Produktdetails

Component type Controller Chipset family DLP650LNIR, DLP7000, DLP7000UV, DLP9500, DLP9500UV, DLPA200, DLPC410, DLPLCRC410EVM, DLPR410 Display resolution (max) 1080p (1920x1080), WXGA (1280x800), XGA (1024x768) Operating temperature range (°C) 0 to 85 Rating Catalog
Component type Controller Chipset family DLP650LNIR, DLP7000, DLP7000UV, DLP9500, DLP9500UV, DLPA200, DLPC410, DLPLCRC410EVM, DLPR410 Display resolution (max) 1080p (1920x1080), WXGA (1280x800), XGA (1024x768) Operating temperature range (°C) 0 to 85 Rating Catalog
DLP (DLP) 676 See data sheet
  • Operates the Following DLP® Chips:
    • DLP650LNIR, DLP7000, DLP7000UV, DLP9500, and DLP9500UV DMDs
    • DLPA200 DMD Micromirror Driver
    • DLPR410 Configuration PROM
  • Enables High Speed DMD Pattern Rates
    • 1-Bit Binary Pattern Rates up to 32 kHz
    • 8-Bit Monochrome Pattern Rates up to 4 kHz
  • 400 MHz Input Data Clock Rates
  • 64-Bit 2xLVDS Data Bus Interfaces In/Out
  • Supports Random Row and LOAD4 DMD Addressing
  • Compatible With a Variety of User Defined Processors or FPGAs
  • Operates the Following DLP® Chips:
    • DLP650LNIR, DLP7000, DLP7000UV, DLP9500, and DLP9500UV DMDs
    • DLPA200 DMD Micromirror Driver
    • DLPR410 Configuration PROM
  • Enables High Speed DMD Pattern Rates
    • 1-Bit Binary Pattern Rates up to 32 kHz
    • 8-Bit Monochrome Pattern Rates up to 4 kHz
  • 400 MHz Input Data Clock Rates
  • 64-Bit 2xLVDS Data Bus Interfaces In/Out
  • Supports Random Row and LOAD4 DMD Addressing
  • Compatible With a Variety of User Defined Processors or FPGAs

The DLPC410 is a digital controller that supports five DMD options: DLP650LNIR, DLP7000, DLP7000UV, DLP9500, and DLP9500UV. It is the convenient, high-speed data and control interface between the application electronics and the DMD. The DLPC410 provides DMD Mirror Clocking Pulses (Resets) and timing information to the DLPA200 DMD Micromirror Driver. The device is configured with firmware stored in the DLPR410 PROM.

This family of chipsets enables pixel data rates up to 48 Gigabits per second (Gbps) with the option for single, dual, quad, and global Resets. In addition, random row addressing and LOAD4 capabilities are offered. Often the family of chips is used when designing UV and NIR systems such as direct imaging lithography, 3D printing, and laser marking systems that need fast throughput and pixel accurate control.

In DLP-based electronics solutions, image data is 100% digital from the DLPC410 input port to the projected image. The image stays in digital form and is never converted into an analog signal. The DLPC410 processes the digital input image and converts the data into a format needed by the image on the DMD. The DMD then steers the light using binary pulse-width modulation (PWM) for each pixel mirror.

The DLPC410 is the DMD digital controller that controls the DLP650LNIR, DLP7000, DLP7000UV, DLP9500, and DLP9500UV DMDs (see Functional Block Diagram, Functional Block Diagram, and Functional Block Diagram). The DLPC410 provides developers easy access to the DMD as well as high speed, independent micromirror control. See the list of required chipset components for each DMD solution in Device Configurations table:

Reliable function and operation of the DLPC410 requires that it be used in conjunction with the other components of the chipset in DLPC410 Device Configurations table. For more information on the chipset components, see the data sheets in Related Documentation.

The DLPC410 is a digital controller that supports five DMD options: DLP650LNIR, DLP7000, DLP7000UV, DLP9500, and DLP9500UV. It is the convenient, high-speed data and control interface between the application electronics and the DMD. The DLPC410 provides DMD Mirror Clocking Pulses (Resets) and timing information to the DLPA200 DMD Micromirror Driver. The device is configured with firmware stored in the DLPR410 PROM.

This family of chipsets enables pixel data rates up to 48 Gigabits per second (Gbps) with the option for single, dual, quad, and global Resets. In addition, random row addressing and LOAD4 capabilities are offered. Often the family of chips is used when designing UV and NIR systems such as direct imaging lithography, 3D printing, and laser marking systems that need fast throughput and pixel accurate control.

In DLP-based electronics solutions, image data is 100% digital from the DLPC410 input port to the projected image. The image stays in digital form and is never converted into an analog signal. The DLPC410 processes the digital input image and converts the data into a format needed by the image on the DMD. The DMD then steers the light using binary pulse-width modulation (PWM) for each pixel mirror.

The DLPC410 is the DMD digital controller that controls the DLP650LNIR, DLP7000, DLP7000UV, DLP9500, and DLP9500UV DMDs (see Functional Block Diagram, Functional Block Diagram, and Functional Block Diagram). The DLPC410 provides developers easy access to the DMD as well as high speed, independent micromirror control. See the list of required chipset components for each DMD solution in Device Configurations table:

Reliable function and operation of the DLPC410 requires that it be used in conjunction with the other components of the chipset in DLPC410 Device Configurations table. For more information on the chipset components, see the data sheets in Related Documentation.

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Technische Dokumentation

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Top-Dokumentation Typ Titel Format-Optionen Datum
* Data sheet DLPC410 DMD Digital Controller datasheet (Rev. G) PDF | HTML 20 Dez 2019
* Errata DLP® Products Advisory for the DLPR410 and DLPR910 Devices PDF | HTML 16 Feb 2023
Application brief Highly Scalable TI DLP Technology for 3D Machine Vision (Rev. A) PDF | HTML 22 Aug 2025
Technical article 3 ways TI DLP® technology is revolutionizing industrial printing and production PDF | HTML 21 Mär 2019
White paper High-power NIR laser system benefits with TI’s DLP® technology 12 Dez 2018
User guide Discovery 4100 APPSFPGA PGen Design (Rev. A) 04 Dez 2018
User guide DLP Discovery 4100 Controller Board API Programmer’s Guide (Rev. A) 03 Dez 2018
Application note DMD 101: Introduction to Digital Micromirror Device (DMD) Technology (Rev. B) 23 Feb 2018
Technical article From 3D Printing to Lithography, TI DLP® Ultraviolet Chipsets Provide Flexible Sol PDF | HTML 27 Aug 2015
Product overview TI DLP Technology For 3D Printing (Rev. F) PDF | HTML 28 Jan 2015

Design und Entwicklung

Weitere Bedingungen oder erforderliche Ressourcen enthält gegebenenfalls die Detailseite, die Sie durch Klicken auf einen der unten stehenden Titel erreichen.

Evaluierungsplatine

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Evaluierungsplatine

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Benutzerhandbuch: PDF | HTML
Evaluierungsplatine

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Benutzerhandbuch: PDF | HTML
Evaluierungsplatine

DLPLCRC410EVM — DLPLCRC410 – Evaluierungsmodul

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Benutzerhandbuch: PDF | HTML
Evaluierungsplatine

OPTECKS-3P-DLP650LNIR-EVM — Optecks DLP650LNIR DMD evaluation module

The Optecks DLP650LNIR evaluation module (EVM) includes DLP650LNIR DMD, a 0.65" NIR WXA Series 450 DMD designed to be used in applications that operate in 850-2000 nm near-infrared (NIR) spectrum. Optecks DLP650LNIR EVM is an advanced imaging solution for laser sintering, ablation, marking, coding, (...)

Evaluierungsplatine

DLI-3P-DLI41XX — DLI D4100, D4120, D4130 Entwicklungskits für DLP Discovery-Chipsätze

DLi kits for DLP® Discovery™ chipsets (DLPC410 with DLP7000, DLP7000UV, DLP9500 or DLP9500UV DMDs) support custom interface development for industrial and medical systems and instrumentation. Choose among kit options based on desired hardware and software support. DLi4120 kits include (...)
Benutzerhandbuch: PDF | HTML
Evaluierungsplatine

VISI-3P-LRS-HD-UV — Visitech LUXBEAM Rapid System HD UV

The LUXBEAM® Rapid System LRS-HD is a DLP® technology based stereolithography sub-system, specifically designed for single head scrolling motion 3D printing and Additive Manufacturing systems. With the robust and reliable high resolution DLP9500 chip, the LRS-HD variants UV, Hybrid (HY), (...)

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Evaluierungsplatine

VISI-3P-LRS-MCX-HD-UV — Visitech LUXBEAM Rapid System MCx HD UV

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Evaluierungsplatine

VISI-3P-LRS-MCX-WX-NIR — Visitech LUXBEAM Rapid System NIR

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Von: VISITECH
Evaluierungsplatine

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Entwicklungskit

VIALUX-3P-V-MODULES-410 — ViALUX V-Module für DLPC410

ViALUX V-Module sind komplette Subsysteme, die eine Controllerplatine für DLPC410, einen digitalen Mikrospiegelbaustein (DLP650LNIR, DLP7000, DLP7000UV, DLP9500, DLP9500UV) und die bewährte Software ALP Controller Suite umfassen. Die Module in Industriequalität unterstützen eine (...)
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Optisches Modul

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Optecks’ ray 70A optical module is designed for optimal image quality using a 0.7” diagonal  digital micro-mirror device with a 4:3 aspect ratio such as the DLP7000. The monochromatic system combines the high resolution, high quality ray optical module with a high-power, (...)
Optisches Modul

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Optisches Modul

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Optisches Modul

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Optisches Modul

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Optisches Modul

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Anwendungssoftware und Frameworks

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Unterstützte Produkte und Hardware

Download-Optionen
Anwendungssoftware und Frameworks

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Anwendungssoftware und Frameworks

VIALUX-3P-ALP-4 — ViALUX ALP-4.1 Controller Software Suite für Evaluierungsmodul DLPLCRC410

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GUI für Evaluierungsmodul (EVM)

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Download-Optionen
Support-Software

DLPC134 DLP(R) Discovery 4100 Applications FPGA Pattern Generator Source Code version 2.

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Simulationsmodell

DLPC410 IBIS Model

DLPC065.ZIP (67 KB) - IBIS Model
CAD/CAE-Symbol

DLPC410 Board Design Files (Rev. C)

DLPR018C.ZIP (24041 KB)
Berechnungstool

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Designtool

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Simulationstool

DLPR410-IBIS — DLPR410 IBIS Model

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Gehäuse Pins CAD-Symbole, Footprints und 3D-Modelle
DLP (DLP) 676 Ultra Librarian

Bestellen & Qualität

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  • Materialinhalt
  • Qualifikationszusammenfassung
  • Kontinuierliches Zuverlässigkeitsmonitoring
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