IP Library Granted Patent US 9,733,145
Granted Patent B2
US 9,733,145 · App. 14/325,367 · Granted Aug 15, 2017

Apparatus and method of measuring components in a manufacturing process

Inventors: Graham William Hancock (Hamilton, CA); Ramachandran Venkata Subramanian (Kitchener, CA); Roger Ivan (Waterloo, CA)
Assignee: Toyota Motor Engineering & Manufacturing North America, Inc.
G01M1/00G01N21/9515G01N2201/0221
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Quick Facts
Patent No.
US 9,733,145
App. No.
14/325,367
Granted
Aug 15, 2017
Kind
B2
Abstract

A data collection and processing system includes a hand-held tool for measuring the spacing between two locations on a test object such as automobile body panels. The tool generates and transmits a measurement signal to a remote data processing unit in response to a single operator input. The data processing unit compares the measurement signal with a predetermined range of values and classifies the measurement signal as either in-range data (i.e., when the measurement falls within the range of values) or out-of-range data (i.e., when the measurement falls outside of said range of values). If the measurement signal reflects an in-range measurement, the database is updated with the measurement signal as being in/out of specification. If the measurement signal reflects an out-of-range measurement, the signal is classified as a functional flag, advancing the system to a next measurement group or confirming vehicle status (e.g., measurement complete or hold for re-work).

Claims (32)

1. A measurement data collection system comprising:

an operator hand-held tool operable to measure a dimensional separation between two target locations on a test object, to generate a measurement signal as a function of said measured dimensional separation, and to transmit said measurement signal to a remote data processing unit in response to an operator input,

said data processing unit comprising a processing unit transceiver, a memory device, and a logic based processor, said data processing unit operative to receive said measurement signal and to compare said received measurement signal with a predetermined range of measurement values stored in said memory device,

said data processing unit operative to classify and store said received measurement signal as a valid data signal when said received measurement signal falls within said predetermined range of measurement values, and to classify and store said received measurement signal as a functional flag signal when said received measurement signal falls outside of said predetermined range of measurement values.

2. The measurement data collection system of claim 1 , wherein said operator hand-held tool comprises an electric vernier caliper or a levelness tool operatively coupled with a wireless transceiver configured for two-way communication with said processing unit transceiver.

3. The measurement data collection system of claim 1 , wherein said operator hand-held tool comprises a transmit actuation device operable to effect said transmission of said measurement signal in response to said operator input.

4. The measurement data collection system of claim 1 , wherein said operator hand-held tool comprises a transmit actuation device operable to effect transmission of said operator input.

5. The measurement data collection system of claim 4 , wherein said transmit actuation device comprises a single push button switch.

6. The measurement data collection system of claim 1 , wherein said data processing unit is operative to transmit said stored valid data signal or said stored functional flag signal to a central host server.

7. The measurement data collection system of claim 1 , wherein said data processing unit is operative to transmit said stored valid data signal or said stored functional flag signal to said operator hand-held tool.

8. The measurement data collection system of claim 7 , wherein said operator hand-held tool comprises an operator perceptible display configured to alert an operator of the receipt of said stored valid data signal or said stored functional flag signal.

9. The measurement data collection system of claim 8 , wherein said operator perceptible display comprises at least one of a visual display, an audible display or a tactile display.

10. The measurement data collection system of claim 1 , wherein said data processing unit is dedicated to said operator hand-held tool.

11. The measurement data collection system of claim 1 , wherein test object comprises an automobile body.

12. The measurement data collection system of claim 11 , wherein said two target locations are disposed on respective edges of adjacent panels of said automobile body.

13. The measurement data collection system of claim 1 , wherein said processing unit transceiver comprises a radio frequency transceiver.

14. The measurement data collection system of claim 1 , wherein said predetermined range of measurement values comprises at least one target range of measurement values.

15. The measurement data collection system of claim 14 , wherein said data processing unit is operative to compare said received measurement signal with a second range of measurement values stored in said memory device, and to disregard said received measurement signal when said received measurement signal falls within said second range of measurement values.

16. The measurement data collection system of claim 15 , wherein said second range of measurement values comprises at least one dead zone range of measurement values.

17. The measurement data collection system of claim 14 , wherein said data processing unit is operative to compare said received measurement signal with a third range of measurement values stored in said memory device, and to classify and store said received measurement signal as a functional flag signal when said received measurement signal falls within said third range of measurement values.

18. The measurement data collection system of claim 17 , wherein said third range of measurement values comprises at least one set flag function range of measurement values.

19. A measurement data collection system comprising:

a plurality of operator hand-held tools, each operator hand-held tool operable to measure a dimensional separation between two target locations on a test object, to generate a measurement signal as a function of said measured dimensional separation, and to transmit said measurement signal to a remote data processing unit in response to a single operator input,

said data processing unit comprising a processing unit transceiver, a memory device, and a logic based processor, said data processing unit operative to receive each said measurement signal from each said operator hand-held tool and to compare each said received measurement signal with an associated predetermined range of measurement values stored in said memory device,

said data processing unit operative to classify and store each said received measurement signal as a valid data signal when said received measurement signal falls within said predetermined range of measurement values, and to classify and store each said received measurement signal as a functional flag signal when said received measurement signal falls outside of said predetermined range of measurement values.

20. A method of collecting measurement data comprising the steps of:

providing an operator hand-held tool operable to measure a dimensional separation between two target locations on a test object;

generating a measurement signal as a function of said measured dimensional separation;

transmitting said measurement signal to a remote data processing unit in response to a single operator input;

said data processing unit comprising a processing unit transceiver, a memory device, and a logic based processor;

operating said data processing unit to receive said measurement signal and to compare said received measurement signal with a predetermined range of measurement values stored in said memory device; and

operating said data processing unit to classify and store said received measurement signal as a valid data signal when said received measurement signal falls within said predetermined range of measurement values, and to classify and store said received measurement signal as a functional flag signal when said received measurement signal falls outside of said predetermined range of measurement values.

Assignments (2)
CHANGE OF ADDRESS Recorded Nov 30, 2018
From: TOYOTA MOTOR ENGINEERING & MANUFACTURING NORTH AMERICA, INC.
To: TOYOTA MOTOR ENGINEERING & MANUFACTURING NORTH AMERICA, INC.
Reel/Frame 047688/0784 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 10, 2014
From: HANCOCK, GRAHAM WILLIAM; SUBRAMANIAN, RAMACHANDRAN VENKATA; IVAN, ROGER
To: TOYOTA MOTOR ENGINEERING & MANUFACTURING NORTH AMERICA, INC.
Reel/Frame 033285/0463 →
Continuity (1)
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