UV transilluminator UVT-14 LE, 365 nm, 4 x 6 W, 1 unit(s)

Catalog nr. NK05.1
Herolab

Volume: 1 pc(s)
Value Packs: 1 piece
Price:
Sale price€1.025,55
Ask quote for bulk order

Description

UV transilluminator UVT-14 LE is a laboratory UV illumination unit configured for 365 nm operation with a 4 × 6 W lamp arrangement. Supplied as a single complete instrument, it provides a dedicated long-wave UV source for routine bench work where controlled ultraviolet illumination is required. The unit is listed at a net weight of 5,00 kg, giving a stable, self-contained footprint suitable for permanent placement beside electrophoresis or imaging workflows. Wavelength and lamp power are clearly defined so the instrument can be matched to existing laboratory protocols that specify 365 nm excitation. Offered from manufacturer Herolab, the UVT-14 LE integrates straightforwardly into standard laboratory layouts without additional configuration data beyond the stated optical and electrical parameters. Pack presentation is one piece, ready for installation and use. This model supports laboratories that need a compact, purpose-built UV transilluminator with transparent specification of wavelength and lamp count for documentation and method alignment.

This article is part of Electrophoresis systems & power supplies, in Electrophoresis.

Key features

  • Pack size: 1 pc
  • Product type: UV transilluminator
  • Model: UVT-14 LE
  • Wavelength: 365 nm
  • Lamp configuration: 4 × 6 W
  • Weight: 5,00 kg
  • Technical Information Sheet: PDF

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Questions about UV transilluminator UVT-14 LE, 365 nm, 4 x 6 W, 1 unit(s)

What is this article?

UV transilluminator UVT-14 LE, 365 nm, 4 x 6 W, 1 unit(s) is the article on this page. Luminix Health distributes Herolab for laboratory use. It sits in Electrophoresis systems & power supplies, inside Electrophoresis, in Microbiology lab supplies.

An electrophoresis system is the tank and the electrodes. A power supply holds voltage, current or power. The gel size the tank accepts and the voltage range of the supply are the specification. A power supply that cannot hold a constant voltage will not run a method that demands one.

Electrophoresis pulls charged molecules through a gel. Smaller ones move farther. Agarose gels separate nucleic acids. Polyacrylamide gels separate proteins. A comb forms the wells. A power supply holds the voltage or the current. The gel percentage is the sieve. A marker lane is how the bands are named. The methods are in the PubMed literature. Sequences of the nucleic acids are on NCBI Nucleotide.

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The category is Electrophoresis. The sub-category is Electrophoresis systems & power supplies. The catalogue is Microbiology lab supplies.

Shelves beside this one are Gels, combs & casting accessories.

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