Kiểm soát nhiệt độ và khuấyEppendorf
Dasgip Bioblock System
Kiểm soát nhiệt độ và khuấy
Eppendorf
Dasgip Bioblock System
Tình trạng
Đã qua sử dụng
Vị trí
Vương quốc Liên hiệp Anh 

Hình ảnh cho thấy
Hiển thị bản đồ
Thông tin về máy móc
- Tên máy:
- Kiểm soát nhiệt độ và khuấy
- nhà sản xuất:
- Eppendorf
- Mô hình:
- Dasgip Bioblock System
- Số máy:
- DAS3006951+
- Tình trạng:
- sẵn sàng sử dụng (đã qua sử dụng)
Giá & Vị trí
- Vị trí:
- Location:Duxford, United Kingdom
Gọi điện
Chi tiết về đề nghị
- ID tin đăng:
- A18908426
- Số tham chiếu:
- 48649+
- cập nhật:
- lần cuối vào ngày 21.05.2025
Mô tả
Condition Used
Stock Number 48649+
This listing is for a Eppendorf Dasgip Parallel bioreactor system
NB. Variations in specification occur subject to applications required. Please check the images and contact us if unsure
The unit is in full working condition and is ready for immediate release
2 x DASGip OD4 Optical density Monitor
1x PH4P04L V2.1 Sensor Module
1 x MX4/4H V2.1 Gas Mixing System (250 sL/h Max)
1 x TC4SC4 V2.1 Temperature and Agitation Controller
2 x DASGIP MP8 Multi Pump Module
PC, monitor, Power Supply. USB Unchecked
Key Features
Parallel Bioreactor Setup:
Operates multiple bioreactors (2, 4, 6, or 8) simultaneously, providing high-throughput experimentation for cell culture and microbiology applications.
Ideal for testing various conditions (temperature, pH, gas supply, nutrient concentration, etc.) in parallel, accelerating process development and optimization.
Advanced Bioprocess Control Automation:
Precise Control of critical parameters like pH, temperature, dissolved oxygen (DO), agitation, and foam for optimal bioprocessing conditions.
User-Defined Profiles: Customize and define specific process profiles (e.g., growth phase, fed-batch protocols) for automation, ensuring consistent results across all bioreactors.
Automated Control of feeding rates, gas mixing, and environmental conditions, reducing manual intervention and increasing reproducibility in experiments.
Real-Time Data Monitoring: Continuous tracking and analysis of parameters to provide insights for advanced process optimization.
Parallel Processing for Accelerated RD:
Simultaneous Trials: Conduct multiple experiments at once, allowing for the optimization of different process variables, such as media composition, agitation speeds, and pH.
This parallel processing capability accelerates research cycles and enables more efficient RD workflows.
Highly Efficient Process Development:
Cell Culture and Microbiology: Supports a wide range of applications from mammalian cell culture, bacterial, yeast fermentation, and insect cell cultures, making it suitable for both biotech and pharmaceutical industries.
Optimize the growth conditions for various cell lines, yeast strains, or bacteria with fine-tuned control over parameters.
Transition from lab-scale research to process scale-up with ease, reducing the time and costs associated with scale-up trials.
Precision Control of All Relevant Parameters:
Temperature Control: Independent control of each bioreactor’s temperature for precise environmental control.
pH and pO2 Monitoring: Real-time measurement and automated adjustments of pH and dissolved oxygen for cell culture or fermentation optimization.
Agitation: Adjustable agitation speeds to optimize mixing, oxygen transfer, and cell growth conditions for both cell culture and microbiology.
Foam Control: Integrated foam sensors and anti-foam pumps to maintain optimal conditions without disruptions to the process.
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Automation Features:
Automated Media and Feed Control: Automated media addition and feed control systems, ensuring the precise delivery of nutrients and growth factors, enhancing growth performance and minimizing variability.
Synchronized Feeding and Sampling: Synchronize nutrient or feed injections with the growth phases of the culture, and automate sampling processes for accurate data collection and analysis.
Modular and Scalable System:
Flexible Configuration: Choose from configurations with 2, 4, 6, or 8 bioreactors,
Stock Number 48649+
This listing is for a Eppendorf Dasgip Parallel bioreactor system
NB. Variations in specification occur subject to applications required. Please check the images and contact us if unsure
The unit is in full working condition and is ready for immediate release
2 x DASGip OD4 Optical density Monitor
1x PH4P04L V2.1 Sensor Module
1 x MX4/4H V2.1 Gas Mixing System (250 sL/h Max)
1 x TC4SC4 V2.1 Temperature and Agitation Controller
2 x DASGIP MP8 Multi Pump Module
PC, monitor, Power Supply. USB Unchecked
Key Features
Parallel Bioreactor Setup:
Operates multiple bioreactors (2, 4, 6, or 8) simultaneously, providing high-throughput experimentation for cell culture and microbiology applications.
Ideal for testing various conditions (temperature, pH, gas supply, nutrient concentration, etc.) in parallel, accelerating process development and optimization.
Advanced Bioprocess Control Automation:
Precise Control of critical parameters like pH, temperature, dissolved oxygen (DO), agitation, and foam for optimal bioprocessing conditions.
User-Defined Profiles: Customize and define specific process profiles (e.g., growth phase, fed-batch protocols) for automation, ensuring consistent results across all bioreactors.
Automated Control of feeding rates, gas mixing, and environmental conditions, reducing manual intervention and increasing reproducibility in experiments.
Real-Time Data Monitoring: Continuous tracking and analysis of parameters to provide insights for advanced process optimization.
Parallel Processing for Accelerated RD:
Simultaneous Trials: Conduct multiple experiments at once, allowing for the optimization of different process variables, such as media composition, agitation speeds, and pH.
This parallel processing capability accelerates research cycles and enables more efficient RD workflows.
Highly Efficient Process Development:
Cell Culture and Microbiology: Supports a wide range of applications from mammalian cell culture, bacterial, yeast fermentation, and insect cell cultures, making it suitable for both biotech and pharmaceutical industries.
Optimize the growth conditions for various cell lines, yeast strains, or bacteria with fine-tuned control over parameters.
Transition from lab-scale research to process scale-up with ease, reducing the time and costs associated with scale-up trials.
Precision Control of All Relevant Parameters:
Temperature Control: Independent control of each bioreactor’s temperature for precise environmental control.
pH and pO2 Monitoring: Real-time measurement and automated adjustments of pH and dissolved oxygen for cell culture or fermentation optimization.
Agitation: Adjustable agitation speeds to optimize mixing, oxygen transfer, and cell growth conditions for both cell culture and microbiology.
Foam Control: Integrated foam sensors and anti-foam pumps to maintain optimal conditions without disruptions to the process.
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Automation Features:
Automated Media and Feed Control: Automated media addition and feed control systems, ensuring the precise delivery of nutrients and growth factors, enhancing growth performance and minimizing variability.
Synchronized Feeding and Sampling: Synchronize nutrient or feed injections with the growth phases of the culture, and automate sampling processes for accurate data collection and analysis.
Modular and Scalable System:
Flexible Configuration: Choose from configurations with 2, 4, 6, or 8 bioreactors,
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