Advanced Tri-Gas Incubator

The Advanced Tri-Gas Incubator is an advanced micro-chamber benchtop culture system designed to precisely regulate gas atmospheres containing carbon dioxide, oxygen, and nitrogen. Outfitted with high-purity infrared and zirconium sensor arrays, it lowers internal oxygen down to physiological hypoxic levels to reduce cellular oxidative stress. Its primary application is the prolonged in vitro incubation and continuous developmental tracking of human embryos from zygote stage to expanded blastocysts. It offers excellent configuration flexibility by supporting both humidified water reservoir pans and precise gas-driven dry culture workflows. This specialized micro-chamber design eliminates massive environmental shifts during handling, making it a vital asset for advanced reproductive laboratories.

Product Category: Embryology Products
  • Advanced micro-chamber benchtop culture system designed to precisely regulate gas atmospheres containing carbon dioxide, oxygen, and nitrogen.
  • Outfitted with high-purity infrared and zirconium sensor arrays to reduce cellular oxidative stress.
  • Lowers internal oxygen down to precise physiological hypoxic levels to maximize culture safety.
  • Engineered for the prolonged in vitro incubation and continuous developmental tracking of human embryos.
  • Supports growth stages extending safely from the zygote stage up to expanded blastocysts.
  • High-efficiency system provides a stable temperature-controlled environment essential for achieving optimal clinical pregnancy outcomes.
  • Advanced microprocessor tri-gas regulation handles carbon dioxide, oxygen, and nitrogen gas inputs automatically.
  • Carbon dioxide regulation scale covers a wide range from zero point one percent to twenty point zero percent using dual-beam NDIR sensors.
  • Oxygen regulation scale provides hypoxic controls ranging from one point zero percent to twenty point zero percent using long-life zirconium sensors.
  • Temperature stability delivers a constant uniform holding accuracy at plus or minus zero point one degrees Celsius throughout all chambers.
  • Humidity management system accommodates both humidified water reservoir pans or precise gas-driven dry culture choices.
  • Physiological Hypoxic Control: Utilizes long-life zirconium sensors to actively lower internal oxygen down to cellular-safe levels.
  • Ultra-Precise Thermal Stability: Maintains a constant, uniform holding accuracy across all incubation zones.
  • Dual-Beam NDIR Technology: Employs high-purity dual-beam infrared sensors for highly reliable carbon dioxide monitoring.
  • Adaptable Humidity Management: Safely facilitates both humidified and precise dry culture environment protocols.
  • Gas Mixing Control: Microprocessor Tri-Gas Regulation (carbon dioxide, oxygen, and nitrogen inputs).
  • Carbon Dioxide Regulation Scale: Range of zero point one percent to twenty point zero percent (Using dual-beam infrared non-dispersive infrared sensors).
  • Oxygen Regulation Scale: Range of one point zero percent to twenty point zero percent hypoxic controls (Using long-life zirconium sensors).
  • Temperature Stability: Constant uniform holding accuracy at plus or minus zero point one degrees Celsius throughout chambers.
  • Humidity Management: Humidified water reservoir pans or precise gas-driven dry culture choices.
  • Primary Applications: Prolonged in vitro incubation and continuous development of human embryos from zygote stage to expanded blastocysts.