Claims
- 1. A wheel-activated vehicle restraint device for restraining at least one wheel of a vehicle during loading and unloading of the vehicle at a position adjacent a dock face, the wheel rolling along a roadway surface adjacent the dock face, the restraint comprising:a support structure extending from a first end thereof adjacent the dock to a distal end thereof, the support structure comprising a guide member disposed along the roadway surface, the support structure also including an elevated supporting member; a trigger assembly operatively connected to the guide member for initially engaging the wheel of the vehicle as the wheel rolls toward the dock position; a locking arm which operatively engages the supporting member for moving to a chocking position on the wheel in response to engagement between the wheel and the trigger assembly; a trolley assembly operatively connecting the trigger assembly and the locking arm at a connection point such that the trigger assembly is selectively positionable relative to the connection point in response to the dimensions of the wheel for insuring that the locking arm engages a bottom portion of the wheel and moves along the peripheral surface of the wheel to a chocking position whereby the vehicle can be restrained at the dock position.
- 2. The wheel-activated vehicle restraint device of claim 1, and including an operator controlled latching mechanism, the latching mechanism comprising:a latching bar operatively connected to the supporting member for movement between an unlatched and a latching position; an actuator coupled to the latching bar for moving the latching bar between the unlatched and latching positions; a latch member, the latch being operatively connected to the trolley assembly for movement relative thereto, and including at least one engaging portion, the latch member being moveable relative to the trolley assembly between an engaging position, wherein the engaging portion engages a first surface of the guide member, and a non-engaging position, wherein the engaging portion is spaced from the first surface, the latch member being operatively connected to the latching bar for the movement between the non-engaging position and the engaging position in response to movement of the latching bar between the unlatched and latching positions.
- 3. The wheel-activated vehicle restraint device of claim 2, wherein the latch member is pivotally connected to the trolley assembly for pivotal rotation between the engaging position and the non-engaging position.
- 4. The wheel-activated vehicle restraint device of claim 3, wherein the guide member includes an upper flange parallel to the roadway surface and a vertical web, an upper surface of the upper flange forming the first surface of the guide member, and wherein the trolley assembly comprises at least one engaging block operatively connected thereto, the at least one engaging block being disposed on the trolley assembly such that the engaging block is adjacent to a lower surface of the upper flange of the guide member as the trolley assembly moves along the guide member.
- 5. The wheel-activated vehicle restraint device of claim 4, wherein: 1) the pivotal connection between the latch member and the trolley assembly; and 2) the at least one engaging block are disposed on the trolley assembly such that engagement of the at least one engaging portion with the upper surface of the upper flange causes the at least one engaging block to engage the lower surface of the upper flange, thereby generating a clamping force and clamping the flange between the engaging portion and the engaging block and latching the trolley assembly and the locking arm in position relative to the support structure.
- 6. The wheel-activated vehicle restraint device of claim 5, wherein the engaging portion is disposed relative to the pivotal connection such that the latch member will rotate about the pivot point to increase the clamping force in response to a pullout force exerted on the locking arm.
- 7. The wheel activated vehicle restraint device of claim 4, wherein the trolley assembly includes first and second engaging blocks disposed on opposite sides of the web of the guide member.
- 8. The wheel-activated vehicle restraint device of claim 3, wherein the latching bar moves generally upwardly between the unlatched and latching positions, and wherein the latching bar includes a flange extending parallel to the support structure, and wherein the latch member includes at least one roller engaging an upper surface of the latching bar flange, such that movement of the latching bar from the unlatched to latching positions causes the latch member to pivot to the engaging position.
- 9. The wheel-activated vehicle restraint device of claim 8, wherein the engaging portion is disposed relative to the pivotal connection such that the latch member will rotate about the pivot point such that the at least one roller becomes disengaged from the upper surface of the latching bar flange, thus decoupling the latch member from the actuator, in response to a pullout force exerted on the locking arm.
- 10. The wheel-activated vehicle restraint device of claim 2, wherein the at least one engaging portion of the latch member includes a textured surface for engaging the first surface of the guide member.
- 11. The wheel-activated vehicle restraint device of claim 10, wherein the textured surface is a toothed surface.
- 12. The wheel-activated vehicle restraint device of claim 2, wherein the latch member includes first and second members, each member including an engaging portion.
- 13. The wheel-activated vehicle restraint device of claim 2, wherein the latching bar comprises a vertical web having angled slots spaced therealong, the slots including sidewalls, and wherein the support member includes horizontally disposed pins attached thereto, the pins being received in the angled slots, such that movement of the latching bar outwardly from the dock face causes the sidewalls of the slots to engage the pins, thereby raising the latching bar from the unlatched to the latching position.
- 14. The wheel-activated vehicle restraint device of claim 2, wherein the actuator is a linear actuator operatively connected to the latching bar for moving the latching bar linearly outwardly and inwardly relative to the dock face, such that the latching bar moves between the unlatched and latching positions.
- 15. The wheel-activated vehicle restraint device of claim 2, and including a switch for sensing movement of the latching bar between the unlatched and latching positions, the switch generating a first signal when the latching bar is in the latching position.
- 16. The wheel-activated vehicle restraint device of claim 15, and including at least one visual indicator for illuminating in response to the first signal.
- 17. The wheel-activated vehicle restraint device of claim 15, and including a second switch for sensing movement of the locking arm between a stored and the chocking position, the second switch generating a second signal when the locking arm is in the chocking position.
- 18. The wheel-activated vehicle restraint device of claim 17, and including at least one visual indicator for illuminating in response to the first and the second signal.
- 19. The wheel-activated vehicle restraint device of claim 1, wherein the trigger assembly includes a guide portion of movement along the guide member, and a wheel-engaging portion for movement along the roadway, the wheel-engaging portion being vertically displaceable relative to the guide portion.
- 20. The wheel-activated vehicle restraint device of claim 19, wherein the wheel-engaging portion of the trigger assembly is pivotally connected to the guide portion.
- 21. The wheel-activated vehicle restraint device of claim 1, wherein the support structure is disposed beside a vehicle path, and wherein the locking arm includes a second roller extending away from the support structure and into the vehicle path to engage the wheel.
- 22. The wheel-activated vehicle restraint device of claim 21, and including a guide member disposed on the opposite side of the vehicle path from the support structure, the separation of the guide member and the support structure defining the vehicle path, the guide member and the support structure guiding the vehicle in the vehicle path.
- 23. The wheel-activated vehicle restraint device of claim 22, wherein forward guide members are disposed distally of the guide member and the support structure, the separation between the forward guide members increasing as their distance from the dock face increases to guide the vehicle in the guide path.
- 24. The wheel-activated vehicle restraint device of claim 21, wherein the vehicle restraint device is a first vehicle restraint device and including a second mirror-imaged vehicle restraint device disposed on the opposite side of the vehicle path from the support structure of the first vehicle restraint device.
- 25. The wheel-activated vehicle restraint device of claim 1, and including a limiting assembly for limiting separation of the trigger assembly and the trolley assembly.
- 26. The wheel-activated vehicle restraint device of claim 25, wherein the limiting assembly comprises a stop bar operatively connected between the trigger assembly and the trolley assembly.
- 27. The wheel-activated chocking device for restraining at least one wheel of a vehicle at a loading dock, the device comprising:a support structure extending from a first end thereof adjacent the dock to a distal end thereof, the support structure comprising a guide member disposed along a roadway adjacent the loading dock, the support structure also including an elevated support member; a trigger mechanism for engaging a leading wheel of the vehicle as the vehicle moves toward the dock; a resiliently biased locking arm for moving to a chocking position on the leading wheel, the locking arm being activated in response to engagement between the leading wheel and the trigger mechanism; and a trolley assembly operatively connecting the trigger mechanism and the locking arm and controlling the movement of the locking arm in response to the dimensions and movement of the wheel, wherein the locking arm engages a bottom edge of the wheel and moves along the peripheral surface of the wheel to a chocking position.
- 28. The chocking device of claim 27, wherein the trolley assembly comprises a connection point for operatively connecting the trigger mechanism and the locking arm, and wherein a variable length biasing link controls the position of the connection point relative to the trigger mechanism in response to the dimensions and movements of the wheel.
- 29. The chocking device of claim 28, wherein the chocking device is a first chocking device, and including a second, mirror image chocking device disposed on the opposite side of the vehicle path from the support structure of the first chocking device.
- 30. The chocking device of claim 27, wherein the support structure is disposed beside a vehicle path, and wherein the locking arm includes a portion extending away from the support structure and into the vehicle path to engage the wheel.
- 31. The chocking device of claim 30, wherein a guide member is disposed on the opposite side of the vehicle path from the support structure, the guide member and the support structure guiding the vehicle in the vehicle path.
- 32. A wheel-activated chocking device for restraining at least one wheel of a vehicle at a loading dock, the device comprising:a trigger mechanism for engaging a leading wheel of the vehicle as the vehicle moves toward the dock; a resiliently biased locking arm for moving to a chocking position on the leading wheel, the locking arm being activated in response to engagement between the leading wheel and the trigger mechanism; a trolley assembly operatively connecting the trigger mechanism and the locking arm and controlling the movement of the locking arm in response to the dimensions and movement of the wheel, wherein the locking arm engages a bottom edge of the wheel and moves along the peripheral surface of the wheel to a chocking position; and an operator controlled latching assembly for securing the vehicle in place at the dock, and including a latch member operatively connected to the trolley assembly and moveable between an engaging position, wherein the latch member engages a stationary member, and a non-engaging position wherein the latch member is spaced from the stationary member to allow the trolley assembly to move relative thereto.
- 33. The chocking device of claim 32, wherein the latch member is operatively connected to a latching bar, the latching bar being moveable between an unlatched and a latching position to move the latch member between the non-engaging and engaging positions.
- 34. The chocking device of claim 33, and including a switch for sensing movement of the latching bar between the unlatched and latching positions, the switch generating a first signal when the latching bar is in the latching position.
- 35. The chocking device of claim 32, and including at least one engaging block on the trolley assembly, the 1) operative connection of the latch member to the trolley assembly and; 2) engaging block being disposed on the trolley assembly such that movement of the latch member to the engaging position causes the engaging block to engage the stationary member at a position opposed to that of the latch member, thereby generating a clamping force and clamping the stationary member between the latch member and the engaging block, thereby latching the trolley assembly relative to the stationary member.
- 36. The chocking device of claim 35, wherein the latch member is disposed relative to the operative connection with the trolley assembly such that the latch member moves to increase the clamping force in response to a pullout force exerted on the locking arm.
- 37. The chocking device of claim 36, wherein an actuator is coupled to the latch member for moving the latch member between the non-engaging and engaging positions, and wherein movement of the latch member to increase the clamping force in response to a pullout force decouples the actuator and the latch member.
- 38. A wheel-activated chocking device for restraining at least one wheel of a vehicle at a loading dock, the device comprising:a support structure extending from a first end thereof adjacent the dock to a distal end thereof; a trigger mechanism for engaging a leading wheel of the vehicle as the vehicle moves toward the dock; a resiliently biased locking arm for moving to a chocking position on the leading wheel, the locking arm being activated in response to engagement between the leading wheel and the trigger mechanism; and a trolley assembly operatively connecting the trigger mechanism and the locking arm and controlling the movement of the locking arm in response to the dimensions and movement of the wheel, wherein the locking arm engages a bottom edge of the wheel and moves along the peripheral surface of the wheel to a chocking position, the trigger mechanism operatively engaging the support structure for movement therealong, the trigger mechanism including a guide portion and a wheel-engaging portion for movement along the support structure, the wheel-engaging portion being vertically displaceable relative to the guide portion.
- 39. The chocking device of claim 38, wherein the wheel-engaging portion is pivotally connected to the guide portion.
- 40. A wheel-actuated chocking device for restraining at least one wheel of a vehicle on a roadway vehicle path at a loading dock, the device comprising: a support structure on said roadway and extending from a first end thereof adjacent the dock to a distal end thereof, the support structure comprising a guide member disposed along the roadway adjacent the loading dock, the support structure also including an elevated support surface; a trigger mechanism for engaging a leading wheel of the vehicle as the vehicle moves toward the dock; a resiliently biased locking arm for moving along said support surface from a storage position to a chocking position on the leading wheel, the locking arm being activated in response to engagement between the leading wheel and the trigger mechanism; and a trolley assembly operatively connecting the trigger mechanism and the locking arm and controlling the movement of the locking arm in response to the dimensions and movement of the wheel, wherein the locking arm engages a bottom edge of the wheel and moves along the peripheral surface of the wheel to a chocking position.
- 41. The chocking device of claim 40, wherein the chocking device is a first chocking device, and including a second, mirror image chocking device disposed on the opposite side of the vehicle path from the support structure of the first chocking device.
- 42. The chocking device of claim 41 wherein a forward guide member is disposed distally of each guide member and support structure, the separation between the forward guide members increasing as their distance from the dock face increases to guide the vehicle in the vehicle path.
- 43. The chocking device of claim 40, wherein the support structure is disposed beside the vehicle path, and wherein the locking arm includes a portion extending away from the support structure and into the vehicle path to engage the wheel.
- 44. The chocking device of claim 40 having an operator-controlled latching assembly for securing the vehicle in place at the dock, said latching assembly including: a latching bar operatively connected to the support structure for movement between an unlatched position and a latched position; and an actuator coupled to said latching bar for moving the latching bar between the unlatched and latched positions, said latching assembly adapted to operatively connect said locking arm to said support structure to prevent said locking arm from moving longitudinally along said support structure.
- 45. The chocking device of claim 44, wherein the latching bar comprises a vertical web having angled slots spaced therealong, the slots including sidewalls, and wherein the support structure includes horizontally disposed pins attached thereto, the pins being received in the angled slots, such that movement of the latching bar outwardly from the dock face causes the sidewalls of the slots to engage the pins, thereby raising the latching bar from the unlatched to the latching position.
- 46. The chocking device of claim 45, wherein the actuator is a linear actuator operatively connected to the latching bar for moving the latching bar linearly outwardly and inwardly relative to the dock face, such that the latching bar moves between the unlatched and latching positions.
- 47. The chocking device of claim 44, and including a switch for sensing movement of the latching bar between the unlatched and latching positions, the switch generating a first signal when the latching bar is in the latching position.
- 48. The chocking device of claim 47, and having at least one visual indicator for illuminating in response to the first signal.
- 49. The chocking device of claim 47, and having a second switch for sensing movement of the locking arm between a stored and chocking position, the second switch generating a second signal when the locking arm is in the chocking position.
- 50. The chocking device of claim 49, and having at least one visual indicator for illuminating in response to the first and second signal.
- 51. The chocking device of claim 44, wherein the latching bar comprises a vertical latch web and wherein the support structure includes a vertical support web, one of said webs having angled slots spaced therealong, the slots including sidewalls, and the other of said webs having horizontally disposed pins attached thereto, the pins being received in the angled slots, such that longitudinal movement of the latching bar relative to the support web causes the sidewalls of the slots to engage the pins, thereby raising the latching bar from the unlatched to the latching position.
- 52. The chocking device of claim 44 which includes a sloped support extending between said elevated support surface and said roadway to form a ramp.
- 53. The chocking device of claim 52 wherein said storage position is adjacent the roadway at the distal end of said support structure and spaced from said trigger mechanism whereby said wheel engages said locking arm adjacent the roadway prior to engaging said trigger mechanism.
- 54. A wheel-actuated chocking device for restraining at least one wheel of a vehicle at a loading dock, the device comprising: a support structure extending from a first end thereof adjacent the dock to a distal end thereof, the support structure comprising a guide member disposed along the roadway adjacent the loading dock, said support structure including a support surface; a trigger mechanism for engaging a leading wheel of the vehicle as the vehicle moves toward the dock; a resiliently biased locking arm adapted to move to a chocking position on the leading wheel, the locking arm being activated in response to engagement between the leading wheel and the trigger mechanism; and a trolley assembly between the trigger mechanism and the locking arm and controlling the movement of the locking arm in response to the dimensions and movement of the wheel, wherein the locking arm engages a bottom edge of the wheel and moves along the peripheral surface of the wheel to a chocking position.
- 55. The chocking device of claim 54 wherein said support surface is elevated above said roadway and said device includes a sloped support extending between said elevated portion and said roadway to provide a ramp.
- 56. A wheel-actuated chocking device for restraining at least one wheel of a vehicle on a roadway vehicle path at a loading dock, the device comprising: a support structure extending from a first end thereof adjacent the dock to a distal end thereof, the support structure being disposed on the roadway adjacent the dock; a trigger mechanism for engaging a leading wheel of the vehicle as the vehicle moves toward the dock; a resiliently-biased locking arm including a roller projecting away from the support structure into the vehicle path, the locking arm being movable between a stored position in which the roller is disposed on the roadway and a raised chocking position in which the roller is in contact with the leading wheel; and a trolley assembly operatively connecting the trigger mechanism and the locking arm and controlling the movement of the locking arm in response to the dimensions and movement of the wheel, wherein the locking arm engages a bottom edge of the wheel and moves along the peripheral surface of the wheel to a chocking position.
- 57. The chocking device of claim 56 which further includes a ramp portion, and wherein a portion of the locking arm engages the ramp portion to move the tubular member between the stored position and the raised, chocking position.
- 58. The chocking device of claim 57 wherein the locking arm includes a first roller and wherein the tubular member is a second roller, the first roller engaging the ramp portion to move the second roller from the stored position to the raised chocking position.
- 59. The chocking device of claim 58 wherein the motion of the wheel departing from the loading dock causes the first roller to be moved down the ramp portion to reposition the second roller in the stored position.
- 60. The chocking device of claim 57 wherein the chocking device is a first chocking device and includes a second, mirror image chocking device disposed on the opposite side of the vehicle path.
- 61. A wheel-actuated chocking device for restraining at least one wheel of a vehicle on a roadway vehicle path at a loading dock, the device comprising: a support structure on said roadway and extending from a first end thereof adjacent the dock to a distal end thereof, the support structure comprising a guide member disposed along the roadway adjacent the loading dock, the support structure also including an elevated support surface; a ramp having a ramp surface disposed between the distal end of said support surface and the roadway; a trigger mechanism for engaging a leading wheel of the vehicle as the vehicle moves toward the dock; a resiliently biased locking arm for moving along said ramp surface and said support surface from a storage position at the distal end of said ramp surface to a chocking position on said support surface behind the leading wheel, the locking arm being activated in response to engagement between the leading wheel and the trigger mechanism, said locking arm including a roller projecting away from the support structure into the vehicle path; a trolley assembly operatively connecting the trigger mechanism and the locking arm and controlling the movement of the locking arm in response to the dimensions and movement of the wheel, wherein said storage position is spaced from said trigger mechanism such that said wheel engages said locking arm adjacent said roadway prior to engaging said trigger mechanism and the locking arm moves along the peripheral surface of the wheel and the elevated support surface to a chocking position; an operator-controlled latching assembly for securing the vehicle in place at the dock, said latch assembly including: a latching bar operatively connected to the support structure for movement between an unlatched position and a latched position; the latching bar including a vertical latch web and the support structure including a vertical support web, one of said webs having angled slots spaced therealong, the slots including sidewalls, and the other of said webs having horizontally disposed pins attached thereto, the pins being received in the angled slots such that longitudinal relative movement of the latching bar and the support web causes the sidewalls of the slots to engage the pins, thereby raising the latching bar from the unlatched to the latching position; and an actuator coupled to said latching bar for moving the latching bar between the unlatched and latched positions, said latching assembly adapted to operatively connect said locking arm to said support structure to prevent said locking arm from moving longitudinally along said support structure.
- 62. A wheel-actuated chocking device for restraining at least one wheel of a vehicle on a roadway path at a loading dock, the device comprising: a support structure on said roadway and extending from a first end thereof adjacent the dock to a distal end thereof, the support structure comprising a guide member disposed along the roadway adjacent the loading dock, the support structure also including an elevated support surface; a trigger mechanism for engaging a leading wheel of the vehicle as the vehicle moves toward the dock; a resiliently biased locking arm for moving along said support surface to a chocking position on the leading wheel, the locking arm being activated in response to engagement between the leading wheel and the trigger mechanism; and a variable length biasing link controlling the movement of the locking arm in response to the dimensions and movement of the wheel, wherein the locking arm resiliently engages a bottom edge of the wheel and moves along the peripheral surface of the wheel to a chocking position.
- 63. A wheel-actuated chocking device for restraining at least one wheel of a vehicle at a loading dock, the device comprising: a support structure extending from a first end thereof adjacent the dock to a distal end thereof, the support structure comprising a guide member disposed along a roadway adjacent the loading dock, said support structure including a support surface; a trigger mechanism for engaging a leading wheel of the vehicle as the vehicle moves toward the dock; a resiliently biased locking arm adapted to move to a chocking position on the leading wheel, the locking arm being activated in response to engagement between the leading wheel and the trigger mechanism; and a variable length biasing link between the trigger mechanism and the locking arm and controlling the movement of the locking arm in response to the dimensions and movement of the wheel, wherein the locking arm resiliently engages a bottom edge of the wheel and moves along the peripheral surface of the wheel to a chocking position.
- 64. A wheel-actuated chocking device for restraining at least one wheel of a vehicle on a roadway path at a loading dock, the device comprising: a support structure extending from a first end thereof adjacent the dock to a distal end thereof, the support structure being disposed on the roadway adjacent the dock; a trigger mechanism for engaging a leading wheel of the vehicle as the vehicle moves toward the dock; a resiliently-biased locking arm including a roller projecting away from the support surface into the path of the wheel, the locking arm being movable between a stored position in which the roller is disposed on the roadway and a raised chocking position in which the roller is in contact with the leading wheel; and a variable length biasing link operatively connecting the trigger mechanism and the locking arm and controlling the movement of the locking arm in response to the dimensions and movement of the wheel, wherein the locking arm resiliently engages a bottom edge of the wheel and moves along the peripheral surface of the wheel to a chocking position.
- 65. A wheel-actuated chocking device for restraining at least one wheel of a vehicle on a roadway path at a loading dock, the device comprising: a support structure on said roadway and extending from a first end thereof adjacent the dock to a distal end thereof, the support structure comprising a guide member disposed along the roadway adjacent the loading dock, the support structure also including an elevated support surface; a ramp having a ramp surface disposed between the distal end of said support surface and the roadway; a trigger mechanism for engaging a leading wheel of the vehicle as the vehicle moves toward the dock; a resiliently biased locking arm for moving along said ramp surface and said support surface from a storage position at the distal end of said ramp surface to a chocking position on said support surface behind the leading wheel, the locking arm being activated in response to engagement between the leading wheel and the trigger mechanism, said locking arm including a roller projecting away from the support structure into the path of the wheel; a variable length biasing link operatively connecting the trigger mechanism and the locking arm and controlling the movement of the locking arm in response to the dimensions and movement of the wheel, wherein said storage position is spaced from said trigger mechanism such that said wheel engages said locking arm adjacent said roadway prior to engaging said trigger mechanism and the locking arm is resiliently biased to move along the peripheral surface of the wheel and the elevated support surface to a chocking position; an operator-controlled latching assembly for securing the vehicle in place at the dock, said latching assembly including: a latching bar operatively connected to the support structure for movement between an unlatched position and a latched position; the latching bar including a vertical latch web and the support structure including a vertical support web, one of said webs having angled slots spaced therealong, the slots including sidewalls, and the other of said webs having horizontally disposed pins attached thereto, the pins being received in the angled slots such that longitudinal relative movement of the latching bar and the support web causes the sidewalls of the slots to engage the pins, thereby raising the latching bar from the unlatched to the latching position; and an actuator coupled to said latching bar for moving the latching bar between the unlatched and latched positions, said latching assembly adapted to operatively connect said locking arm to said support structure to prevent said locking arm from moving longitudinally along said support structure.
- 66. A wheel-actuated chocking device for restraining at least one wheel of a vehicle at a loading dock, the device comprising: a trigger mechanism for engaging a leading wheel of the vehicle as the vehicle moves toward the dock; a resiliently biased locking arm for moving to a chocking position on the leading wheel, the locking arm being activated in response to engagement between the leading wheel and the trigger mechanism; a variable length biasing link operatively connecting the trigger mechanism and the locking arm and controlling the movement of the locking arm in response to the dimensions and movement of the wheel, wherein the locking arm resiliently engages a bottom edge of the wheel and moves along the peripheral surface of the wheel to a chocking position; and an operator controlled latching assembly for securing the vehicle in place at the dock, and including a latch member operatively connected to the variable length biasing link and movable between an engaging position, wherein the latch member engages a stationary member, and a non-engaging position wherein the latch member is spaced from the stationary member to allow the variable length biasing link to move relative thereto.
CROSS-REFERENCE TO RELATED APPLICATIONS
This is a continuation of application Ser. No. 08/562,912 filed on Nov. 27, 1995, now abandoned, which is a continuation-in-part of U.S. application Ser. No. 08/327,308 filed on Oct. 21, 1994, now abandoned, which is related to FWC application Ser. No. 08/590,400 now issued as U.S. Pat. No. 5,582,498(via FWC application Ser. No. 590,400) .
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Divisions (1)
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Continuations (1)
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Continuation in Parts (1)
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08/327308 |
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Reissues (1)
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