Showing posts with label Measuring. Show all posts
Showing posts with label Measuring. Show all posts

Tuesday, December 3, 2013

Optician's Utility for thickness & diameter calculation

We, the optician’s are always having troubles to explain to customers about different types of lens indexes. There are some displays which can show to the patient about various thickness according to different index selection. Most of the time it will work fine. But as you know, thickness will vary according to the diameter too. And most of us need to have a diameter chart in hand to check the diameter.
Here, I am giving you a small excel file which will help you to fine out the minimum required diameter...
This excel sheet has three sections, and the third section will help you to find the diameter with simple steps

The first section will help you to find the thickness of a lens according to its index and diameter.

And the second section will help you to have an idea to compare the thickness difference between CR-39 and other index (it will show in percentage)


click the above link and got to the menu file>download

Let me have your feedback and suggestions… 

Monday, August 8, 2011

How to use a Lens clock to determine the base and the power!


A lens clock is a mechanical dial indicator that is used to measure dioptric power of a lens. A lens clock measures the curvature of a surface, but gives the result as an optical power in diopters, assuming the lens is made of a material with a particular refractive index.

It is called as Geneva Lens Gauge, Lens measure or Lens Clock

Appearance
The lens clock has 3 legs

  • ·         The 2 outside legs do not move
  • ·         The center one moves in and out
  • ·         The difference in height position of the center leg and the 2 outside leg is sag for the arc of a circle
**Doesn’t show the actual sag measurement but shows the dioptric value for the surface power

Using The Lens Clock

  • ·         Place the clock on a flat surface, so that all 3 pins are equal, your clock should measure zero– If not, your lens clock is defective
  • ·         The lens clock must be held perpendicular to the surface of the lens
  • ·         Tilting the clock by 10° from the perpendicular, can create as much as 2 diopters of error in your reading.

Base Curve Determination

  • ·         Defined as the beginning curve upon which the net power is based
  • ·         The lens clock can be used to measure this
  • ·         Modern lenses have spherical front surfaces (F1)– The base curve will be the lens clock reading  of the front surface of the lens
  • ·         Back surface is called (F2)

  • ·         When measuring the F1 of the lens, you will need to read the black scale
  • ·         When measuring the F2 of the lens, you will need to read the read scale

  • ·         If there are more than 1 curve on the front surface, the lens is either warped or is a plus-cylinder lens form
  • ·         The base curve is the least curved of the 2 readings

Index

  • ·         The lens clock is designed for materials where n = 1.53 (crown glass)
  • ·         Measuring a lens where n > 1.53 – The lens clock will read too LOW
  • ·         Measuring a lens where n < 1.53 – The lens clock will read too HIGH


Nominal Power of a Lens
Since the lens clock directly measures the surface values of a lens, we can use it to approximate the power of lenses
– Only works for materials with index of refractions close to 1.53


  • ·         F1 measures +6.00D
  • ·         F2 measures -4.00D
  • ·         Ft = +2.00D (Power)

Power Determination
The lens clock can be used to measure sphere and cylinder power
1. Hold the lens clock so that the center leg is at the center of the lens and perpendicular to the lens surface
2. Rotate the lens clock around the center leg
3. If the needle on the lens clock remains unchanged, the surface is spherical
4. If the needle shows a change in value, the surface is toric with 2 separate curves
5. Read the maximum and minimum values
(The orientation of the three legs where the maximum and minimum readings are will correspond to the major meridians of lens power)

·         Modern lenses are of Minus cylinder form. So while measuring the power of the lens you might find cylinder in F2 and the F1 will always be SPHERICAL

1.      When rotating the lens clock on the front surface of a lens, all meridians read +4.00D. On the back surface, the clock reads -6.25D Then the power will be
(+4.00) + (-6.25) = -2.25D
2.      When rotating the lens clock on the front surface of a lens, all meridians read +6.50D. On the back surface, the clock reads -7.50D when the 3 legs are along the 180° meridian, and -6.00D when the 3 legs are along the 90°meridian.  Here you can calculate the nominal power of the lens if the lens made in minus cylinder form as given below.


Ref: Dr. Long D. Tran, Wikipedia

Thursday, July 28, 2011

VISIOFFICE - Essilor

VISIOFFICE® SYSTEM – THE MOST UNIQUE, INTERACTIVE MEASURING AND SALES TOOL AVAILABLE TODAY

Deliver the most precise, individualized visionVisioffice is the first and only universal measuring system that allows you to obtain every possible parameter needed for today's individualized lenses.
Only the Visioffice system measures a revolutionary new parameter—the real 3D position of the Eye Rotation Center for each eye—so you can dispense Essilor's unique eyecode™ lenses.
With eyecode lenses, your patients get the most precise vision possible, no matter where they look through the lens—instantly and effortlessly.
An all-in-one system for a full range of measurements for every patient — from single vision to the most sophisticated progressive designs:

  • Eye Rotation Center: Each of our eyes rotates around a fixed point called the Eye Rotation Center (ERC). Only Visioffice measures the real 3D position of each eye's unique ERC to create the most individualized lenses possible—eyecodelenses
  • Natural head posture: Is unique to each person and can vary widely, impacting lens performance
  • Eye position: Monocular PDs, fitting heights Wearing parameters: Vertex distance, wrap angle, pantoscopic angle
  • Visual behavior: Natural head posture and head/eye movements are measured and recorded
  • Frame measurements: A and B measurements, DBL

THE VISIOFFICE SYSTEM DOES SO MUCH MORE.


CREATES POSITIVE PATIENT EXPERIENCES:
  • Allows you to dispense eyecode lenses for the most individualized lenses possible
  • Performs quick, easy, accurate measurements for all patients and lens types
  • Patient education modules highlight benefits of products and technology
  • Enhances patient relationships with interactive selling tools, like lens and frame selection options
SETS YOUR PRACTICE APART:
  • Increases loyalty and generates referrals for your practice
  • Only system that measures ERC to create eyecode lenses
  • Innovative technology impresses patients and enhances your practice's professionalism
  • Individualized solutions help reinforce you and your staff's recommendations

Equipment Specifications

Flexible: The Visioffice system is available in 2 formats—column or tabletop—that easily adapt to your office’s layout. You can:
  • Take measurements and perform demonstrations directly from the Visioffice system
  • Record and perform up to 20 measurements
Fully integrated: The Visioffice system is designed to evolve along with your practice
  • Instantly exchange data with your computer
  • Receive regular software updates via the Internet

credit:  essilorvisioffice