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Molecular Devices Spectramax M2e Multimode Microplate Reader, Molecular Devices (CAT#: STEM-S-0737-LGZ)

Highlights

1. Dual monochromator, multi-detection microwell reader with dual mode cuvette port and 96 or 384 microwell reader capability.
2. Detection methods include absorbance (UV-Vis Abs) and fluorescence intensity (FI), and its optical performance is comparable to top-level dedicated fluorescence spectrometers or spectrophotometers.
3. Endpoint, Kinetic, Spectral and Area Well Scan read types and PathCheck allow for homogeneous and heterogeneous microplate analysis in this flexible system.

Cat Number: STEM-S-0737-LGZ

Application: DNA, RNA and protein quantification and purity; PicoGreen, NanoOrange and Bradford; elisa and enzyme kinetics; drug lysis profiles; live or dead viability or cytotoxicity assays; Caspase-3 and protease assays; cAMP assays using the CatchPoint kit ; and low volume applications.

Model: Spectramax M2e

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Description

The manufacturer of Molecular Devices Spectramax M2e Multimode Microplate Reader is Molecular Devices. Model is Spectramax M2e. Superior dual-mode reader for absorbance and fluorescence intensity based analysis. Top or bottom read modes can be selected to increase the sensitivity of solution and cell-based assays. Includes: SoftMax Pro software version 5.4.1, Computer Workstation w/ Flat Screen Monitor, Complete Set of Communication & Power Cables, User/Reference Manuals for M2 and SoftMax Pro software.

Specification

Condition: used
Absorbance Photometric Performance
Wavelength range: 200-1000 nm
Wavelength selection: Monochromator
Wavelength bandwidth: ≤ 4.0 nm
Wavelength accuracy: ±2.0 nm
Dual monochromators: 1 nm increments
EX 250-850 nm
EM 360-850 nm
Bandwidth (EX, EM): 9, 9 nm
Detection limit: 3.0 fmol/well FITC 200 μL in 96 wells
Wavelength repeatability: ±0.2 nm

Features

1. Dual monochromator, multi-detection microwell reader with dual mode cuvette port and 96 or 384 microwell reader capability.
2. Detection methods include absorbance (UV-Vis Abs) and fluorescence intensity (FI), and its optical performance is comparable to top-level dedicated fluorescence spectrometers or spectrophotometers.
3. Endpoint, Kinetic, Spectral and Area Well Scan read types and PathCheck allow for homogeneous and heterogeneous microplate analysis in this flexible system.
4. The FI and Abs microwell analyzers with built-in ratio tube ports can easily convert and optimize very low throughput analysis to medium and high throughput microplate analysis.
5. Faster, more precise results and reagent savings.
6. Combined absorbance and fluorescence intensity analysis can be run by issuing a single read command.
7. In endpoint and kinetic measurement protocols, up to four wavelength pairs can be read at once, allowing for increased efficiency. Key Features: Dual Mode Tube Ports, Robot Compatibility, Multi-Label, Dual Monochromator, and PathCheck.
8. With up-reading and down-reading modes, it has higher sensitivity for solution and cell analysis.

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