Product Description
Featuresnote1
Batch Testing
- Equipped with fully-automatic gravity fed sample feeder, which is Labthinks latest scientific and technological achievement that can facilitate continuous testing of 20 to 120 samples.
- A & B dual-channel design can test samples of two different specifications simultaneously.
- The target vacuum degree can be set by the operator to meet testing requirements of different samples.
- Dual methods of vacuum decay and pressure decay provide the flexibility to accommodate various types of package samples.
Precise Data
- Advanced pressure detection technology, using world renowned components for data stability which is not affected by ambient environment.
- Advanced microflow automatic flow control technology that can accurately simulate different sizes of leakage holes without manual adjustment.
- Both the differential pressure transducer and flow meter are traceable to NIST.
- The system can achieve a higher test repeatability of 1um.
Intelligent Control
- 15.6" embedded touch tablet computer with Windows OS.
- New longitudinal interface layout, and easy to use graphic user interface.
- Automatic alarm, automatic capture, automatic collection of unqualified samples.
- The pressure curve is displayed in real time, and the test results are counted automatically.
- Leakage rates are calculated automatically.
- The system is equipped with various sensors as intelligent reminders for safer operation and control.
- Universal printer can be connected for test results output.
- The system features embedded with USB and network ports to facilitate the external access and data transmission of the system, which can be upgraded remotely
Security Compliance
- Verified by compensation and calibration methods.
- The leak tester meets GMP requirements for data traceability and meets the needs of the pharmaceutical industry.
- User operation permission is managed at multiple levels, and the permission content can be configured on demand.
- Electronic signature is designed according to the standard requirements of 21 CFR Part11.
Test Principle
The sample is placed in the sample feeder and automatically delivered into the test cell. The leak rate and other results can be calculated and obtained by analyzing pressure changes measured by the sensor.
Reference Standards
ASTM F2338, YY-T 0681.18, and USP<1207>
Applications
| Basic Applications |
Vials |
Various vial sealing test. |
| Extended Applications |
Ampoule |
Various ampoule bottle sealing tests. |
| Cartridge Bottles |
Various cartridge bottle sealing tests. |
| Injection bottles |
Various injection bottles sealing test. |
Technical Parameters
Table 1: Test Parameters Note2
| ParameterModel |
C690H |
| Testing Range |
um(Reference aperture size USP1207) |
3i8igreat leakage |
| Detection Lower Limit |
um |
3 |
| Resolution |
um |
0.1 |
| Repeatability |
um |
1 |
| Pressure Range |
kPa |
-100i0ii14100 |
| Extended Functions |
21 CFR Part11 |
Optional |
| GMP computer system requirements |
Optional |
Table 2: Technical Specifications
| Testing Cell |
1 set for A group and 1 set for B group |
| Sample Feeder |
1 set for A group and 1 set for B group |
| Sample Size |
I45 mm80mmNote3 |
| Sample Quantity |
20120 pieces |
| Gas Specifications |
Compressed Air (Gas source is provided by the user) |
| Gas Source Pressure |
40.6 PSI / 500 kPa |
| Port Size |
I6 mm Polyurethane tube |
| Dimensions |
33.4 H x 19.6 W x 28.7 D (85cm 50cm 73cm) |
| Power |
120VAC10% 60Hz / 220VAC10% 50Hzi14select one from the twoi14 |
| Net weight |
209Lbs (95kg) |
Product Configuration
| Standard Configuration |
Mainframe, embedded tablet computer, software, flow meter, European vacuum pump, I6 mm polyurethane tube |
| Customization |
Test cell and sample feeder of group A, test cell and sample feeder of group B, negative standard reference sample and positive standard reference sample designed according to sample specifications |
| Optional Parts |
GMP computer system requirements, 21 CFR Part11, air compressor, IQ/OQ/PQ documents |
Note 1: The described product characteristics are subject to the specific annotation of the "Technical Parameters" table.
Note 2: The parameters in the table are measured in the Labthink laboratory by professional operators according to the requirements and conditions of the relevant laboratory environmental standards.
Note 3: Group C test cell can be customized for samples beyond the "Sample Size", but the lower detection limit and test range will change according to the sample size, and the actual delivery shall prevail.
Precision Leak Testing for Electronic ComponentsUtilizing vacuum and pressure decay methods, this detector ensures precise, non-destructive leak analysis for electronic modules, sensors, and components. High precision sensors deliver fast results-less than one second response time-while maintaining accuracy within 0.5% F.S. The adjustable test range (0.5 to 6 bar) and specimen compatibility (10 mm to 120 mm) support versatile applications across manufacturing and quality control processes.
Advanced Control and Data ManagementEquipped with a microcontroller-based system, the detector provides both automatic and semi-automatic operation. The digital touchscreen interface is intuitive, supporting multiple languages and simple menu navigation. Test results (up to 100 records) are easily exported via RS232, USB, or optional Ethernet, facilitating traceability and integration with existing data management systems. Maintenance is straightforward with accessible front service entry.
Robust and User-Centric DesignConstructed from corrosion-resistant stainless steel, the detector offers IP54 protection and operates quietly at under 70 dB(A). It features a customizable pedestal, an external printer port, and barcode capability for optimized workflow. The system is supplied with a calibration certificate, and all test parameters are user-selectable, ensuring it meets varied compliance and operational requirements.
FAQ's of Vacuum and Pressure Decay Non-Destructive Leak Detector for Electronic component Product Integrity:
Q: How does this leak detector enhance electronic component product integrity?
A: The detector identifies even minute leaks using precise vacuum and pressure decay methods, preventing defective components from entering the supply chain and ensuring reliable operation of electronic modules and sensors.
Q: What is the typical process for performing a leak test on electronic components with this device?
A: Simply place 1 to 4 specimens in the chamber, select test parameters, and initiate the cycle via the interface. The device automatically conducts the vacuum or pressure decay test, then provides visual and audible alarms if any leaks are detected.
Q: When should the calibration of the detector be performed and how is it documented?
A: Calibration frequency depends on internal quality schedules or after significant usage. Users can calibrate the unit themselves, with the system recording user actions and providing a calibration certificate for compliance documentation.
Q: Where can the collected test data be exported for further analysis?
A: Test results can be exported through RS232, USB, or Ethernet connections. The device also supports external printer and barcode systems, allowing integration with most production or quality management platforms.
Q: What benefits does the system's user-friendly software and multi-language support offer?
A: The intuitive interface simplifies operation and reduces training time, while multi-language support ensures usability across international teams, increasing productivity and minimizing user errors.
Q: Which types of electronic components and modules are suitable for testing with this detector?
A: The system is designed for a wide range of electronic components, including modules and sensors, with adjustable specimen sizes from 10 mm to 120 mm, supporting both small-scale and larger items.
Q: How does the adjustable cycle time and automatic/semi-automatic operation improve production efficiency?
A: Operators can tailor the test cycle to product requirements (15-60 seconds), minimizing downtime and maximizing throughput. Automatic or semi-automatic modes adapt to different production line setups, supporting flexible and continuous testing.