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DLP2010NIR Texas instruments

DLP2010NIR
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DLP2010NIR
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The DLP2010NIR digital micromirror device (DMD) acts as a spatial light modulator (SLM) to steer near-infrared (NIR) light and create patterns with speed, precision, and efficiency. Featuring high resolution in a compact form factor, the DLP2010NIR DMD is often combined with a grating single element detector to replace expensive InGaAs linear array-based detector designs, leading to high performance, cost-effective portable NIR Spectroscopy solutions. The DLP2010NIR DMD enables wavelength control and programmable spectrum and is well suited for low power mobile applications such as 3D biometrics, facial recognition, skin analysis, material identification and chemical sensing.
  • 0.2-inch (5.29-mm) Diagonal Micromirror Array
    • 854 × 480 Array of Aluminum Micrometer-Sized Mirrors, in an Orthogonal Layout
    • 5.4-µm Micromirror Pitch
    • ±17° Micromirror Tilt (Relative to Flat Surface)
    • Side Illumination for Optimal Efficiency and Optical Engine Size
  • Highly Efficient Steering of NIR light
    • Window Transmission Efficiency 96% Nominal (700 to 2000 nm, Single Pass Through Two Window Surfaces)
    • Window Transmission Efficiency 90% Nominal (2000 to 2500 nm, Single Pass Through Two Window Surfaces)
    • Polarization Independent Aluminum Micromirrors
  • Dedicated DLPC150/DLPC3470 Controllers for Reliable Operation
    • Binary Pattern Rates up to 2880 Hz
    • Pattern Sequence Mode for Control over Each Micromirror in Array
  • Dedicated Power Management Integrated Circuit (PMIC) DLPA2000 or DLPA2005 for Reliable Operation
  • 15.9-mm × 5.3-mm × 4-mm Body Size for Portable Instruments
Illumination wavelength (min) (nm) 700
Illumination wavelength (max) (nm) 2500
Micromirror array size 854 x 480
Chipset family DLP2010NIR
Component type DMD
Micromirror array orientation Orthogonal
Pattern rate, binary (max) (Hz) 2880
Array diagonal (in) 0.2
Display resolution (max) WVGA
Rating Catalog
Operating temperature range (°C) 0 to 70
Micromirror driver support Integrated
Thermal dissipation (°C/W) 7.9
DLP2010NIR