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Supplier: InfraTec Infrared LLC
Description: Pyroelectric IR detector with integrated ø1.9mm micromachined tunable Fabry-Perot filter. Tuning range 3.0 ... 4.1µm, spectral bandwidth 80nm, low spring stiffness, pyroelectric element area 2.0x2.0mm² thermal compensation, ultra low microphonic effect, current mode operation with advanced
- Detectivity: 0.0800 10^8cmHz^(½)/W
- Device Category: Element / Chip
- Electrical Outputs: Current
- Operating Temperature: -13 to 185 F
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Supplier: InfraTec Infrared LLC
Description: Pyroelectric IR detector with integrated ø1.9mm micromachined tunable Fabry-Perot filter. Tuning range 3.9 ... 4.8µm, spectral bandwidth 100nm, low spring stiffness, pyroelectric element area 2.0x2.0mm² thermal compensation, ultra low microphonic effect, current mode operation with advanced
- Detectivity: 0.0650 10^8cmHz^(½)/W
- Device Category: Element / Chip
- Electrical Outputs: Current
- Operating Temperature: -13 to 185 F
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Supplier: Broadcom Inc.
Description: The AFBR-1310Z is a compact, high performance, cost effective transmitter for multi GHz analog communication over single mode optical fiber. The transmitter incorporates a linear wide bandwidth InGaAsAl/InP Fabry-Perot laser packaged inside a TO-header, coupled to a single mode fiber
- Cable Type: Single Mode
- Connector Type: FC, Other
- Maximum Optical Output Power: 6.99 dBm
- Operating Temperature: -40 to 185 F
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Supplier: ValueTronics International, Inc.
Description: The Keysight Agilent HP 71450B is a diffraction-grating- based optical spectrum analyzer that provides spectral measurements of optical power versus wavelength and advanced functions for measuring and characterizing optical components, amplifiers, LEDs, DFB lasers, and Fabry-Perot
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Supplier: ValueTronics International, Inc.
Description: Agilent HP 71450A Optical Spectrum Analyzer is a diffraction-grating based optical spectrum analyzer that provides spectral measurements of optical power versus wavelength and advanced functions for measuring and characterizing optical components, amplifiers, LEDs, DBF lasers, and
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Accurate assessment of sensitivity and optimum threshold for semiconductor laser preamplified optical receivers
6 and 7 are valid under the assumptions for which the MGF formulation of the Fabry Perot amplifier is derived in Reference 6, namely that the spec- trum of the received optical signal is much narrower than the bandwidth of both the …
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Modulation measurements on active optoelectronic devices
… distortion in the laser source and to eliminate this.separate measurements of harmonic distortion in the source were carried out so that this could be fully compensatedforin the tabulatedresultsplotted in figures 9 and 10forthe active waveguide and the Fabry Perot amplifier respectively.
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http://dspace.mit.edu/bitstream/handle/1721.1/87923/880139968-MIT.pdf?sequence=2
The second part of the thesis then focuses on the development of the first light amplifier in THz frequency under Fabry - Perot amplifier (FPA) scheme.
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Laser Diodes and Their Applications to Communications and Information Processing
The idea to use a Fabry – Perot amplifier as a wavelength-tunable optical filter (a channel selector) was proposed by Kazovsky and Werner [1].
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Handbook of Optical Fibre Sensing Technology
The most common semiconductor amplifiers are divided into two groups: travelling wave and Fabry - Perot amplifiers .
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Analysis And Simulation Of The Dynamic Behaviour Of A Sc Optical Amplifier In Switching
A Fabry - Perot amplifier biassed near the oscillation threshold has a high finesse (F>30), so a variation of the refraction index of 10 -4 is enough to switch an amplifier of 200 um.
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Bistable Optoelectronic Devices
Fabry - Perot amplifiers .
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Absorptive and dispersive bistability in semiconductor injection lasers
Webb [109] achieved optically retiming and restoring data levels with a bistable Fabry - Perot amplifier .
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Semiconductor laser optical amplifiers for use in future fiber systems
A Fabry - Perot amplifier is a resonant amplifier in which the factor G, 6is close to unity, where G, is the sin- gle pass gain through the device.
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Injection locking properties of a microchip laser
Then the Fabry - Perot amplifier model will be used: comparison of these results with the former case show either an improve- ment of the former theoretical predictions for some values of the control parameters domains or even an inadequacy of the rate …
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