| New Photonics Products this Week |
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| 760.9 nm DFB Laser Diode for Spectroscopy Applications | |
Laser Diode
from TOPTICA EAGLEYARD
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| The mini DFB series from TOPTICA EAGLEYARD is a Single Frequency DFB Laser Diode that operates at a center wavelength of 760.9 nm. It delivers an output power of 12 mW and has a linewidth (FWHM) of 2 MHz. This continuous wave laser diode has a monitor detector responsivity of 2 μA/mW - 800 μA/mW and is ideal for spectroscopy, metrology & oxygen detection applications. |
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| 1529 nm - 1610 nm, Laser for Test & Measurement Applications | |
Laser
from BKtel Photonics
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| The TBS-CL from BKtel Photonics is a Laser that operates at a wavelength of 1529 nm - 1610 nm. It delivers an output power of 13 dBm - 22 dBm and has a minimum spectral density from -9 dBm/nm to -2 dBm/nm. This continuous wave laser has a stability of 2%, return loss of 40 dB, and an optical isolation of 30 dB. It is RoHS compliant and is ideal for test & measurement applications. |
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| 850 nm Multimode Fiber Laser for Testing Applications | |
Laser
from Quantifi Photonics
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| The Laser-1102 (MATRIQ) from Quantifi Photonics is a Fiber Laser that operates at a wavelength of 850 nm. It delivers an output power of 5.7 dB, has a wavelength accuracy of ± 5 nm, and 3 dB spectral width of 2 nm. This continuous wave laser is ideal for testing multimode OM3 fiber links, Datacom SR4, SR8 interconnect testing, general purpose stable multimode fiber light source for datacom & physics and receiver responsivity testing applications. |
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| 1030 nm Laser Gain Module for Laboratory Systems | |
Laser Gain Module
from NKT Photonics
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| The aeroGAIN-ROD 2.1 from NKT Photonics is a Laser Gain Module that operates at a wavelength 1030 nm. It has an optical efficiency above 60% and beam quality (M2) of up to 1.3. This laser gain module has a polarization extinction ratio of over 15 dB and signal average power below 100 W. It has a signal core diameter of 85 μm and a gain fiber length of 804 mm. This laser gain module is ideal for ultrafast pulsed lasers and laboratory applications. |
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| 5.1 Megapixel CMOS Camera for Pharmaceutical & Inspection Applications | |
Scientific & Industrial Camera
from RESTAR FRAMOS Technologies (SONY)
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| The XCL-SG510 from Sony Semiconductor Solutions Corporation is a 5.1 MP CMOS Camera that has a resolution of 2464 (H) x 2056 (V) pixels. It has a pixel size of 3.45 μm x 3.45 μm and sensitivity of 400 lx. This camera has a shutter speed of 60 s - 1/100000 s and gain of up to 18 dB. It is ideal for ITS, factory automation, food & beverage inspection, and pharmaceutical applications. |
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| 750 nm - 850 nm, Photoconductive Antenna for Terahertz Imaging Applications | |
Photoconductive Antenna
from Terahertz Store
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| The T-Era-100A-800-Air from Terahertz Store is a Terahertz Photoconductive Antenna that operates at a wavelength of 750 nm - 850 nm (excitation). It delivers an average optical power of 10 mW - 100 mW and is ideal for terahertz spectroscopy, terahertz imaging, material characterization & sensing, non-destructive testing, and electronic chip fault analysis in THz time domain systems. |
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| 880 nm Silicon Phototransistor for Detection Applications | |
Phototransistor
from Optrans America
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| The PTC080M3B from Optrans America is a Silicon Phototransistor that has a peak sensitivity wavelength of 880 nm. It has a spectral range of 400 nm - 1100 nm, switching time (rise/fall) of 10 µs, and an angular response of ± 80 deg. This transistor is available in a 3 mm ceramic domed lens package and is ideal for optical switches, detectors, and sensor applications. |
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| 50 GHz - 700 GHz, Terahertz Detector for Imaging Applications | |
Terahertz Detector
from Terasense Group
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| The FAST Sub-THz Detector from Terasense Group is a Terahertz Detector that has a spectral range of 50 GHz - 0.7 THz. It has a response time of 1 µs and responsivity of 10 V/W. This terahertz detector has a noise equivalent power of 1 nW/rt(Hz) and an impedance of 10 kOhms. It is ideal for wireless communication, terahertz imaging, and scientific research applications. |
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| Pyroelectric Terahertz Detector for Power Measurements | |
Terahertz Detector
from SLT Sensor & Lasertechnik
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| The THz 10 from SLT Sensor & Lasertechnik is a Terahertz Detector with a working range of 8 µW - 10 mW. It has an aperture of 10 mm and a sensitivity of 0.5 µA/W - 0.6 µA/W. This terahertz detector has a rise time of 100 µs and chopper frequency of up to 500 Hz. It has a power density of 15 mW/cm² and is ideal for power meters, joule meters & laser system applications. |
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| 1250 nm - 1650 nm, Optical Delay Line for Interferometry Applications | |
Optical Delay Line
from Swiss Terahertz
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| The ODL660PM from Swiss Terahertz is an Optical Delay Line that operates at a wavelength of 1250 nm - 1650 nm. It has a delay range up to 50 ns and resolution of 5 fs. This optical delay line has an insertion loss of 0.8 dB and insertion loss variation below 0.5 dB. It is ideal for terahertz spectroscopy, nonlinear optics, OCT, sensing, and interferometry applications. |
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| 1560 nm Optical Frequency Comb for Laser Reference Applications | |
Optical Frequency Comb
from TOPTICA Photonics
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| The DFC CORE + from TOPTICA Photonics is an Optical Frequency Comb with a center wavelength of 1560 nm (extendable to 420 nm - 2000 nm). It delivers an output power above 10 mW and has a bandwidth of over 20 nm. This OFC is ideal for flyer optical clocks, laser reference, high-resolution spectroscopy, dual-comb spectroscopy, and microwave generation applications. |
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| 200 nm - 800 nm, Scanning Digital Monochromator | |
Monochromator
from Omega Optical
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| The SDMC1-02 from Omega Optical is a Scanning Digital Monochromator with a wavelength of 200 nm - 800 nm. It has a wavelength-accuracy of ± 0.2% and reproducibility of ± 0.15%. This monochromator has resolutions of 0.36 nm, 0.73 nm, 1.09 nm, 2.18 nm, 4.36 nm, and 7.27 nm. It has a wavelength-readability of 0.2 nm and stray-light below 0.003%. This monochromator has a grating-density of 1800 grooves/mm and grating-blaze-wavelength of 250 nm. |
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| Digital Benchtop Refractometer for Laboratory Applications | |
Refractometer
from Mettler-Toledo
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| The R4/RX4 from Mettler-Toledo is a Digital Benchtop Refractometer that has a measurement range of up to 100 °Brix. It has an accuracy of 0.05% °Brix and a minimum sample volume measurement of 0.50 mL. This refractometer has a refractive index measurement range of 1.32 nD - 1.7 nD and an accuracy of ±0.0001 nD. It is ideal for laboratory and industrial applications. |
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| 589.3 nm Refractometer for Laboratory Applications | |
Refractometer
from Anton Paar
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| The Abbemat 5201 from Anton Paar is a Refractometer that operates at a wavelength of 589.3 nm. It has a refractive index of 1.26 nD - 1.72 nD with maximum resolution of 0.000001 nD and accuracy of ± 0.00002 nD. This refractometer has a Brix range of up to 100 °Brix and display resolution of 0.001 °Brix. It has a minimum sample volume of 70 µL and maximum micro flow cell pressure of 10 bar. This refractometer is ideal for laboratory applications. |
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| Automatic Digital Refractometer for Beverage Analysis Applications | |
Refractometer
from ATAGO CO.,LTD.
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| The RX-5000a-Bev from ATAGO CO.,LTD. is an Automatic Digital Refractometer that has a measurement range of 1.327 nD - 1.58 nD (refractive index) and up to 100% (Brix). It has a resolution of 0.00001 nD (Refractive index), 0.01% (Brix), and 0.01 °C (temperature). This refractometer has a warranty period of 2 years and is ideal for is ideal for beverage analysis applications. |
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| 350 nm - 925 nm, Spectrometer for Research & Biomedical Applications | |
Spectrometer
from Ocean Optics
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| The OCEAN-HDX-VIS-NIR from Ocean Optics is a Spectrometer that has a spectral range of 350 nm - 925 nm. It has an optical resolution (FWHM) of 0.7 nm and a dynamic range of 12000:1. This spectrometer is ideal for applications that include thin film analysis on a production line, research, integration into biomedical instrumentation, and QC functions in industrial settings. |
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| Optical Simulation Software for Display Applications | |
Optical Design Software
from Breault Research Organization
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| The ASAP from Breault Research Organization is an Optical Simulation Software developed for the analysis & design of imaging, illumination, and light-concentrating systems with strong CAD interoperability. It is powered by a non-sequential ray-tracing engine, allowing rays to interact with surfaces in any order and multiple times. This optical design is well-suited for designing & validating optical systems across lighting, biomedical, and display applications. |
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