IP Library › Granted Patent US 12,728,196
Granted Patent B2
US 12,728,196 · App. 17/223,689 · Granted Sep 8, 2026

Automatic injection device having a magnetic drive system

Inventors: Eyal Barmaimon (Haifa, IL); Lior Shtram (Tel Aviv, IL); Boaz Kalisch (Haifa, IL); Ronny Bellan (Nazareth, IL); Nadav Cohen (Haifa, IL); Shai Finkman (Haifa, IL); Yuval Harel (Rakefet, IL)
Assignee: Flextronics AP, LLC
A61M5/14212A61M5/14248A61M5/16804A61M5/158A61M2205/0288A61M2205/3317A61M2205/702A61M2207/00
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Quick Facts
Patent No.
US 12,728,196
App. No.
17/223,689
Granted
Sep 8, 2026
Kind
B2
Abstract

An automatic injection device has an insertion needle configured to be inserted into a patient and a drug container which contains a pharmaceutical product. The drug container includes a stopper. The automatic injection device also has a fluid path which fluidly connects the drug container to the insertion needle. The automatic injection device further has a drive system configured to cause parallel linear movement of the stopper to force the pharmaceutical product into the fluid path. The drive system has a driving element and a movable element. The automatic injection device additionally has electronics configured to provide a signal to the drive system to move the stopper and have means for sensing the stopper position. The movable element has an outer magnet at least partially surrounding the drug container and an inner magnet inside the drug container.

Claims (33)

1 . A method of assembling an automatic injection device, comprising:

positioning an inner magnet in a drug container which contains a pharmaceutical product, the drug container including a stopper; and

inserting the drug container in a through-hole of an outer magnet such that the inner magnet is aligned with the through-hole,

wherein the outer magnet is linearly movable on an outside of the drug container by a driving element of the automatic injection device in order to move the inner magnet inside the drug container, and

wherein the driving element comprises two shafts and two connectors, wherein movement of the two connectors along the shafts move the outer magnet linearly and parallel along an outside of the drug container.

2 . The method of claim 1 , further comprising inserting the outer magnet in a through-hole of an outer collar.

3 . The method of claim 2 , further comprising connecting the outer collar to two shafts of the driving element via at least two connectors.

4 . The method of claim 3 , wherein the at least two connectors include a through-hole which includes an axis that is parallel to an axis of the through-hole of the outer collar.

5 . The method of claim 2 , further comprising connecting the outer collar to two shafts of the driving element by integrated threads.

6 . The method of claim 1 , wherein the inner magnet is disc-shaped.

7 . The method of claim 1 , wherein the outer magnet is diametrically magnetized in a first direction and the inner magnet is diametrically magnetized in an opposite second direction such that the inner magnet follows linear movement of the outer magnet.

8 . The method of claim 1 , wherein the driving element is a motor.

9 . The method of claim 1 , wherein the inner magnet abuts a side of the stopper and exerts a force on the stopper to move the stopper longitudinally inside the drug container.

10 . The method of claim 1 , wherein the stopper and the inner magnet are integral.

11 . The method of claim 1 , wherein the outer magnet is an electromagnet which is controllable by electronics.

12 . A method of assembling an automatic injection device, comprising:

positioning an inner magnet in a drug container which contains a pharmaceutical product, the drug container including a stopper;

inserting the drug container in a through-hole of an outer magnet such that the inner magnet is aligned with the through-hole,

inserting the outer magnet in a through-hole of an outer collar; and

connecting the outer collar to two shafts of a driving element of the automatic injection device via at least two connectors,

wherein the outer magnet is linearly movable on an outside of the drug container by the driving element in order to move the inner magnet inside the drug container.

13 . The method of claim 12 , wherein the driving element comprises two shafts and two connectors, wherein movement of the two connectors along the shafts move the outer magnet linearly and parallel along an outside of the drug container.

14 . The method of claim 12 , wherein the inner magnet is disc-shaped.

15 . The method of claim 12 , wherein the outer magnet is diametrically magnetized in a first direction and the inner magnet is diametrically magnetized in an opposite second direction such that the inner magnet follows linear movement of the outer magnet.

16 . A method of assembling an automatic injection device, comprising:

positioning an inner magnet in a drug container which contains a pharmaceutical product, the drug container including a stopper;

inserting the drug container in a through-hole of an outer magnet such that the inner magnet is aligned with the through-hole,

inserting the outer magnet in a through-hole of an outer collar; and

connecting the outer collar to two shafts of a driving element of the automatic injection device by integrated threads,

wherein the outer magnet is linearly movable on an outside of the drug container by the driving element in order to move the inner magnet inside the drug container.

17 . The method of claim 16 , wherein the driving element comprises two shafts and two connectors, wherein movement of the two connectors along the shafts move the outer magnet linearly and parallel along an outside of the drug container.

18 . The method of claim 16 , wherein the inner magnet is disc-shaped.

19 . The method of claim 16 , wherein the outer magnet is diametrically magnetized in a first direction and the inner magnet is diametrically magnetized in an opposite second direction such that the inner magnet follows linear movement of the outer magnet.

Continuity (4)
Continuation 15951425 · Apr 12, 2018
Continuation In Part 15436524 · Feb 17, 2017
Provisional Application 62297356 · Feb 19, 2016
Related Publication 20210220552A1 · Jul 22, 2021
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