To measure your body weight accurately and also record the ups and downs of your weight we need to calibrate your scale. When it comes to Taylor scales they are one of the best brands out there in the market.
So spending your money on a good scale-like Taylor is like an investment. It does not matter which country you are in and what kind of measuring you want this scale has it all. It is very important to calibrate your scale before you use it at home.
That’s why you need to know how to calibrate a Taylor scale at home in the easiest way and you will find that solution in this article. So read the whole thing for a better understanding of calibration and its importance.
What Is Calibration?
As we know all measuring and testing equipment we use in our daily life need to send to a calibration lab or if someone knows the way to calibrate they can do it by themselves. So calibration is considering a comparison of instrument performance to the standards of known accuracy.
It directly links the customer’s measurement of equipment to national and international standards. That’s why in a scale you can select the scale according to kilogram, pound, grams, ounce, etc. according to your preference.
Importance Of Calibration
The first point of calibration is to determine the accuracy and validity of measuring equipment like a scale. Because we always need to know and check how accurate a certain result is.
We also need to know if any adjustment is made to the measuring equipment. From the calibration certificate, we can determine whether our measuring equipment has been adjusted to provide measurement results closer to the actual value or not.
If you want to identify error for tolerance comparison and determine a correction factor to apply. For this, we need to know and justify how significant the error is affecting our measurement results.
Another important fact about calibration is to determine measurement uncertainty. Calibration results inform us of its measurement uncertainty.
Calibration allows us to have decision-making to retain or dispose of the measuring equipment. From the calibration results, we can determine the stability of our equipment. If you think the equipment is not giving consistent results and no point to apply for the correction factor so then you can decide to dispose of it or retain it for other purposes where accuracy is not a requirement.
How To Calibrate A Taylor Scale
Most modern scales calibrate themselves when they shut off as long as they are kept in the same place. So all you have to do is just step on the Taylor scale to weigh in. but if you pick the scale-up or store it away you need to set the scale on a hard flat surface and press the scale awake and wait for the scale’s display to read zero before weighing yourself.
Otherwise, your reading may include not only your weight but also the weight of the scale itself. Throwing your measurement off by about five pounds. If you’re still having problems with fluctuating measurements then it’s possible the ‘wang sensor’ has been damaged.
For this reason, the Taylor scale gives you a guarantee for situations like this as it requires a product replacement such as a faulty sensor. So if you are having problems calibrating your Taylor scale check out with the manufacturers.
A professional calibration process includes the step discussed below:
Step 1: Preparations
- Clean the scale and visually check the scale’s condition
- Now clarify the scale’s technical specifications and calibration procedure
- Let the scale warm up and check if it has accurately calibrated reference weights available
- The weighing scale should be at a horizontal level. Pre[test by placing weights close to the maximum of the range on the instrument to ensure it works normally
Step 2: Eccentricity Test
This test is performed to test the effect of the location on the load. Place the reference weight in specified locations. The test load should be at least one-third of the max load of the weighing scale.
Use the same load through the test. Move the load between locations 1-5 and record the indication. Finally, place the test load on location 1 and check it for drift.
Step 3: Repeatability Test
When the same load is measured many times, the result might not always be the same. To find out the repeatability test is done. Place the same load in the exact place on the load receptor multiple times during constant conditions with identical handling.
The scale has to be zeroed first. Then the load should be placed on top of the receptor and indication is recorded once it is stabilized. The load is then removed and zero indication is checked and zeroed if necessary. Then the load is placed again. And so on. The repeatability test is normally done by repeating the measurement at least 5 times.
Step 4: Weighing Test
The reason for a weight test is to measure the accuracy of the weighing scale throughout its whole range in several steps, with increasing and decreasing weight. Start by zeroing the scale without any load.
Set loads of the first test point, wait for it to stabilize, and record the indication. Keep increasing the loads through all the increasing test points. When the maximum load is recorded, start decreasing the loads by decreasing the test points.
Step 5: Minimum weight Test
This test is required within some industries, like the pharmaceutical industry. The purpose of this is to find the smallest load it can record while still giving reliable results. The smallest test load is then measured multiple times to find the accuracy of the instrument with a small load.
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If you’ve read the whole thing carefully you must know now How To Calibrate A Taylor Scale and all the related things about calibration.
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