High-throughput Micro-Parallel Smart Bioreactor-WT-NEXT100

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  • The WT-NEXT 100ml high-throughput micro parallel bioreactor system can be customized to parallelcontrol 8/16/32/64/96 tank units (8 units per group) for microbial/cellular performance verification, mediumscreening, process development and characterization, etc.According to customer requirements, Each tank is equipped with full parameter detection and canindependently and precisely control temperature, stirring, pH, D0, liquid level, weight, gas flow orcustom parameters.
  • The WT-NEXT 100ml high-throughput micro parallel bioreactor system can be customized to parallelcontrol 8/16/32/64/96 tank units (8 units per group) for microbial/cellular performance verification, mediumscreening, process development and characterization, etc.According to customer requirements, Each tank is equipped with full parameter detection and canindependently and precisely control temperature, stirring, pH, D0, liquid level, weight, gas flow orcustom parameters.
  • 1.Scientific Design

    The modular design concept enables rapid expansion of software and hardware functions, including thenumber of tanks and control parameters (such as pH, DO, stirring, temperature, feeding and gas control, etc.);

    ■ Each module adopts the same signal, effectively preventing interference from signal sources. The paralleldesign concept can reduce the amount of manual operation and operational errors, ensuring consistencybetween different tank batches.

    2、DOE Experimental Design

    ■ The flexible DOE experimental design function enables rapid experimental design and implementation basedon the number of factors, such as medium formulation, process parameters (pH, DO, temperature, stirringspeed, ventilation volume), feeding parameters, etc.; it realizes the qualitative and quantitative analysis of theimpact of different variable factors and combinations on the process, and determines the optimal combinationof variable factors.

    3、Multi-functional Control Mode

    ■ Parallel setting and control methods for multiple tanks, reducing the workload and human operational errorsduring large-scale operations;

    ■ Various control parameter control methods are available, including constant, coupled, function, andprogramming control methods;

    ■ Optional configuration of tail gas mass spectrometry and Raman spectroscopy, in combination with theindependently resreached and developed XBIO process system analysis software, enables intelligent analysisand control of the process;

    4、Safety and Convenience

    ■ Using disposable consumable tank body, no need for sterilization verification work, can be used directly;

    ■ Consumable configuration with PH and DO sensors can be used directly after connection, with a 5-channelliquid addition design to flexibly cope with various fluid addition processes.

    5、Data Traceability and Permission Management

     ■ Historical curves can be queried and exported, allowing for comparison and analysis of the same batch ordifferent batches, historical data is stored in database form,facilitating subsequent data analysis andtraceability. Multi-level permission control and management can be achieved to meet the requirements fordata and operation traceability.

  • 1.Scientific Design

    ■ The modular design concept enables rapid expansion of software and hardware functions, including thenumber of tanks and control parameters (such as pH, DO, stirring, temperature, feeding and gas control, etc.);

    ■ Each module adopts the same signal, effectively preventing interference from signal sources. The paralleldesign concept can reduce the amount of manual operation and operational errors, ensuring consistencybetween different tank batches.

    2、DOE Experimental Design

    ■ The flexible DOE experimental design function enables rapid experimental design and implementation basedon the number of factors, such as medium formulation, process parameters (pH, DO, temperature, stirringspeed, ventilation volume), feeding parameters, etc.; it realizes the qualitative and quantitative analysis of theimpact of different variable factors and combinations on the process, and determines the optimal combinationof variable factors.

    3、Multi-functional Control Mode

    ■ Parallel setting and control methods for multiple tanks, reducing the workload and human operational errorsduring large-scale operations;

    ■ Various control parameter control methods are available, including constant, coupled, function, andprogramming control methods;

    ■ Optional configuration of tail gas mass spectrometry and Raman spectroscopy, in combination with theindependently resreached and developed XBIO process system analysis software, enables intelligent analysisand control of the process;

    4、Safety and Convenience

    ■ Using disposable consumable tank body, no need for sterilization verification work, can be used directly;

    ■ Consumable configuration with PH and DO sensors can be used directly after connection, with a 5-channelliquid addition design to flexibly cope with various fluid addition processes.

    5、Data Traceability and Permission Management

     ■ Historical curves can be queried and exported, allowing for comparison and analysis of the same batch ordifferent batches, historical data is stored in database form,facilitating subsequent data analysis andtraceability. Multi-level permission control and management can be achieved to meet the requirements fordata and operation traceability.

  • High-throughput Micro-Parallel Smart Bioreactor-WT-NEXT100

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  • http://en.suzhouwomei.com/
  • Email:
  • womeishengwu@szwmbio.com
  • Address:
  • No.23, South side of Fenghuang Avenue, Fenghuang Town, Zhangjiagang City, Suzhou, China

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