The Continuous Bioaerosol Sampler is a high-precision environmental monitoring solution engineered for 24/7 operation. Utilizing advanced wet-cyclone impact technology, this device ensures the efficient capture of airborne pathogens and microorganisms from ambient air, providing a critical line of defense for contamination control in sensitive environments.
Designed for versatility and durability, the system allows for autonomous, long-term sampling in diverse conditions—from controlled laboratory settings to challenging outdoor fields. With a focus on high-volume throughput and exceptional sensitivity, it transforms complex bio-monitoring into a streamlined, one-click automated process, ensuring regulatory compliance and public safety.
Detailed Parameters
| Model | LCA-1-300 | Sampling Technique | Wet-cyclone technique (Impact method) |
|---|---|---|---|
| Air Flow Rate | Low 150L/min; High 300L/min | Particle Size | ≥0.8μm |
| Dimensions | 220850mm (Diameter Height) | Input Power | 24V 3A power adapter |
| Ambient Temp | 4℃ ~ 60℃ | Humidity | ≤ 98%RH (Non-frosted) |
| Settings | Sampling mode, time, flow value, etc. | Compliance | ISO, CE Standards |
Key Advantages
Wet-Cyclone Tech
Applied wet-cyclone technology ensures pathogens are efficiently sampled from ambient air with high stability.
48h Continuous Run
Engineered for non-stop operation up to 48 hours, providing uninterrupted bioaerosol monitoring.
One-Click Automation
Save time with automated workflows; start complex sampling protocols with a single click.
Weather Adaptable
Rugged design allows for long-term field sampling without fear of wind, rain, or temperature fluctuations.
High Sensitivity
Capable of detecting low concentrations of microorganisms, ensuring accurate risk assessment.
Portable & Compact
Easy to transport and deploy across various sites, from hospitals to industrial warehouses.
Product Gallery
Management Platforms
Real-Time Monitoring
Immediate data analysis and reporting to identify contamination risks as they occur.
Parameter Control
Intuitive interface for adjusting air volume, sampling time, and operational modes.
Automated Logging
Built-in data logging automatically stores results for comprehensive air quality records.
Cloud Integration
Seamless integration with on-site or cloud systems for remote data access and analysis.
Flexible Powering
Supports both battery power for mobile use and AC power for continuous station setups.
Maintenance Alerts
Low-maintenance design with easy-to-clean components to ensure peak performance.
Investment Return Comparison
| Feature | Manual Sampling | Continuous Sampler |
|---|---|---|
| Labor Cost | High (Manual shifts) | Low (Automated) |
| Detection Rate | Intermittent/Random | Constant/Real-time |
| Data Accuracy | Prone to human error | High precision logging |
| Response Time | Delayed (Lab results) | Rapid (Immediate insights) |
| Risk Mitigation | Reactive approach | Proactive prevention |
Frequently Asked Questions
Wet-cyclone technology uses centrifugal force to concentrate airborne particles into a liquid medium, which prevents the desiccation of microorganisms and improves the viability of samples for subsequent laboratory analysis.
It is ideal for hospitals, pharmaceutical cleanrooms, food manufacturing plants, laboratories, and public venues like shopping malls or airports where air quality and pathogen control are critical.
Yes, the device is specifically designed to be adaptable, allowing for long-term field sampling without being affected by wind and rain, making it perfect for agricultural or environmental monitoring.
By drawing a larger volume of air (up to 300L/min), the sampler increases the statistical probability of capturing rare or low-concentration bioaerosols, significantly improving the sensitivity of the detection process.
Yes, our continuous bioaerosol samplers are designed to comply with recognized international standards such as ISO and CE to ensure reliability and safety in professional environments.
The device is designed for low maintenance. Periodic cleaning of the collection components and replacement of filters or collection media according to the sampling frequency is generally all that is required.
