Integrating Sphere Detector, Diverging Beam, 2.0 in., 800-1650 nm

The 819D-IG-2-CAL2 is a NIST traceable calibrated integrating sphere detector using a 2 in. integrating sphere with a high performance InGaAs photodetector. The input port size is 0.5 in. diameter and the wavelength range is 800-1650 nm. It comes with an SMA fiber optic connector on the North pole as a standard feature allowing a small amount of light pickoff for wavelength measurement or any further analysis without affecting the overall system calibration. Note that the system calibration is no longer valid if any component is changed from the original calibrated configuration. For a very high power level, elevated temperature of the integrating sphere system can affect the measurement accuracy so the sphere must be temperature controlled.
Divergent Beam Input
Depending on the beam divergence characteristics of the light source, Newport offers two different types of integrating sphere detectors – Divergent or Collimated. The 819D series detectors are designed for a diverging light source, including laser diodes, lensed LEDs and lensed lamps. In the 819D series, the baffle is placed between the input port and the detector, so that the undiffused beam does not hit the detector directly.
Tightest Calibration Uncertainty
Advanced –CAL2 Models
Advanced models that end with a “-CAL2” suffix feature a detector that has an integrated thermocouple and OD1 attenuator. When these models are connected to power meter models 1830-R, 1918-R, 1936-R or 2936-R, they will automatically recognize both the attenuator “on/off” position as well as the detector head temperature. The advanced models are designed for added convenience and ease of use.
Post-Mountable for Accurate Measurements
To ensure accurate measurements, it is recommended to mount these integrating spheres securely. One way to do so is by mounting them on an optical post.
SMA Fiber Adapter on the North Pole
All the spheres come with an SMA fiber adapter on the North pole as a standard feature, allowing a small amount of light pickoff for wavelength measurement or any further analysis without affecting the overall system calibration. All sphere detectors are calibrated with the adapter already installed.
It is important to determine whether enough signal can be sent to the spectrometer or a monochromator. A rough estimate on how much light will couple to the optical fiber can be obtained by taking the ratio between the core area or the effective mode area of the fiber and the surface area of the sphere, which can be very small. We recommend using a spectrometer that accepts at least 400 to 600 um diameter fiber input.
Specifications
- TypeSphere Sensor
- Detector TypeDiverging Beam Integrating Sphere
- Detector InputFree Space
- Fiber-Optic ConnectorSMA on the north pole
- Detector MaterialIndium Gallium Arsenide
- Spectral Range800 - 1650 nm
- Sensor SizeØ3 mm
- AttenuatorOD1, Built-in
- Maximum Measurable Power7 W
- Minimum Measurable Power5 nW
- Maximum Measurable Power Benchtop Meter7 W
- Maximum Measurable Power Handheld Meter4 W
- Maximum Measurable Power Without Attenuator5 W
- Calibration ModuleDB15 Connector Pigtail
- Calibration Uncertainty2.4% (900-1430 nm)
2.6% (1430-1600 nm) - Linearity±1 %
- Sphere Size2 in.
- Sphere MaterialPTFE
- Input Port Size0.5 in.
- Connector TypeDB15
- Cable Length2 m
Resources & Downloads
Literature
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