IP Library Granted Patent US 11,753,257
Granted Patent B2
US 11,753,257 · App. 17/122,917 · Granted Sep 12, 2023

Bidirectional air conveyor device for material sorting and other applications

Inventors: Cameron D. Douglas (Boulder, CO); Mark Baybutt (Superior, CO); Matanya B. Horowitz (Golden, CO)
Assignee: AMP Robotics Corporation
B65G47/917B07C5/342B07C5/368B65G2203/0233B65G2203/041
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Quick Facts
Patent No.
US 11,753,257
App. No.
17/122,917
Granted
Sep 12, 2023
Kind
B2
Abstract

A bidirectional air conveyor device is disclosed, including: a housing that includes an intake port and an outlet port; a first air input port; a first airflow generator defined within the housing, wherein the first airflow generator is coupled to the first air input port; a second air input port; a second airflow generator defined within the housing, wherein the second airflow generator is coupled to the second air input port; wherein the first airflow generator is configured to cause a first airflow to enter the intake port and exit the outlet port in response to a first supply of air to the first air input port; and wherein the second airflow generator is configured to cause a second airflow to enter the outlet port and exit the intake port in response to a second supply of air to the second air input port.

Claims (22)

1. A bidirectional air conveyor device, comprising:

a housing that includes an intake port and an outlet port, wherein an internal through-passageway connects the intake port and the outlet port;

a first air input port;

a first airflow generator defined within the housing, wherein the first airflow generator is coupled to the first air input port;

a second air input port;

a second airflow generator defined within the housing, wherein the second airflow generator is coupled to the second air input port;

a material obstruction sensor that is configured to:

determine whether a collected object has fully passed through the bidirectional air conveyor device; and

output a feedback signal associated with the determination;

wherein the first airflow generator is configured to cause a first airflow to enter the intake port, flow through the internal through-passageway, and exit the outlet port in response to a first supply of air to the first air input port; and

wherein the second airflow generator is configured to cause a second airflow to enter the outlet port, flow through the internal through-passageway, and exit the intake port in response to a second supply of air to the second air input port.

2. The bidirectional air conveyor device of claim 1 , wherein the first airflow generator is positioned between the intake port and the second airflow generator, and wherein the second airflow generator is positioned between the outlet port and the first airflow generator.

3. The bidirectional air conveyor device of claim 1 , wherein the first airflow generator comprises:

a first air distribution ring disposed within the housing, wherein the first air distribution ring is coupled to the first air input port; and

a first plurality of air ejector nozzles disposed around the first air distribution ring, wherein the first plurality of air ejector nozzles is positioned within the housing to direct air entering the first air distribution ring from the first air input port into the internal through-passageway in a direction away from the intake port and towards the outlet port.

4. The bidirectional air conveyor device of claim 3 , wherein the second airflow generator comprises:

a second air distribution ring disposed within the housing, wherein the second air distribution ring is coupled to the second air input port; and

a second plurality of air ejector nozzles disposed around the second air distribution ring, wherein the second plurality of air ejector nozzles is positioned within the housing to direct air entering the second air distribution ring from the second air input port into the internal through-passageway in a direction away from the outlet port and towards the intake port.

5. The bidirectional air conveyor device of claim 1 , wherein the housing at the intake port is configured for mounting at least one attachment.

6. The bidirectional air conveyor device of claim 1 , further comprising a converging cone or funnel configured to direct an airflow into the internal through-passageway in response to an operation of the first airflow generator.

7. The bidirectional air conveyor device of claim 1 , wherein the first air input port and the second air input port are configured to connect to a compressed air source through a pneumatic switch.

8. The bidirectional air conveyor device of claim 1 , wherein the material obstruction sensor comprises one or more of the following; a pressure sensor, an airflow sensor, a ultrasonic sensor, an infrared sensor, an image sensor, and an opacity sensor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2021
From: DOUGLAS, CAMERON D.; BAYBUTT, MARK; HOROWITZ, MATANYA B.
To: AMP ROBOTICS CORPORATION
Reel/Frame 055740/0121 →
Continuity (2)
Provisional Application 62948401 · Dec 16, 2019
Related Publication 20210206588A1 · Jul 8, 2021
Cited By (4)
US 12,304,751 US 12,447,630 US 12,491,680 US 12,623,361