RAMOS N500 3D Scanning Laser Raman Microscope

Confocal Raman Solutions

Description

Simultaneous / Multifunctional Analysis: - Raman - Luminescence - Laser Reflection & Transmission - Spectral and Polarization measurements The pinhole aperture rejects the residual scattered rays originating from any out-of-focus points on a sample. Spatial resolution less than 500 nm (Z), 200 nm (XY) Spectral resolution ~0.25 cm-1 Wavelength accuracy in spectrum with CCD detector 0.005 nm (1800 l/mm) Specially designed imaging spectrometer incorporates many features that make it ideal for confocal Raman measurements. The image of the pinhole is projected to a multichannel detector without any aberrations. People with little or no experience in Raman spectroscopy can use RAMOS N500. The system is highly modular and fully automated. Up to 5 lasers can be used. The lasers can be switched from one to another with just one click. Motorized control for laser power, beam diameter, polarization orientation, pinhole size, and grating is provided.

  • Scientific research equipment
  • Raman Microscope
  • Confocal microscope
  • Laser microscope

Product characteristics

Microscope type
Upright or inverted
Objective lenses
CFI Plan Fluor 4x, 10x, 20x, 40x, 60x, CF Epi Plan APO 100x
Stage
Automated, 114x75 mm travel range. Accuracy (1 mm of translation) 0.06 μm. XY repeatability ± 1 μm
Z-scanner (objective)
Piezo scanner. Translation range 80 μm. Step 50 nm. Repeatability <6 nm
Spectral range
325 - 1100 nm
Laser radiation delivery
Single, double, triple or penta input port
Polarizers (excitation and detection channels)
Glan-Taylor prism, 325 - 1000 nm
Half-wave plate (λ/2) positioner
Five-position
Beam expander
Magnification factor 1-4
Edge filter positioner
Five-position
Interference filter positioner
Six-position
Optical mechanical unit and microscope coupling
Three- or five- position switch
Spatial resolution
XY: <300 nm, Z: 600 nm (532 nm laser, 100x, NA = 0.9)
Monochromator focal length
520 mm
Monochromator ports
1 input, 2 output
Flat field
28 x 10 mm
Grating unit
4-position turret
Grating choice
150, 300, 600, 1200, 2400, 3600 l/mm, Echelle (75 l/mm)
Spectral resolution
0.25 cm-1 for Echelle grating, 0.9 cm-1 for 1800 I/mm grating (wavelength 500 nm)
Confocal pinhole
Width 0 - 1.5 mm, step size 0.5 μm
Wavelength accuracy with CCD camera
0.005 nm (1800 I/mm grating)
Scanning method
Galvano-scanners of XY mirrors
Scanning speed
3 sec (1001 x 1001 pixels, min. step 20 nm)
Scanning region
150 μm x 150 μm (using 100x objective lens)
CCD camera type
Digital CCD camera HS101H
Sensor
Back-thinned CCD array 2048 x 122
Pixel size
12 x 12 μm
Sensor cooling
Two-stage Peltier cooling with temperature stabilization to -45°C
Camera ADC
16 bit
Objective positioner
Three-coordinated (XYZ)
Laser beam attenuator
VND filter
Confocal pinhole
Variable. From 0 to 1.5 mm. Step size 0.5 μm
Confocal laser microscope detector
PMT
Lasers
325nm (10 mW), 441.6nm (50 mW), 473nm (22/50 nm), 532nm (22/50 mW), 633nm (10 mW), 785nm (100 mW)

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121087 Moscow - Russia

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