Mini MIRI® Dry Incubator

The Mini MIRI® Dry incubator is a two-chamber mini bench top incubator that takes after the classic MIRI® Multiroom incubator. This mini version of the MIRI® is a perfect-fit for IVF laboratories that prioritize on footprint and affordability.

Embryo Culture

For Embryo Culture

Features

Independent chambers

Compatible with Large Variety of Embryo Culture Dishes

Fast Temperature and Gas Recovery

Continuous pH monitoring (Optional)

Built in Tri-Gas Mixer

Continuous External Validation on Gas and Temperature

Writable Heated Lids

LED display

Data Logger

Small Footprint

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Product Details Parts of the Mini MIRI® Dry Incubator Data Logger Software General Specifications Ordering Information Literature & Resources

Parts of the Mini MIRI® Dry Incubator

Parts of the Mini MIRI® Dry Incubator

Recirculating Gas for Minimal
Gas Consumption

The Mini MIRI® Dry Incubator is a dry IVF bench top incubator that can recirculate gas inside the incubator and is compatible with a VOC/HEPA filtration system unlike other humidified IVF incubators. Gas inserts (whether pure N2 and CO2 or premixed gas) first go through the tri-gas mixing chamber to achieve the set CO2 and O2 gas concentrations by the user and then into the VOC/HEPA filter before entering the incubator chambers. After this, gas now enters a UV Sterilization (254nm) table before going back to the tri-gas mixing chamber and recirculates the gas. This system ensures that there is minimal gas consumption even with lid openings of the incubator chambers while maintaining the recirculating air clean and safe for the embryo samples.

Recirculating Gas for Minimal Gas Consumption

Data Logger Software

Data Logger Software

The Mini MIRI® Dry Incubator comes with a data logger software that monitors the temperature, gas concentration, gas input pressure, gas flow rates, and alarms. All real-time parameters can be viewed conveniently in graphs when the Mini MIRI® is connected to a PC and the data logger software can also monitor multiple incubators at the same time. Weekly reports can be exported for the users' convenience.

data logger software
data logger software alarm
data logger software temperature

General Specifications of the Mini MIRI® Dry Multiroom Incubator

Overall Dimensions (W x D x H) 525 x 420 x 230 mm (22.7 x 16.5 x 9")
Weight 22 kg (48.5 lbs)
Material Mild steel / Aluminum / PET / Stainless steel
Power Supply 115V 60Hz or 230V 50Hz
Power Consumption 160 W
Temperature Control Range 24.9 - 40 °C
*CO2 Gas Consumption <2 Liters per hour
**N2 Gas Consumption <8 Liters per hour
Gas Input Pressure 0.4 to 0.6 bar (5.80 - 8.70 PSI)
Operating Altitude Up to 2000 meters (6560 feet or 80kPa - 106kPa)
Shipping Weight 30 kg (66.1 lbs) (Including the pallet's weight)
Shipping Dimensions 630 x 525 x 500 mm (24.8 x 20.7 x 19.7") (device on the pallet)

* Under normal condition (CO2 set point reached at 6.0%, all lids closed)
** Under normal condition (O2 set point reached at 5.0%, all lids closed)

Ordering Information

Mini MIRI® Dry Multiroom Incubator
Item Code Model Code Description
Devices
2070043 MRI-MINI-D-8 Mini MIRI® Dry Multiroom Incubator, 230V, 50/60Hz
2070044 MRI-MINI-D-9 Mini MIRI® Dry Multiroom Incubator, 115V, 50/60Hz
Accessories
1320011 MRA-1007 VOC/HEPA filter (recommended to be replaced every 3 months)
1320142 MRI-DATA Datalogger Package with an Intel® NUC Box, monitor, etc.
1320045 MRI-GA MIRI® GA CO2 / O2 & Temperature Validation Unit, 115V / 230V
Heating optimization plates
Item Code Model Code Description
1320003 MRA-FD Heating optimization plate for Falcon® Dishes
1320004 MRA-ND Heating optimization plate for NUNC™ Dishes
1320070 MRA-VD Heating optimization plate for Vitrolife® Dishes
1320099 MRA-NID Heating optimization plate for Nipro™ Dishes
1320100 MRA-LD Heating optimization plate for LifeGlobal® GPS Dishes
1320101 MRA-PD Heating optimization plate without footprint for Plain Dishes
1320118 MRA-OD Heating optimization plate for Sparmed - Oosafe®
1320507 MRA-BIRR Heating optimization plate for BIRR Dishes

Literature & Resources