MVE Chart XC-35/12 Cryogenic Sample Tank LN2 Dewar + Canisters - 90 Days Storage
MVE Chart XC-35/12 Cryogenic Sample Tank LN2 Dewar + Canisters - 90 Days StorageMVE Chart XC-35/12 Cryogenic Sample Tank LN2 Dewar + Canisters - 90 Days StorageMVE Chart XC-35/12 Cryogenic Sample Tank LN2 Dewar + Canisters - 90 Days StorageMVE Chart XC-35/12 Cryogenic Sample Tank LN2 Dewar + Canisters - 90 Days StorageMVE Chart XC-35/12 Cryogenic Sample Tank LN2 Dewar + Canisters - 90 Days StorageMVE Chart XC-35/12 Cryogenic Sample Tank LN2 Dewar + Canisters - 90 Days StorageMVE Chart XC-35/12 Cryogenic Sample Tank LN2 Dewar + Canisters - 90 Days StorageMVE Chart XC-35/12 Cryogenic Sample Tank LN2 Dewar + Canisters - 90 Days StorageMVE Chart XC-35/12 Cryogenic Sample Tank LN2 Dewar + Canisters - 90 Days Storage
$700.00

Clean and in beautiful condition. 8x stainless sample racks as shown. Dewar comes with a clean neck tube and lid. 34.8 liter liquid nitrogen capacity.

Designed to hold up to 4400 x 1/2cc (0.5mL) straws or 950x 2mL vials.

Hassle-Free Warranty



Manufacturer Description

The MVE CryoSystems XC 35/12 is a high-capacity, high-efficiency liquid nitrogen dewar engineered for the secure, long-term cryogenic preservation of biological specimens. As a member of the specialized "Extra Capacity" series, this ruggedly constructed aluminum vessel combines an optimized neck opening with advanced chemical vacuum insulation to achieve industry-leading static holding times. The defining feature of the XC 35/12 is its expanded internal storage geometry, accommodating 10 independent hanging canisters rather than the standard 6 found in conventional dewars. This layout provides clinical labs, veterinary networks, and agricultural breeding operations with the ability to segregate, organize, and quickly retrieve distinct sample lots while maintaining stable temperatures below -184°C.

Technical Specifications

  • Model Designation: XC 35/12 (Extra Capacity / 12 Canister Series)
  • Liquid Nitrogen Capacity: 34.8 Liters
  • Static Evaporation Rate: 0.24 Liters per day (High-efficiency thermal barrier)
  • Static Holding Time: 90 Days (Under optimal static conditions)
  • Internal Inventory Layout: Accommodates 10 independent vertical hanging canisters (8 included)
  • Canister Dimensions: 11.0" Height x 1.5" Diameter (279 mm x 38 mm)
  • Vial Storage Capacity: Up to 1,260 standard 1.2 mL or 2.0 mL cryogenic vials (stored in canes)
  • Straw Storage Capacity: Up to 3,024 0.50 cc straws (bulk loaded) / 6,120 0.50 cc straws (goblet/cane configuration)
  • Neck Opening Diameter: 4.0 inches (102 mm) for clean canister clearance
  • External Dimensions: 18.2" Diameter x 25.8" Total Height (462 mm x 655 mm)
  • Weight (Empty): 33.0 lbs (15.0 kg) / Weight (Full): 96.0 lbs (43.5 kg)
  • Value-Add: Designed with a specialized 10-slot precision-notched top index ring, ensuring rapid orientation and positive mechanical locking for each individual canister handle to minimize ambient air exposure during cycles.

System Compatibility

The XC 35/12 utilizes industry-standard dimensions for consumables and transport hardware:

  • Canisters: Mates natively with MVE 11-inch lightweight stainless steel or fiberglass-stemmed 12-series hanging canisters.
  • Storage Media: Fully compatible with all standard plastic cryogenic canes, goblets, and 0.25cc or 0.50cc artificial insemination (AI) straws.
  • Mobility: Universally fits standard MVE / Chart heavy-duty castered tank dollies for safe, smooth clinical flooring transit.

Applications

The professional standard for high-density, low-frequency maintenance specimen storage:

  • Livestock Breeding & Genetics: Storing high-value bovine, equine, or porcine semen straws in dedicated, client-segregated canisters.
  • Veterinary Medicine: Long-term archiving of rare companion animal tissue biopsies and cellular therapeutics.
  • Clinical Research: Organization of multi-patient clinical trial aliquots across 12 independent control zones.
  • Off-Grid Biological Archiving: Providing total thermal protection for vulnerable biological cell lines completely independent of electrical power infrastructure.