IP Library Granted Patent US 12,722,907
Granted Patent B1
US 12,722,907 · App. 18/623,678 · Granted Sep 1, 2026

System determinative of correct orientation of components during an automation procedure

Inventors: Omesh Ganesh (Pompano Beach, FL); Peter Lehel (Boca Raton, FL)
Assignee: MEDICAL DEVICE ENGINEERING, LLC
B65G47/256B65G2203/0225
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Quick Facts
Patent No.
US 12,722,907
App. No.
18/623,678
Granted
Sep 1, 2026
Kind
B1
Abstract

A system determinative of correct orientation of components during an automation procedure, including a path of travel of the components and an ejection zone disposed along the path of travel. An orientation detector includes a detection structure integrated into the path of travel and disposed and configured to determine the orientation of the components based on the physical characteristics thereof. The detection structure is disposed in interruptive, movable engagement with disoriented ones of the plurality of components and is configured to displace such disoriented components from said path of travel into an ejection zone. An ejector is disposed in operative communication with the ejection zone and is structurally operative to displace the disoriented components from the ejection zone and remove them from said path of travel.

Claims (32)

1 . A system determinative of correct orientation of components during an automation procedure, said system comprising:

a path of travel of the components during the automation procedure,

an ejection zone disposed along said path of travel,

said path of travel comprising a rail dimensioned and configured to facilitate movement of the components along and relative to a first segment of said rail,

an ejector disposed in communicating relation with said ejection zone; said ejector structurally operative to remove disoriented components from said path of trave and rail an orientation detector comprising a detection structure disposed along said path of travel and structured to detect and dispose the disoriented components into said ejection zone, and

said detection structure comprises at least two angled ramp segments integrally connected to said rail and disposed in spaced, aligned relation to one another, within and on opposite sides of said rail, each of said at least two angled ramp segments fixed relative to said ejector and extending outwardly from a bottom portion of said rail towards said ejection zone.

2 . The system as recited in claim 1 wherein said orientation detector comprises a detection structure at least two angled ramp segments are disposed and configured for orientation determination of the components traveling along and relative to said path of travel rail said orientation determination based on physical characteristics of the components.

3 . The system as recited in claim 2 wherein said a detection structure is at least two angled ramp segments are disposed along said path of travel rail in movably engaging relation with a predetermined portion of the disoriented components, said detection structure at least two angled ramp segments configured to displace the disoriented components from said path of travel into said ejection zone.

4 . The system as recited in claim 3 wherein said ejector is disposed and structured to remove the disoriented components from said ejection zone.

5 . The system as recited in claim 3 wherein said detection structure is at least two angled ramp segments are dimensioned and configured to facilitate passage of correctly oriented components by said detection structure, continuously along said path of travel rail.

6 . The system as recited in claim 1 wherein said path of travel is dimensioned and configured to facilitate movement of disoriented components along and relative to said first portion segment of said path of travel rail, concurrent to facilitating passage of correctly oriented components beyond said orientation detector and continuously along a remainder of said path of travel rail.

7 . The system as recited in claim 1 wherein said at least two angled ramp segments are cooperatively disposed and configured to engage and displace disoriented components outwardly and upwardly from said bottom portion of said rail into said ejection zone and in exposed relation to said ejector.

8 . The system as recited in claim 7 wherein said ejector is disposed in said ejection zone and outward from said rail, said ejector operatively positioned to remove disoriented components disposed in said ejection zone from said rail.

9 . The system as recited in claim 1 wherein said rail comprises said first segment and a second segment disposed in linearly aligned relation to one another and collectively defining at least a portion of said path of travel; said detection structure at least two angled ramp segments disposed between and at least partially defining an interface between said first and second segments.

10 . The system as recited in claim 9 wherein said first segment is dimensioned to facilitate passage there along of correctly oriented and dis-oriented disoriented components; said second segment dimensioned to facilitate passage there along of correctly oriented components; said detection structure at least two angled ramp segments disposed in fixed, interruptive, movable engagement with disoriented components and configured to displace disoriented components outwardly from said bottom portion of said rail.

11 . The system as recited in claim 1 wherein said ejector comprises an air jet operatively disposed to displace disoriented components from said ejection zone via a continuous pressurized fluid flow.

12 . The system as recited in claim 1 wherein components passing along said first segment are disposed in movably supported engagement on said bottom portion of said rail.

13 . A system determinative of correct orientation of components during an automation procedure, said system comprising:

a path of travel of the components during an automation procedure,

an ejection zone disposed along said path of travel and at least partially outward therefrom,

an ejector disposed in operative communication with said ejection zone and structurally operative to remove disoriented components from said ejection zone and said path of travel,

an orientation detector comprising a detection structure disposed and configured for orientation determination of the components, said orientation determination based on physical characteristics of the components,

said path of travel comprising a rail including a first segment and a second segment disposed in aligned relation to one another; said detection structure disposed between and at least partially defining a component segregating interface between said first and second segments,

said detection structure comprising at least two angled ramp segments integrally connected to said rail and disposed in spaced, aligned relation to one another, within and on opposite sides of said rail, each of said at least two angled ramp segments fixed relative to said ejector and extending outwardly from a bottom portion of said rail towards said ejection zone,

said first segment dimensioned to facilitate passage there along of correctly oriented and disoriented components; said second segment dimensioned to facilitate passage there along of only correctly oriented components, and

said detection structure disposed at least two angled ramp segments fixed along said first segment in interruptive, movable engagement with disoriented components from said first segment and configured to displace engaged disoriented components from said path of travel rail into said ejection zone, and

an ejector disposed in operative communication with said ejection zone and structurally operative to remove disoriented components from said ejection zone and said path of travel.

14 . The system as recited in claim 13 wherein said two angled ramp segments are concurrently disposed fixed relative to said ejector in component receiving relation to said first segment and cooperatively configured to collectively engage and displace disoriented components outwardly from said bottom portion of said rail into said ejection zone and in exposed relation to said ejector.

15 . The system as recited in claim 14 wherein said ejector comprises an air jet disposed within said ejection zone and above said rail, said air jet operative to displace disoriented components from said ejection zone, via a pressurized fluid flow.

16 . The system as recited in claim 13 wherein said rail further comprises retaining sides extending along opposite sides of a length of each of said first and second segments in retaining relation to components passing along an interior of said rail.

17 . The system as recited in claim 16 wherein said rail further comprises a gate formed in at least one retaining side of said second segment, in substantially correspondingly disposed relation to said ejection zone; said gate dimensioned to facilitate passage of disoriented components of therethrough concurrent to displacement thereof from said path of travel.

18 . The system as recited in claim 13 wherein components passing along said first segment are disposed in movably supported engagement on said bottom portion of said rail.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 3, 2026
From: INTERNATIONAL MEDICAL INDUSTRIES INC.
To: MEDICAL DEVICE ENGINEERING, LLC
Reel/Frame 074838/0693 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 24, 2026
From: LEHEL, PETER; GANESH, OMESH
To: INTERNATIONAL MEDICAL INDUSTRIES INC.
Reel/Frame 073878/0098 →
Continuity (1)
Provisional Application 63456391 · Mar 31, 2023
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