O/E LAND Unveils Versatile Optical Instrument Lineup for Advanced Photonic Applications

Posted  by GoPhotonics

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O/E LAND, a provider of optical measurement, switching, and infrared photonic instruments, is featured on GoPhotonics for its diverse portfolio of optical spectrum analyzers, fiber optic switches, circulators, detectors, and power meters designed for advanced photonic and sensing systems. The company focuses on high precision optical characterization, flexible signal routing, and mid infrared detection to enable accurate measurement, stable signal handling, and efficient optical system integration across a wide spectral range. Its solutions combine advanced detector technologies such as InGaAs based sensing, tunable laser integration, and low loss fiber optic architectures with robust benchtop and modular system designs for reliable laboratory and industrial use. These products are widely used in optical communication systems, fiber optic sensing, biomedical applications, spectroscopy, and research and development environments.

OEOSA-100 - Optical Spectrum Analyzers for Biomedical Applications

The OEOSA-100 is an optical spectrum analyzer that operates at wavelengths of 1060 nm, 1550 nm, and 2000 nm, enabling spectral analysis across multiple optical bands. It integrates a built in tunable laser source operating at 1060 nm, 1550 nm, and 2000 nm to support extended measurement and characterization across these wavelength regions. It includes an integrated power meter for optical signal evaluation within the same wavelength ranges, allowing combined analysis functionality in a single platform. It supports USB control interface for system integration and automated operation in test setups. It is compatible with FC/APC, FC/PC, SC/PC, and SC/APC fiber connectors for flexible optical interfacing. It is ideal for passive optical component testing, biomedical applications, interrogation systems, and research and development.

OEOFS-300 - Fiber Optic Switch for Optical Communication Systems

The OEOFS-300 is a fiber optic switch that operates across a wavelength range of 400 - 2000 nm, enabling flexible optical routing in broadband systems. It supports up to 1 x 64 channel switching with low insertion loss and high return loss, ensuring stable signal transmission. It provides low polarization dependent loss and high repeatability for consistent switching performance in optical networks. It is compatible with single mode, multimode, and polarization maintaining fibers and supports FC/PC and FC/APC connector options for efficient interfacing. It is available in a compact module format designed for system integration. It is ideal for optical communication systems, fiber network testing, monitoring, and multi channel signal routing applications.

OEFCP-2000 - MIR Photodetector for Fiber Optic Sensing Applications

The OEFCP-2000 is a fiber coupled infrared photodetector that operates over a wavelength range of 2 µm - 6 µm, enabling detection of mid infrared optical signals across this spectral region. It supports detection of both continuous wave and pulsed optical signals, providing flexible operation for measurement and sensing systems. It features high coupling efficiency and low insertion loss for improved optical signal collection and stable detection performance. It is designed for use with fiber coupled input configurations suitable for integration into optical test and measurement setups. It is available as part of a photodetector series with built in electronic amplification and optional display based turnkey configurations. It is ideal for optical mid infrared signal detection, optical testing systems, fiber optic sensing, and biomedical applications.

OECIR-100-1030-2000 - Fiber Optic Circulator for Signal Routing Applications

The OECIR-100-1030-2000 is a fiber optic circulator that operates over a wavelength range of 1030 - 2000 nm, enabling bidirectional optical signal routing across a wide spectral band. It provides low insertion loss and high isolation with high return loss and low crosstalk, ensuring efficient non-reciprocal signal transmission in optical systems. It supports both single mode and polarization maintaining fiber operation, maintaining stable performance across different fiber configurations. It is designed as a 3 port or 4 port device for flexible optical path management in broadband applications. It is available with FC/PC, FC/APC, SC/PC, SC/APC, LC/PC, and LC/APC connector options for system integration. It is ideal for optical communication systems, fiber optic sensing, testing setups, and signal routing applications.

OEFCM-2000 - Optical Power Meter for Biomedical Applications

The OEFCM-2000 is an optical power meter that operates over a wavelength range with a 2.6 µm cut-off, enabling measurement of optical power in mid infrared systems. It uses an Indium Gallium Arsenide (InGaAs) detector for accurate detection of optical signals across supported wavelengths. It supports single mode, multi mode, and polarization maintaining fiber types, ensuring compatibility with a wide range of optical fiber systems. It is designed as a benchtop or rackmount equipment type for flexible integration into laboratory and system level setups. It is ideal for optical mid infrared signal detection, optical testing systems, optical fibre sensing, and biomedical applications.

With its portfolio of optical spectrum analyzers, fiber optic switches, circulators, photodetectors, and optical power meters, O/E LAND enables precise optical measurement, flexible signal routing, and reliable mid infrared detection across advanced photonic systems. By combining InGaAs detector technology, tunable laser integration, and low loss fiber optic architectures with robust benchtop and modular instrument designs, the company delivers accurate performance, stable operation, and consistent measurement capability in demanding environments. O/E LAND INC.’s focus on optical precision, system flexibility, and broadband compatibility makes it a trusted solution provider for optical communication testing, fiber optic sensing, biomedical applications, spectroscopy, and research and development.

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