EasyMax 402 Advanced and HFCal

EasyMax 402 Advanced and HFCal

Product Details:

  • Temperature Range -40C to 180C
  • Accuracy Temperature: 0.1C; Calorimetry: 2% of reading
  • Measurement Range Calorimetric range: 5 J to 10 kJ
  • Voltage 100-240 V AC
  • Frequency 50/60 Hz
  • Automation Grade Fully Automated
  • Feature Automated control, in situ calorimetry, real-time data acquisition
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EasyMax 402 Advanced and HFCal Product Specifications

  • 350 x 340 x 340 mm
  • EasyMax 402 Advanced + HFCal
  • 100 mL to 400 mL
  • Electric
  • Reactor block, HFCal calorimeter module, touchscreen controller
  • Automated control, in situ calorimetry, real-time data acquisition
  • Chemical synthesis and calorimetric studies in laboratory environments
  • Fully Automated
  • 100-240 V AC
  • Advanced Lab Reactor System
  • High-quality, chemically resistant construction (ceramics, PTFE, glass)
  • ~17 kg
  • 50/60 Hz
  • Graphical Touchscreen Display
  • -40C to 180C
  • Calorimetric range: 5 J to 10 kJ
  • Temperature: 0.1C; Calorimetry: 2% of reading
  • Overtemperature protection, automatic shutdown
  • Integrated, programmable
  • Heat Flow Calorimeter (HFCal)
  • Integrated intuitive software for experiment automation and data analysis
  • 50 rpm to 1200 rpm
  • Single or sequential batch processing
  • up to 80% RH
  • USB, Ethernet
  • Benchtop

EasyMax 402 Advanced and HFCal Trade Information

  • Australia, North America, Eastern Europe, Western Europe, Middle East, Africa, Central America, Asia
  • All India

Product Description

Equipment made by Mettler-Toledo for process research and optimisation in the chemical and pharmaceutical sectors includes the EasyMax 402 Advanced and HFCal.

A small-scale reactor system called the EasyMax 402 Advanced was created for investigations on reaction screening, optimisation, and scaling up. It has a wide variety of operating parameters, including temperature (-40 to 180 deg C), pressure (up to 50 psi), and stirring speed (up to 2000 rpm). Reaction volumes can range from 0.5 ml to 250 ml. A range of sensors and probes are also included in the system to enable real-time monitoring of important reaction parameters like temperature, pH, and pressure.

The EasyMax 402 Advanced accessory known as the HFCal (Heat Flow Calorimeter) analyses the heat flow of chemical reactions. Understanding reaction kinetics and optimising process parameters depend on being able to calculate the heat released or absorbed during a reaction. The HFCal is equipped with a number of safety mechanisms to ensure dependable and secure operation and can work in temperatures ranging from -40 deg C to 180 deg C.

In the chemical and pharmaceutical industries, the EasyMax 402 Advanced and HFCal are effective tools for process development and optimisation. The HFCals heat flow measurements and the EasyMax 402 Advanceds real-time monitoring features provide for a thorough grasp of reaction kinetics and the ideal conditions for processes. Companies can use this information to increase the effectiveness and calibre of their production procedures and to guarantee the security of their products.

Calorimetry for Safety Screening.

The EasyMax 402 HFCal: a reaction calorimeter designed for fast and efficient safety screening and characterization of chemical processes early in development.

Uncover Potential Safety Issues

Non-scalable conditions, such as accumulation, bad mixing, mass transfer or dosing issues can easily be identified with the EasyMax 402 HFCal.

True Heat Flow Is Important

Unlike conventional heat flow calorimetry, the EasyMax HFCal determines the true heat as released by the chemical reaction to make the right conclusions.

Process Development -Fast and Reliable

Continuous monitoring ofthe reaction progress, the heat release, and possible accumulation makes process development faster and more predictable.

FAQ

1. The EasyMax 402 Advanced is what, exactly?

Ans - The EasyMax 402 Advanced is Roche Diabetes Cares top-of-the-line at-home blood glucose monitoring device. It is made to make it simpler and more accurate for persons with diabetes to monitor and record their blood glucose levels.

2. What does the HFCal characteristic entail?

Ans - The EasyMax 402 Advanced has an optional feature called HFCal. Users can manually enter their carbohydrate intake as well as additional details, such their level of stress and exercise, to determine the proper insulin dosage.

3. What advantages does the EasyMax 402 Advanced offer?

Ans - The users blood glucose levels are quickly and precisely read by the EasyMax 402 Advanced. Additionally, it has features that are user-friendly, such as the HFCal, a colour touchscreen for simple navigation, and a programmable testing reminder system.

4. How do I make use of HFCal?

Ans - Simply enter the carbohydrate content of your meal and additional details, like your level of exercise and stress, into the device to use the HFCal feature. The necessary insulin dose will then be determined by the device.

5. What safety measures should I take when using the EasyMax 402 Advanced?

Ans - Prior to utilising the EasyMax 402 Advanced, it is crucial to read the user handbook. Additionally, its critical to routinely check the device for any signs of wear or damage. Its also advised to avoid touching any bodily fluids and to wash your hands both before and after using the gadget.


Intelligent Design for Advanced Research

The EasyMax 402 Advanced and HFCal calorimeter module are meticulously engineered for chemical synthesis and calorimetric studies. Built from chemically resistant materials such as PTFE, ceramics, and glass, the system withstands harsh laboratory environments. Its graphical touchscreen display and USB/Ethernet connectivity allow seamless operation and data management, while automated features boost productivity for both research and industrial use.


Precision and Automation in Every Experiment

This system brings outstanding accuracy in temperature (0.1C) and heat measurement (2%). Fully automated controls, programmable stirring (501200 rpm), and in situ calorimetry ensure reliable and reproducible results. Its integrated heating/cooling and safety mechanisms, including overtemperature protection, safeguard your experiments, facilitating complex protocols with minimal manual intervention.

FAQs of EasyMax 402 Advanced and HFCal:


Q: How does the EasyMax 402 Advanced with HFCal module automate calorimetric experiments?

A: The system utilizes integrated, intuitive software that fully automates experiment setup, temperature and stirring control, in situ calorimetry, and data acquisition, minimizing manual intervention and enabling sequential or batch processing for efficient workflows.

Q: What safety features protect users during operation?

A: The EasyMax 402 Advanced features overtemperature protection and automatic shutdown functions, minimizing risks related to overheating or system failures. These measures ensure safe handling of high-temperature and exothermic reactions in laboratory settings.

Q: When should the EasyMax 402 Advanced be used in the laboratory?

A: This advanced reactor system is ideal whenever precise control and measurement of heat flow are required in chemical synthesis or process development. Its broad temperature and stirring ranges make it suitable for varying experimental demands and calorimetric studies.

Q: Where is the EasyMax 402 Advanced installed, and what space does it require?

A: Designed as a benchtop instrument, the EasyMax 402 Advanced fits laboratories with limited space, measuring approximately 350 x 340 x 340 mm. Its compact footprint supports convenient installation in research, educational, or industrial laboratory environments.

Q: What is the process for collecting and analyzing data with this system?

A: Data collection is facilitated by the systems integrated software, which delivers real-time acquisition through graphical touchscreen controls and interfaces with USB or Ethernet. Automated data analysis tools are included, enabling clear insight into calorimetric and reaction parameters.

Q: How can the systems benefits be maximized in routine laboratory use?

A: By utilizing the automated controls and sequential batch processing, laboratories can streamline complex experimental protocols, reduce manual workload, and achieve consistently accurate, reproducible resultsimproving efficiency in research and quality control.

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