Mechanically Stirred Glass Bioreactor NMSGR-100 offers a total volume of 2L, ensuring reliable performance. It provides precise temperature control within a range of 4 to 60°C. This reactor includes a double-jacketed glass vessel for enhanced chemical and thermal resistance. It comes with a 10-inch LCD for real-time monitoring. Our unit also incorporates a sterile aeration system with a ring sparger and sterile filters to ensure clean gas flow.
Mechanically Stirred Glass Bioreactor NMSGR-100 provides precise control of environmental conditions for optimized biological reactions. It is applied in biotechnology, pharmaceuticals, and research laboratories.
FAQ for Mechanically Stirred Glass Bioreactor NMSGR-100
1: What is the total and working volume of the Mechanically Stirred Glass Bioreactor NMSGR-100?
The Mechanically Stirred Glass Bioreactor NMSGR-100 has a total volume of 2 L with a working volume range of 0.6 to 1.4 L. This ensures sufficient space for various biological reactions. Users can efficiently optimize culture volumes for experiments.
2: What temperature control range does the reactor offer?
This bioreactor delivers precise temperature control from 4 to 60°C. This allows users to maintain optimal conditions for different cell cultures. Accurate thermal regulation ensures reproducible experimental results.
3: What type of monitoring interface does the NMSGR-100 have?
The Mechanically Stirred Glass Bioreactor NMSGR-100 features a 10-inch LCD touchscreen for real-time monitoring of all parameters. This allows easy observation and control during experiments. The interface improves usability and reduces the risk of errors.
4: How does the reactor handle aeration and sterile gas flow?
It uses a ring sparger and sterile filters for clean gas delivery. The system maintains sterile conditions while ensuring efficient aeration. Users can perform experiments without risk of contamination.
5: Does the bioreactor support pH and DO control?
Yes, it provides pH control from 2.00 to 12.00 and DO control from 0 to 150% ±3%. Automatic PID control ensures accurate regulation of both parameters. Users can maintain optimal conditions for sensitive biological reactions.