Advanced nasal oxygen catheter tester equipment
Whats/App: +86 156 1874 6768
Web: standard-groups.com
Standards
YY/T 1543 - 2017:Nasal Oxygen Cannula
GB/T 1962.1-2005:Conical fittings with a 6%(Luer) taper for syringes, needles and certain other medical equipment -- Part 1: General requirement
Features
• Supports five major testing functions: airflow resistance, crush resistance, leak testing, and pressure resistance.
• 7-inch color touchscreen control with an intuitive interface for a significantly improved user experience.
• The device is equipped with a miniature printer for real-time printing of test results.
• Equipped with a high-precision pressure sensor, allowing for stable control of output pressure via a rotating pressure knob.
• Equipped with a high-precision flow meter for accurate measurement of flow through the tubing.
• Unique rotary design accommodates crush resistance testing of nasal oxygen tubes with various inner diameters.
• Features a universally designed conical test interface, meeting the testing requirements of most products on the market.
• The device has powerful built-in data storage capabilities.
• Miniature printer and universal USB data interface for convenient data output and transfer.
• Intelligent features such as overload protection and power-off memory effectively ensure user safety.
• Free software upgrade service is provided.
Technical Parameters
| Parameter | Specification |
|---|---|
| Test Pressure Range | Usually covers 0 - 600kPa or higher, to meet testing requirements of nasal oxygen tubes with different specifications and materials |
| Test Flow Range | Simulates normal oxygen supply flow (e.g., not less than 15L/min), ensuring air permeability of nasal oxygen tubes in actual use |
| Accuracy | High level of accuracy; e.g., pressure accuracy reaches ±1% or higher, ensuring test result accuracy and reliability |
| Data Collection and Display | Equipped with data collection card and display screen, which collect and display real-time test data (pressure, flow rate, time, etc.) for easy observation and recording |
| Clamping Device | Fixes nasal oxygen tubes to keep their position stable (no displacement/shaking during testing); adaptable to nasal oxygen tubes of different specifications and shapes |
| Operation Interface | Simple and clear for easy operation; some testers are equipped with touch-screen control and menu-style functions to improve operational convenience |
Accessoriess
1 main unit;
1 set of testing software;
1 instruction manual;
1 certificate of conformity;
1 warranty card;
1 delivery receipt;
1 nameplate;
1 power cord;
1 set of wrenches;
Several brochures;
1 x 1/8 barbed connector;
1 x 1/8 Luer connector (male).
Test Procedures
1. Pre-test Preparation
Check that the instrument's power supply and pipeline connections are normal, start the instrument and preheat it to a stable working state.
Calibrate the pressure and flow sensors (refer to the instrument calibration guide) to ensure that the detection accuracy meets the requirements.
Clean the fixtures and pipelines of impurities, prepare the nasal oxygen cannula samples to be tested, and record the basic information of the samples, such as specifications and materials.
2. Sample Installation
Connect the nasal oxygen cannula sample to the corresponding pipeline interface of the instrument, and use a special fixture to fix both ends of the sample, ensuring that the connection is sealed without leakage and that the sample is not bent or displaced.
3. Test Parameter Setting
Through the instrument's touch screen interface, select the target test item (such as airflow resistance, pressure resistance, leakage test, anti-flattening performance, etc.).
According to the corresponding standard for nasal oxygen cannulas (such as YY/T 1543-2017), set the corresponding test parameters (such as test flow rate, pressure threshold, pressure holding time, etc.), and save the parameters after confirmation.
4. Starting the Test
After confirming that the sample connection and parameter settings are correct, click the "Start" button. The instrument will automatically execute the test process, collecting and displaying data such as flow rate, pressure, and time in real time.
5. Test Process Monitoring
During the test, observe the data changes on the instrument interface and the sample status. If any abnormalities such as loose pipelines or leaks occur, pause the test immediately and handle the issue.
6. Test Completion and Cleanup
After the test is completed, the instrument will automatically shut down. Record or export the test data (such as airflow resistance value, pressure resistance results, etc.).
Loosen the fixture and remove the sample, clean the fixture and pipelines, turn off the instrument power, and prepare the test report.
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