DLP9000

AKTIV

Digitales DLP®-Mikrospiegelarray (DMD), WQXGA, 0,9 Zoll

Produktdetails

Illumination wavelength (min) (nm) 400 Illumination wavelength (max) (nm) 700 Display resolution (max) WQXGA (2560x1600) Pattern rate, binary (max) (Hz) 9523 Pattern rate, 8-bit (max) (Hz) 1031 Array diagonal (in) 0.9 Micromirror array size 2560 x 1600 Micromirror pitch (mm) 0.0076 Micromirror array orientation Orthogonal Rating Catalog Operating temperature range (°C) 0 to 70
Illumination wavelength (min) (nm) 400 Illumination wavelength (max) (nm) 700 Display resolution (max) WQXGA (2560x1600) Pattern rate, binary (max) (Hz) 9523 Pattern rate, 8-bit (max) (Hz) 1031 Array diagonal (in) 0.9 Micromirror array size 2560 x 1600 Micromirror pitch (mm) 0.0076 Micromirror array orientation Orthogonal Rating Catalog Operating temperature range (°C) 0 to 70
DLP-TYPEA.9 (FLS) 355 1777.4656 mm² 42.16 x 42.16
  • High Resolution 2560×1600 (WQXGA) Array
    • > 4 Million Micromirrors
    • 7.56-µm Micromirror Pitch
    • 0.9-Inch Micromirror Array Diagonal
    • ±12° Micromirror Tilt Angle (Relative to Flat State)
    • Designed for Corner Illumination
    • Integrated Micromirror Driver Circuitry
    • Two High Speed Options
  • DLP9000X With a Single DLPC910 Digital Controller
    • 480 MHz Input Data Clock Rate
    • Up to 61 Giga-Bits Per Second (with Continuous Streaming Input Data)
    • Up to 14989 Hz (1-Bit Binary Patterns)
    • Up to 1873 Hz (8-Bit Gray Patterns With Illumination Modulation)
  • DLP9000 with Dual DLPC900 Digital Controllers
    • 400 MHz Input Data Clock Rate
    • Up to 38 Giga-Bits per Second (With Up to 400 Pre-Stored Binary Patterns)
    • Up to 9523 Hz (1-Bit Binary Patterns)
    • Up to 1031 Hz (8-Bit Gray Patterns Pre- Loaded With Illumination Modulation), External Input Up to 360 Hz
  • Designed for Use With Broad Wavelength Range
    • 400 nm to 700 nm
    • Window Transmission 95% (Single Pass, Through Two Window Surfaces)
    • Micromirror Reflectivity 88%
    • Array Diffraction Efficiency 86%
    • Array Fill Factor 92%
  • High Resolution 2560×1600 (WQXGA) Array
    • > 4 Million Micromirrors
    • 7.56-µm Micromirror Pitch
    • 0.9-Inch Micromirror Array Diagonal
    • ±12° Micromirror Tilt Angle (Relative to Flat State)
    • Designed for Corner Illumination
    • Integrated Micromirror Driver Circuitry
    • Two High Speed Options
  • DLP9000X With a Single DLPC910 Digital Controller
    • 480 MHz Input Data Clock Rate
    • Up to 61 Giga-Bits Per Second (with Continuous Streaming Input Data)
    • Up to 14989 Hz (1-Bit Binary Patterns)
    • Up to 1873 Hz (8-Bit Gray Patterns With Illumination Modulation)
  • DLP9000 with Dual DLPC900 Digital Controllers
    • 400 MHz Input Data Clock Rate
    • Up to 38 Giga-Bits per Second (With Up to 400 Pre-Stored Binary Patterns)
    • Up to 9523 Hz (1-Bit Binary Patterns)
    • Up to 1031 Hz (8-Bit Gray Patterns Pre- Loaded With Illumination Modulation), External Input Up to 360 Hz
  • Designed for Use With Broad Wavelength Range
    • 400 nm to 700 nm
    • Window Transmission 95% (Single Pass, Through Two Window Surfaces)
    • Micromirror Reflectivity 88%
    • Array Diffraction Efficiency 86%
    • Array Fill Factor 92%

Featuring over 4 million micromirrors, the high resolution DLP9000 and DLP9000X digital micromirror devices (DMDs) are spatial light modulators (SLMs) that modulate the amplitude, direction, and/or phase of incoming light. This advanced light control technology has numerous applications in the industrial, medical, and consumer markets. The streaming nature of the DLP9000X and its DLPC910 controller enable very high speed continuous data streaming for lithographic applications. Both DMDs enable large build sizes and fine resolution for 3D printing applications. The high resolution provides the direct benefit of scanning larger objects for 3D machine vision applications.

Featuring over 4 million micromirrors, the high resolution DLP9000 and DLP9000X digital micromirror devices (DMDs) are spatial light modulators (SLMs) that modulate the amplitude, direction, and/or phase of incoming light. This advanced light control technology has numerous applications in the industrial, medical, and consumer markets. The streaming nature of the DLP9000X and its DLPC910 controller enable very high speed continuous data streaming for lithographic applications. Both DMDs enable large build sizes and fine resolution for 3D printing applications. The high resolution provides the direct benefit of scanning larger objects for 3D machine vision applications.

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Technische Dokumentation

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Top-Dokumentation Typ Titel Format-Optionen Datum
* Data sheet DLP9000 Family of 0.9 WQXGA Type A DMDs datasheet (Rev. B) PDF | HTML 31 Okt 2016
* Errata DLP Products Technical Advisory - DLPC900, DLP9000, DLP6500 10 Okt 2019
User guide DMD Diffraction Efficiency Calculator (Rev. B) PDF | HTML 09 Jan 2026
White paper Using Lasers With DLP DMD Technology (Rev. A) PDF | HTML 25 Aug 2025
More literature TI DLP Technology for Lithography (Rev. F) 22 Aug 2025
Application note System Design Considerations Using TI DLP Technology Down to 400 nm (Rev. A) PDF | HTML 01 Aug 2025
Application note Digital Micromirror Device Thermal Considerations Including Pulsed Optical Sources (Rev. B) PDF | HTML 04 Apr 2024
Application note DMD Optical Efficiency for Visible Wavelengths (Rev. B) PDF | HTML 10 Apr 2023
Application note Wavelength Transmittance Considerations for DLP DMD Windows (Rev. E) 17 Dez 2019
Application note Mounting Hardware and Quick Reference Guide for DLP® Advanced Light Control DMDs (Rev. A) 27 Nov 2018
Technical article Capture, imagine, create: Enabling highly-accurate desktop 3D printing and portabl PDF | HTML 10 Jul 2018
Application note DMD 101: Introduction to Digital Micromirror Device (DMD) Technology (Rev. B) 23 Feb 2018
Product overview TI DLP® Technology for 3D Machine Vision (Rev. C) 08 Apr 2016
Technical article Printing up the future of innovation with direct imaging lithography PDF | HTML 29 Dez 2015
Product overview TI DLP Technology For 3D Printing (Rev. F) PDF | HTML 28 Jan 2015
Application note Geometric Optics for DLP® 05 Dez 2013

Design und Entwicklung

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DLP-TYPEA.9 (FLS) 355 Ultra Librarian

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