IP Library Granted Patent US 10,417,754
Granted Patent B2
US 10,417,754 · App. 15/448,487 · Granted Sep 17, 2019

Inspection system

Inventors: Yuki Kimura (Kyoto, JP); Akira Matsui (Joyo, JP); Shingo Inazumi (Amagasaki, JP)
Assignee: OMRON Corporation
G06T7/0004B25J9/0087G01B11/105G01B11/14G01B11/245G01B11/2416G01N21/8806G01N21/8851G01N21/952G01N21/9515H04N7/181G01N2021/8887
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,417,754
App. No.
15/448,487
Granted
Sep 17, 2019
Kind
B2
Abstract

An inspection system is provided with an inspection device configured to examine the external features of an object; and a control device for controlling the inspection device; the inspection device including: a substantially column-shaped first barrel that includes a first through hole configured for an object to pass therethrough; and a plurality of imaging units provided on the inner peripheral surface which forms the first through hole in the first barrel; and the control device including: an image processing unit configured to process an image captured and output by each of the imaging units for the purpose of inspection.

Claims (84)

1. An inspection system comprising: an inspection device configured to examine the external features of an object; and a control device for controlling the inspection device;

the inspection device comprising:

a substantially column-shaped first barrel that includes a first through hole configured for an object to pass therethrough; and

a plurality of cameras provided on the inner peripheral surface which forms the first through hole in the first barrel; and

the control device comprising:

an image processing unit configured to process an image captured and output by each of the cameras for the purpose of inspection; and

a communication unit configured for communication with an external device;

the external device including:

a support device including a first support configured to support the object; and

a drive unit; and

the control device causing the communication unit to transmit a control signal to the support device, said control signal configured to control the drive unit to cause the first support to pass through the first through hole while supporting the object.

2. The inspection system according to claim 1 , wherein the support device further includes a second support configured to support the object; and

the control device causing the communication unit to transmit a control signal to the support device, said control signal configured to control the drive unit to cause the second support to receive the object from the first support after the first support passes through the first through hole.

3. The inspection system according to claim 2 , wherein the inspection device further includes a light source configured to illuminate inside the first through hole.

4. The inspection system according to claim 3 , further comprising: a plurality of measurement sensors provided on the inner peripheral surface of the first barrel and configured to measure the external features of the object;

the control device including:

a measurement processing unit configured to process the measurement values output from the measurement sensors for the purpose of inspection.

5. The inspection system according to claim 3 , with the inspection device further comprising: a substantially column-shaped second barrel that includes a second through hole configured for the object to pass therethrough; and a plurality of measurement sensors provided on the inner peripheral surface which forms the second through hole in the second barrel and configured to measure the external features of the object;

the control device including:

a measurement processing unit configured to process the measurement values output from the measurement sensors for the purpose of inspection.

6. The inspection system according to claim 5 , wherein the first barrel and the second barrel are stacked along a virtual axis passing through the first through hole and the second through hole, with said virtual axis corresponding to a route along which the object passes.

7. An inspection system comprising: an inspection device configured to examine the external features of an object; and a control device for controlling the inspection device;

the inspection device including:

a substantially column-shaped barrel that includes a through hole configured for an object to pass therethrough;

a light source configured to illuminate inside the through hole; and

a plurality of measurement sensors provided on the inner peripheral surface of the barrel and configured to measure the external features of the object;

the control device including:

a measurement processing unit configured to process the measurement values output from the measurement sensors for the purpose of inspection; and

a communication unit configured for communication with an external device;

the external device including:

a support device including a support configured to support the object; and

a drive unit; and

the control device causing the communication unit to transmit a control signal to the support device, said control signal configured to control the drive unit to cause the support to pass through the through hole while supporting the object.

8. An inspection system comprising: an inspection device configured to examine the external features of an object; and a control device for controlling the inspection device;

the inspection device comprising:

a substantially column-shaped first barrel that includes a first through hole configured for an object to pass therethrough;

a plurality of cameras provided on the inner peripheral surface which forms the first through hole in the first barrel; and

a light source configured to illuminate inside the first through hole; and

the control device comprising:

an image processing unit configured to process an image captured and output by each of the cameras for the purpose of inspection; and

a communication unit configured for communication with an external device;

the external device including:

a support device including a first support configured to support the object; and

a drive unit; and

the control device causing the communication unit to transmit a control signal to the support device, said control signal configured to control the drive unit to cause the first support to pass through the first through hole while supporting the object.

9. An inspection system comprising: an inspection device configured to examine the external features of an object; and a control device for controlling the inspection device;

the inspection device comprising:

a substantially column-shaped first barrel that includes a first through hole configured for an object to pass therethrough; and

a plurality of cameras provided on the inner peripheral surface which forms the first through hole in the first barrel; and

a plurality of measurement sensors provided on the inner peripheral surface of the first barrel and configured to measure the external features of the object; and

the control device comprising:

an image processing unit configured to process an image captured and output by each of the cameras for the purpose of inspection;

a measurement processing unit configured to process the measurement values output from the measurement sensors for the purpose of inspection; and

a communication unit configured for communication with an external device;

the external device including:

a support device including a first support configured to support the object; and

a drive unit; and

the control device causing the communication unit to transmit a control signal to the support device, said control signal configured to control the drive unit to cause the first support to pass through the first through hole while supporting the object.

10. The inspection system according to claim 9 , wherein the support device further includes a second support configured to support the object; and

the control device causing the communication unit to transmit a control signal to the support device, said control signal configured to control the drive unit to cause the second support to receive the object from the first support after the first support passes through the first through hole.

11. An inspection system comprising: an inspection device configured to examine the external features of an object; and a control device for controlling the inspection device;

the inspection device comprising:

a substantially column-shaped first barrel that includes a first through hole configured for an object to pass therethrough;

a plurality of cameras provided on the inner peripheral surface which forms the first through hole in the first barrel;

a substantially column-shaped second barrel that includes a second through hole configured for the object to pass therethrough; and

a plurality of measurement sensors provided on the inner peripheral surface which forms the second through hole in the second barrel and configured to measure the external features of the object;

the control device comprising:

a measurement processing unit configured to process the measurement values output from the measurement sensors for the purpose of inspection; and

an image processing unit configured to process an image captured and output by each of the cameras for the purpose of inspection.

12. The inspection system according to claim 11 , with the control device further comprising: a communication unit configured for communication with an external device;

the external device including:

a support device including a first support configured to support the object; and

a drive unit; and

the control device causing the communication unit to transmit a control signal to the support device, said control signal configured to control the drive unit to cause the first support to pass through the first through hole while supporting the object.

13. The inspection system according to claim 12 , wherein the support device further includes a second support configured to support the object; and

the control device causing the communication unit to transmit a control signal to the support device, said control signal configured to control the drive unit to cause the second support to receive the object from the first support after the first support passes through the first through hole.

14. The inspection system according to claim 11 , wherein the first barrel and the second barrel are stacked along a virtual axis passing through the first through hole and the second through hole, with said virtual axis corresponding to a route along which the object passes.

15. The inspection system according to claim 14 , with the control device further comprising: a communication unit configured for communication with an external device;

the external device including:

a support device including a first support configured to support the object; and

a drive unit; and

the control device causing the communication unit to transmit a control signal to the support device, said control signal configured to control the drive unit to cause the first support to pass through the first through hole while supporting the object.

16. The inspection system according to claim 15 , wherein the support device further includes a second support configured to support the object; and

the control device causing the communication unit to transmit a control signal to the support device, said control signal configured to control the drive unit to cause the second support to receive the object from the first support after the first support passes through the first through hole.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2017
From: KIMURA, YUKI; MATSUI, AKIRA; INAZUMI, SHINGO
To: OMRON CORPORATION
Reel/Frame 041666/0053 →
Priority Claims (1)
JP 2016-130458 · Jun 30, 2016 · national
Continuity (1)
Related Publication 20180005365A1 · Jan 4, 2018
Cited By (1)
US 12,217,413