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    QL1P600 Search Results

    QL1P600 Datasheets Context Search

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    MI0805K400R-10

    Abstract: QL1P1000 QL1P600 LVCMOS25 PS324
    Text: QuickLogic PolarPro® Device Data Sheet — QL1P600 and QL1P1000 •••••• Combining Low Power, Performance, Density, and Embedded RAM • Quadrant-based segmentable clock networks Device Highlights  80 quad clock networks per device Low Power Programmable Logic


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    QL1P600 QL1P1000 MI0805K400R-10 QL1P1000 LVCMOS25 PS324 PDF

    LVCMOS25

    Abstract: MI0805K400R-10 PS324 QL1P1000 QL1P600
    Text: QuickLogic PolarPro Device Data Sheet — QL1P600 and QL1P1000 •••••• Combining Low Power, Performance, Density, and Embedded RAM • Quadrant-based segmentable clock networks Device Highlights  80 quad clock networks per device Low Power Programmable Logic


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    QL1P600 QL1P1000 244The LVCMOS25 MI0805K400R-10 PS324 QL1P1000 PDF

    Untitled

    Abstract: No abstract text available
    Text: QuickLogic PolarPro Device Data Sheet — QL1P600 and QL1P1000 •••••• Combining Low Power, Performance, Density, and Embedded RAM • Quadrant-based segmentable clock networks Device Highlights  80 quad clock networks per device Low Power Programmable Logic


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    QL1P600 QL1P1000 PDF

    Untitled

    Abstract: No abstract text available
    Text: QuickLogic PolarPro Device Data Sheet — QL1P600 and QL1P1000 •••••• Combining Low Power, Performance, Density, and Embedded RAM • Quadrant-based segmentable clock networks Device Highlights  80 quad clock networks per device Low Power Programmable Logic


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    QL1P600 QL1P1000 PDF

    Untitled

    Abstract: No abstract text available
    Text: QuickLogic PolarPro Device Data Sheet — QL1P600 and QL1P1000 •••••• Combining Low Power, Performance, Density, and Embedded RAM • Quadrant-based segmentable clock networks Device Highlights  80 quad clock networks per device Low Power Programmable Logic


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    QL1P600 QL1P1000 PDF

    ql1p1

    Abstract: QL1P600 BGA 256 PACKAGE power dissipation
    Text: QuickLogic PolarPro Device Data Sheet — QL1P600 and QL1P1000 •••••• Combining Low Power, Performance, Density, and Embedded RAM • Quadrant-based segmentable clock networks Device Highlights Low Power Programmable Logic • As low as 25 µA


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    QL1P600 QL1P1000 ql1p1 BGA 256 PACKAGE power dissipation PDF

    Untitled

    Abstract: No abstract text available
    Text: QuickLogic PolarPro Data Sheet • • • • • • Combining Low Power, Performance, Density, and Embedded RAM Device Highlights  4 programmable global clock networks • Quadrant-based segmentable clock networks Low Power Programmable Logic  20 quad clock networks per device


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    asynchronous fifo vhdl

    Abstract: 8 BIT ALU design with verilog/vhdl code full subtractor using ic 74138 74139 for bcd to excess 3 code vhdl code for 8bit bcd to seven segment display 32 BIT ALU design with verilog/vhdl code 74594 16 BIT ALU design with verilog/vhdl code B1516 RAM1024
    Text: QuickWorks User Manual with SpDE Reference Release 2009.2.1 Contact Information QuickLogic Corporation 1277 Orleans Drive Sunnyvale, CA 94089 Phone: (408) 990-4000 (US) (905) 940-4149 (Canada) +(44) 1932-57-9011 (Europe) +(852) 2567-5441 (Asia) E-mail: info@quicklogic.com


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    Untitled

    Abstract: No abstract text available
    Text: QuickLogic PolarPro Data Sheet • • • • • • Combining Low Power, Performance, Density, and Embedded RAM Device Highlights • Quadrant-based segmentable clock networks  20 quad clock networks per device Flexible Programmable Logic  4 quad clock networks per quadrant


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    Untitled

    Abstract: No abstract text available
    Text: QuickLogic PolarPro Data Sheet • • • • • • Combining Low Power, Performance, Density, and Embedded RAM • Quadrant-based segmentable clock networks Device Highlights Flexible Programmable Logic • 0.18 µm, six layer metal CMOS process • 1.8 V core voltage, 1.8/2.5/3.3 V drive


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    Untitled

    Abstract: No abstract text available
    Text: QuickLogic PolarPro Family Data Sheet • • • • • • Combining Low Power, Performance, Density, and Embedded RAM Device Highlights  4 programmable global clock networks • Quadrant-based segmentable clock networks Low Power Programmable Logic


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    Untitled

    Abstract: No abstract text available
    Text: QuickLogic PolarPro Data Sheet • • • • • • Combining Low Power, Performance, Density, and Embedded RAM Device Highlights • Quadrant-based segmentable clock networks  20 quad clock networks per device Flexible Programmable Logic  4 quad clock networks per quadrant


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    PDF

    Untitled

    Abstract: No abstract text available
    Text: QuickLogic PolarPro Data Sheet • • • • • • Combining Low Power, Performance, Density, and Embedded RAM Device Highlights  4 programmable global clock networks • Quadrant-based segmentable clock networks Low Power Programmable Logic  20 quad clock networks per device


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    PDF

    Untitled

    Abstract: No abstract text available
    Text: QuickLogic PolarPro Family Data Sheet • • • • • • Combining Low Power, Performance, Density, and Embedded RAM Device Highlights  4 programmable global clock networks • Quadrant-based segmentable clock networks Low Power Programmable Logic


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    ql1p100

    Abstract: No abstract text available
    Text: QuickLogic PolarPro Data Sheet • • • • • • Combining Low Power, Performance, Density, and Embedded RAM Device Highlights • Quadrant-based segmentable clock networks  20 quad clock networks per device Flexible Programmable Logic  4 quad clock networks per quadrant


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    Untitled

    Abstract: No abstract text available
    Text: QuickLogic PolarPro Data Sheet • • • • • • Combining Low Power, Performance, Density, and Embedded RAM • Quadrant-based segmentable clock networks Device Highlights  20 quad clock networks per device Flexible Programmable Logic  4 quad clock networks per quadrant


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    LCMX0640

    Abstract: vhdl code for lift controller Actel a3p125 EPM570 equivalent pci 6254 QL1P1000 A3P125 EPM570 ICM7224 QL1P100
    Text: QuickLogic Programmable Logic Power Consumption •••••• QuickLogic® White Paper Power Demo Board Compares FPGA and CPLD Core Consumption The need to integrate additional functionality within ever-decreasing space drives designers of portable


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