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Supplier: Laser 2000 GmbH
Description: Single-line wavelengths include 458, 488, or 514 nm with output power ranging from 5 to 75 mW and multi-line output power of up to 40 mW. Symmetric design and axial airflow in the cylindrical argon ion laser heads provide the best mechanical package to ensure optimum beam
- Laser Power: 4 to 75 milliwatts
- Lasing Medium: Argon
- Wavelength Range: 458 to 514 nm
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Supplier: Edmund Optics Inc.
Description: function can be achieved via a built-in interface port.The Argon-Ion Multi-Line laser with wavelength selectable output features a filter wheel assembly allowing the user to select 1 of 3 popular Argon Lines (457nm, 488nm, 514nm) or multi-line
- Beam Divergence: 0.9500 millirad
- CDRH Classification: Class IIIb
- Features: Polarized Output
- Laser Power: 50 milliwatts
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Supplier: Edmund Optics Inc.
Description: function can be achieved via a built-in interface port.The Argon-Ion Multi-Line laser with wavelength selectable output features a filter wheel assembly allowing the user to select 1 of 3 popular Argon Lines (457nm, 488nm, 514nm) or multi-line
- Beam Divergence: 0.9500 millirad
- CDRH Classification: Class IIIb
- Features: Polarized Output
- Laser Power: 9 to 150 milliwatts
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Supplier: Edmund Optics Inc.
Description: function can be achieved via a built-in interface port.The Argon-Ion Multi-Line laser with wavelength selectable output features a filter wheel assembly allowing the user to select 1 of 3 popular Argon Lines (457nm, 488nm, 514nm) or multi-line
- Beam Divergence: 0.9500 millirad
- CDRH Classification: Class IIIb
- Features: Polarized Output
- Laser Power: 8 to 150 milliwatts
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Supplier: Edmund Optics Inc.
Description: Low Loss Dielectric Coatings >98% Reflectance All Common Argon-Ion Laser Wavelengths TECHSPEC® High Energy Argon-Ion Laser Mirrors are available for each of the most common Argon-Ion laser wavelengths. Each mirror is designed for a 45° angle of
- Diameter/Width: 25 mm
- Incidence: 45º Incidence
- Mirror Materials: Fused Silica
- Surface Flatness: λ/10
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Supplier: Laser 2000 GmbH
Description: doubled water cooled argon lasers, or fourth harmonic Nd:YAG lasers... at a fraction of the cost 248nm (NeCu): 50mW*, 250 mW* (Quasi CW) 224nm (HeAg): 10mW*, 50mW* (Quasi CW) Narrow line width <3 GHz Instant warm-up (<10 µs)
- Laser Power: 10 to 250 milliwatts
- Laser Type: Other
- Laser Wavelength: Ultraviolet
- Wavelength Range: 224 to 248 nm
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Supplier: Modu-Laser, LLC.
Description: Power Factor Corrected power supply
- Beam Area: 0.6500 mm²
- Beam Divergence: 0.9500 millirad
- CDRH Classification: Class IIIb
- Features: Internal Power Supply, Polarized Output
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Supplier: Modu-Laser, LLC.
Description: Low noise, CE versions available
- Beam Area: 0.6500 mm²
- Beam Divergence: 0.9500 millirad
- CDRH Classification: Class IIIb
- Features: Internal Power Supply, Polarized Output
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Supplier: Lumentum Operations, LLC
Description: The Lumentum Xcyte series lasers offer the advantages of diode-pumped solid-state lasers in quasi-CW 355nm air-cooled format. The Xcyte series lasers provide near diffraction-limited beam profile, excellent stability, long lifetime and low amplitude noise in a compact,
- Beam Area: 0.9000 mm²
- CDRH Classification: Class IIIb
- Laser Output: Continuous Wave, Pulsed
- Laser Power: 20 to 150 milliwatts
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Supplier: Modu-Laser, LLC.
Description: Low noise, CE versions available
- Beam Area: 0.6500 mm²
- Beam Divergence: 0.9500 millirad
- CDRH Classification: Class IIIb
- Features: Internal Power Supply, Polarized Output
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Supplier: Modu-Laser, LLC.
Description: Power Factor Corrected power supply
- Beam Area: 0.6500 mm²
- Beam Divergence: 0.9500 millirad
- CDRH Classification: Class IIIb
- Features: Internal Power Supply, Polarized Output
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Supplier: Newport Corporation
Description: . It offers greater than 99% efficiency for s-polarization or p-polarization at 0-45° angle of incidence. 488/514.5 nm Argon-Ion Laser Line Coating Our DM.5 multilayer dielectric coating is optimized for the 488 nm and 514.5 nm Argon-Ion
- Diameter/Width: 25.4 to 203 mm
- Incidence: 0º Incidence, 45º Incidence
- Mirror Coatings: Dielectric
- Mirror Materials: Zerodur?
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Supplier: Newport Corporation
Description: for 632.8 nm HeNe laser line applications. It offers greater than 99% efficiency for s-polarization or p-polarization at 0-45° angle of incidence. 488/514.5 nm Argon-Ion Laser Line Coating Our DM.5 multilayer dielectric coating is optimized for the
- Diameter/Width: 12.7 to 152 mm
- Incidence: 0º Incidence, 45º Incidence
- Mirror Coatings: Dielectric
- Mirror Materials: Other Mirror Material
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Supplier: Newport Corporation
Description: Our high reflecting pump mirrors are simultaneously optimized for transmission of 488, 514, and 532nm pump laser beams, and reflection of near infrared ultrashort pulsed beams with minimal dispersion. High reflector for transmission of Argon or doubled Nd:YAG pump
- Diameter/Width: 12.7 to 25.4 mm
- Incidence: 0º Incidence
- Mirror Materials: BK7 Glass, Other Mirror Material
- Surface Flatness: λ/10
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Supplier: HG Optronics, Inc.
Description: and amplifiers. The absorption band of Ti:Sapphire centers at ~ 490 nm so it may be conveniently pumped by various laser sources such as argon ion lasers or frequency doubled Nd:YAG, Nd:YLF, Nd:YVO4 lasers at ~530nm. Laser designers are using
- Damage Threshold: 750000 W/cm²
- Features: AR-Coated
- Material: Other / Specialty Material
- Optical Application: Ultraviolet
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Supplier: Foctek Photonics, Inc.
Description: applications. Medical laser systems, lidars, laser spectroscopy, direct femtosecond pulse generation by Kerr-type mode-locking - there are few of existing and potential applications. The absorption band of Ti:Sapphire centered at 490 nm makes it suitable for variety of
- Material: Other / Specialty Material
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Supplier: CRYSTECH, Inc.
Description: , THG and Frequency-mixing of Dye lasers ? SHG of Argon ion, Cu-vapor and Ruby lasers ? OPA and OPO ? Electro-Optical application (Pockels Cell) ? SHG and SFG Because of a small acceptance angle and large walk-off, good laser beam quality
- Damage Threshold: 1.00E6 W/cm²
- Features: AR-Coated
- Material: BBO
- Surface Flatness: λ/10
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More Information Top
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Clathrin‐independent internalization of the human histamine H 1 ‐receptor in CHO‐K1 cells
The GFP was excited using a 488 nm argon laser and detected with a 505 nm long-pass filter.
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Optimization of three‐ and four‐color multiparameter DNA analysis in lymphoma specimens
Fluorescence channel and according excitation line FL1 488 nm argon laser FL2 488 nm argon laser FL3 488 nm argon laser FL4 488 nm argon laser emission filter .
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Holographic recording using visible‐light sensitive polymers based on cationic polycondensation
A polymer layer coated on an alumi- num substrate was exposed to a high-pressure mercury lamp or a 488 nm argon laser light through a Kodak No. 2 steptablet, which was placed on the polymer layer.
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http://curis.ku.dk/ws/files/19986106/PhD_Thesis_Jacob_Eriksen.pdf
MFZ 9–18 was visualized using a 488 nm argon laser for excitation and a 505–530 nm bandpass filter for recordingoffluorescence.B,LiveHEK293cellsstablyexpressingDATpreincubatedwith10nM MFZ9–18and5nM JHC1–64for 20minatRT.TheleftpanelshowsfluorescenceintheϾ585nmchannel,themiddlepanelshowsfluorescenceinthe505–530nm channel,andtherightpanelshowsoverlayofthetwochannels.
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Mammalian Cell Viability
To detect the GFP fluorescent fusion protein and TMRM, use the excitation wavelength of a 488 nm Argon laser and 543 nm HeNe laser, respectively.
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Quaternary benzo[c]phenanthridine alkaloids—novel cell permeant and red fluorescing DNA probes
Diagrams of fluorescence intensities of HL60 cells stained with QBAs (5 lg/ml) in comparison with DRAQ5 (10 lM) detected using a Cytomics FC 500 flow cytometry system after excitation with a 488 nm argon laser .
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Corneal transmissibility of diode versus argon lasers and their photothermal effects on the cornea and iris
… of the corneal button was exposed to a diode laser beam to determine the thermal effects of 810 nm laser on the cornea, and the other half of the same corneal button was then exposed to the 488 nm argon laser beam.
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Calcium Signaling Protocols
Set up an eGFP excitation protocol, utilizing the 488 nm argon laser to excite eGFP and a long-pass filter (BA 505IF) to col- lect emissions above 505 nm.
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Dictyostelium discoideum Protocols
YG-beads are excited by the 488 nm argon laser of the flow cytom- eter and detected in the FL1 (green) channel.
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Molecular and Cell Biology Methods for Fungi
The distinct cell suspensions are analyzed on a FACSCalibur flow cytometer equipped with 3 PMTs, with standard filters (FL1: BP 530/30 nm; FL2: BP 585/42 nm; FL3: LP 650 nm), a 15 mW 488 nm Argon Laser , and a cell Quest Pro …