- Molecular Devices SpectraMax M2e Multi-Mode Microplate Reader
 
- SoftMax 6.2.2 Software installed
 
After its initial disinfection and inspection, our technicians tested this SpectraMax M2e with the following results:
 
- Control panel works: PASSED
 
- Runs a spectrum scan of holmium oxide standard successfully: PASSED
 
- Data was spot on to published specs: PASSED
 
Absorbance Photometric Performance
 
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Monochromator, tunable in 1 nm increments | 
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≤ 4.0 nm full width half maximum | 
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±2.0 nm across wavelength range | 
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Photometric accuracy linearity (plate), 0-2.0 OD |  | 
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Photometric precision (repeatability) |  | 
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Photometric stabilization |  | 
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None (continuous referencing of monochromatic input) | 
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Automatic before every endpoint read and before the first kinetic read | 
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Xenon flash lamp (50 Watts) | 
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Top down (plates); horizontal (cuvettes) | 
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Endpoint baseline noise (cuvette) | 
± 0.003 OD @190, 405, 850 nm | 
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Endpoint kinetic noise (cuvette) | 
± 0.003 OD @190, 405, 850 nm 
≥ 0.2 mOD/min and ≤ 0.2 mOD/min | 
 
Fluorescence Intensity Performance
 
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3.0 fmol/well in 200 µL FITC (96 well microplate and 15 pM) 
3.0 fmol/well in 75 µL FITC (384 well microplate and 40 pM) 
 
5.0 fmol/well in 200 µL FITC (96 well microplate and 25 pM) 
5.0 fmol/well in 75 µL FITC (384 well microplate and 67 pM) | 
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Excitation wavelength range |  | 
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Emission wavelength range |  | 
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Monochromators, tunable in 1 nm increments | 
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Bandwidth (excitation, emission) |  | 
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Number of excitation/emission pairs per plate |  | 
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10^6 in 96-well black plates: auto gain circuitry | 
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Self-calibrating with built-in fluorescence calibrators | 
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Xenon flash lamp (1 joule/flash) | 
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Time-Resolved Fluorescence Performance
 
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Monochromators, tunable in 1 nm increments | 
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Bandwidth (excitation, emission) |  | 
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Precision data collection | 
1–100 flashes; delay of 0–600 µs before read; integration time selectable 50–1500 µs | 
 
Luminescence Photometric Performance
 
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10 amol/well alkaline phosphate 200 μL | 
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< 0.5% in 96- and 384-well microplates | 
 
Photometric Analysis Modes
 
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Single wavelength Absorbance, %Transmittance, Fluorescence reading of the cuvette (or test tube) | 
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Using SoftMax Pro Software | 
Express data as Absorbance, %Transmittance, Fluorescence, Luminescence | 
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Single wavelength reading of microplate and/or cuvette | 
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Multiple wavelength (up to four) reading of microplate or cuvette | 
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Kinetic and kinetic graphics of microplate and/or cuvette | 
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Spectral scan (190–1000 nm) of microplate and/or cuvette | 
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Well scan of microplate using absorbance or fluorescence intensity | 
 
Measurement Time (Calibration Off)
 
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Microplate read time (endpoint), Standard read | 
96 wells in 24 seconds (single wavelength, absorbance) | 
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96 wells in 15 seconds (single wavelength, fluorescence intensity) | 
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384 wells in 1:57 minutes (single wavelength, absorbance) | 
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384 wells in 45 seconds (single wavelength, fluorescence intensity) | 
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Microplate read time (endpoint), Standard read with PathCheck Pathlength Measurement Technology | 
96 wells in 2:07 minutes (single wavelength, absorbance) | 
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384 wells in 7:19 minutes (single wavelength, absorbance) | 
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Microplate read time (endpoint), Speed read | 
96 wells in 18 seconds (single wavelength, absorbance) | 
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384 wells in 49 seconds (single wavelength, absorbance) | 
 
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45*K nm/min, where K = wavelength interval | 
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130*K/min, where K = wavelength interval | 
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< 0.5% in 96- and 384-well microplates | 
 
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Isothermal when temperature regulation is not enabled | 
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4°C above ambient to 45°C when temperature regulation enabled. | 
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Note: To achieve temperature regulation at 45°C, the ambient temperature must be > 20°C. | 
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± 1.0°C for microplate and cuvette chamber | 
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Temperature uniformity at equilibrium |  | 
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15–30 minutes (measured on air) after initiation of temperature regulation | 
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Temperature regulation diagnostics | 
Temperature regulation system is continuously monitored and updated | 
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Plate lid required to minimize evaporative cooling |