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| | | Weekly Edition | | | Date: 11 September 2025 | | | |
| Sponsored by EMC Directory | | |
| New Photonics Products this Week | |
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| Optical Spectrum Analyzer from 350 - 1750 nm for All Laser Applications | |
Optical Spectrum Analyzer
from Yokogawa Test & Measurement Corporation
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| The AQ6374E from Yokogawa Test & Measurement Corporation is an Optical Spectrum Analyzer (OSA) that operates at a wavelength of 350 nm - 1750 nm. It has a full span range of 0.5 nm - 1400 nm and is ideal for characterization of laser sources, characterization of supercontinuum light sources, visible LED test, gas detection & concentration measurement applications. |
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| 440 nm - 460 nm, Fiber Coupled Laser Diode | |
Laser Diode
from PhotonTec Berlin
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| The M450±10-200-F200/22-V5W-AP from PhotonTec Berlin is a Fiber Coupled Laser Diode that operates at a wavelength of 440 nm - 460 nm. It delivers an output power of 200 W and has a spectral width (FWHM) 6 nm. This laser diode has a beam parameter product (BPP) of 18 mm.mrad and maximum slope efficiency of 18.9 W/A. It has an optical fiber with a numerical aperture of 0.22, core diameter of 200 μm, and length of up to 5 m. |
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| 770 nm Semiconductor Optical Amplifier for Spectroscopy Applications | |
Optical Amplifier
from TOPTICA EAGLEYARD
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| The EYP-TPA-0765-02000-4006-BTU02-0000 from TOPTICA EAGLEYARD is a Tapered Semiconductor Optical Amplifier (SOA) that operates at a wavelength of 770 nm. It delivers an output power above 2 W and has a gain width (FWHM) of 20 nm. This continuous wave SOA has an amplification of 15 dB and temperature coefficient of wavelength of 0.3 nm/K. It is ideal for spectroscopy applications. |
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| 1030 nm Yb Femtosecond Laser for Microscopy Applications | |
Laser
from Cycle GmbH
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| The SONATA from Cycle GmbH is a Yb Femtosecond Laser with a wavelength of 1030 nm. It delivers an output power of 10 mW (fiber output) & 100 mW (free-space output) and has a spectral bandwidth above 14 nm. This laser is ideal for ultrafast pump-probe experiments with synchronization, seeding high-power amplifiers, ASOPS setups, and nonlinear microscopy applications. |
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| 808 nm Pulsed Laser for Welding & Additive Manufacturing Applications | |
Laser
from Oxford Lasers
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| The FireBIRD from Oxford Lasers is a Pulsed Laser that operates at a wavelength of 808 nm. It delivers an output power of 1000 W and has a pulse duration of 50 ns & 15 ns (for reduced power). This laser is ideal for welding & additive manufacturing (laser cladding), energetic events including explosives & ballistics, general high-speed imaging, and flow visualisation applications. |
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| 1271 nm - 1331 nm, CW Laser Diode for Silicon Photonics Applications | |
Laser Diode
from Sumitomo Electric Device Innovations
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| The STA5602 from Sumitomo Electric Device Innovations is a Continuous Wave Laser Diode that operates at a wavelength of 1271 nm - 1331 nm. It delivers an output power of 70 mW and has a relative intensity noise of -145 dB/Hz. This laser diode is available in a chip package and is ideal as light source for external modulator & silicon photoncs applications. |
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| 225 nm - 230 nm, Ultraviolet LED for Sensing & Biomedical Applications | |
LED
from EPIGAP OSA Photonics GmbH
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| The OCU-431 UI225 from EPIGAP OSA Photonics GmbH is an Ultraviolet LED that operates at a wavelength of 225 nm - 230 nm. It delivers an output power of 0.6 mW and has a viewing angle of 115 deg. This LED has a flat lens and ceramic circuit substrate. It has an FWHM of 12 nm and a footprint of 3535 mm. This LED is ideal for sensing, biomedical, and life disinfection applications. |
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| 950 nm - 1650 nm, InGaAs Avalanche Photodiode for LiDAR Applications | |
Photodiode
from Phlux Technology
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| The PX01080-SM from Phlux Technology is an InGaAs Avalanche Photodiode (APD) that has a spectral response of 950 nm - 1650 nm. It has a gain above 100 and noise factor of up to 3.5. This APD has a temperature coefficient of breakdown voltage below 20 mV/K and is ideal for LiDAR, Laser Range Finder, OTDR, free space communication & optical / fiber sensing applications. |
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| 1530 nm - 1565 nm, Photodetector for RF Generation Applications | |
Photodetector
from Phase Sensitive Innovations
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| The D4 Series from Phase Sensitive Innovations is a Uni-Traveling Carrier (UTC) Photodetector that operates at a wavelength of 1530 nm - 1565 nm. It has a responsivity of 0.4 A/W and bandwidth of 25 GHz. This photodetector is ideal for RF photonic links, high-speed photodetection, photonic RF generation, multimode photodetection, and microwave photonic link applications. |
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| 515 nm UV-Grade Fused Silica Optical Window for Yb:YAG Lasers | |
Optical Window
from OPTOMAN
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| The PP-UVFS-25.4-6.35-AR784-AR784 from OPTOMAN is an Ultrafast Optical Window that operates at a wavelength of 515 nm. It has a diameter of 25.4 mm and thickness of 6.35 mm. This UV-grade fused silica (UVFS) optical window has a clear aperture above 90% and surface quality of 10-5 S-D (scratch-dig) on both sides (S1/S2). It is ideal for use in Yb:YAG lasers. |
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| 1.05 Megapixel Single-Photon Camera for High-Speed Imaging Applications | |
Scientific & Industrial Camera
from Pi Imaging Technology - a Zeiss company
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| The SPAD Alpha from Pi Imaging is a 1.05 Megapixel Single-Photon Camera that has a resolution of 1024 (H) x 1024 (V) pixels. It has a global shutter that delivers a frame rate of 73000 fps (at 1 bit), 4883 fps (at 4 bit), 580 fps, and 287 fps (at 8-bit). This camera has a pixel pitch of 16 µm and is ideal for widefield fluorescence lifetime imaging & high-speed imaging applications. |
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| 350 nm - 2500 nm, Spectrometer for Mapping & Profiling Applications | |
Spectrometer
from Spectral Evolution
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| The NaturaSpec from Spectral Evolution is a Spectrometer that has a spectral range of 350 nm - 2500 nm. It has a wavelength reproducibility of 0.1 nm and an accuracy of ± 0.5 nm. This spectrometer is ideal for vegetation studies, environmental research, soil analysis, mapping & profiling, ground truthing, geological remote sensing, species identification, and irradiance research applications. |
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| Featured Article | | What is Raman Spectroscopy? | | Raman spectroscopy is a spectroscopic technique that utilizes scattered light to probe the vibrational energy modes present within a sample. It is named after C. V. Raman who pioneered its observation in 1928 alongside his collaborator K. S. Krishnan. Originally, the Raman effect was observed using sunlight and mercury arc lamps. Click here to read the full article. | | | |
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