Dual Hypoxia Workstation DY-D


The Dual Hypoxia Workstation DY-D is an advanced dual-chamber system designed for simultaneous experiments under distinct hypoxic or normoxic conditions. Ideal for cell culture, stem cell, and cancer research, it offers real-time O₂/CO₂ control, data logging, and independent chamber management in a space-saving design.

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The Dual Hypoxia Workstation DY-D is an advanced dual-chamber system engineered for high-precision hypoxic research. Designed to accommodate two independent environments within a single unit, the DY-D allows researchers to simultaneously conduct experiments under varying oxygen and carbon dioxide concentrations—perfect for side-by-side comparisons of normoxic and hypoxic conditions. This capability is ideal for applications such as cell culture, stem cell differentiation, cancer biology, and drug sensitivity studies.

Each chamber features real-time O₂ and CO₂ monitoring and control, ensuring accurate, stable conditions throughout the experiment. The workstation supports flexible gas supply configurations and includes user-friendly interfaces for programming, logging, and adjusting environmental parameters. Real-time data graphing and USB data logging provide seamless access to historical records, while the internal socket and lighting enhance usability and visibility inside the chambers.

Security features such as a three-tiered user password system and cylinder low-pressure alarms ensure safe and reliable operation. The direct entry system and interlock purge maintain environmental integrity during sample transfer, minimizing contamination risks.

With its space-efficient design, high capacity, and dual independent functionality, the DY-D is an essential tool for laboratories demanding accuracy, reproducibility, and control in hypoxia research.

Features

  • Dual Independent Chambers: Perform two separate experiments under different O₂/CO₂ conditions simultaneously.

  • Real-Time O₂ & CO₂ Control: Precision gas regulation in each chamber for accurate hypoxia or normoxia simulation.

  • Real-Time Data Graphing: Visual monitoring of environmental conditions in real time.

  • USB Data Logging System: Export and track environmental data effortlessly for compliance and analysis.

  • O₂ Sensor Calibration: Ensures accurate gas measurement and long-term reliability.

  • Interlock Purge System: Maintains chamber integrity and reduces contamination during transfers.

  • Direct Entry System: Quick, contamination-free access to the chamber interior.

  • Three-Tiered User Password Protection: Enhances security and user access control.

  • Cylinder Low Pressure Alarm: Notifies users of low gas supply for uninterrupted operation.

  • Internal Socket & Lighting: In-chamber power and illumination for added convenience.

  • Activated Carbon Sachet: Absorbs contaminants for a clean internal environment.

Optional Features

  • Temperature and Humidity Control Module

  • Touchscreen Control Panel Interface

  • Remote Monitoring and Alarm Notification System

  • CO₂ Control Expansion (if not standard)

  • Customizable Racks and Shelves

  • Additional Gas Ports for Multi-Gas Experiments

  • HEPA/ULPA Filtration System Upgrade

 

Specifications

Parameter Details
Chambers Dual (independent control)
Gas Supplies N₂ / Air / CO₂
Internal Dimensions (each) Varies by configuration (e.g., ~500×460×420 mm per chamber)
External Dimensions Varies (approx. double single unit)
Real-Time O₂/CO₂ Monitoring Available
Data Logging System USB Export
Sensor Calibration Included
User Access Three-tiered password protection
Alarms Cylinder low pressure, system alerts
Lighting & Socket Built-in
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