EP1575640B1

Infusion device having piston operated driving mechanism and positive pressure reservoir

Abstract

A piston-type drive mechanism in combination with a positive pressure reservoir for delivery of infusion medium. A coil capable of being electrically activated to provide an electromagnetic field. The coil surrounds a piston channel extending in an axial direction. The piston channel provides a passage for communication of infusion medium from the positive pressure reservoir to an outlet chamber. A piston is located within the piston channel and is moveable axially within the channel to a forward position. The piston is moved toward a retracted position, when the coil is not energized. As the piston is moved to its forward position, pressure moves a valve member into an open position. When the valve member is in the open position, medium from the piston chamber is discharged into the outlet chamber. An outlet is provided in flow communication with the outlet chamber, for discharging infusion medium from the outlet chamber.

EP1575640B1, drawing sheet 1
Sheet 1 of 12

Term

Term ended

Expired 3 December 2023, 2.8 years ago.

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

21 claims: 3 independent, 18 dependent

  1. 1
    An infusion medium delivery device (10) comprising:a reservoir (13) for containing infusion medium under positive pressure;a drive device (20) having: an inlet (15) for receiving infusion medium under positive pressure;a piston channel (35) for communication of infusion medium received by the inlet (15);a coil (38) surrounding the piston channel (35);an armature (42) disposed adjacent the coil (38), on one side of the piston channel (35);an outlet chamber (64) disposed adjacent the coil (38), on the opposite side of the piston channel (35) relative to the armature (42) for receiving infusion medium from the channel (35);a piston (44) located within the piston channel (35) and moveable axially within the piston channel (35) for allowing infusion medium to enter the outlet chamber (64) under positive pressure;and an outlet (16) in flow communication with the outlet chamber (64), for discharging a metered amount of infusion medium from the outlet chamber (64). a first valve member (66) positioned downstream of the piston channel (35) in a flow path of the infusion medium, said first valve member (66) movable between opened and closed positions to selectively open and close one end of the piston channel (35) to the outlet chamber (64), and a second valve member in fluid communication with the first valve member (66) and positioned downstream of the first valve member (66) in the flow path of the infusion medium, the second valve member being movable between opened and closed positions.
  2. 17
    A method or delivery of infusion medium comprising:providing at least one coil (38) surrounding a piston channel (35);providing a piston (44) through the piston channel (35);providing an armature (42) on one side of the coil (38), transverse to the piston (44);providing a first valve member (66) positioned downstream of the piston channel (35) in a flow path of the infusion medium, said first valve member (66) movable between opened and closed positions to selectively open and close one end of the piston channel (35) to an outlet chamber (64);and providing a second valve member in fluid communication with the first valve member (66) and positioned downstream of the first valve member (66) in the flow path of the infusion medium, the second valve member being movable between opened and closed positions;receiving infusion medium under positive pressure through an inlet (15) disposed on the armature side of a coil;urging the piston (44) and armature (42) toward a retracted position to form a piston chamber (65) between one end of the piston (44) and the first valve member (66);filling the piston chamber (65) with infusion medium by passing a volume of the infusion medium received on the armature side of the coil (38) from the inlet (15) through the piston channel (35) to the piston chamber (65);electrically activating the coil (38) to provide an electromagnetic field to move the armature (42) and piston (44) toward a forward position, moving the piston (44) toward the forward position under the force of the electromagnetic field to compress the volume of the piston chamber (65) and force the first valve (66) to an opened position;discharging infusion medium from the piston chamber (65), through the opened first valve (66) and into an outlet chamber (64), upon the piston (44) being moved to the forward position;and delivering the infusion medium discharged from the outlet chamber (64) through the second valve member and an outlet port (16).
  3. 18
    The method recited in claim 17, wherein the infusion medium is received at the inlet from a positive pressure reservoir.