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355-CLGA
Integrated Circuits (ICs)

DLP9000XBFLS

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Texas Instruments

0.9-INCH WQXGA HIGH-SPEED DLP® DIGITAL MICROMIRROR DEVICE (DMD)

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355-CLGA
Integrated Circuits (ICs)

DLP9000XBFLS

Active
Texas Instruments

0.9-INCH WQXGA HIGH-SPEED DLP® DIGITAL MICROMIRROR DEVICE (DMD)

Technical Specifications

Parameters and characteristics for this part

SpecificationDLP9000XBFLS
ApplicationsMedical Imaging, 3D
Mounting TypeSurface Mount
Package / Case355-BCLGA
Supplier Device Package355-CLGA
Supplier Device Package [x]42.2
Supplier Device Package [y]42.2
TypeDigital Micromirror Device (DMD)

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

DistributorPackageQuantity$
DigikeyTray 1$ 6798.57
Texas InstrumentsJEDEC TRAY (5+1) 1$ 4.00

Description

General part information

DLP9000X Series

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.