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The PS-CB101 High-Voltage Switch Mechanical Characteristic Tester is a professional-grade diagnostic instrument engineered for the precise analysis of circuit breaker performance. Powered by an industrial-grade embedded computer based on the Cortex™-A8 processor with a 1GHz clock speed, this device ensures rapid deployment with a boot time of just 16 seconds, providing critical data for SF6 switches, GIS equipment, vacuum switches, and oil switches.
Designed for rigorous on-site environments, the PS-CB101 features an intuitive 8.4-inch color touchscreen interface and a built-in high-speed thermal printer for immediate documentation. With its integrated adjustable DC power supply (5-270V) and advanced sensor compatibility, it eliminates the need for external power sources, allowing operators to conduct comprehensive mechanical characteristic tests and low-voltage operation analysis with unmatched efficiency.
| Time Measurement Range | 0.01ms ~ 20s (Internal trigger) | Resolution (Time) | 0.01ms (Trigger) / 0.1ms (Empty) |
|---|---|---|---|
| Accuracy (within 1000ms) | 0.05% ± 1 word | Linear Sensor Range | 0-50mm (Resolution: 0.1mm) |
| Angle Sensor Range | 0-1000mm (Resolution: 0.25°) | Acceleration Sensor | 0-300mm (Resolution: 0.1mm) |
| DC Power Output | DC 5~270V continuously adjustable | Max Current Display | 30A (Resolution: 0.01A) |
| Operating Environment | -20℃ to +50℃ / Humidity ≤ 90% | Host Dimensions | 360 × 260 × 170mm |
Equipped with an internal anti-interference circuit, ensuring reliable operation even in demanding 500KV substation environments.
Industrial Cortex-A8 core allows a 16-second boot time and instant data acquisition upon a single switch action.
Built-in adjustable DC5~270V power supply eliminates the need for secondary external power on-site.
Large 8.4-inch color touchscreen with Windows OS supporting bilingual input for seamless operator control.
Simultaneously measures 12 metal contact fractures (6 main and 6 auxiliary) for complete mechanical mapping.
Supports USB storage and internal memory for 30,000 data groups, facilitating easy computer-based analysis.
Efficiently catalog and track the mechanical health of multiple circuit breakers across different substations.
Analyze vibration frequency and envelope curves to optimize switch mechanical settings.
Detect abnormal bounce times or stroke deviations before they lead to catastrophic equipment failure.
Generate standardized reports for regulatory compliance in high-voltage electrical installations.
Store up to 30,000 test records with real-time timestamps for historical trend analysis.
Upload U-disk data to centralized computers for professional engineering review and preservation.
| Feature Metric | Traditional Manual Testing | PS-CB101 Automated System |
|---|---|---|
| Setup Time | 60-120 Minutes | Under 20 Minutes |
| Data Accuracy | Subject to Human Error | 0.05% Precision |
| Analysis Depth | Basic Timing Only | Full Envelope & Vibration Curve |
| Power Requirement | External Secondary Power | Integrated Adjustable DC Supply |
| Reporting Speed | Manual Entry (Hours) | Instant Thermal Printing (Seconds) |
The PS-CB101 is versatile and suitable for all types of SF6 switches, GIS combination electrical appliances, vacuum switches, and oil switches produced both domestically and internationally.
It is equipped with a specialized internal anti-interference circuit specifically designed to maintain high signal integrity and reliability within 500KV substation environments.
Yes, because the integrated power supply allows the operating voltage of the opening and closing coils to be set arbitrarily (DC 5-270V), low-voltage operation testing is fully supported.
The host can store 30,000 groups of test data internally (expandable via memory card). Data can be exported directly via a U-disk interface for computer analysis.
The device comes equipped with linear sensors, rotation sensors, and universal sensors, along with special multifunctional joints for simple and convenient installation.
Yes, it provides comprehensive graphics for every action, including the envelope curve and vibration frequency analysis to compare against standard performance values.