IP Library Granted Patent US 12686569
Granted Patent B2
US 12686569 · App. 18/798,460 · Granted Jul 21, 2026

Method and apparatus for singulating and dispensing beads

Inventor: Frank Lema (Fremont, CA)
Assignee: Air Industrial Robotics, Inc.
B65G47/1485B65G51/04
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Quick Facts
Patent No.
US 12686569
App. No.
18/798,460
Granted
Jul 21, 2026
Kind
B2
Abstract

Devices and methods are disclosed for singulating and dispensing a bead. A bulk hopper holds and presents a plurality of beads to a singulation tube that defines a pathway from the bulk hopper to a rotating protection nest. The rotating protection nest has a pocket configured to retain a single bead. A vacuum source is configured to draw beads from the bulk hopper into the singulation tube when the pocket of the rotating protection nest is in a pickup position and aligned with the singulation tube until a single bead is seated within the pocket. The singulation tube may define one or more buffer zones and/or a separation threshold to control delivery of beads from the bulk hopper to the protection nest. The bulk hopper may have a tapered rotating disk to deliver beads to the singulation tube.

Claims (23)

1 . A bead singulator and dispenser comprising:

a bulk hopper configured to hold and present a plurality of beads;

a rotating protection nest having a pocket configured to retain a single bead;

a singulation tube defining a pathway from the bulk hopper to the rotating protection nest, the singulation tube comprising a buffer zone having an elevation relatively below the pocket of the rotating protection nest when the pocket is in the pickup position; and

a vacuum source configured to draw beads from the bulk hopper into the singulation tube when the pocket of the rotating protection nest is in a pickup position and aligned with the singulation tube.

2 . The bead singulator and dispenser of claim 1 , wherein the singulation tube is coupled to an aperture in the bulk hopper and further comprises a separation threshold having an elevation relatively above the aperture and the buffer zone.

3 . The bead singulator and dispenser of claim 1 , wherein the singulation tube further comprises a loop that defines a supplemental buffer zone.

4 . The bead singulator and dispenser of claim 1 , wherein the vacuum source is configured to be at least partially blocked when a single bead is seated in the pocket of the rotating protection nest.

5 . The bead singulator and dispenser of claim 1 , wherein the rotating protection nest is configured to rotate to a position that aligns a bead seated within the pocket with a transfer tube.

6 . The bead singulator and dispenser of claim 1 , wherein the bulk hopper comprises a rotating disk having a circumference and an axis of rotation, wherein the bulk hopper tapers from a relatively greater elevation at the axis of rotation to a relatively lesser elevation at the circumference.

7 . The bead singulator and dispenser of claim 6 , wherein the rotating disk is controllable to achieve a desired rate of delivery of the plurality of beads in the bulk hopper to the singulation tube.

8 . The bead singulator and dispenser of claim 7 , wherein controlling the rotating disk comprises adjusting at least one of an angle of the taper of the disk, a speed of rotation of the disk and a direction of rotation of the disk.

9 . A method for singulating and dispensing one bead from a plurality of beads comprising:

providing a bulk hopper configured to hold and present a plurality of beads;

coupling the bulk hopper to a singulation tube that defines a pathway from the bulk hopper to a rotating protection nest, the rotating protection nest having a pocket configured to retain a single bead and the singulation tube comprising a buffer zone that has an elevation relatively below the pocket of the rotating protection nest when the pocket is in the pickup position; and

employing a vacuum source to draw beads from the bulk hopper into the singulation tube when the pocket of the rotating protection nest is in a pickup position and aligned with the singulation tube until a single bead is seated within the pocket.

10 . The method of claim 9 , wherein the singulation tube is coupled to an aperture in the bulk hopper and further comprising providing a separation threshold in the singulation tube that has an elevation relatively above the aperture and the buffer zone.

11 . The method of claim 9 , further comprising providing a loop in the singulation tube that defines a supplemental buffer zone, such that another portion of beads remaining in the singulation tube after the single bead is seated within the pocket migrate to the supplemental buffer zone.

12 . The method of claim 9 , further comprising configuring the vacuum source so that the vacuum source is at least partially blocked when the single bead is seated in the pocket of the protection nest.

13 . The method of claim 9 , further comprising rotating the rotating protection nest to a position that aligns the single bead seated within the pocket with a transfer tube.

14 . The method of claim 9 , further comprising providing the bulk hopper with a rotating disk having a circumference and an axis of rotation, wherein the bulk hopper tapers from a relatively greater elevation at the axis of rotation to a relatively lesser elevation at the circumference.

15 . The method of claim 14 , further comprising controlling the rotating disk to achieve a desired rate of delivery of the plurality of beads in the bulk hopper to the singulation tube.

16 . The method of claim 15 , wherein controlling the rotating disk comprises adjusting at least one of an angle of the taper of the disk, a speed of rotation of the disk and a direction of rotation of the disk.