
The Continuous Bioaerosol Sampler represents a cutting-edge advancement in environmental monitoring technology, specifically designed to capture and analyze airborne bioaerosols with precision and efficiency. Developed by SUZHOU CHANGHE BIOTECH CO., LTD, this device leverages innovative wet-cyclone technology to ensure reliable, long-term sampling in diverse environments. Whether in industrial, healthcare, or educational settings, the Continuous Bioaerosol Sampler addresses critical air quality challenges with its robust design and advanced features.
The Continuous Bioaerosol Sampler is engineered to meet the demands of modern air quality monitoring. Its standout features include:
LCA-1-300 is a prime example of how the Continuous Bioaerosol Sampler integrates these features to deliver exceptional performance. Its ability to operate continuously while maintaining safety and efficiency makes it an ideal choice for industries requiring rigorous air quality control.
The versatility of the Continuous Bioaerosol Sampler allows it to be deployed in a wide range of applications, including:
The Continuous Bioaerosol Sampler is particularly effective in environments where airborne contaminants pose significant risks. For instance, in the pharmaceutical industry, its ability to maintain sterile conditions is critical for product integrity and regulatory compliance. Similarly, in hospitals, the device plays a vital role in preventing the spread of infectious diseases.
The LCA-1-300 Continuous Bioaerosol Sampler is equipped with advanced technical specifications that ensure optimal performance. Below is a detailed overview of its parameters:
| Model | LCA-1-300 |
|---|---|
| Sampling Techniques | Wet-cyclone technique (Impact method) |
| Air Flow Rate | Low 150L/min; High 300L/min |
| Collect Particle Size | ≥0.8μm |
| Collection Efficiency | D50 |
| Size | 220850mm (Diameter Height) |
| Weight | <8000g |
| Input Power | 24V 3A power adapter |
| Parameters Setting | Sampling mode, sampling time predetermined, flow value, etc. |
| Ambient Temperature Of The Device | 4℃~60℃ Humidity ≤ 98%RH (No Frosted) |
The LCA-1-300 is designed to handle a wide range of sampling scenarios. Its high air flow rate of 300L/min ensures that even low concentrations of bioaerosols are captured effectively. The device's collection efficiency, with D50
Founded in SUZHOU CHANGHE BIOTECH CO., LTD, the company has established itself as a leader in environmental monitoring solutions. With a focus on innovation and quality, the company develops products that meet the highest standards of performance and reliability. Their commitment to research and development ensures that their technologies remain at the forefront of the industry.
The Continuous Bioaerosol Sampler is a testament to the company's dedication to addressing critical air quality challenges. By combining advanced engineering with user-friendly design, SUZHOU CHANGHE BIOTECH CO., LTD. provides solutions that are both effective and accessible.
The Continuous Bioaerosol Sampler is a vital tool for maintaining air quality in various environments. Its advanced features, including continuous operation, safe wet-cyclone technology, and adaptability to harsh conditions, make it an indispensable asset for industries that prioritize health and safety. With its wide range of applications and robust technical specifications, the device is well-suited to meet the demands of modern air quality monitoring.
For more information about the LCA-1-300 and other products from SUZHOU CHANGHE BIOTECH CO., LTD, visit their official website. Their commitment to innovation and quality ensures that their solutions are reliable and effective for a variety of applications.
For authoritative information on standards and measurements related to air quality monitoring, refer to the National Institute of Standards and Technology (NIST). While the specific page referenced in the context could not be found, NIST provides comprehensive resources on measurement science and standards that are critical for the development and validation of environmental monitoring technologies.
References: