IP Library › Granted Patent US 8,939,280
Granted Patent B2
US 8,939,280 · App. 13/823,957 · Granted Jan 27, 2015

System and method for detecting contamination of a conveyor

Inventors: David W. Bogle (Round Rock, LA); Manoj Thomas (Ouderkerk aan de Amstel, NL)
Assignee: Laitram, L.L.C.
B65G43/00G01N35/00009
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Quick Facts
Patent No.
US 8,939,280
App. No.
13/823,957
Granted
Jan 27, 2015
Kind
B2
Abstract

Conveying systems and method for detecting the presence and amount of biological contaminants or additives on a conveyor belt. The conveyor system includes a conveyor belt having embedded biosensors. Transmitters co-located in the belt with the biosensors transmit biosensor signals to a remote controller. The remote controller allows remote monitoring of the contamination level on the conveyor belt.

Claims (32)

1. A conveyor belt comprising a biosensor advancing along a conveyor path with the conveyor belt and sensing the presence of a predetermined analyte and producing a corresponding response signal, and further comprising an opening in an outer side of the conveyor belt through which replacement biosensors are loaded to replace spent biosensors.

2. A conveyor belt as in claim 1 further comprising a transmitter associated with the biosensor, the transmitter transmitting the response signal.

3. A conveyor belt as in claim 1 wherein the biosensor is a MEMS-based sensor.

4. A conveyor belt as in claim 3 wherein the MEMS-based sensor has an exterior sensing surface whose impedance changes with the amount of predetermined analyte on the exterior sensing surface and wherein the response signal indicates the change in impedance.

5. A conveyor belt as in claim 1 further comprising a cavity in the conveyor belt and wherein the biosensor resides in the cavity.

6. A conveyor belt as in claim 1 wherein the biosensor is affixed to an outer surface of the conveyor belt.

7. A conveyor system as in claim 1 , further comprising:

a scraper having a scraping end that contacts the outer surface of the conveyor belt off the carryway to scrape residue from the outer surface;

a collector positioned to receive the residue scraped from the outer surface of the conveyor belt by the scraper; and

a second biosensor disposed in one of the scraper and the collector to sense the presence of a predetermined analyte and produce a corresponding response signal.

8. A conveyor system as in claim 7 wherein the second biosensor is a MEMS-based sensor.

9. A conveyor system as in claim 8 wherein the MEMS-based second biosensor has an exterior sensing surface whose impedance changes with the amount of predetermined analyte on the exterior sensing surface and wherein the response signal indicates the change in impedance.

10. A conveyor system as in claim 7 wherein the second biosensor includes a transmitter transmitting the response signal and the conveyor system further includes a receiver remote from the second biosensor receiving the response signal transmitted by the transmitter.

11. A conveyor system comprising:

a conveyor belt including:

a biosensor sensing the presence of a predetermined analyte and producing a corresponding response signal;

a transmitter transmitting the response signal;

a receiver remote from the conveyor belt receiving the response signal transmitted by the transmitter;

a biosensor-loading-unloading device for loading and unloading the biosensor in the conveyor belt.

12. A conveyor system as in claim 11 wherein the biosensor is a MEMS-based sensor having an exterior sensing surface whose impedance changes with the amount of predetermined analyte on the exterior sensing surface and wherein the response signal indicates the change in impedance.

13. A conveyor system as in claim 11 wherein the biosensor is affixed to an outer surface of the conveyor belt.

14. A conveyor system as in claim 11 further comprising a remote station external to the conveyor belt, the remote station processing the response signal received by the receiver to monitor the biosensor.

15. A method for monitoring a process for contamination of articles conveyed continuously through the process on a conveyor belt, comprising:

advancing articles supported on a conveyor belt along a conveyor path;

detecting a predetermined analyte at an outer surface of the conveyor belt with a biosensor mounted in and advancing with the conveyor belt and producing measurements;

transmitting the measurements remotely from the conveyor belt to a monitoring station;

replacing spent biosensors with replacement biosensors through an opening in an outer side of the conveyor belt.

16. The method of claim 15 further comprising actuating an alarm if the measurements exceed a predetermined limit.

17. A conveyor system comprising: a conveyor belt including a biosensor advancing along a conveyor path with the conveyor belt and sensing the presence of a predetermined analyte and producing a corresponding response signal;

a biosensor-loading-unloading device for loading and unloading the biosensor in the conveyor belt.

18. A conveyor system as in claim 17 wherein the conveyor belt includes a cavity housing the biosensor and an opening from the cavity onto an outer side of the conveyor belt and wherein the biosensor-loading-unloading device includes a pushing member that pushes the biosensor into the cavity through the opening in the outer side of the conveyor belt.

19. A conveyor system as in claim 17 wherein the conveyor belt includes a cavity housing the biosensor and a lateral passageway in communication with the cavity and opening onto an outer side of the conveyor belt and wherein the biosensor-loading-unloading device includes a pushing member that pushes the biosensor from the cavity through the lateral passageway and the outer side of the conveyor belt.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 17, 2013
From: THOMAS, MANOJ
To: LAITRAM, L.L.C.
Reel/Frame 030437/0145 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 17, 2013
From: BOGLE, DAVID W.
To: LAITRAM, L.L.C.
Reel/Frame 030443/0936 →
Continuity (2)
Provisional Application 61387212 · Sep 28, 2010
Related Publication 20130206545A1 · Aug 15, 2013