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Mid-infrared hollow core fiber cage coupling system
Lens AR coating Wavelength range: λ = 3 -12 μm; f = 50 mm; SMA connector; free space mounting; metric or imperial threads Customizable optical assemblies including lens coatings, focal lengths, and adapters
320-1100nm Silicon-based Amplified Photodetector, Active area Φ9.8mm
IdealPhotonics' silicon-based amplified photodetector covers a wavelength range from 190nm to 1100nm. It features 8 adjustable gain levels, enabling quantitative photoconversion with a wide dynamic range. It is suitable for various optoelectronic development scenarios, delivering excellent performance at a high cost-performance ratio. The device is widely used in UV and visible light measurements, with full technical support provided.
1178nm benchtop with software control DFB laser 10mW
Idealphotonics' benchtop software-controlled DFB light source is based on an advanced microprocessor control system, combined with high-precision ATC and ACC (APC) control circuits to achieve high and stable output of the laser, while ensuring that the light source is quick and intuitive to operate. We can also provide corresponding communication interfaces and control software according to user requirements to achieve computer control. This light source uses a one-key recovery function (Run/Stop button), which can effectively help customers return to the previous working state. This is a highly integrated modular system light source, which uses PC-side software intelligent control. Customers can set the required working temperature and current according to their needs. It is very suitable for experimental scientific research and production testing. In addition, we need to modulate the laser for some application fields. We have connected two modulation ports, one for high frequency and one for low frequency, to better meet customers' needs for multiple uses of one machine.
1083nm benchtop with software control DFB laser 10mW
Idealphotonics' benchtop software-controlled DFB light source is based on an advanced microprocessor control system, combined with high-precision ATC and ACC (APC) control circuits to achieve high and stable output of the laser, while ensuring that the light source is quick and intuitive to operate. We can also provide corresponding communication interfaces and control software according to user requirements to achieve computer control. This light source uses a one-key recovery function (Run/Stop button), which can effectively help customers return to the previous working state. This is a highly integrated modular system light source, which uses PC-side software intelligent control. Customers can set the required working temperature and current according to their needs. It is very suitable for experimental scientific research and production testing. In addition, we need to modulate the laser for some application fields. We have connected two modulation ports, one for high frequency and one for low frequency, to better meet customers' needs for multiple uses of one machine.
1550nm High Power Single Mode Fiber Laser 3W
With optimized optical properties, 1550nm single-mode DFB is an ideal choice for demanding sensing system applications. The innovative chip design has suppressed high-order longitudinal and transverse modes while maintaining linear polarization stability. The laser has high output power (Max. 50W output), narrow line width and good consistency, and is currently favored by domestic scientific research customers. At present, our existing inventory wavelengths cover 1000-2400nm. For certain specific areas of use of customers, we can provide customers with customized chip screening services.
320-1000nm Silicon-based Amplified Photodetector, Active area Φ0.8mm
The Silicon-based Amplified Photodetector from IdealPhotonics covers a wavelength range of 200nm to 1100nm, featuring fixed gain for quantitative photoconversion. It provides sufficient gain while ensuring high bandwidth performance, making it suitable for the development of photodetection applications involving weak light intensity and fast speeds. It delivers excellent performance and high cost-efficiency, along with Quan-level technical support. Commonly used in ultraviolet (UV) and visible light measurement.
Si APD Photodetector 500MHz 400-1100nm FC/APC
The Si APD Photodetector module integrates a low-noise APD detector, a low-noise broadband transimpedance amplifier, an ultra-low noise isolated power supply, a high-voltage power supply, and APD temperature compensation; the isolated power supply ensures that the output signal is not affected by the external power supply; the APD temperature compensation improves the stability of the detection module. The avalanche photodetector has the characteristics of high gain, high sensitivity, high bandwidth, and low noise
FBG WDM ITU Filter 100/200GHz Wavelength Division Multiplexing Fiber Bragg Grating
FBGs with narrow spectral bandwidth are excellent components for filtering optical signals. This type of FBG is widely used as an optical add/drop multiplexer in WDM systems. Allow high-level SLSR to avoid adjacent channel crosstalk in the system. The flat top reflection spectrum and steep spectral drop are characteristics of these FBGs. Stable operation requires non thermal encapsulated FBGs with wavelength stability<0.16 nm within the temperature range of 0-70 ℃
MEMS 1x32 Optical Switch (Module Package)
Idealphotonics' MEMS 1x32 optical switch is an optical switch based on MEMS (micro-electromechanical system) technology that allows channel selection between a single input light and 32 output lights. It has the characteristics of small size, long life and stable reliability, and is widely used in optical network fields such as OADM and OXC.
FBG Fabry-Perot interferometer fiber Bragg grating 600-2300nm
Fiber Bragg Grating is currently one of the hotspots in the field of fiber optic sensing research. For many applications that require measuring very small temperature or strain changes, using fiber Bragg gratings can improve acoustic sensitivity. The fiber Fabry Perot interferometer is such a pair of fiber Bragg gratings. In this case, a small phase shift can be detected. By coating the optical fibers between gratings with electrical, magnetic, or acoustic enhancement coatings, small changes in these fields can be measured. For sensing purposes and evaluating small vibrations or acoustic signals through interferometry, using low precision is usually sufficient. Transmission spectra of Fabry Perot cavity. The Fabry Perot fiber interferometer is shown in the figure.
600-1750nm InGaAs quadrant photodiode
The MP-QPD-B-I-W3 series is a product line with high sensitivity and high reliability, making it ideal for optical communication equipment. This model is also available with custom packaging options.
532nm polarization-maintaining fiber attenuator
Based on our unique optical design and processing capabilities, our VOA has the characteristics of fast adjustment of optical attenuation, small size, low insertion loss, low polarization-related loss, high mode-related stability and high reliability. It is mainly used in multimode transmission networks, power balancing, product testing, and related instruments and equipment.
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