GENETIX-A300 Multi-mode UV-VIS, Fluorescence


  • Long life xenon lamp which can be used for 10 (10 years)
  • Fast reading mode only need time 15 s for 96 well whole plate
  • Can be used for spectral scanning, endpoint and kinetic detection

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Technical Parameter

Basic Information Linear dynamic range 6 logs
Type Genetix-A300 Crosstalk ≤0.005 %
Function Absorbance, fluorescence, luminescence Shaking & Incubation
Plate Formats 96 & 384 wells (6 / 12 / 24 / 48 optional) Shaking mode Linear, circular, double circular
Absorbance Incubation

temperature

RT +4 °C to 45 °C
Light source High energy xenon flash lamp Temperature uniformity ±0.5 °C @ 37 °C
Detector PD Software  
Wavelength accuracy 2 nm Software interface English (VER.)
Wavelength repeatability(SD) 0.2 nm Screen size 10-inch LCD display
Half width (FWHM) <2.5 nm Operation method Touch capacitive screen; use mouse
Wavelength range 200-1000 nm, 1 nm step Data capacity 10 GB
Measuring range 0-4 OD Compatibility Support PC software, win7 to win10 64 bit
Resolution 0.0001 OD Data transmission Test data report can be uploaded to PC server via FTP
Accuracy 96-precision mode ±(1.0 %+0.003Abs) @ (0.0-2.0Abs] ±2.0 % @ (2.0-3.0Abs] Others
Repeatability CV < 1.0 % or Fast (0.0-3.0] CV < 0.5 % or Accurate (0.0-3.0] Instrument port 2 USB A type ports / 1 USB B type port 1 Ethernet port CAN bus interface (injector connection)
Stray light 0.1 % @ 220 nm Size (W x D x H) 420 mm x 550 mm x 386 mm
Linear R2>0.999 @ [0.0-3.0] Power supply AC 100 to 240 V, 50 to 60 Hz
Reading time 96-well plate: fast < 15 s (A1 to A1) Power 160 W 24 V 6.67 A (can be adjusted according to hardware requirements)
Fluorescence Weight 33 kg
Reading mode Top reading u-Nano Ultra-Micro Plate (Optional)
Excitation light source High energy xenon lamp Number of samples 1-16
Detector PMT Sample detection volume 2-4 μL
Wavelength range EX: 200-1000 nm; EM: 270-850 nm Automatic Injector Module (Optional)
Filter EX / EM 3 groups Quantity 1, 2
Detection limit ≤1 pM Dispensing volume 5-1000 μL, 1 μL increment
Linear dynamic range <6 logs Liquid injection speed 20-500 μL / s
Luminescence Accuracy ±1 μL @ 5-50 μL ±2% @ 51-1000 μL
Detector   Waste liquid collection 50 mL
Detection limit   *Upgradable to TRF & Fluorescence Polarization

 

Ordering Information

No. Code Product Description
1. GX-00-19050 Genetix A300 Multi-mode UV-VIS, Fluorescence & Luminescence Plate Reader
2. GX-01-19011 Readerlt-ll PC analysis software
3. GX-02-19011 u-Nano Ultra-micro plate
4. GX-03-19011 ABS optical performance validation plate
5. GX-01-19051 Automatic injector

 

Download Brochure

The Genetix-A300 microplate reader offers affordable high performance detection solutions, powered by monochromator and filter based technologies. The Genetix-A300 microplate reader is a high performance multimode detection instrument to provide a simple means of detecting advanced chemistries. This instrument provides researchers UVvisible absorbance measurements, flexible use of filters for fluorescence intensity and filtered luminescence measurements. The Genetix-A300 is also compatible with the customers modular upgraded functions. Users can upgrade to equip the low volume u-Nano Ultra-Micro plate and the automatic injector as your need. The instrument is operated by an Android system, a 10-inch touch screen, APP software, which provides quick-to-use and easy navigation through the control options. Exporting your result and data are seamless with a varity of options, including export to your local data network. The software will be able to provide the required technical element of a FDA 21 CFR Part 11 compliant system to be used with the appropriate laboratory workflow.

The instrument is equipped with a 10-inch touch screen, no need to connect a computer. The layout, operating parameters, and algorithm settings and the other informations can be completed by a single machine. The built-in software of the instrument includes multiple algorithm analysis functions of standard curve, qualitative and quantitative, basic calculation, kinetics, spectroscopy and etc, which makes more convenient for the processing and research of experimental data. In addition, the Genetix-A300 has a code scanning function, which can not only identify the filters informations, but also create a QR code for the experimental program or standard curve. Researcher can quickly import the experimental program into the instrument through the QR code. The Genetix-A300 represents a good combination of performanceand flexibility for all of your basic research, life science study and assay development.

UV / Vis Absorbance
Wavelength selection in Genetix-A300 is done by using an advanced monochromator system. Any wavelength between 200 to 1000 nm can be selected. Using the spectral scanning feature, the whole spectrum of a sample can be scanned in 1 nm increments to allow identification of the optimal measurement wavelength for a new assay.

Fluorescence
Genetix-A300 is equipped with filter-based fluorescence optics and dichroic mirrors for screening applications such as fluorescence polarization, and TR-FRET. Standard applications such as fluorescence-based DNA/RNA quantification assays are not only supported in microplates, but also in low volume u-Nano Ultra-Micro plate. The independent removable filter modules make it more convenient for users to replace the filter. The filter-based fluorescence optics detection ensures high sensitivity, greater light transmission, precise control over transmitted peak shape, excellent blockage of undesired wavelengths. This is ideal for excitation and emission applications. The filters are also the technically preferred and most cost efficient technology for non-absorbance based assays.

Luminescence
Genetix-A300 has been designed with a dedicated luminescence detection system for both flash and glow based assays. It can offer excellent sensitivity and wide dynamic
range in luminescence measurement. The optimized precision dual-channel injectors ensure the detection performance of the 96-well and 384-well plate. The PMT enhances the maximum sensitivity of weak luminescence signals, prevents oversaturation of high signals, effectively improves the detection range of luminescence and minimizes signal crosstalk between wells.

 

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