Fast and Accurate Analysis

A highly flexible, expandable and extremely accurate oxygen bomb calorimeter

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Low to High throughput, depending on application requirements.

Choose from 4 different system options based on your laboratory requirements.

  • Entry-Level System

    The entry-level CAL3K-F Calorimeter System is the equivalent to the ECO Calorimeter and includes the following :

     

    • 1 x CAL3K-F Calorimeter

    • 1 x Manual Oxygen Filling Station

    • 1 x CAL3K Bayonet Bomb Vessel

     

    This option DOES NOT include the air cooler.

     

    SAMPLES PER HOUR : 2 samples per hour

    DETERMINATION TIME : 10 minutes determination time per sample.

  • Basic System

    The basic CAL3K-F Calorimeter System is the equivalent to the E2K Minimum System and includes the following :

     

    • 1 x CAL3K-F Calorimeter

    • 1 x Air Cooler

    • 1 x Manual Oxygen Filling Station

    • 1 x CAL3K Bayonet Bomb Vessel

     

    SAMPLES PER HOUR : 4 samples per hour

    DETERMINATION TIME : 10 minutes determination time per sample.

  • Standard System

    The standard CAL3K-F Calorimeter System is the equivalent to the E2K Standard System and includes the following :

     

    • 1 x CAL3K-F Calorimeter

    • 1 x Air Cooler

    • 1 x Manual Oxygen Filling Station

    • 2 x CAL3K Bayonet Bomb Vessel

     

    SAMPLES PER HOUR : 7 samples per hour

    DETERMINATION TIME : -10 minutes determination time per sample.

  • Advanced System

    The advanced CAL3K-F Calorimeter System is the equivalent to the CAL2K Calorimeter System (with water cooler) and includes the following :

     

    • 1 x CAL3K-F Calorimeter

    • 2 x Air Cooler

    • 1 x Manual Oxygen Filling Station

    • 3 x CAL3K Bayonet Bomb Vessel

     

    SAMPLES PER HOUR : 9+ samples per hour

    DETERMINATION TIME : -10 minutes determination time per sample.

Start off with the most economical single vessel system and expand it as the need arises to a system of 12-14 samples per hour. The system uses the proven bayonet vessel common to all CAL3K systems and works in the dynamic (isoperibol) mode. It has four communication ports with a host of outstanding features that caters for every application.

 

It is a flexible system for high to low throughput without compromising accuracy and repeatability. It is used in Food/Feed Analysis, Alternative Energy, Scientific Determinations, Coal and Oil Production and Research and Quality Assurance.

NO WATER REQUIRED

No water bucket. No measuring. No spillage.

FULL LIMS SUPPORT

For the assignment, scheduling, and tracking of samples.

USER FRIENDLY

User Friendly Operation.

BAYONET VESSEL

Self-locking and self-sealing bayonet oxygen bomb vessel.

TEMPERATURE RANGE

Temperature range from 1°C to 70°C, requires no air-conditioning.

STEP-BY-STEP HELP

Screen prompts assist with step-by-step instructions to operate the calorimeter.

OXYGEN FILLING

Manual oxygen filling using the external manual CAL3K Oxygen Filling Station included in kit.

LARGE STORAGE

Up to 300 results storage.

Expert Support with an Online Knowledge Base

Learn how to operate your calorimeter online or contact any of our 60 qualified agents worldwide.

A Simplified User Experience with reduced operator input.

The CAL3K-F does most of the work for you - with guided help along the way, with or without PC operated software.

Technical Specifications

Reliable Systems with 40 Years of Development Experience

Our team has developed calorimeters for over 40 years, making us your trusted partner for quality affordable calorimeters.

OXYGEN BAYONET BOMB VESSEL

The trusted CAL3K Oxygen Bayonet Bomb Vessel with linear temperature sensing and advanced technology.

MANUAL OXYGEN FILLING STATION

New improved Filling Station for more robust applications with a sleek black finish.

IMPROVED AIR COOLER

Reduced resources, waterless operation and a more user friendly interface.

Empower your laboratory with the CAL3K-F

Ask our team about upgrade options to suit your application.

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Copyright Digital Data Systems Pty Ltd. 2017