Case Study: Telecentric Measurement System for Medical Tubing Dimensions

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2026/06/24

author:POMEAS

I. Testing Background:

 

 

1. Test Object: Transparent medical tubing, approximately 5 mm in diameter

 

2. Requirements: A high-precision measurement system is required to measure the tubing’s diameter and ensure stable and accurate results.

 

3. Inspection Challenges:

 

① Manual visual inspection leads to missed defects and significant errors; traditional equipment, which inspects only a single parameter, is extremely inefficient;

② The transparent, reflective nature of the tubing makes edge detection difficult and results in large dimensional fitting errors;

③ With numerous overall parameters and irregular shapes, it is difficult to perform simultaneous full-dimensional inspection;

④ Data is not traceable and is susceptible to tampering, which does not comply with GMP.

 

 

 

II. Solutions

 

 

The HM series uses a Telecentric Measurement System to inspect medical tubing. It supports field-of-view measurements ranging from 6 mm to 120 mm, accommodating the inspection of tubing in a wide range of sizes. The system combines a parallel light source with a high-magnification lens and a high-frame-rate camera to clearly capture the tubing’s contour edges. Paired with our proprietary OPMS software, it offers simple operation and powerful functionality, enabling precise measurement of tubing dimensions.

 

 

 

III. Testing Methods

 

 

Place the medical tubing on the inspection platform of the Telecentric Measurement System, program the system to measure the corresponding dimensions, click “Acquire,” and the inspection is complete. The dimensional results are displayed intuitively, and identical products can be inspected quickly without any additional steps—simply replace the product on the platform.

 

 

 

IV. Advantages of the Proposal

 

1. The measurement system features high accuracy, strong stability, and good repeatability, with excellent long-term operational consistency.

2. The equipment has strong resistance to interference and good environmental adaptability, maintaining reliable output even under complex operating conditions.

3. The measurement process is highly automated and easy to operate, reducing human error and improving testing efficiency.

4. Data is real-time, accurate, and traceable, meeting quality control and traceability requirements.

5. We provide comprehensive hardware and software solutions with guaranteed quality, safety, and reliability.

 

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