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Thermo Scientific™ Varioskan™ LUX Multimode Microplate Reader

Product Code. 15350747 Shop All Thermo Scientific Products
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Measurement Technology:
Absorbance, Fluorescence Intensity
Absorbance, Fluorescence Intensity, Luminescence
Absorbance, Fluorescence Intensity, Luminescence, Time-resolved Fluorescence
Absorbance, Fluorescence Intensity, Luminescence, Time-resolved Fluorescence, AlphaScreen
Reading Options:
Top
Top and Bottom
No. of Dispensers:
1
2
None
Includes:
Gas Module, SkanIt PC Software, Research Edition
SkanIt PC Software, Research Edition
Unit Size:
Each
21 product options available for selection
Product selection table with 21 available options. Use arrow keys to navigate and Enter or Space to select.
Product Code. Measurement Technology Reading Options No. of Dispensers Includes unitSize
15350747 Absorbance, Fluorescence Intensity Top None SkanIt PC Software, Research Edition Each
15360747 Absorbance, Fluorescence Intensity, Luminescence Top None SkanIt PC Software, Research Edition Each
15370747 Absorbance, Fluorescence Intensity, Luminescence, Time-resolved Fluorescence Top None SkanIt PC Software, Research Edition Each
17153451 Absorbance, Fluorescence Intensity, Luminescence Top and Bottom None Gas Module, SkanIt PC Software, Research Edition Each
15300757 Absorbance, Fluorescence Intensity Top and Bottom None SkanIt PC Software, Research Edition Each
17163451 Absorbance, Fluorescence Intensity, Luminescence Top and Bottom 2 Gas Module, SkanIt PC Software, Research Edition Each
15320757 Absorbance, Fluorescence Intensity, Luminescence Top and Bottom None SkanIt PC Software, Research Edition Each
17173451 Absorbance, Fluorescence Intensity, Luminescence, Time-resolved Fluorescence Top and Bottom None Gas Module, SkanIt PC Software, Research Edition Each
17183451 Absorbance, Fluorescence Intensity, Luminescence, Time-resolved Fluorescence Top and Bottom 1 Gas Module, SkanIt PC Software, Research Edition Each
15360757 Absorbance, Fluorescence Intensity, Luminescence, Time-resolved Fluorescence, AlphaScreen Top and Bottom None SkanIt PC Software, Research Edition Each
17193451 Absorbance, Fluorescence Intensity, Luminescence, Time-resolved Fluorescence Top and Bottom 2 Gas Module, SkanIt PC Software, Research Edition Each
17133461 Absorbance, Fluorescence Intensity, Luminescence, Time-resolved Fluorescence, AlphaScreen Top and Bottom None Gas Module, SkanIt PC Software, Research Edition Each
17143461 Absorbance, Fluorescence Intensity, Luminescence, Time-resolved Fluorescence, AlphaScreen Top and Bottom 1 Gas Module, SkanIt PC Software, Research Edition Each
17153461 Absorbance, Fluorescence Intensity, Luminescence, Time-resolved Fluorescence, AlphaScreen Top and Bottom 2 Gas Module, SkanIt PC Software, Research Edition Each
15330767 Absorbance, Fluorescence Intensity, Luminescence Top and Bottom 1 SkanIt PC Software, Research Edition Each
15340767 Absorbance, Fluorescence Intensity, Luminescence, Time-resolved Fluorescence Top and Bottom 1 SkanIt PC Software, Research Edition Each
15360767 Absorbance, Fluorescence Intensity, Luminescence, Time-resolved Fluorescence, AlphaScreen Top and Bottom 1 SkanIt PC Software, Research Edition Each
15330777 Absorbance, Fluorescence Intensity, Luminescence Top and Bottom 2 SkanIt PC Software, Research Edition Each
15340777 Absorbance, Fluorescence Intensity, Luminescence, Time-resolved Fluorescence Top and Bottom 2 SkanIt PC Software, Research Edition Each
15360777 Absorbance, Fluorescence Intensity, Luminescence, Time-resolved Fluorescence, AlphaScreen Top and Bottom 2 SkanIt PC Software, Research Edition Each
15340757 Absorbance, Fluorescence Intensity, Luminescence, Time-resolved Fluorescence Top and Bottom None SkanIt PC Software, Research Edition Each
Use arrow keys to navigate between rows. Press Enter or Space to select a product option. 21 options available.
21 options
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Codice prodotto. 15350747 Fornitore Thermo Scientific™ N. del fornitore VL0000D0

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View the product page for possible alternatives.
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Analyze a variety of samples with five measurement technologies, including absorbance (UV-Vis), fluorescence intensity, Luminescence, AlphaScreen / AlphaLISA and TRF.

Designed for bioscience researchers with a wide variety of needs, the Thermo Scientific™ Varioskan™ LUX multimode microplate reader comes equipped with a flexible range of measurement technologies including Absorbance, Fluorescence Intensity, Luminescence, AlphaScreen, and Time-Resolved Fluorescence. The instrument simplifies measurement setup with the automatic dynamic range selection, and its smart safety controls ease workflow and help avoid experimental errors. Varioskan LUX raises the bar for reliability and ease, with technology that works in researchers' best interest.

The Varioskan LUX multimode reader has received HTRF™ certification from Cisbio Bioassays and DLReady™ validation from Promega Corporation.

The Varioskan LUX is a modular, upgradable instrument that provides excellent usability across a variety of applications.

  • Up to five measurement technologies: Absorbance (UV-Vis), Fluorescence intensity (incl. FRET), Luminescence (direct and filtered), AlphaScreen/AlphaLISA and Time-resolved fluorescence (incl. TR-FRET/hTRF)
  • Filter and monochromator optics
  • Spectral scanning for assay optimization
  • Five measurement modes including end point, kinetic, spectra, kinetic spectra and multipoint
  • Integrated gas control module for setting CO2 and O2 concentrations for cell based assays
  • Simultaneous dispensing and measurement for signal monitoring at the start of a reaction
  • Automatic dynamic range selection, based on signal intensity of each well
  • Smart safety controls designed to identify and alert the user of potential problems before they happen
  • Automated instrument calibration and self-diagnostics for reliable performance
  • Certified HTRF compatible reader by CisBio Bioassays
  • Validated DLReady by Promega Corporation

Varioskan LUX is paired with the powerful and intuitive SkanIt Software, providing excellent usability and flexibility.

  • License free—Each user can install the software on his/her computer
  • Intuitive and flexible interface for multiple users and assays
  • Innovative Virtual Pipetting Tool makes it easy to define samples to plate layout
  • Measurement data is continuously saved to the database, so there's no data lost due to unexpected interruptions such as power outages or accidental aborting
  • Simplified data processing and export
    • Export data in a single mouse click, or have it emailed automatically at the end of the run
    • Several file formats for exporting results: *.xlsx, *.pdf, *.xml, and *.txt
  • Shows real-time spectra and kinetic curves during the measurement
  • Built-in calculations for data analysis (e.g. blank subtraction, average/SD/CV%, standard curve, dose response, quality control, classification, kinetic and spectral analysis, custom formula, etc.)
  • Comprehensive result reports with traceability to runtime actions and settings
  • Two editions available: Research Edition for life science researchers, and Drug Discovery Edition which offers features needed for the FDA 21 CFR Part 11 compliance.

The Varioskan LUX is modular and upgradeable, so you can build the system that best suits your needs. For more information, contact a sales representative.

TRUSTED_SUSTAINABILITY

Specifica

Compatibility Automation
Detector Type Photomultiplier Tube (PMT)
Dimensions (L x W x H) 58 x 53 x 51 cm (23 x 21 x 20 in.)
Incubator Temperature Ambient +4° to 45°C
Interface PC Software (Thermo Scientific SkanIt Software)
Light Source Xenon Flash Lamp
Measurement Speed 15 s for 96-well Plate, 45 s for 384-well Plate, 135 s for 1536-Well Plate (Minimum Times)
Measurement Technology Absorbance, Fluorescence Intensity
Plate Type 6 to 1536-well Plates (Absorbance 6 to 384-well Plates), μDrop Plates
Product Line Varioskan
Reading Options Top
Read-out Range 0 to 6 Abs
Shaking Orbital
Software Type SkanIt Software
Spectral Scanning Speed < 2.2 s/Well 400 to 500 nm, 1 Flash, 2 nm Step
Wavelength Selection Double Monochromator (Absorbance and Spectral Scanning), Double Excitation and Emission Monochromator (Fluorescence Intensity)
Accuracy 0.003 Abs or ±2%, at 200 to 399 nm (0 to 2 Abs)
0.003 Abs or ±1%, at 400 to 1000 nm (0 to 3 Abs)
Accuracy (Photometric) 0.003 Abs or ±2% at 200 to 399 nm (0 to 2 Abs), 0.003 Abs or ±1%, at 400 to 1000 nm (0 to 3 Abs)
Depth (English) 23 in.
Depth (Metric) 58 cm
Dynamic Range Fluorescence intensity: top reading > 6 decades
Height (English) 20 in.
Height (Metric) 51 cm
Hertz 50/60 Hz
Includes SkanIt PC Software, Research Edition
Linearity 96-well plate: ±2% (0 to 4 Abs at 450 nm), 384-well plate: ±2% (0 to 3 Abs at 450 nm)
Measurement Type Endpoint, Kinetic, Spectra, Multipoint, Kinetic Spectra
No. of Dispensers None
Precision SD < 0.001 Abs or CV < 0.5%, at 450 nm (0 to 3 Abs)
Sensitivity Fluorescence intensity (top reading): < 0.4 fmol fluorescein/well (black 384-well plate)
Software Language Versions English, German, French, Spanish, Portuguese, Italian, Japansese, Chinese
Voltage 100/240 V
Wavelength Range Absorbance: 200-1000 nm; Fluorescence intensity: Excitation: 200-822 nm, Emission: 270-840 nm
Weight (English) 119 lb
Weight (Metric) 54 kg
Width (English) 21 in.
Width (Metric) 53 cm
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In the Varioskan LUX Multimode Microplate Reader, how is running a TRF spectrum by setting excitation at 335 nm and using emission range different from running a filter-based TRF assay? Why does SkanIT Software have the TRF spectrum option?

The TRF spectrum option is useful for spectral analysis, assay and label development, and optimization purpose. For example, when a new TRF chelate label is developed, TRF spectrum measurement can be used to analyze the spectra when a lot of label is loaded in the well.

When the TRF spectrum option is used, the sensitivity is not sufficient for actual TRF assays as the instrument sensitivity decreases by about 200-fold. Hence, the TRF spectrum option should not be used for normal TRF assay applications. For optimal results, the TRF spectrum option should be used for TRF spectral scanning but not for running actual TRF assays. Actual TRF assays must be performed using filter-based TRF optics in the LAT module.

If the Varioskan unit does not have TRF optics in the LAT module, TRF spectral scanning cannot be performed. In this case, TRF spectral scanning can only be performed using TRF-based filters.

How to remove a stuck microplate from the Varioskan LUX Multimode Microplate Reader



Power off the Varioskan LUX instrument, open the sliding door, and then press both springs outward (1) to unlock the bottom of the front panel. Tilt the bottom of the panel outwards slightly and lift up to remove.



Look inside the instrument to locate the tray (3). Gently slide the tray to the left and then towards you to access the plate. Check for jams and make sure that the correct holder is installed. When finished, push the tray back into the instrument (exact position doesn’t matter as long as it is completely inside) and reinstall the front panel.

Note: Remove the bottom front cover on the instrument, in order to access the plate carrier, and manually pull out the plate. Do not attempt to grab the plate back through the plate door, otherwise it can cause alignment issues that will require a repair.

Can relative fluorescence units (RFUs) be compared between two different plate readers?

Relative fluorescence units (RFUs) cannot be compared between two different microplate readers. RFU values are arbitrary and dimensionless, meaning that the actual numbers don't have a specific physical meaning, but the relative values are used for comparison. The critical measurement is the ratio of signal to background.

Whether the signal is low or high is 100% dependent on the baseline, i.e., if the sample signal is 2 and the baseline is 1, then it is a low signal but if the sample signal is 2 and the baseline is 0.01, then it is a very high signal. Instruments that typically give sample signals in the tens of thousands RFUs also typically have baseline RFUs somewhere in the tens or hundreds. For example, the Varioskan Microplate Reader is designed such that the baseline is kept below 0.1 RFU.

How can I move the Varioskan LUX Multimode Microplate Reader from one place to another?

We recommend transporting the Varioskan LUX Multimode Microplate Reader in the original packaging it was delivered in, with proper padding in the box, and after securing the tray holder transport lock on the instrument. See page 84 of the user manual for instructions to refit the transport lock of the tray holder.

Note: We also offer a service to move the instrument. Please reach out to serviceproducts@thermofisher.com.

When I try to run RediPlate 96 RiboGreen RNA Kit (Cat. No. R32700) on my Varioskan LUX instrument, it says there is no plate. What should I do?

When using a strip plate with the Varioskan LUX plate reader, ensure that there is a strip covering the D6 well, as this is where the instrument checks for the presence of a plate. The strip does not need to be active; it just needs to be in place for the instrument to verify the plate's presence. Alternatively, you can resolve this issue by adjusting the software settings. Go to the general settings and uncheck the box labeled "Check plate and tip prime vessel before session execution." This will immediately solve the problem.

Which is the best DNA or RNA quantification instrument?

All of the DNA instruments offered by Thermo Fisher Scientific are of excellent quality. To find the right instrument to quantify DNA or RNA in your lab, explore the detailed comparison of UV-Vis spectrophotometers and fluorometers. Things like sensitivity, throughput and budget may be initial considerations when selecting a DNA quantification instrument. You may also consider whether you need target specificity, sample purity information, RNA quality information, or broad dynamic range.

What is the difference between UV and fluorescence DNA quantification? Which DNA quantification technology should I choose?

UV and fluorescence technologies work differently to quantify DNA. UV quantification relies on the intrinsic absorptivity of DNA and RNA molecules, while fluorescence quantification uses dyes that specifically bind to your molecule of choice. With UV technology, quantification isn't as sensitive, but it has a broader dynamic range and also gives data about sample purity‒plus it is faster because there is no reagent prep. With fluorescence technology you get higher sensitivity and molecule-specific data, but it has lower dynamic range and reagent prep is required. The technology you need will depend on what features are important for your lab and experimentation.

Is a PC included with purchase of the Varioskan LUX Multimode Microplate Reader?

No, a PC is not included with purchase of the Varioskan LUX Multimode Microplate Reader.

For the Varioskan LUX Multimode Microplate Reader, do you have plate reader software that meets CFR 21 Part 11 regulations? Does your software have tracking function/electronic signature? Do you have a clinical version of the software?

Yes, these functions are available. However, you will need to purchase SkanIt Drug Discovery Edition Software separately (Cat. No. 5187149).

Is software included with purchase of the Varioskan LUX Multimode Microplate Reader?

Yes, SkanIt Software Research Edition is included with purchase of the reader.

Can the µDrop Plate be used with the Varioskan LUX Multimode Microplate Reader?

Yes, the µDrop Plate can be used. Prewritten protocols are available in the SkanIt Software Cloud library.

Does the Varioskan LUX Multimode Microplate Reader have quadruple monochromators?

Yes, it uses 2 excitation monochromators and 2 emission monochromators.

What is the useful lifespan of the Xenon Flash lamp in the Varioskan LUX Multimode Microplate Reader?

Typically, the lifespan is 10E9 flashes. This is equivalent to reading about 1 million 96-well microplates using 100ms measurement time per well.

With the Varioskan LUX Multimode Microplate Reader, when do I need to use pathlength correction?

Pathlength correction is typically used when measuring DNA, RNA, or protein concentrations in the UV range.

How many dispensers (injectors) can be ordered with the Varioskan LUX Multimode Microplate Reader? Can they be added after purchase?

Up to 2 dispensers (injectors) can be ordered with the Varioskan LUX Multimode Microplate Reader.

They can be added to the reader after purchase, but they must be installed by a Thermo Fisher Scientific Field Service Engineer.

Which plates can be used with the Varioskan LUX Multimode Microplate Reader?

In photometry mode, 6-well to 384-well plates can be used.
In all other read modes, 6-well to 1,536-well plates can be used.

Dispensing can be carried out with 6-well to 384-well plates.

What plate colors can be used for luminescence with the Varioskan LUX Multimode Microplate Reader?

White plates are typically used for luminescence.

With the Varioskan LUX Multimode Microplate Reader, what plate colors can be used for fluorescence intensity?

Black plates generally provide the best results; they also have the lowest background fluorescence.

Transparent or white plates can be used, but the sensitivity is often lower.

Can the Varioskan LUX Multimode Microplate Reader be integrated with robotics?

Yes, it can. To do so, you must purchase the robotic tray separately (Cat. No. N03079).

The SkanIt Automation Interface manual is available from your local support team.

Can I add gas control after purchase of the Varioskan LUX Multimode Microplate Reader?

No, the gas control module must be included with the instrument at the time of purchase. Please contact your Thermo Fisher Scientific sales representative for further information.

Can I add luminescence, TRF, AlphaScreen and dispensers (injectors) after purchase of the Varioskan LUX Multimode Microplate Reader?

Yes, all these options can be added after purchase. However, they require upgrades performed by Thermo Fisher Scientific Field Service Engineers in your lab.

What is the maximum plate height that can be used with the Varioskan LUX Multimode Microplate Reader?

The top of the plate, including any lid in use, cannot exceed the top rim of the plate tray.
The actual maximum height depends on which plate adapter is installed in the plate tray.

Adapters for plates with lids can be ordered separately.

Which plate adapters ship with the Varioskan LUX Multimode Microplate Reader?

The Varioskan LUX Multimode Microplate Reader ships with adapters for use with 6-well to 48-well, 96-well and 384 well plates without lids.

Adapters for use of plates with lids as well as 1,536-well adapter for plate without lid and 96-well adaptor for PCR plate without lid can be ordered.

https://www.thermofisher.com/order/catalog/product/N02693?SID=srch-hj-N02693

I get the following error message from the Varioskan LUX Multimode Microplate Reader with SkanIt Software: "Tip priming vessel not inserted"/"Dispenser tip priming was attempted when there were no waste wells inserted into the plate tray." How do I make this go away?

You are seeing this error because a waste strip was not detected in the plate tray.

The Varioskan LUX Multimode Microplate Reader ships with a strip plate. Remove one column of strip wells from the plate and insert into the slot on the left side of the plate tray to prevent the error message from appearing.

For details see Figure 2-15 on page 23 of the Varioskan LUX Multimode Microplate Reader technical manual.

Do I need to use filters in the Varioskan LUX Multimode Microplate Reader?

Absorbance and fluorescence intensity measurements do not use filters. For luminescence applications which require filters, users should purchase the filters separately and install them in the luminescence module.

Excitation filters for time-resolved fluorescence (TRF) and AlphaScreen are included when these options are ordered; however, emission filters must be purchased separately, as they can vary based on the user's application.

What is the wavelength range for the Varioskan LUX Multimode Microplate Reader?

In photometry mode, the wavelength range is 200 to 1000 nm (in 1 nm increments).
In fluorometry mode, the wavelength range using top reading is 200 to 1000 nm for excitation and 270 to 840 nm for emission (in 1 nm increments).

Ranges for other options can be found on our website at: https://www.thermofisher.com/us/en/home/life-science/lab-equipment/microplate-instruments/microplate-readers/varioskan-lux-multimode-microplate-reader.html


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