SHANGHAI OCEANHOOD OPTO-ELECTRONICS TECH CO., LTD.

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light sources, fiber, probe, laser, accessaries

COL Collimator Series

The optimized design ensures that the fiber gets the same position on each contact device A good black coating can effectively reduce stray light Optimized optical design with a maximum output window diameter of 6mm

COL-UV-10 is a spectral sampling accessory for collimation and focusing of supporting optical fibers; suitable for the 200-2500 nm spectral range. The COL-UV-10 uses a quartz lens with a focal length of 10 mm and a diameter of 6.3 mm. After the beam passes through the lens (through the fiber with a core diameter of 600um, N.A= 0.22), the divergence angle is less than 2° (depending on the core diameter of the fiber). Thread 3/8-24UNF.

532nm Raman Laser

Central Wavelength: 532nm, Power: Adjustable from 0 to 100mW Provides narrow linewidth, stable spectrum, and stable power laser output required for spectroscopic instruments. Offers multiple output modes, such as free space output and fiber optic output.

The RHL532 Raman Laser is an adjustable Raman laser with a central wavelength of 532nm and a power range of 0 to 100mW. This series of lasers provides the narrow linewidth, stable spectrum, and stable power output required for spectroscopic instruments. Additionally, the series offers multiple output modes, such as free space output and fiber optic output.

785nm Raman Laser

Central Wavelength: 785nm External Cavity Volume Bragg Grating (VBG) Technology Development Provides the required narrow linewidth, stable spectrum, and stable power laser output

The RHL785 Raman Laser is an adjustable Raman laser with a central wavelength of 785nm and a power range of 0 to 500mW. This laser is developed based on external cavity volume Bragg grating (VBG) technology to meet the needs of Raman spectroscopy applications. It provides the required narrow linewidth, stable spectrum, and stable power laser output for Raman spectroscopy measurements.

1064nm Raman Laser

Central Wavelength: 1064nm External Cavity Volume Bragg Grating (VBG) Technology Development Provides the required narrow linewidth, stable spectrum, and stable power laser output

The RHL1064 Raman Laser is an adjustable Raman laser with a central wavelength of 1064nm and a power range of 0 to 500mW. This laser is developed based on external cavity volume Bragg grating (VBG) technology to meet the needs of Raman spectroscopy applications. It provides the required narrow linewidth, stable spectrum, and stable power laser output for Raman spectroscopy measurements.

Right angle collimator COL90-UV-10

A good black coating can effectively reduce stray light The optimized design ensures that the fiber gets the same position on each contact device Optimized optical design with a maximum output window diameter of 6mm

COL90-UV-10 is a conventional accessory for spectral measurement applications, mainly used for beam collimation and focusing with optical fibers, with a focal length of 10mm and a clear aperture of 5mm; the spectral range is 200-2500nm. The COL90-UV-10 has a 45° beam splitting lens inside that transposes the beam splitting light to a 90° output.

Led4007-oh desktop LED light source

LED life: 5000hrs USB software control, percentage adjustment Secondary development: RS232 interface

Bench light source, compact and portable, spectral range 400-700nm, maximum output ≈1mW, SMA905 standard interface, fiber coupling, fluorescent light measurement.

IS-50-3P diffuse reflection integrating ball

Lambert diffuse reflective material, 97% reflectivity Liner diameter: 50mm Output interface: SMA905

The inner tank is 50mm, and the inner wall is composed of high reflective material PTFE, which is used to measure luminous flux, color temperature, spectral distribution and other parameters with spectrometer.

Variable optical path immersion transmission probe

The probe opening gap is adjustable from 0.5-10mm, and the optical path is adjustable from 1-20mm High temperature and high pressure resistance Customized flange: DN15, DN25, DN32 and other specifications

Probe rod length 160mm, diameter 12mm, wavelength range 200-2500nm, high temperature, corrosion resistance, absorbance/transmittance measurement in situ, online measurement

Electrically triggered probe

The front focusing lens is replaceable Wavelength customizable Product assembly process to ensure consistency

Coaxial optical path design, coupling efficiency > 80%, electrical trigger, tail fiber withstand 50N tension, FC/SMA905 standard interface, good plug and pull consistency, spectrum measurement, experimental teaching

SH-RAM-D20

Lockable mobile platform Modular and compact design Fast and smooth positioning

SH-RAM-D20 is a compact and adjustable solid-state Raman probe measuring bracket with adjustable stroke: Z-axis 240mm with an accuracy of 0.1mm; it can be adapted to various series of Raman and fluorescent probes from oceanhood. The SH-RAM-D20 trimming probe measuring bracket is a small entry-level positioning device and is an ideal choice for limited space. The bracket is made of high-quality aluminum alloy, and the surface is treated with matte matte and blackening, which increases the visual aesthetic effect and makes the bracket durable. The precision converted M3 x 0.35 mm pitch screw is used to achieve smooth linear positioning over the whole stroke range. In addition, the mobile platform is set with a lockable switch to prevent the probe from accidentally moving.

1064nm fiberless Raman probe

Spectral range: 150cm-1-3000cm-1 Cut-off depth: OD8 Product assembly process to ensure consistency

Coaxial optical path design, coupling efficiency > 80%, tailless fiber design, FC/SMA905 standard interface, good plug and pull consistency, Raman spectroscopy, experimental teaching

633nm fiberless fluorescence probe

Spectral range: 150cm-1-4500cm-1 Cut-off depth: OD8 Reliable process control: Start wave number of Raman spectrum <150cm-1

Coaxial optical path design, coupling efficiency > 80%, tailless fiber design, FC/SMA905 standard interface, good plug and pull consistency, Raman spectroscopy, experimental teaching