Buyer's Guide … the one with the Encyclopedia!

Where to Buy Raman Spectroscopy Equipment

Raman spectroscopy is a wide class of methods of spectroscopy which are based on either spontaneous or stimulated Raman scattering. There are instruments for polarized Raman spectroscopy, surface- or tip-enhanced spectroscopy, resonance Raman spectroscopy, stimulated Raman spectroscopy, coherent anti-Stokes Raman spectroscopy and hyper Raman scattering.

ESee also our encyclopedia article on Raman spectroscopy!
Related articles: Raman scattering, laser spectroscopy

Related products: spectroscopy equipment, Raman microscopes, fluorescence spectroscopy equipment

Related product categories: detectors and measurements, applications

47 suppliers for Raman spectroscopy equipment are listed in the RP Photonics Buyer's Guide. Both manufacturers and distributors can be registered.

Suppliers with Ad Package
CompanyProduct Description

RPMC Lasers, Inc.

8495 Veterans Memorial Pkwy
O’Fallon MO 63366
United States
www.rpmclasers.com
Social: Facebook, LinkedIn, Twitter, YouTube
E-mail:

RPMC Lasers offers a wide range of wavelength stabilized and singe frequency laser sources for Raman spectroscopy. Additionally, a wide range of pulsed laser sources are available for coherent Raman spectroscopy such as SRS and CARS.

All wavelengths.

TOPTICA Photonics AG

Lochhamer Schlag 19
82166 Gräfelfing
Germany

Quality: ISO 9001:2015
www.toptica.com
Social: Facebook, LinkedIn, YouTube
E-mail:
(See the company profile page for additional contact information.)

For Raman spectroscopy, a wavelength of 532 nm is regularly used, as well as 785 nm (to reduce autofluorescence of the sample). For semiconductor inspection shorter wavelengths of 405 nm, 266 nm, or even 213 nm are commonly used.

Most recent, upcoming time-resolved Raman spectroscopy and microscopy applications (i.e measurements on airplane engine exhausts to optimize the combustion process and reduce fuel consumption) trigger the need for pulsed laser sources operating in the femto- and picosecond regime. This demand is covered by the FemtoFiber laser family, which have already proven its outstanding performance and suitability in various broadband CARS and SRS applications.

APE Angewandte Physik und Elektronik GmbH

Plauener Straße 163–165 / Haus N
13053 Berlin
Germany
www.ape-berlin.de
Social: LinkedIn, YouTube
E-mail:
Raman spectroscopy equipment

The picoEmerald system facilitates Stimulated Raman Scattering (SRS) microscopy for non-invasive label-free imaging. SRS microscopy provides almost background-free imaging contrast. It allows simple spectroscopic identification of the samples’ fingerprint region based on Raman spectra databases. Imaging at high video rates is possible due to very short integration times of the SRS detection module (lock-in amplifier). Switching over to SRS microscopy is relatively straightforward for researchers who already have CARS experience.

Laser Quantum UK

Emery Court
Stockport, Cheshire SK4 3GL
United Kingdom
www.laserquantum.com
Social: Facebook, LinkedIn, Twitter, YouTube
E-mail:

Laser Quantum manufacturers suitable lasers for Raman spectroscopy, including 473, 532, 660 & 671 nm wavelengths. The gem family is ideal for OEM integration, whilst ventus lasers are better suited to scientific and research applications. For higher resolution requirements, the ventus solo and torus lasers provide narrowed bandwidths and high stability mode-locking respectively.

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All Suppliers
From your country:

AcuTech Scientific Inc.

325 W. Washington Street
Suite 2168
San Diego, CA 92084
United States
www.acutechscientific.com
E-mail:

B&W Tek, Inc.

19 Shea Way
Newark, DE 19713
United States
www.bwtek.com
E-mail:

BaySpec Inc.

1101 McKay Drive
San Jose, CA 95131
United States

HORIBA Scientific

3880 Park Avenue
Edison NJ 08820–3097
United States

Klar Scientific

1615 NE Eastgate Blvd.
Unit G, Suite 3E
Pullman, WA 99163
United States
www.klarscientific.com
E-mail:

McPherson

7-A Stuart Road
Chelmsford, MA 01824–4107
United States
www.mcphersoninc.com
E-mail:

Micromaterials, Inc.

13302 Telecom Drive
Tampa, FL 33637
United States

Ocean Insight

8060 Bryan Dairy Road
Largo, FL 33777
United States

OptiGrate

562 S Econ Circle
Oviedo, FL 32765
United States
www.optigrate.com
E-mail:

Photonwares

15 Presidential Way
Woburn, MA 01801
United States

Power Technology Inc.

P. O. Box 191117
Little Rock, AR 72219–1117
United States

RPMC Lasers, Inc.

8495 Veterans Memorial Pkwy
O’Fallon MO 63366
United States
www.rpmclasers.com
Social: Facebook, LinkedIn, Twitter, YouTube
E-mail:

RPMC Lasers offers a wide range of wavelength stabilized and singe frequency laser sources for Raman spectroscopy. Additionally, a wide range of pulsed laser sources are available for coherent Raman spectroscopy such as SRS and CARS.

Spectra Solutions Inc.

1502 Providence Highway, Unit 2
Norwood, MA 02062
United States

StellarNet, Inc.

14390 Carlson Circle
Tampa, Florida 33626
United States

Wasatch Photonics

808 Aviation Parkway, Suite 1400
Morrisville, NC 27560
United States
From America:

Allied Scientific Pro

815 Carriere Blvd, suite 202
Gatineau, QC, J*Y6T4
Canada
alliedscientificpro.com
E-mail:

JASCO

28600 Mary’s Court
Easton, MD 21601
United States

Photon etc. Inc.

5795 De Gaspe Avenue
Montreal, QC, H2S 2X3
Canada
www.photonetc.com
E-mail:

Sciencetech Inc.

1450 Global Drive
London, Ontario
Canada
www.sciencetech-inc.com
E-mail:
Outside America:

Agilent Technologies

R&D and Marketing GmbH & Co. KG
Herrenberger Str. 130
71034 Böblingen
Germany

APE Angewandte Physik und Elektronik GmbH

Plauener Straße 163–165 / Haus N
13053 Berlin
Germany
www.ape-berlin.de
Social: LinkedIn, YouTube
E-mail:
Raman spectroscopy equipment

The picoEmerald system facilitates Stimulated Raman Scattering (SRS) microscopy for non-invasive label-free imaging. SRS microscopy provides almost background-free imaging contrast. It allows simple spectroscopic identification of the samples’ fingerprint region based on Raman spectra databases. Imaging at high video rates is possible due to very short integration times of the SRS detection module (lock-in amplifier). Switching over to SRS microscopy is relatively straightforward for researchers who already have CARS experience.

art photonics GmbH

Rudower Chaussee 46
12489 Berlin
Germany
www.artphotonics.de
E-mail:

Ato ID, UAB

Kalvariju str. 125
08221 Vilnius
Lithuania
www.atoid.com
E-mail:

Avantes BV

Oude Apeldoornseweg 28
7333 NS Apeldoorn
Netherlands

Changchun New Industries Optoelectronics Technology Co., Ltd.

No. 888 Jinhu Road
High-tech Zone, Changchun 130103
China
www.cnilaser.net
E-mail:

CryLaS GmbH

Ostendstraße 25
Haus 4
12459 Berlin
Germany
www.crylas.de
E-mail:

Gbond Tech Corp

588 Zhuyuan Rd.
Minhang District, Shanghai
China
gbondtech.com
E-mail:

GMP SA, Büro Zürich

Dübendorfstr. 11a
8117 Fällanden
Switzerland

IL Photonics

511 Hashita
9955256 Beit Shemesh
Israel
www.ILPhotonics.com
E-mail:

Integrated Optics, Ltd.

Kalvariju str. 125B, XI building
08221 Vilnius
Lithuania
integratedoptics.com
E-mail:

Laser 2000 GmbH

Argelsrieder Feld 14
82234 Wessling
Germany
www.laser2000.de
E-mail:

Laser Quantum UK

Emery Court
Stockport, Cheshire SK4 3GL
United Kingdom
www.laserquantum.com
Social: Facebook, LinkedIn, Twitter, YouTube
E-mail:

Laser Quantum manufacturers suitable lasers for Raman spectroscopy, including 473, 532, 660 & 671 nm wavelengths. The gem family is ideal for OEM integration, whilst ventus lasers are better suited to scientific and research applications. For higher resolution requirements, the ventus solo and torus lasers provide narrowed bandwidths and high stability mode-locking respectively.

LIOS Technology

Schanzenstr. 39
Building D9-D13
51063 Köln
Germany
www.lios-tech.com
E-mail:

LOT-QuantumDesign GmbH

Im Tiefen See 58
64293 Darmstadt
Germany

Mountain Photonics GmbH

Albert-Einstein-Str. 18
86899 Landsberg am Lech
Germany

Norlase

Risø Campus
Building 130
Frederiksborgvej 399
4000 Roskilde
Denmark

Opton Laser International

Parc Club Orsay Universite
29 rue Jean Rostand
91893 Orsay
France
www.optonlaser.com
E-mail:

Optoprim Germany GmbH

Max-Planck-Straße 3
85716 Unterschleißheim
Germany
www.optoprim.de
E-mail:

Optosky Photonics, Inc.

1503, Bld. A04
3rd Software Park
Jimei, Xiamen, 361021
China
www.optosky.com/en
E-mail:

Pro-Lite Technology Ltd

Innovation Centre
University Way
Cranfield, Bedfordshire MK43 0BT
United Kingdom
www.pro-lite.co.uk
E-mail:

QS Lasers

Savanoriu Ave. 231
LT-02300 Vilnius
Lithuania
www.qslasers.com
E-mail:

Renishaw plc

New Mills, Wotton-under-Edge
Gloucestershire, GL12 8JR
United Kingdom

Sacher Lasertechnik

Rudolf-Breitscheid-Str. 1–5
35037 Marburg
Germany

SOL Instruments Ltd.

58–10, Nezavisimosti ave.
Minsk 220005
Belarus
www.solinstruments.com
E-mail:

Solar Laser Systems

4 Stebenev lane
Minsk, 220024
Belarus
www.solarls.eu
E-mail:

STANDA Ltd.

P. O. Box 377
03012 Vilnius
Lithuania

All wavelengths.

TOPTICA Photonics AG

Lochhamer Schlag 19
82166 Gräfelfing
Germany

Quality: ISO 9001:2015
www.toptica.com
Social: Facebook, LinkedIn, YouTube
E-mail:
(See the company profile page for additional contact information.)

For Raman spectroscopy, a wavelength of 532 nm is regularly used, as well as 785 nm (to reduce autofluorescence of the sample). For semiconductor inspection shorter wavelengths of 405 nm, 266 nm, or even 213 nm are commonly used.

Most recent, upcoming time-resolved Raman spectroscopy and microscopy applications (i.e measurements on airplane engine exhausts to optimize the combustion process and reduce fuel consumption) trigger the need for pulsed laser sources operating in the femto- and picosecond regime. This demand is covered by the FemtoFiber laser family, which have already proven its outstanding performance and suitability in various broadband CARS and SRS applications.

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