Microbial Fermentation
Cultivation of bacteria, yeast, and fungi for research and scale-up, with precise pH/DO and temperature control.
Bioreactors I Fermenters
Display
7inch Wide Touch TFT LCDAgitation RPM
10 ~ 1500rpmMotor drive
AC Servo Motor, BLDC MotorSensor
Basic (Temp, pH, DO, Anti Foam, ORP) Optional(OD, O2, CO2, MFC, MFM)Temp Control Type
Electric heater-based temperature controlPower Requirements
AC110~220V, 50/60HzMax. Noise Level
<55dB(A)Fuse protection
10AWeight
10KgAdvanced Precision for Microbial & Cell Culture Applications
Simple calibration of pH, DO, temperature, and bubble detection sensors.
Suitable for small laboratories, offering versatile culture experiments.
Intuitive control display for simple operation and monitoring.
Designed for various microbial and cell culture experiments in research environments.
Available from 250 mL to 15 L in different configurations (single wall, single round, bowl, double jacket).
Easily connect external equipment such as O₂/CO₂ analyzer, gas mixer, scale, level sensor, external pump, or analog printer.
Self-diagnosis and process monitoring system with real-time data recording and control.
Manage all experimental data through a multi-channel PC network.
Simple fermenter port and vessel design for quick installation and cleaning after cultivation.
Category | Specification |
---|---|
Control System | Touchscreen Controller — MICOM-based control for reliability; simple calibration and monitoring functions. |
Data & Monitoring | Real-time data recording and process control; USB data backup; multi-channel networking via PC. |
Agitation System | Top Drive: low-speed, stable, quiet — ideal for cell culture. Bottom Drive: magnetic drive, contamination-free — ideal for microbial culture. |
Process Control | DO Cascade (automatic dissolved oxygen control); compatible with DO-stat, pH-stat, exponential feeding. |
Vessel Options | 250 mL to 15 L; configurable as single wall, single round, bowl, or double jacket. |
External Integration | O₂/CO₂ Analyzer, Gas Mixer, Scale, Level Sensor, External Pump, Analog Printer. |
Structure | Compact footprint for laboratory use; easy port design for installation and cleaning. |
Materials | SUS316L stainless steel; precision-machined parts; high durability and corrosion resistance. |
From microbes to mammalian cells: scalable solutions for modern bioprocessing
The BIOCANVAS supports diverse bioprocesses with flexible hardware and advanced automation. Below are the primary application domains and example use cases.
Cultivation of bacteria, yeast, and fungi for research and scale-up, with precise pH/DO and temperature control.
Low-shear mixing for mammalian, insect, and plant cells; compatible with serum-free and perfusion strategies.
Advanced feeding modes (DO-stat, pH-stat, exponential) to maximize titer and productivity with tight control loops.
Process development and scale-up for vaccines, therapeutic proteins, and monoclonal antibodies.
Production of probiotics, enzymes, vitamins, and functional ingredients with hygienic design.
Bio-based chemicals, biofuels, and sustainable materials enabled by robust control and aeration capacity.
Seamless transition from lab to pilot/industrial scale with consistent geometry and automation philosophy.
In a batch culture, a fixed amount of nutrients is initially provided in the culture medium. As the culture progresses, the nutrients are gradually consumed, and the cells eventually reach a stationary phase. This is the most common and basic culture method.
Fed-batch culture is designed to enhance cell density and product yield compared to batch culture. In this method, additional nutrients are periodically or continuously added during cultivation, making it suitable for productivity improvement.
In continuous culture, fresh medium is continuously supplied while an equal volume of culture is simultaneously withdrawn. This maintains cells in a steady growth phase, allowing for stable and consistent production conditions.
Perfusion culture allows for high-density and long-term cell cultivation. The medium is continuously perfused to supply nutrients and remove waste products, ensuring stable productivity and optimal cell growth.