- Temperature Range:Ambient 3…50 °C (131 °F)
- Volume:851 L (30.1 cu. ft.)
- Environmentally Preferable:
- Energy consumption:1840
- CO₂ recovery time after 30 second door opening at 5 Vol.% CO₂:4 min
- Recovery time after 30 second door opening at 37 °C:13 min
- Shelves:5 Standard Copper Alloy Stainless Steel: 776×659×10 mm (30.5×25.9×0.4"), 30 kg (66 lbs.) per Shelf
- Sound level:33 dB(A)
- Cat. no.:10046-928
- Interior Dimensions:80.6×69.3×152.4 cm (31.7×27.3×60")
- Exterior Dimensions:98.6×85.3×204 cm (33.8×33.6×80.3")
- Weight:275 kg (605 lbs.)
- Supplier No.:MCO-80IC
The CytoGROW Reach-In CO₂ incubator is designed to save lab space while offering the flexibility to grow your culturing needs. The control system provides a precise and repeatable chamber environment.
- Horizontal laminar airflow
- Contamination control
- Large capacity
- Microprocessor controller
- Rapid CO₂ density recovery
- Three-year manufacturer's parts and labor warranty
The cross shelf, horizontal laminar airflow system promotes optimum temperature uniformity throughout the chamber, which contributes to quick temperature recovery after door openings
The incubator functions are managed by a fully integrated microprocessor controller with a range of setpoints and alarms for temperature and CO₂. Two levels of elevated humidity can be selected. All functions are programmable through the control panel. Independent LED displays for CO₂ and temperature are standard. IR sensor coupled with the PID microprocessor controller is used to provide superior CO₂ control and exceptionally fast recovery after door openings. Gas system design minimizes CO₂ consumption.
Humidity reservoir heaters are located outside the walls of the reservoir and have lowered susceptibility to corrosion and scaling from water. The unit can be set to normal (80% RH or above) or high (90% RH or above) humidity mode.
Softkey eight button menu for intuitive programming. LED indicators monitor incubator functions. Remote alarm contacts provided standard. The Reach-In incubator is ideal for culturing large volumes of biological samples, performing microbiological studies and working with large volume cell apparatus.