IP Library › Granted Patent US 11,092,472
Granted Patent B2
US 11,092,472 · App. 16/818,380 · Granted Aug 17, 2021

Touch-free dosage adjustment

Inventors: Heiner Ophardt (Arisdorf, CH); Andrew Jones (St. Anns, CA); John Garry (St. Catharines, CA)
Assignee: OP-Hygiene IP GmbH
G01F11/023A47K5/12F04B13/00F04B17/00
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Quick Facts
Patent No.
US 11,092,472
App. No.
16/818,380
Granted
Aug 17, 2021
Kind
B2
Abstract

A fluid dispenser having a pump mechanism that dispenses a dose of fluid when a movable pump member of the pump mechanism is moved between an extended position and a retracted position. A pump engagement body engages with the movable pump member for effecting movement of the movable pump member. A first cam surface and a second cam surface are connected to the pump engagement body, at least one of the first cam surface and the second cam surface comprising an adjustable cam surface whose location relative to the pump engagement body is selectively adjustable. A camming body engages with the first cam surface and the second cam surface to effect movement of the pump engagement body, and a dose adjustment mechanism allows the location of the adjustable cam surface relative to the pump engagement body to be selected.

Claims (71)

1. A fluid dispenser comprising:

a pump mechanism that dispenses a dose of fluid when a movable pump member of the pump mechanism is moved between an extended position and a retracted position;

a pump engagement body that engages with the movable pump member for effecting movement of the movable pump member between the extended position and the retracted position;

a driver engagement mechanism having a first cam surface and a second cam surface that are connected to the pump engagement body, at least one of the first cam surface and the second cam surface comprising an adjustable cam surface whose location relative to the pump engagement body is selectively adjustable;

a driver having a camming body that moves between an extension position and a retraction position when the driver is activated, the camming body engaging with the first cam surface and the second cam surface to effect movement of the pump engagement body; and

a dose adjustment mechanism for selecting the location of the adjustable cam surface relative to the pump engagement body.

2. The fluid dispenser according to claim 1 , wherein the camming body is positioned between the first cam surface and the second cam surface;

wherein the location of the adjustable cam surface relative to the pump engagement body is selectable from at least a first location and a second location; and

wherein a distance between the first cam surface and the second cam surface is greater when the adjustable cam surface is at the second location than when the adjustable cam surface is at the first location.

3. The fluid dispenser according to claim 2 , wherein, when the driver is activated, the camming body moves away from the extension position and towards the retraction position in a retraction motion, and moves away from the retraction position and towards the extension position in an extension motion;

wherein the camming body engages with the first cam surface at least during an engagement portion of the retraction motion;

wherein the camming body engages with the second cam surface at least during an engagement portion of the extension motion; and

wherein, when the adjustable cam surface is at the second location, the camming body is disengaged from both the first cam surface and the second cam surface during a disengagement portion of the retraction motion and during a disengagement portion of the extension motion.

4. The fluid dispenser according to claim 3 , wherein the camming body travels a lost link distance in a retraction direction during the disengagement portion of the retraction motion, and travels the lost link distance in an extension direction during the disengagement portion of the extension motion;

wherein the lost link distance increases as the distance between the first cam surface and the second cam surface increases;

wherein the camming body travels an engagement distance in the retraction direction during the engagement portion of the retraction motion, and travels the engagement distance in the extension direction during the engagement portion of the extension motion;

wherein the engagement distance decreases as the distance between the first cam surface and the second cam surface increases;

wherein the camming body, through engagement with the first cam surface, moves the pump engagement body the engagement distance in the retraction direction during the retraction motion, which moves the movable pump member to the retracted position;

wherein the camming body, through engagement with the second cam surface, moves the pump engagement body the engagement distance in the extension direction during the extension motion, which moves the movable pump member to the extended position;

wherein a stroke distance between the retracted position and the extended position decreases as the engagement distance decreases; and

wherein a volume of the dose of fluid that is dispensed from the pump mechanism decreases as the stroke distance decreases.

5. The fluid dispenser according to claim 4 , wherein the driver comprises a drive wheel that rotates about a drive axis when the driver is activated;

wherein the camming body is carried on the drive wheel and is spaced from the drive axis, so that the camming body moves in a circular path around the drive axis as the drive wheel rotates; and

wherein the pump engagement body and the movable pump member are movable in the retraction direction and in the extension direction relative to the drive axis.

6. The fluid dispenser according to claim 5 , wherein with each activation of the driver, the camming body travels an equal distance in the retraction direction and in the extension direction relative to the drive axis.

7. The fluid dispenser according to claim 6 , wherein the drive wheel completes one rotation with each activation of the driver.

8. The fluid dispenser according to claim 2 , wherein the dose adjustment mechanism comprises:

a selection body that is moveable relative to the pump engagement body between a first position and a second position, the selection body having a first location selection surface and a second location selection surface; and

a cam adjustment body that is moveable relative to the pump engagement body and carries the adjustable cam surface, the cam adjustment body having an engagement surface that engages with the selection body;

wherein, when the selection body is at the first position, the engagement surface of the cam adjustment body engages with the first location selection surface of the selection body, which locates the adjustable cam surface at the first location relative to the pump engagement body; and

wherein, when the selection body is at the second position, the engagement surface of the cam adjustment body engages with the second location selection surface of the selection body, which locates the adjustable cam surface at the second location relative to the pump engagement body.

9. The fluid dispenser according to claim 2 , wherein the pump mechanism further comprises a reciprocal pump member, the movable pump member being movable relative to the reciprocal pump member between the retracted position and the extended position;

wherein, when the movable pump member is at the retracted position, a movable pump surface of the movable pump member is a retracted distance from a reciprocal pump surface of the reciprocal pump member;

wherein, when the movable pump member is at the extended position, the movable pump surface of the movable pump member is an extended distance from the reciprocal pump surface of the reciprocal pump member;

wherein the extended distance is greater than the retracted distance;

wherein, when the camming body is at the retraction position, the engagement of the camming body with the first cam surface positions the movable pump member at the retracted position; and

wherein, when the camming body is at the extension position, the engagement of the camming body with the second cam surface positions the movable pump member at the extended position.

10. The fluid dispenser according to claim 9 , wherein the second cam surface comprises the adjustable cam surface; and

wherein the extended distance between the movable pump surface and the reciprocal pump surface is greater when the adjustable cam surface is at the first location than when the adjustable cam surface is at the second location.

11. The fluid dispenser according to claim 10 , wherein the first cam surface has a fixed location relative to the pump engagement body, so that the retracted distance between the movable pump surface and the reciprocal pump surface remains constant regardless of whether the adjustable cam surface is at the first location or the second location.

12. The fluid dispenser according to claim 5 , wherein the dose adjustment mechanism comprises:

a sliding body that is laterally slideable relative to the pump engagement body, the sliding body having a ramped adjustment surface with a first location selection segment, a ramped intermediate segment, and a second location selection segment, the first location selection segment being spaced in the retraction direction or in the extension direction relative to the second location selection segment, and the ramped intermediate segment connecting the first location selection segment to the second location selection segment; and

a cam adjustment body that is slideable relative to the pump engagement body in the retraction direction and in the extension direction, the cam adjustment body having an engagement surface that engages with the ramped adjustment surface;

wherein the cam adjustment body carries the adjustable cam surface;

wherein the location of the adjustable cam surface is selected by laterally sliding the sliding body relative to the cam adjustment body to move the cam adjustment body in the retraction direction or in the extension direction through the engagement of the engagement surface with the ramped adjustment surface;

wherein, when the engagement surface is engaged with the first location selection segment of the ramped adjustment surface, the adjustable cam surface is located at the first location relative to the pump engagement body; and

wherein, when the engagement surface is engaged with the second location selection segment of the ramped adjustment surface, the adjustable cam surface is located at the second location relative to the pump engagement body.

13. The fluid dispenser according to claim 12 , wherein the dose adjustment mechanism further comprises:

a first holding member that carries the sliding body, allows the sliding body to slide laterally relative to the pump engagement body, and prevents the sliding body from moving in the retraction direction or in the extension direction relative to the pump engagement body; and

a second holding member that carries the cam adjustment body, allows the cam adjustment body to slide relative to the pump engagement body in the retraction direction and in the extension direction, and prevents the cam adjustment body from sliding laterally relative to the pump engagement body.

14. The fluid dispenser according to claim 5 , wherein the dose adjustment mechanism comprises:

a rotation body that is rotatable about a rotation axis relative to the pump engagement body, the rotation body having an outer adjustment surface with a first location selection segment, which is spaced a first distance from the rotation axis, and a second location selection segment, which is spaced a second distance from the rotation axis, the first distance being different than the second distance; and

a cam adjustment body that is slideable relative to the pump engagement body in the retraction direction and in the extension direction, the cam adjustment body having an engagement surface that engages with the outer adjustment surface;

wherein the cam adjustment body carries the adjustable cam surface;

wherein the location of the adjustable cam surface is selected by rotating the rotation body about the rotation axis relative to the cam adjustment body to move the cam adjustment body in the retraction direction or in the extension direction through the engagement of the engagement surface with the outer adjustment surface;

wherein, when the engagement surface is engaged with the first location selection segment of the outer adjustment surface, the adjustable cam surface is located at the first location relative to the pump engagement body; and

wherein, when the engagement surface is engaged with the second location selection segment of the outer adjustment surface, the adjustable cam surface is located at the second location relative to the pump engagement body.

15. The fluid dispenser according to claim 14 , wherein the dose adjustment mechanism further comprises:

a first holding member that carries the rotation body, allows the rotation body to rotate about the rotation axis relative to the pump engagement body, and prevents the rotation axis from moving in the retraction direction or in the extension direction relative to the pump engagement body; and

a second holding member that carries the cam adjustment body, allows the cam adjustment body to slide relative to the pump engagement body in the retraction direction and in the extension direction, and prevents the cam adjustment body from rotating about the rotation axis relative to the pump engagement body.

16. The fluid dispenser according to claim 14 , wherein the rotation body has a rotation effecting surface that is spaced from the rotation axis;

the dose adjustment mechanism further comprising a sliding body that is laterally slideable relative to the rotation axis, the sliding body having a contact surface that engages with the rotation effecting surface for effecting rotation of the rotation body;

wherein the location of the adjustable cam surface is selected by laterally sliding the sliding body relative to the rotation axis to thereby rotate the rotation body through the engagement of the contact surface with the rotation effecting surface.

17. The fluid dispenser according to claim 16 , further comprising a carrying member that carries the sliding body, allows the sliding body to slide laterally relative to the rotation axis, and prevents the sliding body from moving in the retraction direction or in the extension direction relative to the drive axis.

18. The fluid dispenser according to claim 1 , wherein the first cam surface and the second cam surface are substantially parallel; and

wherein the first cam surface comprises a surface of the pump engagement body.

19. The fluid dispenser according to claim 1 , wherein the dose adjustment mechanism comprises a locking mechanism that prevents the camming body from moving the adjustable cam surface relative to the pump engagement body.

20. The fluid dispenser according to claim 1 , wherein the movable pump member has a catch member, and the pump engagement body has a catch mechanism that engages with the catch member to effect movement of the movable pump member between the extended position and the retracted position;

wherein the driver engagement mechanism is spaced from the catch mechanism;

wherein the catch member is spaced from the camming body; and

wherein the fluid is a hand cleaning fluid.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 13, 2020
From: OPHARDT, HEINER; JONES, ANDREW; GARRY, JOHN
To: OP-HYGIENE IP GMBH
Reel/Frame 052164/0970 →
Priority Claims (2)
CA CA 3036883 · Mar 15, 2019 · national
CA CA 3074778 · Mar 6, 2020 · national
Continuity (1)
Related Publication 20200292366A1 · Sep 17, 2020
Cited By (1)
US 12,611,070