76
    The transmission device of claims 70, comprising a back reflection chamber having a TIR surface.
  12. 78
    A high power laser beam connector comprising:a housing, the housing defining in part a face end and a tail end and extending there between;the housing defining a cavity;a high power optical assembly in the cavity;the high power optical assembly comprising a beam launch surface, whereby the beam launch surface is near the face end;a laser beam path extending from the beam launch surface and away from the optical assembly;the optical assembly joined to the housing;wherein the laser beam path remains substantially unchanged in relation to a predetermined reference area of the housing over temperature changes of at least about 25° C, during g-loads of at least about 20 g's, or at operating temperatures of at least about 100° C.
  13. 84
    A high power laser beam transmission system comprising:a. a receptacle and a connector;b. the receptacle comprising a housing configured to join to the connector;c. the connector comprising: i. a housing;ii. a cavity;iii. a high power optical assembly at least partially within the cavity;and, iv. the high power optical assembly comprising a beam launch surface;d. the connector having a laser beam path extending from the beam launch surface and away from the high power optical assembly;e. the high power optical assembly joined to the housing;f. wherein the laser beam path remains substantially unchanged in relation to a predetermined reference area of the receptacle over temperature changes of at least about 25° C, during g-loads of at least about 20 g's, or at operating temperatures of at least about 100°C.
  14. 85
    A high power laser beam transmission system comprising:a. first connector and a second connector;b. the first connector having a first face end and the second connector having a second face end;c. the first face end configured in the transmission system as a distal end and the second face end configured as a proximal face end;d. each of the first and second connectors comprising: i. a housing;ii. a cavity;iii. a high power optical assembly at least partially within the cavity;and, iv. the high power optical assembly comprising a beam surface;e. each beam surface having a laser beam path;f. the laser beam paths being substantially coincident;g. each high power optical assembly joined to its respective housing;h. wherein the laser beam paths remain substantially unchanged in relation to a predetermined reference area over temperature changes of at least about 25° C, during g-loads of at least about 20 g's, or at operating temperatures of at least about 100° C.
  15. 86
    A passively cooled high power laser optical connector configured for insertion into a receptacle of a high power laser device, the passively cooled connector comprising:an alignment component for mechanically and optically aligning the connector with the receptacle;and a means for athermalizing the connector;wherein the connector is capable of maintaining optical alignment over temperature changes of at least 25° C, during g-loads of at least about 20 g's, or at operating temperatures of at least about 50° C.
  16. 87
    A passively cooled high power laser optical connector configured for insertion into a receptacle of a high power laser device, the passively cooled connector comprising:an alignment component for mechanically and optically aligning the connector with the receptacle;and a means for compensating for differences in the coefficient of thermal expansion of components of the connector;wherein the connector is capable of maintaining optical alignment over temperature changes of at least 25° C, during g-loads of at least about 20 g's, or at operating temperatures of at least about 50° C.
  17. 88
    A passively cooled high power laser optical connector configured to be placed into optical association and alignment with a device, the passively cooled connector comprising:a. a connector laser beam path;b. a housing, comprising: i. an outer surface;ii. an inner surface;iii. wherein the inner housing surface is positioned toward the laser beam path and the outer housing surface is positioned away from the laser beam path;and, iv. the outer surface having an alignment component;c. the housing defining a cavity and isolating the cavity from fluid flow;d. at least one high power optical fiber having a core and a cladding;e. the optical fiber in optical communication with an optical block, the optical block having a laser beam transmission optical surface and a non-transmission surface;f. the non-transmission surface being isolated from fluid flow;g. the laser beam transmission optical surface having a predetermined external laser beam path and external laser beam properties;h. wherein, the optical block, transmission optical surface, and fiber core are configured for a wavelength of light to provide a laser power per area along the connector beam path at the transmission optical surface that is at least 50% that of the laser power per area in the fiber along the connector beam path.
  18. 89
    A high power laser connector comprising:a. a housing having a face end, a tail end, and defining a cavity between the face end and tail end;b. a means for transmitting high power laser energy positioned in the tail end and extending into the cavity;c. a means for launching or receiving a high power laser beam positioned near the face end;d. a means for managing back reflections positioned in the cavity;and, e. a means for athermalizing the connector components.
  19. 90
    A system for connecting high power laser components at remote locations, the system comprising:a. a high power laser, capable of providing a laser beam having at least 20 kW of power;b. a high power optical cable having a distal end and an proximal end and having a length between the distal and proximal ends of at least 1 km;c. a receptacle;d. a high power passively cooled connector, the connector comprising;i. a distal end and a proximal end;ii. a means for mechanically and optically aligning the connector with the receptacle;iii a means for maintaining the consistency of the laser beam parameters over a temperature range from at or below 0° C to at or above 150° C;e. wherein, the proximal end of the optical cable is optically associated with the laser, the distal end of the optical cable is optically associated with the proximal end of the connector;and, f. wherein the distal end of the connector is releasably optically associated with the receptacle.
  20. 91
    A high power laser connector comprising:a. an optical assembly;and, b. the optical assembly comprising a back reflection chamber in optical association with an optical block;c. the optical block having a launch face for propagating a high power laser beam along a beam path in a direction away from the connector;d. whereby, substantially all back reflections entering the launch face are directed back out the launch face substantially along the laser beam path.
  21. 93
    A method of transmitting high power laser energy to a remote location;a. providing a source of a high power laser beam, capable of providing at least about 15 kW of power;b. optically and mechanically associating a proximal end of a high power optical fiber having a length of at least about 1 km with the high power laser source;c. the optical fiber having a passively cooled high power laser connector on a distal end of the high power optical fiber;and, d. transmitting at least 10 kW of laser power through the connector.
Independent claims21