Two dimensional bar code having increased accuracy
First Claim
1. A target for association with an object for which at least one of strain and fatigue damage is to be measured, the target incorporating a matrix code symbol, the matrix code symbol emitting a detectable physical quantity and including:
- a Data Matrix symbol having;
a two-dimensional matrix having a perimeter and containing dark and light square data modules, wherein data is encoded based on the absolute position of the dark modules within the matrix; and
a finder pattern of two solid bars and two bars of alternating dark and light square data modules on the perimeter of the matrix for indicating both orientation and printing density of the symbol, wherein all of the dark and light data modules of the matrix are the same dimension, wherein the two solid bars are on one pair of adjacent sides of the perimeter of the matrix and the two bars of alternating dark and light data modules are on the opposite pair of adjacent sides of the perimeter of the matrix, and wherein the finder pattern defines the perimeter of the Data Matrix symbol;
a solid inner bar outside the perimeter of the Data Matrix symbol, only adjacent each of the finder pattern bars of alternating dark and light data modules; and
at least one outer bar positioned adjacent each inner bar, with each inner bar being interposed between the perimeter of the Data Matrix symbol and the at least one outer bar, wherein the at least one outer bar is configured to increase the accuracy of the use of the Data Matrix symbol;
wherein the inner and outer bars each have a width equal to the square data modules.
4 Assignments
0 Petitions
Accused Products
Abstract
A two-dimensional matrix code containing dark and light square data modules, and a finder pattern of two bars of alternating dark and light square data modules on the perimeter of the symbol for indicating both orientation and printing density of the symbol, wherein all of the data modules are the same dimension and data is encoded based on the absolute position of the dark modules within the matrix, and inner and outer bars are provided along adjacent sides of the matrix code symbol, each bar having a width equal to the square data modules. In one embodiment, the inner and outer bars are solid. In another embodiment, the inner solid is bar and the outer bar is an encoding bar.
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Citations
8 Claims
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1. A target for association with an object for which at least one of strain and fatigue damage is to be measured, the target incorporating a matrix code symbol, the matrix code symbol emitting a detectable physical quantity and including:
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a Data Matrix symbol having; a two-dimensional matrix having a perimeter and containing dark and light square data modules, wherein data is encoded based on the absolute position of the dark modules within the matrix; and a finder pattern of two solid bars and two bars of alternating dark and light square data modules on the perimeter of the matrix for indicating both orientation and printing density of the symbol, wherein all of the dark and light data modules of the matrix are the same dimension, wherein the two solid bars are on one pair of adjacent sides of the perimeter of the matrix and the two bars of alternating dark and light data modules are on the opposite pair of adjacent sides of the perimeter of the matrix, and wherein the finder pattern defines the perimeter of the Data Matrix symbol; a solid inner bar outside the perimeter of the Data Matrix symbol, only adjacent each of the finder pattern bars of alternating dark and light data modules; and at least one outer bar positioned adjacent each inner bar, with each inner bar being interposed between the perimeter of the Data Matrix symbol and the at least one outer bar, wherein the at least one outer bar is configured to increase the accuracy of the use of the Data Matrix symbol; wherein the inner and outer bars each have a width equal to the square data modules. - View Dependent Claims (2, 3, 4, 5, 6)
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7. A non-linear strain gage comprising:
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a target associated with an object for which at least one of strain and fatigue damage is to be measured, the target comprising a matrix code symbol emitting a detectable physical quantity and including; (a) a Data Matrix symbol having; a two-dimensional matrix having a perimeter and containing dark and light square data modules, wherein data is encoded based on the absolute position of the dark modules within the matrix; and a finder pattern of two solid bars and two bars of alternating dark and light square data modules on the perimeter of the matrix for indicating both orientation and printing density of the symbol, wherein all of the dark and light data modules of the matrix are the same dimension, wherein the two solid bars are on one pair of adjacent sides of the perimeter of the matrix and the two bars of alternating dark and light data modules are on the opposite pair of adjacent sides of the perimeter of the matrix, and wherein the finder pattern defines the perimeter of the Data Matrix symbol; (b) a solid inner bar outside the perimeter of the Data Matrix symbol, only adjacent each of the finder pattern bars of alternating dark and light data modules; and (c) at least one outer bar positioned adjacent each inner bar, with each inner bar being interposed between the perimeter of the Data Matrix symbol and the at least one outer bar, wherein the at least one outer bar is configured to increase the accuracy of the use of the Data Matrix symbol; wherein the inner and outer bars each have a width equal to the square data modules; sensor means for pre-processing the detectable physical quantity emitted by the target and output data representing the physical quantity, the sensor means being compatible with the detectable physical quantity; means for analyzing the data output by the sensor means to define the matrix code symbol; and means for measuring the strain on the object directly based on the pre-processed and analyzed data.
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8. A method of measuring strain on an object directly, comprising the steps of:
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associating a target with an object in such a way that deformation of the matrix code symbol and deformation under load of the object bear a one-to-one relationship, wherein the target comprises a matrix code symbol emitting a detectable physical quantity and including; (a) a Data Matrix symbol having; a two-dimensional matrix having a perimeter and containing dark and light square data modules, wherein data is encoded based on the absolute position of the dark modules within the matrix; and a finder pattern of two solid bars and two bars of alternating dark and light square data modules on the perimeter of the matrix for indicating both orientation and printing density of the symbol, wherein all of the dark and light data modules of the matrix are the same dimension, wherein the two solid bars are on one pair of adjacent sides of the perimeter of the matrix and the two bars of alternating dark and light data modules are on the opposite pair of adjacent sides of the perimeter of the matrix, and wherein the finder pattern defines the perimeter of the Data Matrix symbol; (b) a solid inner bar outside the perimeter of the Data Matrix symbol, only adjacent each of the finder pattern bars of alternating dark and light data modules; and (c) at least one outer bar positioned adjacent each inner bar, with each inner bar being interposed between the perimeter of the Data Matrix symbol and the at least one outer bar, wherein the at least one outer bar is configured to increase the accuracy of the use of the Data Matrix symbol; wherein the inner and outer bars each have a width equal to the square data modules; identifying the changes in the matrix code symbol as a function of time and change in the load applied to the object; and translating the changes in the matrix code symbol into a direct measurement of strain.
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Specification