Nova Patents
EP1754504B1

Connector system

Abstract

This record has no abstract on file.

EP1754504B1, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Expired 21 January 2022, 4.7 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

25 claims: 1 independent, 24 dependent

  1. 1
    A connector system comprising a connector fitting (10, 212) in combination with a retainer (302) for releasably securing a medical line to an adaptor (12, 210), comprising:an elongated body (20, 220), at least a portion of which is adapted to insert into the tubular portion (13) of the adaptor (12, 210), and at least one radially extending member (34, 234) disposed upon the elongated body (20, 220), the at least one radially extending member (34, 234) having at least one contact surface;a spin nut (50) comprising a generally tubular body slidably and rotatably disposed upon the elongated body (20, 220), and a receptacle (60) disposed distally upon the spin nut (50) having an internal cross section, the receptacle (60) having at least one contact surface configured and arranged to interact with the at least one contact surface of the radially extending member (34, 234) when the receptacle (60) receives at least a portion of the radially extending member so as to transfer both axial and rotational forces between the spin nut (50) and the connector fitting (10, 212), and a retainer (302) comprising a channel (306) that extends through the retainer (302) along a longitudinal axis, and at least one slot (312) which receives the at least one radially extending member (34, 234) of the elongated body (20, 220) in order to secure the connector fitting (10, 212) in position upon the retainer (302).
  2. 2
    A connector system as in Claim 1 further comprising a second radially extending member (44) which is configured to cooperate with the at least one slot (312) of the retainer (302).
  3. 3
    A connector system as in Claim 1 further comprising cooperative structures that limit proximal longitudinal movement of the spin nut (50) relative to the elongated body.
  4. 4
    A connector system as in Claim 3, wherein the cooperative structures include a retaining ridge disposed on the elongated body.
  5. 5
    A connector system as in Claim 1, wherein the elongated body of the connector fitting (10, 212) is disposed upon the proximal end of a medical line (14, 16).
  6. 6
    A connector system as in Claim 1, wherein the engagement between the spin nut (50) and the elongated body (20, 212) when the spin nut is in the distal position transfers rotational motion between the spin nut and the elongated body so that the spin nut and elongated body rotate together.
  7. 7
    A connector system as in Claim 1, wherein the engagement between the spin nut and the elongated body when the spin nut is in the distal position inhibits rotational motion between the spin nut and the elongated body.
  8. 8
    A connector system as in Claim 1, wherein the engagement between the spin nut and the elongated body when the spin nut is in the distal position inhibits distal motion of the spin nut relative to the elongated body.
  9. 9
    A connector system as in Claim 1, wherein the external cross section of the at least one radially extending member (34, 234) varies radially about its circumference, and wherein the internal cross section of the receptacle (60) varies radially about its circumference.
  10. 10
    A connector system as in Claim 1, wherein the at least one radially extending member has a radius which varies about at least a portion of the elongated body.
  11. 11
    A connector system as in Claim 1, wherein the received portion of the at least one radially extending member extends entirely around an axis of the elongated body.
  12. 12
    A connector system as in Claim 1, wherein the internal cross section of the receptacle (60) varies radially about its circumference.
  13. 13
    A connector system as in Claim 1, wherein the external cross section of the at least one radially extending member has a generally hexagonal shape.
  14. 14
    A connector system as in Claim 1, wherein the external cross section of the at least one radially extending member forms a polygon.
  15. 15
    A connector system as in Claim 1, wherein the receptacle has an internal cross section with a generally hexagonal shape.
  16. 16
    A connector system as in Claim 1, wherein the receptacle has an internal cross section with twelve points.
  17. 17
    A connector system as in Claim 1, wherein the receptacle has an internal cross section with a star shape.
  18. 18
    A connector system as in Claim 1, wherein a greatest radius of the radially extending member is greater than a least radius of the receptacle.
  19. 19
    A connector system as in Claim 1, wherein the elongated body comprises an external radius R 1 , the external cross section of the at least one radially extending member comprises a maximum radius R 2 , and the internal cross section of the spin nut comprises an external radius R 3 , and wherein the radii R 1 , R 2 and R 3 are sized such that R 3 - R 2 < R 2 - R 1 .
  20. 20
    A connector system as in Claim 1 in combination with an adapter (12, 210) having a tubular portion (13), wherein the adaptor is disposed upon a distal end of a catheter.
  21. 21
    A connector system as in Claim 20, wherein the adaptor comprises a first screw thread (18, 200) disposed upon an outer surface of the tubular portion and the spin nut further comprises a second screw thread (28) disposed upon an inner surface of the spin nut (50).
  22. 22
    A connector system as in Claim 21, wherein the spin nut is slidable between at least a proximal position and a distal position, and wherein the second screw thread (28) of the spin nut (50) is configured to engage the first screw thread (18, 200) of the adaptor (12, 210) when the portion of the connector fitting is inserted into the tubular portion (13) of the adaptor (12, 210) and the spin nut is in the proximal position, and wherein the receptacle of the spin nut is configured to engage the at least one radially extending member of the elongated body when the spin nut is in the distal position.
  23. 23
    A connector system as in Claim 1, wherein the at least one contact surface of the spin nut is disposed proximally of the distal end of the spin nut.
  24. 24
    A connector system as in Claim 1, wherein the connector body has a stop to prevent the spin nut from moving beyond a proximal-most position on the connector body.
  25. 25
    A connector system as in Claim 1, wherein the at least one radially extending member is configured to prevent the spin nut from moving beyond a distal-most position on the connector body.
Independent claims25