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DLPC910 датащи(PDF) 36 Page - Texas Instruments |
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DLPC910 датащи(HTML) 36 Page - Texas Instruments |
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36 / 50 page ![]() LVDS Interface DCLKIN(A,B,C,D),DVALID(A,B,C,D),DIN(A,B,C,D)[15:]) DLPC910 DLP9000XFLS APPS FPGA DOUT(A,B,C,D)[15:0] DCLKOUT (A,B,C,D) SCTRL(A,B,C,D) RESET_ADDR(3:0) RESET_MODE(1:0) RESET_SEL(1:0) RESET_STRB RESET_OEZ RESET_IRQZ SCP BUS(3:0) Power Management OSC 50 MHz CTRL_RSTZ JTAG(3:0) DLPR910 PGM(4:0) USER Interface Connectivity USB Ethernet Volatile And Non-volatile Storage I2C Row and Block Signals ROWMD(1:0),ROWAD(10:0),BLKMD(1:0),BLKAD(3:0),RST2BLKZ Control Signals COMP_DATA,NS_FLIP,WDT_ENBLZ,PWR_FLOAT Status Signals RST_ACTIVE,INIT_ACTIVE,ECP2_FINISHED RESETZ VLED0 VLED1 Illumination Driver Illumination Sensor DLPC910 DLPS064A – SEPTEMBER 2015 – REVISED OCTOBER 2015 www.ti.com 8 Application and Implementation NOTE Information in the following applications sections is not part of the TI component specification, and TI does not warrant its accuracy or completeness. TI’s customers are responsible for determining suitability of components for their purposes. Customers should validate and test their design implementation to confirm system functionality. 8.1 Application Information The DLPC910 controller verifies the DMD connected in the application system, uses that information to select appropriate configuration data for the DMD, and then initializes the DMD to ready it for operation. The DLPC910 controller receives streaming 64-bit parallel input data and associated syncs from an external applications processor and passes the 64-bit data on to the DLP9000X DMD with the appropriate DMD timing and control information. It also receives embedded instructions from the applications processor to assist in determination of which DMD rows to load and which DMD mirror blocks to activate at any given moment in time. 8.2 Typical Application Direct-write digital imaging is regularly used in high-end lithography printing. This mask-less technology offers continuous run of printing by changing the digitally created patterns without stopping the imaging head. The DLPC910 digital controller, coupled with the DLP9000XFLS DMD, offers an ideal back-end imager that takes in digital images at 2560 × 1600 in resolution to achieve speeds greater than 61 Gigabits per second (Gbps). 8.2.1 High Speed Lithography Application As high-end lithography pushes the high speed printing envelope, providing a higher resolution imager is a must to achieve the demanding through-put of present and future printing technology. Figure 14 shows a system that offers both a speed boost and a four million pixel DMD. The main chipset components that make up this system are the DLPC910ZYR, the DLPR910YVA, and the DLP9000XFLS. With a few additional discrete components for power regulation and clock circuitry, a compact, and yet high performance design can be achieved. Figure 14. Typical High Speed Lithography Application 36 Submit Documentation Feedback Copyright © 2015, Texas Instruments Incorporated Product Folder Links: DLPC910 |
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