IP Library Granted Patent US 12698107
Granted Patent B2
US 12698107 · App. 17/941,300 · Granted Aug 4, 2026

Methods and apparatus for automated counting of solids

Inventors: Izaak T. Landgraff (Brownsburg, IN); Joseph A. Siciliano (Zionsville, IN)
Assignee: Express Scripts Strategic Development, Inc.
B65B1/08B65B1/30
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Quick Facts
Patent No.
US 12698107
App. No.
17/941,300
Granted
Aug 4, 2026
Kind
B2
Abstract

A shim for a solid counting device is provided. The shim includes: a first end, including a first width and a projection extending in a lateral direction; a second end, including a second width greater than the first width; and an elongated body extending in a longitudinal dimension from the first end to the second end. The first width, the second width, and the projection configured to prevent more than one of a plurality of solids simultaneously traveling into an exit channel of the solid counting device.

Claims (79)

1 . A shim for a solid counting device, the shim comprising:

a first end, including a first width and a projection extending in a lateral direction;

a second end, including a second width greater than the first width; and

an elongated body extending in a longitudinal dimension from the first end to the second end,

the first width, the second width, and the projection configured to prevent more than one of a plurality of solids simultaneously traveling into an exit channel of the solid counting device,

wherein the shim includes an outer convex surface extending along a constant radius and an inner concave surface extending along an inner radius that shortens from the first end to the second end.

2 . The shim of claim 1 , wherein the first end includes an additional projection spaced from the projection in a direction of travel of the one of the plurality of solids in the exit channel; and

wherein the first width, the second width, the projection, and the additional projection are configured to prevent the more than one of the plurality of solids traveling into the exit channel of the vibratory bowl.

3 . The shim of claim 1 , wherein the projection comprises a semi-cylindrical shape including a center point coincident with an inner surface of the shim; and

wherein the first width, the second width, and the semi-cylindrical shape are configured to prevent the more than one of the plurality of solids traveling into the exit channel of the solid counting device.

4 . The shim of claim 1 , wherein the projection is semi-cylindrical with an outer surface that is coincident with an edge of the first end.

5 . The shim of claim 1 , wherein the projection comprises a semi-cylindrical shape extending an entire height of the shim.

6 . The shim of claim 1 , wherein the outer convex surface positioned adjacent to an inner surface of a vibratory bowl, to prevent the more than one of the plurality of solids from traveling into the exit channel that includes the inner surface where the shim is positioned; and

wherein the solid counting device includes the vibratory bowl.

7 . The shim of claim 6 , wherein the shim further comprises:

a fastener device configured to secure the shim to the inner surface of the vibratory bowl and on a ramp of the exit channel, to prevent travel of a solid beneath the shim.

8 . The shim of claim 1 , wherein the projection extends outward from the inner concave surface of the shim; and

wherein the inner concave surface contacts the plurality of solids to be counted.

9 . The shim of claim 1 , wherein the shim is positioned inside the exit channel of a vibratory bowl, to prevent the more than one of the plurality of solids from traveling into the exit channel; and

wherein the solid counting device includes the vibratory bowl.

10 . The shim of claim 1 , wherein the elongated body narrows in a lateral dimension from the second end to the first end; and

wherein the first width comprises a diameter of the projection extending from the first end, the diameter being less than the second width.

11 . The shim of claim 10 , wherein the first width and the second width comprise proportional values associated with a particular type of a solid to be counted; and

wherein the plurality of solids include the solid.

12 . The shim of claim 1 , wherein the elongated body is unitary with a varying width and includes the first end, the second end, the projection extending inwardly toward a solids travel path, the outer convex surface configured to abut an interior wall of a solids counter, and the inner concave surface configured to contact solids pills along the solids travel path.

13 . A system for counting solids, the system comprising:

a vibratory bowl comprising at least an inner bowl surface and an exit opening, the vibratory bowl configured to:

generate motion of a plurality of solids; and

dispense individual ones of the plurality of solids, via the exit opening, for counting the plurality of solids; and

a shim positioned inside an exit channel extending from the exit opening of the vibratory bowl, the shim comprising:

a first end, including a first width and a projection extending in a lateral direction;

a second end, including a second width greater than the first width; and

an elongated body extending in a longitudinal dimension from the first end to the second end,

the first width, the second width, and the projection configured to prevent more than one of the plurality of solids simultaneously traveling into an exit channel of the vibratory bowl.

14 . The system of claim 13 , wherein the first end includes an additional projection spaced from the projection in a direction of travel of the one of the plurality of solids in the exit channel; and

wherein the first width, the second width, the projection, and the additional projection are configured to prevent the more than one of the plurality of solids traveling into the exit channel of the vibratory bowl.

15 . The system of claim 13 , wherein the projection comprises a semi-cylindrical shape including a center point coincident with an inner surface of the shim; and

wherein the first width, the second width, and the semi-cylindrical shape are configured to prevent the more than one of the plurality of solids traveling into the exit channel of the vibratory bowl.

16 . The system of claim 13 , wherein the shim further comprises:

a fastener device configured to secure the shim to the inner surface of the vibratory bowl and on a ramp of the exit channel, to prevent travel of a solid beneath the shim.

17 . The system of claim 13 , wherein the elongated body narrows in a lateral dimension from the second end to the first end; and

wherein the first width comprises a diameter of the projection extending from the first end, the diameter being less than the second width.

18 . The system of claim 13 , wherein the first width and the second width comprise proportional values associated with a particular type of a solid to be counted; and

wherein the plurality of solids include the solid.

19 . The system of claim 13 , wherein the shim further comprises:

an inner concave surface positioned to contact the plurality of solids to be counted, wherein the projection extends outward from an inner concave surface of the shim; and

an outer convex surface positioned adjacent to an inner surface of a vibratory bowl, to prevent the more than one of the plurality of solids from traveling into the exit channel that includes the inner surface where the shim is positioned.

20 . The shim of claim 19 , wherein the outer convex surface extends along a constant radius; and

wherein the inner concave surface extends along an inner radius that shortens from the first end to the second end.

21 . A method for counting solids using a solid counting device, the method comprising:

receiving a plurality of solids to be counted, by a vibratory bowl comprising at least an inner bowl surface, an exit opening, and a channel extending from the exit opening around an edge of the vibratory bowl;

generating motion to shuffle the plurality of solids toward the channel, by the vibratory bowl;

separating one of the plurality of solids entering the channel connected to the exit opening, by a shim comprising an elongated body narrowing from a second end to a first end having a projection extending in a lateral direction, the shim being positioned in the channel; and

dispensing the one of the plurality of solids via the exit opening, using the motion, the channel, and the shim.

22 . The method of claim 21 , further comprising:

performing a continuous process, by:

generating the motion continuously during the process of counting the plurality of solids, by the vibratory bowl, to shuffle the plurality of solids toward the channel continuously;

separating individual ones of the plurality of solids entering the channel, by the shim; and

dispensing the plurality of solids, individually via the exit opening, using the motion, the channel, and the shim.

23 . The method of claim 21 , wherein separating the one of the plurality of solids entering the channel connected to the exit opening, further comprises:

receiving a subset of the plurality of solids, by the channel, during generation of the motion, wherein the subset includes the one and a second one of the plurality of solids;

permitting the one of the plurality of solids to progressively travel toward the exit opening using the channel, by the shim; and

impeding a path of the second one, by the shim, based on a size of the one and the second one, a projection width, and a channel width.

24 . The method of claim 23 , wherein impeding the path of the second one further comprises:

partially obstructing the channel using at least one physical characteristic of the shim, the at least one physical characteristic including the projection width and a width of the first end; and

preventing the second one from entering the channel simultaneously with the one of the plurality of solids, based on partially obstructing the channel and the size of the one and the second one.

25 . The method of claim 23 , wherein impeding the path of the second one further comprises:

partially obstructing the exit opening using at least one physical characteristic of the shim, the at least one physical characteristic including a width of the second end and a position of the shim; and

preventing the second one from entering the exit opening simultaneously with the one of the plurality of solids, based on partially obstructing the exit opening and the size of the one and the second one.

26 . A shim for a solid counting device, the shim comprising:

a first end, including a first width and a projection extending in a lateral direction;

a second end, including a second width greater than the first width;

an elongated body extending in a longitudinal dimension from the first end to the second end,

the first width, the second width, and the projection configured to prevent more than one of a plurality of solids simultaneously traveling into an exit channel of the solid counting device; and

a fastener device configured to secure the shim to an inner surface of the vibratory bowl and on a ramp of the exit channel, to prevent travel of a solid beneath the shim.

27 . The shim of claim 26 , wherein the first width and the second width comprise proportional values associated with a particular type of a solid to be counted; and wherein the plurality of solids include the solid.

28 . The shim of claim 26 , wherein an outer convex surface of the elongated body is positioned adjacent to an inner surface of a vibratory bowl to prevent the more than one of the plurality of solids from traveling into the exit channel that includes the inner surface where the shim is positioned.

29 . The shim of claim 26 , wherein the projection comprises a semi-cylindrical shape extending an entire height of the shim.

30 . The shim of claim 26 , wherein the projection is semi-cylindrical with an outer surface that is coincident with an edge of the first end.