IP Library › Granted Patent US 11,796,418
Granted Patent B2
US 11,796,418 · App. 17/501,368 · Granted Oct 24, 2023

Contact lens defect analysis and tracing system

Inventors: Ya'akob Bin Mohamed (Singapore, SG); Bee Chuan Tan (Singapore, SG)
Assignee: EMAGE VISION PTE. LTD.
G01M11/0278G01M11/0257G01N21/958G06T7/0004G01N2021/9583
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Quick Facts
Patent No.
US 11,796,418
App. No.
17/501,368
Granted
Oct 24, 2023
Kind
B2
Abstract

A manual inspection system and method to inspect for defects in Contact lenses comprising; an image acquisition system with at least two high resolution cameras; Top illumination light head used for acquiring Bright field images; a Backlit illumination module to acquire Dark field images; at least another back lit illumination module to acquire a different type of Bright field images; an interchangeable mechanism to change measurement gauges suitable for a particular product; a rotating wheel embedded with multiple optical filters to cater to different imaging requirements; a first camera to capture the full view of the contact lens at a beam splitter; a second camera suitably mounted on a swivel arm to capture a higher resolution image of a selected defective area as viewed on a projection screen; a glass template or measurement gauge mounted at a suitable position to achieve overlaid images of the lens and the gauge on a projection screen for taking measurements; a flexible template measurement gauge as an optional overlay, to replace the glass template, suitably mounted on the projection screen for easy measurement of defects and geometry of the contact lens; an XYZ table to position the contact lens; creating a database on the computer that tabulates geometrical information and detailed defect information along with their respective positional information; and subsequently analyzing the database images to arrive at corrective actions to the manufacturing process to improve the quality and yields in the contact lens.

Claims (24)

1. A defect analysis and tracing system for clear and cosmetic contact lenses using rear projection, comprising;

a glass cuvette curved to hold a contact lens;

a pair of illumination modules directed towards the cuvette for back and front Illumination;

a diffuser mounted on a horizontal swivel arm to aid in diffusing the Backlit illumination when required;

a rotary wheel mounted with at least two optical filters;

a first optical module focussed at the contact lens for capturing an aberration free image;

a beam splitter to split the beam of light for capturing the image by a computer at one stage and for projection of the image on to a viewing screen at the second stage;

a first camera connected to a computer for image capturing at a first stage, and second camera at a second stage for capturing images from the viewing screen;

a gauge holder for mounting a precision calibration made of glass for measurement of various dimensions and defects of the object under inspection;

a second optical module mounted after the calibration gauge to project an overlaid image of the contact lens and the calibration pattern on the gauge, on to a viewing screening;

a large viewing screen on which the image is projected for accurate measurement of various features of the contact lens.

2. A system of claim 1 , further including a gauge holder that features an interchangeable mechanism to accommodate a variety of calibration gauges to inspect and measure different types of contact lenses.

3. A system of claim 1 , further including a second camera mounted on a swivel arm, to manually position it in front of the viewing screen to capture magnified images of specific features on contact lenses.

4. A defect analysis and tracing method for clear and cosmetic contact lenses using rear projection, comprising the steps of;

capturing an image of the contact lens under inspection with backlit and front lit illumination;

pulsing one or more illumination modules dynamically at different time domains, to enhance defects such as bubbles, tears, scratches, pattern including lot information;

processing the captured image from a first camera to identify the critical features and tagging them to the lot information for tracing purposes;

determining the critical features and creating a database by mapping the defects to the lot information;

triggering a second camera to capture magnified images of critical defects determined when processing the images from the first camera, by manually positioning the second camera close to the identified defects on a viewing screen;

consolidating and tagging the magnified images to the specified lot and enhancing the database effectiveness with the list of critical defects along with their magnified areas; and

communicating the tabulated results and the database to an external interface or printing them for use by the quality assurance team to tweak the manufacturing process.

5. A method of claim 4 , wherein the measurements of features or defects includes changing of measurement gauge to suit the defect type.

6. A method of claim 4 , wherein the measurements of features or defects includes capturing of images of defects under multiple magnification settings for specific defect type.

7. A method of claim 4 , wherein the measurements of features or defects includes utilising different optical filters mounted on a Rotary wheel to enhance features on contact lenses.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 30, 2023
From: MOHAMED, YA'AKOB BIN; TAN, BEE CHUAN
To: EMAGE VISION PTE. LTD
Reel/Frame 064749/0368 →
Priority Claims (1)
SG 10202010191P · Oct 14, 2020 · national
Continuity (1)
Related Publication 20220178787A1 · Jun 9, 2022