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Ocean insight Spectrometer
Ocean Optics customers choose our spectrometers and accessories for their spectroscopy applications. Everyday scientists and researchers, manufacturers, farmers, food and beverage producers and medical professionals use the power of spectroscopy to fuel their analysis. From protein analysis to semiconductor processing and solar energy research, Ocean Optics provides the technology and spectroscopy applications know-how to help you solve measurement challenges. We collaborate with bold, passionate innovators who believe in the power of spectroscopy to improve the quality of life Available from 165 to 1100 nm
For quantify the concentration of solutions
For quantify the concentration of gases
Measuring absolute spectral irradiance
Diffuse reflection measurement can be used to determine information about chemical
content or color of a sample
Determining the reflection spectrum of sample and applying it to a standard illuminant .
The amount of light energy the sample reflects is convert to color value X, Y and Z
Fluorescence measurements require a sensitive detector and an effective filter for discrimination
between excitation source and weak emission from sample.
HR4000 is ideal for measuring the spectral characteristics and intensity of continuous-wave
and pulsed lasers. For high-power lasers, an integrating sphere or
cosine corrector attenuates the light to avoid
A thin film on a substrate can act as an etalon, creating an interference pattern superimposed
on the surface reflectivity when viewed in reflection. The spacing of the pattern’s
sinusoidal peaks, when combined with the
For oxygen sensing, the NeoFox Phase Measurement System is our most popular
fluorescence-based optical sensing system.
Their high-performance systems are designed specifically for quick material identification
and verification in almost any setting.
The LIBS2500 Broadband Spectrometer is a detection system for real-time elemental
analysis in solids, solutions and gases. This high-resolution system provides full spectral analysis
from 200-980 nm, with optical resolution of ~0.1 nm (FWHM).
A UV/Vis spectroscopy encompasses a broad range of applications including absorbance/transmittance, reflection, irradianace, fluorescence, colour measurements and much much more. These compact Ocean Optics spectrometers are portable, intuitive to use, with a comprehensive range to suit your every need. Use the comparison chart or the interactive product search utility to help get you started today.
VERSATILE
For absorbance, irradiance, reflectance, fluorescence
Parameter | USB2000+ |
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Select Range | 200-1100nm |
Detector | Sony ILX511B |
Integration Time | 1 ms to 65 s |
A/D Converter | 14 bit, 2MHz |
Dynamic Range | 1900-02-22 04:01:00 |
S/N | 1900-01-09 10:01:00 |
Optical Resolution | ~0.3-10.0 nm FWHFWHM |
USB400: Detector: Toshiba TCD1304AP linear, Optical Resolution: ~1.5 nm FWHM, S/N : 300:1
HIGH RESOLUTION
For laser characterization, atomic emission line analysi
Parameter | HR2000+ |
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Spectral Range | 200-1100nm |
Detector | Sony ILX511 |
Integration Time | 1ms – 20s |
A/D Converter | 14 bit, 2MHz |
Dynamic Range | 1900-02-22 04:01:00 |
S/N | 1900-01-09 10:01:00 |
Optical Resolution | ~0.035-6.8 nm FWHM |
HR 400: Detector: Toshiba TCD1304AP linear, Optical Resolution: ~0.02-8.4 nm FWHM, S/N : 300:1
HIGH SENSITIVITY
For low-light level applications including Fluorescence, Raman,DNA sequencingAstronomy & Thin-film
Parameter | Maya2000 | QE65000 |
---|---|---|
Spectral | 200-1100 nm deep UV (<190 nm) | 200-1100 nm |
Range | ||
Detector | Hamamatsu S9840 | Hamamatsu S7031-1006 |
Integrate | 5ms – 20s | 8ms – 1500s |
Time | ||
A/D Con. | 16 bit, 500KHz | 16 bit, 150KHz |
Dynamic Range | Spec 5000:1 | 25000:1 |
Typical 8000:1+ | ||
S/N | 1900-01-13 14:01:00 | 1900-02-09 16:01:00 |
VERSATILE
For NIR applications Agriculture, Chemical analysis, Materials science , 900 -2500nm
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TE Cooled down to -20°C
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Internal shutter option
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Interchangeable entrance slit
Applications
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Absorbance
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Reflectance & Transmittance
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Moisture content
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Polymer sorting
NIRQuest512 (900-1700 nm),
NIRQuest512-1.9 (1100-1900 nm),
NIRQuest512-2.2 (900-2200 nm),
NIRQuest512-2.5 (900-2500 nm),
NIRQuest256-2.1 (900-2050 nm),
NIRQuest256-2.5 (900-2500 nm),
from 900-2500 nm
HDX- HIGH DEFINITION
Applications
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Biomolecule quantification
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Plasma monitoring
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Thin film characterization
Keywords
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High resolution
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Low stray light
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High throughput
Techniques
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Absorbance
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Fluorescence
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Emission
Range: | 200-925 nm |
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SNR | 400:1 (at full signal) |
Dynamic range | 12,000:1 for a single acquisition |
Integration time | 6 µs to 10 seconds |
Stray light | >3AU |
Throughput | f/4 cone on detector with 300 μm fiber |
EDUCATION KIT
Experiment Possibilities Absorbance / Emission / Fluorescence / pH Measurement / Color measurement
STS-VIS-L-25-400-SMA | 350-800nm |
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ECO-VIS | light source 400-2500nm |
P400-1-VIS-NIR | 400 µm cord, 1 m length |
CVD-UV1S-SAM | 8 of plastic cuvettes |
PH-BCG-TRANS-CUV | pH Patches Cuvettes (3) |
EDU-CUV-DARK | Dark reference |
CC-3 | Cosine corrector |
OCEANVIEW | Spectroscopy software |
STARGAGE CASE | Rugged case |
STS-VIS Microspectrometer Kit
JAS MOBILE
The Jaz spectrometer is a handheld analytical instrument that combines low-power
optical sensing and onboard computing
Size (LWH) | 109 mm x 64 mm x 57 mm |
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Weigh | 352 g |
Range: | within 200-1100 nm |
SNR | 250:1 (at full signal) |
Dynamic range | 1300:1 for a single acquisition |
Integration time | 870 µs to 65 seconds (20 s typical maximum) |
Optical resolution | ~0.3-10.0 nm FWHM |
FAST AQUISITION
Speed up to 4,500 scans per second For UV-Vis helps with food sorting and processing
;
biomedical sciences, especially for absorbance measurements requiring enhanced UV sensitivity;
rapid events measurements and security and authenticity
,
Detector: | CMOS detector |
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Preconfigured models: | UV-Vis (200-850 nm), Vis-NIR (350-1000 nm) and extended-range (200-1025 nm) |
Signal-to-noise ratio | 1900-01-11 02:01:00 |
Dynamic range | 5,000:1 |
Integration time: | 10 μs-10 seconds |
Scan rate (maximum): | 4,500 scans/second |
RAMAN SPECTROSCOPY
RAMAN SPECTROSCOPY
Raman spectroscopy is a powerful technique that provides information about vibrational and rotational transitions
in molecules that can be used for detailed chemical analysis
of solids, powders, liquids, and gases. This fast and non-destructive measurement technique can be applied to a wide range of applications including fundamental research, routine process control and materials identification.
WHAT ARE THE MAIN APPLICATIONS?
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Materials identification
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Nanotechnology
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Mineralogy/geology
HIGH SENSITIVITY SPECTROMETER
HIGH-SENSITIVITY SPECTROMETER FOR RAMAN AND NIR APPLICATIONS
HIGH-SENSITIVITY
SPECTROMETER FOR RAMAN
HIGH-SENSITIVITY SPECTROMETER FOR RAMAN MEASUREMENTS
HIGH-SENSITIVITY SPECTROMETER FOR RAMAN MEASUREMENTS
HIGH-SENSITIVITY SPECTROMETER FOR RAMAN MEASUREMENTS
Type | Product | Range | Output | Measure Type |
---|---|---|---|---|
Deuterium Tungsten Halogen | DH-2000 DH-2000-BAL | ~230-2000 nm | Continuous | Absorbance, Fluorescence, Reflectance, Transmission |
Type | Product | Range | Output | Measure Type |
---|---|---|---|---|
Miniature Deuterium Tungsten Halogen | DH-MINI | ~200-2500 nm | Continuous | Absorbance, Fluorescence, Reflectance, Transmission |
Type | Product | Range | Output | Measure Type |
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Xenon | PX-2 HPX-2000 | ~220-750 nm 185-2000 nm | Pulsed Continuous | Absorbance, Fluorescence, Reflectance, Transmission |
Type | Product | Range | Output | Measure Type |
---|---|---|---|---|
Tungsten Halogen | HL-2000 | ~360-2400 nm | Continuous | Absorbance, Reflectance, Transmission |
Type | Product | Range | Output | Measure Type |
---|---|---|---|---|
Raman light sources | LASER 532 LASER 785 | 532 nm and 785 nm excitation lasers use | Continuous | Raman |
FIBER OPTICS & PROBE
PATCH CORD ASSEMBLIES
Our standard, premium-grade options are stainless steel BX (top drawing)
or silicone monocoil jacketing and PVDF.
Round to Keyed Linear Fiber
At one end of this seven-fiber assembly, the fibers are aligned linearly to more efficiently direct light into the optical bench and onto the detector. The collection end of the fiber has a six fibers-around-one design.
Bifurcated Fiber
Bifurcated assemblies have two fibers side-by-side in the common end and break out into two legs at the other end. Each leg can be UV-VIS or VIS-NIR or mixed.
Splitter
A splitter comprises three fibers – two fibers at one end that deliver light into the third fiber at the common end. All the fibers are epoxied together at the nexus of the assembly.
Transmission Dip Probe
We offer several versions of this standard two-fiber transmission probe, designed for immersion in process streams and solutions. Various pathlength tips are available.
Premium Reflection Probe
Our standard reflection probe arrangement has seven optical fibers – six illumination fibers around one read fiber – in a stainless steel ferrule. Additional configurations are available.
SAMPLE HANDELING
Medical applications
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Diagnostics (glucose, biosensors, in vitro clinical, capillary electrophoresis, flow cytometry)
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Optical Biopsy (fluorescence applications, scattering and diffuse reflectance, Raman, FTIR, NIR tissue fluorescence
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Therapeutic (photodynamic, laser applications in dermatology, tissue repair, neurosurgery, etc.)
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Genomics (biochips, DNA sequencing using fluorescence, cell culture analysis, quantum dot as biological labels, SERS)
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Thickness measurement (syringe liner and needle coating)
Process manufacturing
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Color measurement (scanners for packaging screening, color coding for syringe gauge, automotive parts, entertainment lighting)
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Plasma monitoring (on-line control of plasma gasses, end-point detection, vacuum chamber leaks)
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LED measurement (wafer level color and intensity sorting, instrument display, brightness control, color and spectral quality control)
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O2 and pH (on-line water treatment)
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Photovoltaic processes
Environmental
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Atmospheric sciences (fence-line monitoring of primary pollutants, portable air quality analyzers, solar irradiance)
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Water quality (upwelling and downwelling, nitrate/nitrite analysis, chlorophyll fluorescence, pathogen detection, turbidity, oxygen content dye tracing for karst analysis)
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Remote sensing (hyperspectral imaging for crop analysis, mineral detection)
Agriculture
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Color measurement (crop health, fruit ripeness, soil analysis)
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Moisture content (fruits and grains)
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Hyperspectral imaging
Life Science
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Sequencers
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PCR
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Microarrays
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Biosensors
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Nucleic acid and protein analysis
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Capillary electrophoresis
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Bioreactors (O2 and pH)
Lab Instrumentations
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Separation technologies (GC, HPLC, flash chromatography, etc.)
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Atomic spectroscopy (elemental analyzers)
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Materials characterization (particle characterization, petroleum analyzers)
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Lab automation (microplate readers, dissolution testing)
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General spectroscopy (thin film, color, Raman, moisture, transmission/absorbance)
Pharmaceuticals
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Raman systems (inbound quality control and material verification)
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Drug discovery (dissolution systems, micro titer plate readers)
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Process (on-line and at-line absorbance/transmission, material characterization)
Semiconductor
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Plasma monitoring (Deep UV to NIR for deposition control, end point, gas impurity)
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Metrology (thin film thickness reflectometry, ellipsometry)
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Wafer inspection
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Particle size (wafer polish slurry)
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Liquid contamination (cleaning stations, concentration for recycling)
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Photovoltaic
Metrology
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Film thickness (general optical, eye glass coating, reflective and AR coatings)
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Material characterization (laser induced breakdown spectrometry for elemental analysis, Raman, NIR)
Forensics
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Counterfeit detection (fluorescence)
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Materials identification (LIBS, Raman)
Optical elements : transmittance &
reflectance analysis
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Glass
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Polymer plate
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Polymer thin film
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Lens
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Solar panel
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Vacuum coating
Gemological
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Authenticity – Gem Stones
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Materials identification (Raman)
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Materials identification (LIBS)