INFORMATION ON DISPOSAL AND RECYCLING OF THIS PRODUCT

Please note that this Adexi product is marked with this symbol:

This means that this product must not be disposed of together with ordinary household waste, as electrical and electronic waste must be disposed of separately.

In accordance with the WEEE directive, every member state must ensure correct collection, recovery, handling and recycling of electrical and electronic waste. Private households in the EU can take used equipment to special recycling stations free of charge. In some member states you can in certain cases return the used equipment to the retailer from whom you purchased it, if you are purchasing new equipment. Contact your retailer, distributor or the municipal authorities for further information on what you should do with electrical and electronic waste.

GUARANTEE TERMS

The guarantee does not apply:

if the above instructions are not followed

if the appliance has been interfered with.

if the appliance has been mishandled, subjected to rough treatment, or has suffered any other form of damage

if faults have arisen as a result of faults in your electricity supply.

Due to the constant development of our products in terms of function and design, we reserve the right to make changes to the product without prior warning.

IMPORTER

Adexi Group

www.adexi.eu

We cannot be held responsible for any printing errors

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Melissa 653-067/068 manual Guarantee Terms, Importer, Information on Disposal and Recycling of this Product

653-067/068, 653-067 specifications

Melissa 653-067,653-067/068 represents a significant advancement in the realm of chromatographic separation technologies. This device is engineered for high-performance liquid chromatography (HPLC) and is tailored to meet the rigorous demands of modern analytical laboratories.

One of the standout features of the Melissa 653-067 is its modular design, which allows for easy upgrades and customization according to specific laboratory needs. This flexibility ensures that users can adapt the system as new techniques and applications arise without the need for a complete overhaul. The device supports a variety of chromatography techniques, including reversed-phase, normal-phase, and ion-exchange, making it a versatile tool for a wide range of applications, from pharmaceutical analysis to environmental testing.

The heart of the Melissa 653-067 is its advanced pump technology. Equipped with a high-precision binary pump, the system offers exceptional flow rate accuracy and stability, essential for reproducible results in quantitative analyses. The pump operates at a maximum pressure of 400 bar, allowing for efficient separations even with challenging samples.

Another critical aspect of the Melissa 653-067 is its detector system, which is capable of detecting a broad range of compounds. The system features UV-Vis and fluorescence detectors, providing the ability to select wavelengths for optimal detection sensitivity. This is particularly valuable in applications where trace analysis is crucial, such as in pharmaceuticals where certain active ingredients must be measured at very low concentrations.

The user-friendly interface of the Melissa 653-067 enhances ease of operation. It includes a large touchscreen display and intuitive software that guide users through method development, data acquisition, and analysis. The software is equipped with advanced data management capabilities, allowing seamless integration with laboratory information management systems (LIMS).

Moreover, Melissa 653-067 emphasizes robustness and reliability. Designed with high-quality materials and components, it ensures stable operation under various environmental conditions. Maintenance is simplified, with easily accessible parts that facilitate routine servicing and reduce downtime.

In conclusion, Melissa 653-067,653-067/068 embodies a blend of versatility, precision, and user-centric design. By integrating cutting-edge technologies into a tailored chromatography solution, it stands out as an indispensable tool for laboratories aiming to enhance their analytical capabilities and meet evolving research demands.