| New Photonics Products this Week |
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| 785 nm Nanosecond Pulsed Laser | |
Laser
from Thorlabs Inc
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| The NPL79B from Thorlabs is a Nanosecond Pulsed Laser that operates at a wavelength of 785 nm. It delivers a peak output power of 88 mW and has a wavelength accuracy of ± 10 nm. This laser has a pulse energy of 3.5 nJ and pulse width of 6 ns - 39 ns. It produces a beam of width 3.3 mm - 3.8 mm and has a beam divergence of 0.15 mrad - 0.3 mrad with a pointing accuracy of less than 3°. This laser has a maximum repetition rate of 10 MHz and jitter of 20 ps RMS. |
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| 900 nm - 2800 nm, NIR Supercontinuum Source for Microscopy Applications | |
Supercontinuum Source
from Leukos
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| The ELECTRO 250 IR from Leukos is an NIR Supercontinuum Source that has a spectral bandwidth of 900 nm - 2800 nm. It delivers an average power of 1 W and has a repetition rate of 250 kHz. This single-mode supercontinuum source has a seed pulse width of 1 ns and power stability of ±1%. It is ideal for microscopy, spectroscopy, optical component testing, and metrology applications. |
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| 1314.9 nm Fiber Coupled Laser Diode | |
Laser Diode
from QPhotonics
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| The QFBGLD-1300-5 from QPhotonics is a Fiber Coupled Laser Diode that operates at a center wavelength of 1314.9 nm. It delivers an optical output power of 5 mW and has a spectral width of up to 0.01 nm. This wavelength-stabilized single-mode laser diode has a wavelength temperature coefficient of 0.1 nm/oC and minimum sidemode suppression ratio of 35 dB. It has a maximum rise time (in pulse mode) of 0.5 ns and reverse voltage of 5 V. |
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| 1.31 Megapixel InGaAs SWIR Sensor for Thermal Imaging Applications | |
SWIR Sensor
from Princeton Infrared Technologies
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| The PIRT1280A1-12 from Princeton Infrared Technologies is a 1.31 Megapixel InGaAs SWIR Sensor that has a spectral range of 0.4 µm - 1.68 µm. It delivers a frame rate of 95 fps (1280 x 1024) & 387 fps (512 x 512) and has a resolution of 1280 (H) x 1024 (V) pixels. This SWIR sensor is ideal for chemical detection, thermal imaging, and moisture detection applications. |
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| 250 V - 1400 V, Pockels Cell Driver for Two-photon Microscopy Applications | |
Pockels Cell Driver
from Highland Technology
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| The Model T850 from Highland Technology is a Pockels Cell Driver that has a voltage amplitude of 250 V - 1400 V. It has a maximum repetition rate of up to 4 MHz and pulse width of 7.5 ns. This pockels cell driver has a jitter of less than 30 ps RMS and propagation delay of 14 ns. It is ideal for pulse picking, Q-switching, cavity dumping, and two-photon microscopy applications. |
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| 2000 V - 3000 V, Q- Switch Pockels Cell Driver for Q-Switching Applications | |
Pockels Cell Driver
from Leysop
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| The PCD-3000 from Leysop is a Q- Switch Pockels Cell Driver that has an output voltage amplitude of 2000 V - 3000 V. It has a pulse duration of 200 ns and repetition rate of up to 100 kHz. This pockels cell driver has a rise time below 5 ns and high-tension current of over 25 mA. It is available in a package that measures 150 (H) mm x 250 (W) mm x 330 (D) mm and is ideal for q-switching applications. |
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| 2.36 Megapixel CMOS Image Sensor | |
CMOS Image Sensor
from Panasonic Corporation
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| The MN34220PL from Panasonic Corporation is a 2.36 Megapixel CMOS Image Sensor that has a resolution of 1944 (H) x 1213 (V) pixels. It has an electronic shutter in a 1/2.86" optical format that delivers a frame rate of 60 fps. This image sensor has a pixel size of 2.75 (H) µm x 2.75 (V) µm and image area of 5346 (H) µm x 3336 (V) µm. It is available in a 46-pin QFN ceramic package that measures 8.3 mm x 9.4 mm x 1.53 mm. |
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| Sponsored by EMC Directory | | |
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| 1 Megapixel CMOS Image Sensor for Machine Vision Applications | |
CMOS Image Sensor
from Luxima Technology
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| The LUX13HS from LUXIMA Technology is a 1 Megapixel CMOS Image Sensor that has a resolution of 1280 (H) x 864 (V) pixels. It has a global shutter in a 4/3" optical format that delivers a frame rate of 3500 fps (at 1280 x 864 pixels) and 9000 fps (at 1280 x 384 pixels). This CMOS image sensor has a pixel pitch of 13.7 µm and is ideal for 3D scanning, motion analysis, and industrial market applications. |
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| Fiber Optic Transceiver for Automotive & ADAS Applications | |
Fiber Optic Transceiver
from KDPOF
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| The KD1053 from KDPOF is a Fiber Optic Transceiver (FOT) that operates in two modes: 100 Mb/s mode and 1 Gb/s mode. It is a 65nm CMOS ASIC that implements PCS and PMA sublayer for gigabit optical communications over POF. This FOT is ideal for communications in vehicle data networks, interconnection of infotainment, and automotive applications. |
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| 1310/1550 nm Optical Time Domain Reflectometer for Network Testing Applications | |
Optical Time Domain Reflectometer (OTDR)
from Saluki Technology
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| The S2103D from Saluki Technology is a Mini-pro OTDR that operates at a wavelength of 1310 nm or 1550 nm. It has a wavelength accuracy of ± 20 nm and dynamic range of 24 dB or 26 dB. This OTDR has an event blind zone of 2.5 m and attenuation blind zone of 8 m. It is ideal for FTTx testing, CATV, access, LAN & metro network testing, lab and factory testing, and live fiber troubleshooting applications. |
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| 5 Megapixel Digital Scientific & Industrial Camera for Industrial Applications | |
Scientific & Industrial Camera
from SPOT Imaging
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| The ID2820 from SPOT Imaging is a 5 MP Digital Scientific & Industrial Camera that has an active resolution of 2592 (H) x 1944 (V) pixels. It has a rolling shutter in a 1/2.5" optical format that delivers a frame rate of 76 fps (at 640 x 480 ROI at full resolution), 28 fps (full frame at 1/2 resolution), and 7 fps (full frame at full resolution). This camera is ideal for pathology, clinical, and measurement applications. |
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| 900 nm - 1700 nm, Spectrometer for Semiconductor Process Applications | |
Spectrometer
from Verity Instruments, Inc.
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| The SD512GR from Verity Instruments, Inc. is a Spectrometer that operates at a wavelength of 900 nm - 1700 nm. It integrates a 512-element, linear Indium Gallium Arsenide photodiode array and blocking filter. This spectrometer has a thermoelectric cooler. It is ideal for endpoint detection, fault detection, process diagnostics, and semiconductor process applications. |
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