IP Library Granted Patent US 10,933,189
Granted Patent B2
US 10,933,189 · App. 15/987,424 · Granted Mar 2, 2021

Variable rate controlled delivery drive mechanisms for drug delivery pumps

Inventors: Paul F. Bente, IV (Wayne, PA); Ian B. Hanson (Wayne, PA); Vincent E. Mandes (Willow Grove, PA); Sean M. O'Connor (West Chester, PA)
Assignee: UNL Holdings LLC
A61M5/1454A61M5/1452A61M5/14546A61M5/14566A61M5/16804A61M2005/14208A61M2202/0007A61M2205/3334
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Quick Facts
Patent No.
US 10,933,189
App. No.
15/987,424
Granted
Mar 2, 2021
Kind
B2
Abstract

A variable rate controlled delivery drive mechanism includes a drive mechanism housing, at least partially within which initially resides a biasing member positioned in an initially energized state within an inner cavity of a piston. The drive mechanism may include a gear drive having one or more screws and one or more corresponding nuts. The piston contacts a plunger seal and is configured to axially translate the plunger seal, by force asserted upon it from the biasing member, from a first position to a second position within a drug container for drug delivery. The biasing member is metered from free expansion from its energized state by the gear drive and a gear assembly mechanism having a motor. A drug delivery pump utilizes such variable rate controlled delivery mechanisms. A status reader configured to recognize one or more corresponding status triggers is utilized to provide feedback to a user.

Claims (36)

1. A variable rate controlled delivery drive mechanism comprising:

a drive mechanism housing;

a biasing member positioned in an energized state within an inner cavity of a piston; and

a gear connected to a proximal end of a drive screw having an external pitch, the external pitch configured to engage a nut,

wherein the piston has an interface surface adjacent to a plunger seal and is configured to axially translate the plunger seal, by force asserted upon the piston from the biasing member, from a first position to a second position within a drug container for drug delivery, and wherein the biasing member is metered from free expansion from the energized state.

2. The drive mechanism of claim 1 , wherein the drug container contains a drug fluid within a drug chamber.

3. The drive mechanism of claim 1 , wherein the nut is rotationally constrained to the piston.

4. The drive mechanism of claim 1 further comprising a gear assembly mechanism comprising a motor, the gear assembly mechanism configured to engage the gear to meter free expansion of the biasing member from the energized state.

5. The drive mechanism of claim 4 , wherein the gear assembly mechanism further comprises:

a pinion extending from the motor;

a first compound gear having a first gear and a second gear;

a second compound gear having a first gear and a second gear; and

a trigger gear,

wherein the pinion contacts the first gear of the first compound gear, the second gear of the first compound gear contacts the first gear of the second compound gear, the second gear of the second compound gear contacts the trigger gear, and the trigger gear contacts the gear connected to the proximal end of the drive screw to relay motion to the drive mechanism.

6. The drive mechanism of claim 4 , wherein a metering of the biasing member by the motor controls a rate or profile of drug delivery to a user.

7. The drive mechanism of claim 1 , further comprising a status reader configured to read or recognize one or more corresponding status triggers, wherein, during operation of the drive mechanism, interaction between the status reader and the one or more status triggers transmits a signal to a power and control system to provide feedback to a user.

8. The drive mechanism of claim 7 , wherein the status reader is an optical status reader and the corresponding status triggers are gear teeth of a trigger gear.

9. The drive mechanism of claim 7 , wherein the status reader is a mechanical status reader and the corresponding status triggers are gear teeth of a trigger gear.

10. The drive mechanism of claim 9 , wherein the status reader is a mechanical status reader and the corresponding status triggers are external features of the piston.

11. The drive mechanism of claim 9 , wherein the status reader is an optical status reader and the corresponding status triggers are external features of the piston.

12. The drive mechanism of claim 1 , wherein a function of the gear assembly mechanism having a motor is pre-programmed or dynamically controlled by a power and control system to meet a desired drug delivery rate or profile.

13. A drug delivery pump with a variable rate controlled delivery mechanism comprising:

a housing; and

an assembly platform upon which an activation mechanism, an insertion mechanism, a fluid pathway connection, a power and control system, and a variable rate controlled delivery drive mechanism having a drug container are mounted,

the drive mechanism comprising a drive mechanism housing, a biasing member positioned in an energized state within an inner cavity of a piston, and a gear connected to a proximal end of a drive screw having an external pitch, the external pitch configured to engage a nut, wherein the piston has an interface surface adjacent to a plunger seal and is configured to axially translate the plunger seal, by force asserted upon the piston from the biasing member, from a first position to a second position within a drug container for drug delivery, and wherein the biasing member is metered from free expansion from the energized state.

14. The drug delivery pump of claim 13 , wherein the drug container contains a drug fluid within a drug chamber.

15. The drug delivery pump of claim 13 further comprising a gear assembly mechanism comprising a motor, the gear assembly mechanism configured to engage the gear to meter free expansion of the biasing member from the energized state.

16. The drug delivery pump of claim 15 , wherein the gear assembly mechanism further comprises:

a pinion extending from the motor;

a first compound gear having a first gear and a second gear;

a second compound gear having a first gear and a second gear; and

a trigger gear,

wherein the pinion contacts the first gear of the first compound gear, the second gear of the first compound gear contacts the first gear of the second compound gear, the second gear of the second compound gear contacts the trigger gear, and the trigger gear contacts the gear connected to the proximal end of the drive screw to relay motion to the drive mechanism.

17. The drug delivery pump of claim 15 , wherein a metering of the biasing member by the motor controls a rate or profile of drug delivery to a user.

18. The drug delivery pump of claim 15 , wherein a function of the gear assembly mechanism having a motor is pre-programmed or dynamically controlled by the power and control system to meet a desired drug delivery rate or profile.

19. The drug delivery pump of claim 13 , further comprising a status reader configured to read or recognize one or more corresponding status triggers, wherein, during operation of the drive mechanism, interaction between the status reader and the one or more status triggers transmits a signal to a power and control system to provide feedback to a user.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 9, 2025
From: UNL HOLDINGS LLC
To: AMGEN INC.
Reel/Frame 073057/0641 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 27, 2018
From: BENTE, PAUL F., IV; HANSON, IAN B.; MANDES, VINCENT E.; O'CONNOR, SEAN M.
To: UNITRACT SYRINGE PTY LTD
Reel/Frame 046217/0886 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 27, 2018
From: UNITRACT SYRINGE PTY LTD
To: UNL HOLDINGS LLC
Reel/Frame 046445/0401 →
Continuity (5)
Division 14423565
Provisional Application 61748667 · Jan 3, 2013
Provisional Application 61731744 · Nov 30, 2012
Provisional Application 61694534 · Aug 29, 2012
Related Publication 20180304006A1 · Oct 25, 2018
Cited By (4)
US 1,122,440 US 12,226,613 US 12,533,298 US 12,691,213