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    ALTERA CPLD CROSS REFERENCE Search Results

    ALTERA CPLD CROSS REFERENCE Result Highlights (5)

    Part ECAD Model Manufacturer Description Download Buy
    MP-5XRJ11PPXS-014 Amphenol Cables on Demand Amphenol MP-5XRJ11PPXS-014 Flat Silver Satin Modular Crossed wiring Cable, RJ11 / RJ11 14ft Datasheet
    LM103H-3.3/883 Rochester Electronics LLC Two Terminal Voltage Reference Visit Rochester Electronics LLC Buy
    EP1800ILC-70 Rochester Electronics LLC Replacement for Altera part number EP1800ILC-70. Buy from authorized manufacturer Rochester Electronics. Visit Rochester Electronics LLC Buy
    LM103H-3.3 Rochester Electronics LLC Two Terminal Voltage Reference, 1 Output, 3.3V, BIPolar, MBCY2, HERMETIC SEALED, TO-46, METAL, CAN-2 Visit Rochester Electronics LLC Buy
    AD584IR Rochester Electronics LLC AD584 - Three Terminal Voltage Reference, 3 Output, 10V Visit Rochester Electronics LLC Buy

    ALTERA CPLD CROSS REFERENCE Datasheets Context Search

    Catalog Datasheet MFG & Type PDF Document Tags

    touchpad sensor pcb

    Abstract: pcb touchscreen capacitive touch screen capacitive touch screen sensor processor cross reference Indium tin oxide capacitive touch screen panel conclusion touch switch multi capacitive touch screens touch light control
    Text: White Paper Developing Multipoint Touch Screens and Panels With CPLDs Introduction When a certain web-enabled multimedia smartphone hit the market in 2007, it transformed the way that consumers expect to interact with their handheld devices. Especially engaging is the fluid touch-screen interface that allows


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    cpld macrocell max 7000 altera

    Abstract: EPM1270 EPM2210 EPM240 EPM570 CPLD
    Text: White Paper MAX II Logic Element to Macrocell Conversion Methodology Introduction This white paper describes the methodology used to develop Altera’s device density conversion guidelines for CPLDs, and is intended to assist customers converting from a product-term-based CPLD to a look-up table LUT


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    EPM5032 pin-compatible

    Abstract: transistor cr64 CR32 CR64 EPM7032 EPM7064 MAX7000 PZ5032 jk-ff
    Text: INTEGRATED CIRCUITS Xilinx has acquired the entire Philips CoolRunner Low Power CPLD Product Family. For more technical or sales information, please see: www.xilinx.com XAPP 303 Altera AHDL to Philips (PHDL) design conversion guidelines Author: Reno L. Sanchez


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    EPM5032

    Abstract: AN057 XPLA1
    Text: INTEGRATED CIRCUITS AN057 Altera AHDL to Philips (PHDL) design conversion guidelines Author: Reno L. Sanchez Philips Semiconductors 1998 Jun 26 Philips Semiconductors Application note Altera (AHDL) to Philips (PHDL) design conversion guidelines AN057 DOCUMENT SCOPE


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    PDF AN057 EPM5032 AN057 XPLA1

    AN057

    Abstract: CR32 CR64 EPM7032 EPM7064 MAX7000 PZ5032
    Text: INTEGRATED CIRCUITS AN057 Altera AHDL to Philips (PHDL) design conversion guidelines Author: Reno L. Sanchez Philips Semiconductors 1998 Jun 26 Philips Semiconductors Application note Altera (AHDL) to Philips (PHDL) design conversion guidelines AN057 DOCUMENT SCOPE


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    PDF AN057 AN057 CR32 CR64 EPM7032 EPM7064 MAX7000 PZ5032

    epm2210

    Abstract: EPM1270 EPM240 EPM240G EPM570 EPM2210 324
    Text: Chapter 1. Introduction MII51001-1.0 Introduction The MAX II family of instant-on, non-volatile CPLDs is based on a 0.18-µm, 6-layer-metal-flash process, with densities from 240 to 2,210 logic elements LEs (128 to 2,210 equivalent macrocells) and non-volatile


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    PDF MII51001-1 EPM240 EPM570 EPM1270 EPM2210 EPM240G EPM570G EPM1270G EPM2210G epm2210 EPM1270 EPM240 EPM240G EPM570 EPM2210 324

    epm2210

    Abstract: EPM1270 EPM240 EPM240G EPM570 BGA 212
    Text: Chapter 1. Introduction MII51001-1.1 Introduction The MAX II family of instant-on, non-volatile CPLDs is based on a 0.18-µm, 6-layer-metal-flash process, with densities from 240 to 2,210 logic elements LEs (128 to 2,210 equivalent macrocells) and non-volatile


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    PDF MII51001-1 EPM240 EPM570 EPM1270 EPM2210 EPM240G EPM570G EPM1270G EPM2210G epm2210 EPM1270 EPM240 EPM240G EPM570 BGA 212

    EPM1270

    Abstract: altera 10 k series cpld recommended hdl coding styles, quartus ii handbook version 13.0, volume 1 PCI_T32 MegaCore ALTERA EPM1270F256 EPM2210 EPM240 EPM240G EPM240Z EPM570
    Text: MAX II CPLD Design Guidelines Application Note 428 December 2007, Ver 1.1 Introduction With the flexibility of complex programmable logic devices CPLDs , together with their low power consumption and low cost, more designers are using CPLDs in their system design. Using MAX II CPLDs in your


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    ALTERA EPM1270F256

    Abstract: epm1270f256 EPM240 altera 10 k series cpld PCI_T32 MegaCore EPM1270 EPM2210 EPM570 BYTEBLASTER Altera CPLD cross reference
    Text: MAX II CPLD Design Guidelines Application Note 428 September 2006, Version 1.0 Introduction With the flexibility of complex programmable logic devices CPLDs , together with their low power consumption and low cost, more designers are using CPLDs in their system design. Using MAX II CPLDs in your


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    eeprom 28c64

    Abstract: 68HC12B32 Altera 7032 6812 microcontroller eel -16-2005 28C64 EEPROM 27C64 8k EPROM 68HC12 microcontroller 8255A-5 68HC12
    Text: UF 68HC12 Development Kit Manual Version 3.58 EEL 4744: Microprocessor Applications 16-May-06 Page 1/24 Contents 1.0 Introduction . 1 2.0 Installation & Quick Testing. 1


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    PDF 68HC12 16-May-06 eeprom 28c64 68HC12B32 Altera 7032 6812 microcontroller eel -16-2005 28C64 EEPROM 27C64 8k EPROM 68HC12 microcontroller 8255A-5

    micro fineline BGA

    Abstract: EPM240Z EPM1270 EPM2210 EPM240 EPM240G EPM570 bga-100 0.5
    Text: 1. Introduction MII51001-1.9 Introduction The MAX II family of instant-on, non-volatile CPLDs is based on a 0.18-µm, 6-layer-metal-flash process, with densities from 240 to 2,210 logic elements LEs (128 to 2,210 equivalent macrocells) and non-volatile storage of 8 Kbits. MAX II devices


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    PDF MII51001-1 micro fineline BGA EPM240Z EPM1270 EPM2210 EPM240 EPM240G EPM570 bga-100 0.5

    micro fineline BGA

    Abstract: No abstract text available
    Text: 1. Introduction MII51001-1.8 Introduction The MAX II family of instant-on, non-volatile CPLDs is based on a 0.18-µm, 6-layermetal-flash process, with densities from 240 to 2,210 logic elements LEs (128 to 2,210 equivalent macrocells) and non-volatile storage of 8 Kbits. MAX II devices offer high


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    PDF MII51001-1 micro fineline BGA

    EPM240

    Abstract: epm2210
    Text: Chapter 1. Introduction MII51001-1.7 Introduction The MAX II family of instant-on, non-volatile CPLDs is based on a 0.18-µm, 6-layer-metal-flash process, with densities from 240 to 2,210 logic elements LEs (128 to 2,210 equivalent macrocells) and non-volatile


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    PDF MII51001-1 EPM240 epm2210

    FR4 epoxy dielectric constant 4.4

    Abstract: FR4 substrate epoxy dielectric constant 4.4 Rogers 4350B Nelco 4000-13 FR4 epoxy dielectric constant 3.2 FR4 substrate with dielectric constant 4.4 Rogers 4350B substrate Nelco-4000 FR4 substrate fiberglass n6000-21-si
    Text: PCB Dielectric Material Selection and Fiber Weave Effect on High-Speed Channel Routing Application Note 528 May 2008, v1.0 Introduction As data rates increase, designers are increasingly moving away from wide parallel buses to serial buses with differential signaling. Differential


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    AN5751

    Abstract: DDR2 ram model verilog code for pci express memory transaction AN-575-1 ddr2 ram pcie Design guide sdram controller an57510
    Text: AN 575: PCI Express-to-DDR2 SDRAM Reference Design AN-575-1.0 April 2009 Introduction This application note introduces the dedicated PCI Express logic block implemented in Arria II GX FPGA hardware and describes the following: • The hard IP implementation of the PCI Express MegaCore® in the Arria II GX


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    PDF AN-575-1 AN5751 DDR2 ram model verilog code for pci express memory transaction ddr2 ram pcie Design guide sdram controller an57510

    cypress fpga

    Abstract: atmel 550 epm7064s cross reference XC3042A pinout epm7064 cross reference xilinx XC6216 Actel Accelerator fpga XC7336 cross reference XC4005E PHYSICAL altera PLD cross reference
    Text: CMOS ASIC Converting FPGAs and PLDs to Atmel Gate Arrays Introduction Atmel is one of the only companies that designs and manufactures field programmable gate arrays FPGAs , programmable logic devices (PLDs) and high performance gate arrays. Atmel offers a seamless, direct conversion


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    PDF ATL50/4 ATLS60/80 ATL60/4 ATV5000 ATL60/15 ATL50/15 cypress fpga atmel 550 epm7064s cross reference XC3042A pinout epm7064 cross reference xilinx XC6216 Actel Accelerator fpga XC7336 cross reference XC4005E PHYSICAL altera PLD cross reference

    ACTEL CROSS REFERENCE

    Abstract: atmel 424 actel a10v20b fpga da altera Actel Accelerator fpga XC4005E/XC4005 EPM5130 06M7374 Atmel 224 atmel 55000
    Text: CMOS ASIC Converting FPGAs and PLDs to Atmel Gate Arrays Introduction Atmel is one of the only companies that designs and manufactures field programmable gate arrays FPGAs , programmable logic devices (PLDs) and high performance gate arrays. Atmel offers a seamless, direct conversion


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    PDF ATL50/4 ATV2500 ATLS60/80 ATL60/4 ATV5000 ATL60/15 ACTEL CROSS REFERENCE atmel 424 actel a10v20b fpga da altera Actel Accelerator fpga XC4005E/XC4005 EPM5130 06M7374 Atmel 224 atmel 55000

    C3402

    Abstract: 74151 5128LC-1 74151 PIN DIAGRAM 5128LC-2 74151 8 to 1 74151 pin connection function of 74151 22V10-10C CY7C340
    Text: EPLD CY7C340 EPLD Family Multiple Array Matrix High-Density EPLDs Features • Erasable, user-configurable CMOS EPLDs capable of implementing high-density custom logic functions • 0.8-micron double-metal CMOS EPROM technology CY7C34X • Advanced 0.65-micron CMOS technology to increase


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    PDF CY7C340 CY7C34X) 65-micron CY7C34XB) C3402 74151 5128LC-1 74151 PIN DIAGRAM 5128LC-2 74151 8 to 1 74151 pin connection function of 74151 22V10-10C

    74151 PIN DIAGRAM

    Abstract: 74151 22v10 5192JM CY7C340 PRODUCT CHANGE PALC22V10B programmer EPLD CY7C340 CY7C341B CY7C342B
    Text: 40 EPLD CY7C340 EPLD Family Multiple Array Matrix High-Density EPLDs Features • Erasable, user-configurable CMOS EPLDs capable of implementing high-density custom logic functions • 0.8-micron double-metal CMOS EPROM technology CY7C34X • Advanced 0.65-micron CMOS technology to increase


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    PDF CY7C340 CY7C34X) 65-micron CY7C34XB) 74151 PIN DIAGRAM 74151 22v10 5192JM CY7C340 PRODUCT CHANGE PALC22V10B programmer EPLD CY7C341B CY7C342B

    EL7566

    Abstract: ISL8104 24v 12v 20A regulator isl8121 EL7554 ISL6420A ISL6442 ISL65426 ISL8009A ISL8013
    Text: Intersil Solutions for Precise Power Delivery to Altera FPGAs, CPLDs and ASICs 2008 Inside: z Intersil’s Power Management Portfolio of DC/DC Regulators, PWM and LDO Controllers z Intersil’s Power Management Portfolio of Power Sequencers z Intersil’s Recommended


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    PDF LC-055 EL7566 ISL8104 24v 12v 20A regulator isl8121 EL7554 ISL6420A ISL6442 ISL65426 ISL8009A ISL8013

    actel part markings

    Abstract: DS62000A
    Text: M QuickASIC Solutions Guide INCLUDES: • Introduction • Data Sheet • Customer IC Specification  1997 Microchip Technology Inc. February 1997 / DS62000A M DATA SHEET MARKINGS Microchip uses various data sheet markings to designate each document phase as it relates to the product development


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    PDF DS62000A DS62002A-page actel part markings DS62000A

    LATTICE plsi 3000 SERIES cpld

    Abstract: EPM9000 TEMIC PLD EPF8000 actel a1240 actel act1 family pLSI2000 A1415-A14100 EPM5000 Actel a1280 pinout
    Text: Device Specific Device Specific Conversion Information Actel FPGA Conversion FPGA Description RAM Actel devices come in seven families for which ULC conversions are supported: ACT1 A1010, A1020 , ACT2 (A1225, A1240 and A1280), ACT3 (A1415-A14100), ACTEL 40MX and 42MX, the


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    PDF A1010, A1020) A1225, A1240 A1280) A1415-A14100) 1200XL 3200X EPF10K20TC144 LATTICE plsi 3000 SERIES cpld EPM9000 TEMIC PLD EPF8000 actel a1240 actel act1 family pLSI2000 A1415-A14100 EPM5000 Actel a1280 pinout

    Altera CPLD cross reference

    Abstract: DS62000A ATT ORCA cpld qic28k
    Text: M QuickASIC Solutions Guide INCLUDES: • • •  1997 Microchip Technology Inc. Introduction Data Sheet Customer IC Specification Form Preliminary March/1997 / DS62000A M DATA SHEET MARKINGS Microchip uses various data sheet markings to designate each document phase as it relates to the product development


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    PDF March/1997 DS62000A DS62000A-page Altera CPLD cross reference DS62000A ATT ORCA cpld qic28k

    srffe

    Abstract: CR32C philips cpld coolrunner jk-ff CROSS REFERENCE cpld
    Text: Philips Semiconductors Application note Altera AHDL to Philips (PHDL) design conversion guidelines AW _ a im u s z DOCUMENT SCOPE Number of Macrocells This document provides information required to translate an Altera Hardware Description Language (AHDL) based design into a Philips


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    PDF SP00S15 1-888-COOLPLD srffe CR32C philips cpld coolrunner jk-ff CROSS REFERENCE cpld