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Spectroscopic measurement Possible to construct self-made Raman using each module Modular 3D microscopic laser Raman spectrometer Nanofinder FLEX-Nanofinder FLEX
Spectroscopic measurement Possible to construct self-made Raman using each module Modular 3D microscopic laser Raman spectrometer Nanofinder FLEX-Tokyo Instruments, Inc

Spectroscopic measurement Possible to construct self-made Raman using each module Modular 3D microscopic laser Raman spectrometer Nanofinder FLEX
Tokyo Instruments, Inc

Tokyo Instruments, Inc's Response Status

Response Rate

100.0%

Response Time

31.6hours

Relatively Fast Response


About This Product

■Product overview

Confocal Raman microscopy allows for non-destructive, non-contact, and trace analysis in the atmosphere. Furthermore, it is possible to analyze samples in aqueous solutions and glass, as well as microscopic foreign particles of submicron size, which are difficult to measure using infrared absorption spectroscopy. Nanofinder®FLEX is a confocal laser microscope laser Raman spectrometer with high sensitivity and high spatial resolution, and is capable of acquiring Raman images of minute areas in a short time. In addition, each module (excitation laser, Raman optical unit, spectrometer) is connected via fiber, so it can be installed anywhere.

■Features

・Raman spectroscopy image with spatial resolution of 300 nm or less ・High sensitivity (4th order light of Si is detected within 1 minute) Low irradiation laser 4 mW ・Adoption of confocal laser microscope ・Raman optical unit reduced to A4 size ・No adjustment required as there are no moving parts ・Uses piezo stage (X-Y-Z) for feed accuracy on the nanometer order ・With the adoption of optical fiber, the installation location of the laser and spectrometer is free. ・You can use your own laser, spectrometer, and cooled CCD (manufactured by ANDOR). ・Uses 2D/3D software from a well-established series ・With deconvolution software, spatial resolution is further improved by 1.5 times

■Achieved low cost by pursuing thorough miniaturization while maintaining high spatial resolution and high sensitivity.

Nanofinder®FLEX is a general-purpose product that has the basic performance of the Nanofinder®30 3D microlaser Raman spectrometer, and each unit is modularized.

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    Spectroscopic measurement Possible to construct self-made Raman using each module Modular 3D microscopic laser Raman spectrometer Nanofinder FLEX

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1 Models of Spectroscopic measurement Possible to construct self-made Raman using each module Modular 3D microscopic laser Raman spectrometer Nanofinder FLEX

Image Part Number Price (excluding tax) Additional features Installation space Spatial resolution Power consumption Sensitivity Excitation laser Semiconductor laser Excitation laser common specifications Excitation laser Others Excitation laser DPSS laser Control/analysis PC software-2 Control/analysis PC software-1 Cooled CCD detector Number of elements Cooled CCD detector element size Cooled CCD detector detection area Cooled CCD detector Cooling temperature Raman optical system unit Piezo stage (closed loop) -4 Piezo stage (closed loop) -3 Piezo stage (closed loop) -2 Piezo stage (closed loop) -1 System configuration Imaging spectrometer MS3504i type-6 Imaging spectrometer MS3504i type-5 Imaging spectrometer MS3504i type-4 Imaging spectrometer MS3504i type-3 Imaging spectrometer MS3504i type-2 Imaging spectrometer MS3504i type-1
Spectroscopic measurement Possible to construct self-made Raman using each module Modular 3D microscopic laser Raman spectrometer Nanofinder FLEX-Part Number-Nanofinder FLEX

Nanofinder FLEX

Available upon quote

Cryostat, temperature control stage, electrochemical cell, TCSPC board, spectral database search software, etc.

Microscope and Raman optical unit 600 (W) ×700 (H) ×850 (D) mm (contains spectrometer/CCD, piezo controller, PC, etc.)

Plane <300 nm, depth <900 nm

1,200 W, voltage 100 V

High sensitivity measurement of Si Raman 4th peak within 1 minute/point (488 nm/5 mW irradiation)

Wavelength: 785 nm
Maximum output 40 mW (@fiber exit)

Fiber output type, FC connector connection
Fiber length 2 m, output continuously variable

473 nm, 488 nm, 514 nm, 633 nm, 671 nm etc.
We also support fluorescence lifetime measurement applications (pulsed laser).

Wavelength 532 nm
Maximum output 25 mW (@fiber exit)

Nanofinder® dedicated software
・2D/3D imaging, slices at arbitrary positions
・Spectral and image analysis
・Spectral peak fitting
・Deconvolution

Nanofinder® dedicated software
・Mapping control
・Data acquisition and storage
・Display of Raman and fluorescence spectra
・Calibration function for various spectrometers

1,024×127
(DU401A-BV type, DU401A-BRDD type)

26×26 μm2
(DU401A-BV type, DU401A-BRDD type)

26.6×3.3mm
(DU401A-BV type, DU401A-BRDD type)

-100℃ (water cooling), -80℃ (air cooling)
(DU401A-BV type, DU401A-BRDD type)

Only one wavelength of excitation laser can be used (replace the unit for each excitation laser wavelength)
Spectrometer and excitation laser are connected with FC connector

Built-in sensor: capacitive sensor

Repeatability: ±5 nm

Resolution: 5 nm

X-Y-Z travel: 100 μm

Upright microscope
Raman optical unit
imaging spectrometer
Cooled CCD detector
Piezo stage (X-Y-Z)
excitation laser
Controller/Software/23 inch LCD

Number of gratings installed
up to 4 pieces

Wavenumber resolution
2cm-1@550nm, 1,200G/mm

Wavelength resolution
0.06 nm@550 nm, 1,200 G/mm

Inverse linear dispersion
2.37nm/mm@1,200G/mm

Focal length
35cm, F/3.8

Connecting fiber shape
SUS sleeve Φ10×60 mm

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About Company Handling This Product

Response Rate

100.0%


Response Time

31.6hrs

Company Overview

Tokyo Instruments, Inc., established in 1981, and headquartered in Tokyo, Japan, is a manufacturer of opto-ele...

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