Where to Buy Fluorescence Microscopes
Fluorescence microscopy comes in various flavors and often offers high image resolution in all three dimensions. It is widely used in biological research and in medicine, for example.
E | See also our encyclopedia article on fluorescence microscopy! Related articles: fluorescence, laser microscopy |
Related products: laser microscopes, confocal scanning microscopes
Related product categories: detectors and measurements, applications, vision, displays and imaging
See also the white paper on How Mode-Locked Lasers Affect the Past, Present, and Future of Two-Photon Microscopy from RPMC Lasers!
16 suppliers for fluorescence microscopes are listed in the RP Photonics Buyer's Guide. Both manufacturers and distributors can be registered.
Suppliers with Ad Package | |
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Company | Product Description |
All wavelengths. Lochhamer Schlag 19 82166 Gräfelfing Germany Quality: ISO 9001:2015 www.toptica.com Social: Facebook, LinkedIn, YouTube E-mail: Tel.: +49 89 85 83 70 Fax: +49 89 85 83 72 00 | Optical microscopes are used to study objects that are too small to be seen with the naked eye. This can be organic cells, semiconductor surfaces, or even single molecules. There are two different approaches in optical microscopy, either detecting near-field (SNOM) or far-field signals emitted by the investigated materials. There are various methods for optical microscopy that utilize different light sources. For some microscopy techniques a simple white light source is sufficient, whereas more sophisticated methods require lasers as light source. Those can be single-mode diode lasers or multi-laser engines that deliver a continuous laser beam at one or several colors, some techniques rely on short laser pulses with femtosecond duration that can be provided by TOPTICA's ultrafast fiber lasers. |
8495 Veterans Memorial Pkwy O’Fallon MO 63366 United States | RPMC Lasers offers a wide range of lasers wavelengths for fluorescence microscopy, ranging from the UV though the IR. All of these lasers provide a high quality TEM00 beam profile, and a stable power output. Additionally, RPMC Lasers offers a multi-laser combiner which is ideal for coupling multiple excitation lasers to a single microscope. |
Blokken 84 3460 Birkerød Denmark Quality: ISO 9000:2015 www.nktphotonics.com Social: Facebook, LinkedIn, Twitter, YouTube Tel.: +45 4348 39 00 Fax: +45 4348 39 01 | Fluorescence microscopy allows highly specific imaging of cellular compartments in a minimally invasive fashion while obtaining the highest contrast. The diffraction-limited and pulsed nature of our SuperK lasers makes it possible to study fast lifetime phenomena. To enable maximum flexibility, our supercontinuum laser sources give you high brightness light anywhere within the VIS and nIR wavelength range (390–2400 nm). Get broadband output or tune to the line you need – all in one source. |
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All Suppliers | |
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From Asia: | |
511 Hashita 9955256 Beit Shemesh Israel | |
Outside Asia: | |
Boston Electronics Corporation 91 Boylston St Brookline, MA 02445 United States | |
Carl Zeiss Promenade 10 07745 Jena Germany | |
Livingstone House 43 Discovery Terrace Edinburgh EH14 4AP United Kingdom | www.chromacitylasers.com Tel.: +44 131 449 4308 |
Notkestrasse 85 22607 Hamburg Germany | |
1615 NE Eastgate Blvd. Unit G, Suite 3E Pullman, WA 99163 United States | |
5th floor, Leonard Springerlaan 19 9727KB Groningen Netherlands | www.lambertinstruments.com Tel.: +31 50 501 8461 |
Argelsrieder Feld 14 82234 Wessling Germany | |
Blokken 84 3460 Birkerød Denmark Quality: ISO 9000:2015 www.nktphotonics.com Social: Facebook, LinkedIn, Twitter, YouTube Tel.: +45 4348 39 00 Fax: +45 4348 39 01 | Fluorescence microscopy allows highly specific imaging of cellular compartments in a minimally invasive fashion while obtaining the highest contrast. The diffraction-limited and pulsed nature of our SuperK lasers makes it possible to study fast lifetime phenomena. To enable maximum flexibility, our supercontinuum laser sources give you high brightness light anywhere within the VIS and nIR wavelength range (390–2400 nm). Get broadband output or tune to the line you need – all in one source. |
Parc Club Orsay Universite 29 rue Jean Rostand 91893 Orsay France | |
5795 De Gaspe Avenue Montreal, QC, H2S 2X3 Canada | |
P. O. Box 191117 Little Rock, AR 72219–1117 United States | |
8495 Veterans Memorial Pkwy O’Fallon MO 63366 United States | RPMC Lasers offers a wide range of lasers wavelengths for fluorescence microscopy, ranging from the UV though the IR. All of these lasers provide a high quality TEM00 beam profile, and a stable power output. Additionally, RPMC Lasers offers a multi-laser combiner which is ideal for coupling multiple excitation lasers to a single microscope. |
6540 Burroughs Sterling Heights, MI 48314 United States | |
56 Sparta Avenue Newton, NJ 07860 United States | |
All wavelengths. Lochhamer Schlag 19 82166 Gräfelfing Germany Quality: ISO 9001:2015 www.toptica.com Social: Facebook, LinkedIn, YouTube E-mail: Tel.: +49 89 85 83 70 Fax: +49 89 85 83 72 00 | Optical microscopes are used to study objects that are too small to be seen with the naked eye. This can be organic cells, semiconductor surfaces, or even single molecules. There are two different approaches in optical microscopy, either detecting near-field (SNOM) or far-field signals emitted by the investigated materials. There are various methods for optical microscopy that utilize different light sources. For some microscopy techniques a simple white light source is sufficient, whereas more sophisticated methods require lasers as light source. Those can be single-mode diode lasers or multi-laser engines that deliver a continuous laser beam at one or several colors, some techniques rely on short laser pulses with femtosecond duration that can be provided by TOPTICA's ultrafast fiber lasers. |
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