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    5SGXMA4H2F35I2
    Stratix® V GX Field Programmable Gate Array (FPGA) IC 600 37888000 420000 1152-BBGA, FCBGA
    8545
    1152-BBGA, FCBGA
    5SGXEA5N2F40I3LG
    Stratix® V GX Field Programmable Gate Array (FPGA) IC 600 46080000 490000 1517-BBGA, FCBGA
    5813
    1517-BBGA, FCBGA
    A Comprehensive Guide to EP4CGX22CF19C7N Cyclone® IV GX Field Programmable Gate Array (FPGA) IC

    Cyclone® IV GX Field Programmable Gate Array (FPGA) IC 150 774144 21280 324-LBGA


    Introduction

    The CycloneTM field programmable gate array family is based ona 1.5-V,

    0.13-um, alayer copper SRAM process, with densities up to 20,060 logic

    elements (LEs) and up to 288 Kbits of RAM. With features like phase-

    locked loops (PLLs) for clocking and a dedicated double data rate (DDR)

    interface to meet DDR SDRAM and fast cycle RAM (FCRAM) memory

    requirements, Cyclone devices are a cost effective solution for data-path

    applications. Cyclone devices support various I/O standards, including

    LVDS at data rates up to 311 megabits per second (Mbps) and 66-MHz,

    32-bit peripheral component interconnect (PCI), for interfacing with and

    supporting ASSP and ASIC devices. Altera also offers new low-cost serial

    configuration devices to configure Cyclone devices.


    Features

    ■Up to 294,912 RAM bits (36,864 bytes)

    ■Supports configuration through low-cost serial configuration device

    ■Support for LVTTL, LVCMOS, SSTL-2, and SSTL-3 I/O standards

    ■Support for 66-MHz, 32-bit PCI standard

    ■Low speed (311 Mbps) LVDS 1/O support

    ■Up to two PLLs per device provide clock multiplication and phase shifting

    ■Up to eight global clock lines with six clock resources available per

    logic array block (LAB) row

    ■Support for external memory, induding DDR SDRAM (133 MHz),

    FCRAM, and single data rate (SDR) SDRAM

    ■Support for multiple intellectual property (IP) cores, including

    Altera" MegaCore functions and Altera Megafunctions Partners

    Program (AMPPSM) megafunctions


    Chip Altera Cyclone naming rules,Chinese chip Will replace it






    PDF

    7024
    324-LBGA
    EP4CGX22CF19C6N
    Cyclone® IV GX Field Programmable Gate Array (FPGA) IC 150 774144 21280 324-LBGA
    1002
    324-LBGA
    10AT115N4F40E3SGES
    Arria 10 GT Field Programmable Gate Array (FPGA) IC 600 68857856 1150000 1517-BBGA, FCBGA
    6696
    1517-BBGA, FCBGA
    5SGXEA4K3F40C3G
    Stratix® V GX Field Programmable Gate Array (FPGA) IC 696 37888000 420000 1517-BBGA, FCBGA
    2513
    1517-BBGA, FCBGA
    A Comprehensive Guide to 5CEFA4U19C8N Cyclone® V E Field Programmable Gate Array (FPGA) IC

    Cyclone® V E Field Programmable Gate Array (FPGA) IC 224 3464192 49000 484-FBGA


    Summary of Features for Cyclone V Devices

    Technology

    • TSMC's 28-nm low-power (28LP) process technology

    • 1.1 V core voltage


    Packaging

    • Wirebond low-halogen packages

    • Multiple device densities with compatible package footprints for seamless migration between

    different device densities

    • RoHS-compliant and leaded(1)options


    High-performance FPGA fabric

    Enhanced 8-input ALM with four registers


    Internal memory blocks

    • M10K—10-kilobits (Kb) memory blocks with soft error correction code (ECC)

    • Memory logic array block (MLAB)—640-bit distributed LUTRAM where you can use up to 25%

    of the ALMs as MLAB memory


    Embedded Hard IP blocks

    Variable-precision DSP

    • Native support for up to three signal processing precision levels

    (three 9 x 9, two 18 x 18, or one 27 x 27 multiplier) in the same

    variable-precision DSP block

    • 64-bit accumulator and cascade

    • Embedded internal coefficient memory

    • Preadder/subtractor for improved efficiency


    Memory controller

    DDR3, DDR2, and LPDDR2 with 16 and 32 bit ECC support


    Embedded transceiver I/O

    PCI Express* (PCIe*) Gen2 and Gen1 (x1, x2, or x4) hard IP with

    multifunction support, endpoint, and root port


    Clock networks

    • Up to 550 MHz global clock network

    • Global, quadrant, and peripheral clock networks

    • Clock networks that are not used can be powered down to reduce dynamic power


    Phase-locked loops (PLLs)

    • Precision clock synthesis, clock delay compensation, and zero delay buffering (ZDB)

    • Integer mode and fractional mode


    FPGA General-purpose I/Os (GPIOs)

    • 875 megabits per second (Mbps) LVDS receiver and 840 Mbps LVDS transmitter

    • 400 MHz/800 Mbps external memory interface

    • On-chip termination (OCT)

    • 3.3 V support with up to 16 mA drive strength


    Low-power high-speed serial interface

    • 614 Mbps to 6.144 Gbps integrated transceiver speed

    • Transmit pre-emphasis and receiver equalization

    • Dynamic partial reconfiguration of individual channels


    HPS(Cyclone V SE, SX,and ST devices only)

    • Single or dual-core Arm Cortex-A9 MPCore processor-up to 925 MHz maximum frequency with

    support for symmetric and asymmetric multiprocessing

    • Interface peripherals—10/100/1000 Ethernet media access control (EMAC), USB 2.0

    On-The-GO (OTG) controller, quad serial peripheral interface (QSPI) flash controller, NAND

    flash controller, Secure Digital/MultiMediaCard (SD/MMC) controller, UART, controller area

    network (CAN), serial peripheral interface (SPI), I2C interface, and up to 85 HPS GPIO

    interfaces

    • System peripherals—general-purpose timers, watchdog timers, direct memory access (DMA)

    controller, FPGA configuration manager, and clock and reset managers

    • On-chip RAM and boot ROM

    • HPS–FPGA bridges—include the FPGA-to-HPS, HPS-to-FPGA, and lightweight HPS-to-FPGA

    bridges that allow the FPGA fabric to issue transactions to slaves in the HPS, and vice versa

    • FPGA-to-HPS SDRAM controller subsystem—provides a configurable interface to the multiport

    front end (MPFE) of the HPS SDRAM controller

    • Arm CoreSight™ JTAG debug access port, trace port, and on-chip trace storage


    Configuration

    • Tamper protection—comprehensive design protection to protect your valuable IP investments

    • Enhanced advanced encryption standard (AES) design security features

    • CvP

    • Dynamic reconfiguration of the FPGA

    • Active serial (AS) x1 and x4, passive serial (PS), JTAG, and fast passive parallel (FPP) x8 and

    x16 configuration options

    • Internal scrubbing (2)

    • Partial reconfiguration (3)


    How to choose FPGA for your project?



                                                                 



    PDF

    8046
    484-FBGA
    EP4CGX30BF14C8N
    Cyclone® IV GX Field Programmable Gate Array (FPGA) IC 72 1105920 29440 169-LBGA
    3375
    169-LBGA
    10AX115N4F40I3SGES
    Arria 10 GX Field Programmable Gate Array (FPGA) IC 600 68857856 1150000 1517-BBGA, FCBGA
    7066
    1517-BBGA, FCBGA
    5SGXEA7K2F35I3G
    Stratix® V GX Field Programmable Gate Array (FPGA) IC 432 51200000 622000 1152-BBGA, FCBGA
    6673
    1152-BBGA, FCBGA
    A Comprehensive Guide to 5CEFA4F23I7N Cyclone® V E Field Programmable Gate Array (FPGA) IC

    Cyclone® V E Field Programmable Gate Array (FPGA) IC 224 3464192 49000 484-BGA


    Summary of Features for Cyclone V Devices

    Technology

    • TSMC's 28-nm low-power (28LP) process technology

    • 1.1 V core voltage


    Packaging

    • Wirebond low-halogen packages

    • Multiple device densities with compatible package footprints for seamless migration between

    different device densities

    • RoHS-compliant and leaded(1)options


    High-performance FPGA fabric

    Enhanced 8-input ALM with four registers


    Internal memory blocks

    • M10K—10-kilobits (Kb) memory blocks with soft error correction code (ECC)

    • Memory logic array block (MLAB)—640-bit distributed LUTRAM where you can use up to 25%

    of the ALMs as MLAB memory


    Embedded Hard IP blocks

    Variable-precision DSP

    • Native support for up to three signal processing precision levels

    (three 9 x 9, two 18 x 18, or one 27 x 27 multiplier) in the same

    variable-precision DSP block

    • 64-bit accumulator and cascade

    • Embedded internal coefficient memory

    • Preadder/subtractor for improved efficiency


    Memory controller

    DDR3, DDR2, and LPDDR2 with 16 and 32 bit ECC support


    Embedded transceiver I/O

    PCI Express* (PCIe*) Gen2 and Gen1 (x1, x2, or x4) hard IP with

    multifunction support, endpoint, and root port


    Clock networks

    • Up to 550 MHz global clock network

    • Global, quadrant, and peripheral clock networks

    • Clock networks that are not used can be powered down to reduce dynamic power


    Phase-locked loops (PLLs)

    • Precision clock synthesis, clock delay compensation, and zero delay buffering (ZDB)

    • Integer mode and fractional mode


    FPGA General-purpose I/Os (GPIOs)

    • 875 megabits per second (Mbps) LVDS receiver and 840 Mbps LVDS transmitter

    • 400 MHz/800 Mbps external memory interface

    • On-chip termination (OCT)

    • 3.3 V support with up to 16 mA drive strength


    Low-power high-speed serial interface

    • 614 Mbps to 6.144 Gbps integrated transceiver speed

    • Transmit pre-emphasis and receiver equalization

    • Dynamic partial reconfiguration of individual channels


    HPS(Cyclone V SE, SX,and ST devices only)

    • Single or dual-core Arm Cortex-A9 MPCore processor-up to 925 MHz maximum frequency with

    support for symmetric and asymmetric multiprocessing

    • Interface peripherals—10/100/1000 Ethernet media access control (EMAC), USB 2.0

    On-The-GO (OTG) controller, quad serial peripheral interface (QSPI) flash controller, NAND

    flash controller, Secure Digital/MultiMediaCard (SD/MMC) controller, UART, controller area

    network (CAN), serial peripheral interface (SPI), I2C interface, and up to 85 HPS GPIO

    interfaces

    • System peripherals—general-purpose timers, watchdog timers, direct memory access (DMA)

    controller, FPGA configuration manager, and clock and reset managers

    • On-chip RAM and boot ROM

    • HPS–FPGA bridges—include the FPGA-to-HPS, HPS-to-FPGA, and lightweight HPS-to-FPGA

    bridges that allow the FPGA fabric to issue transactions to slaves in the HPS, and vice versa

    • FPGA-to-HPS SDRAM controller subsystem—provides a configurable interface to the multiport

    front end (MPFE) of the HPS SDRAM controller

    • Arm CoreSight™ JTAG debug access port, trace port, and on-chip trace storage


    Configuration

    • Tamper protection—comprehensive design protection to protect your valuable IP investments

    • Enhanced advanced encryption standard (AES) design security features

    • CvP

    • Dynamic reconfiguration of the FPGA

    • Active serial (AS) x1 and x4, passive serial (PS), JTAG, and fast passive parallel (FPP) x8 and

    x16 configuration options

    • Internal scrubbing (2)

    • Partial reconfiguration (3)


    3725
    484-BGA
    EP4CGX50CF23C6N
    Cyclone® IV GX Field Programmable Gate Array (FPGA) IC 290 2562048 49888 484-BGA
    7442
    484-BGA
    10M04SCU169I7G
    MAX® 10 Field Programmable Gate Array (FPGA) IC 130 193536 4000 169-LFBGA
    6087
    169-LFBGA
    5SGXEA5K3F40I3LG
    Stratix® V GX Field Programmable Gate Array (FPGA) IC 696 46080000 490000 1517-BBGA, FCBGA
    9407
    1517-BBGA, FCBGA
    A Comprehensive Guide to 5CGTFD5C5F23C7N Cyclone® V GT Field Programmable Gate Array (FPGA) IC

    Cyclone® V GT Field Programmable Gate Array (FPGA) IC 240 5001216 77000 484-BGA


    Summary of Features for Cyclone V Devices

    Technology

    • TSMC's 28-nm low-power (28LP) process technology

    • 1.1 V core voltage


    Packaging

    • Wirebond low-halogen packages

    • Multiple device densities with compatible package footprints for seamless migration between

    different device densities

    • RoHS-compliant and leaded(1)options


    High-performance FPGA fabric

    Enhanced 8-input ALM with four registers


    Internal memory blocks

    • M10K—10-kilobits (Kb) memory blocks with soft error correction code (ECC)

    • Memory logic array block (MLAB)—640-bit distributed LUTRAM where you can use up to 25%

    of the ALMs as MLAB memory


    Embedded Hard IP blocks

    Variable-precision DSP

    • Native support for up to three signal processing precision levels

    (three 9 x 9, two 18 x 18, or one 27 x 27 multiplier) in the same

    variable-precision DSP block

    • 64-bit accumulator and cascade

    • Embedded internal coefficient memory

    • Preadder/subtractor for improved efficiency


    Memory controller

    DDR3, DDR2, and LPDDR2 with 16 and 32 bit ECC support


    Embedded transceiver I/O

    PCI Express* (PCIe*) Gen2 and Gen1 (x1, x2, or x4) hard IP with

    multifunction support, endpoint, and root port


    Clock networks

    • Up to 550 MHz global clock network

    • Global, quadrant, and peripheral clock networks

    • Clock networks that are not used can be powered down to reduce dynamic power


    Phase-locked loops (PLLs)

    • Precision clock synthesis, clock delay compensation, and zero delay buffering (ZDB)

    • Integer mode and fractional mode


    FPGA General-purpose I/Os (GPIOs)

    • 875 megabits per second (Mbps) LVDS receiver and 840 Mbps LVDS transmitter

    • 400 MHz/800 Mbps external memory interface

    • On-chip termination (OCT)

    • 3.3 V support with up to 16 mA drive strength


    Low-power high-speed serial interface

    • 614 Mbps to 6.144 Gbps integrated transceiver speed

    • Transmit pre-emphasis and receiver equalization

    • Dynamic partial reconfiguration of individual channels


    HPS(Cyclone V SE, SX,and ST devices only)

    • Single or dual-core Arm Cortex-A9 MPCore processor-up to 925 MHz maximum frequency with

    support for symmetric and asymmetric multiprocessing

    • Interface peripherals—10/100/1000 Ethernet media access control (EMAC), USB 2.0

    On-The-GO (OTG) controller, quad serial peripheral interface (QSPI) flash controller, NAND

    flash controller, Secure Digital/MultiMediaCard (SD/MMC) controller, UART, controller area

    network (CAN), serial peripheral interface (SPI), I2C interface, and up to 85 HPS GPIO

    interfaces

    • System peripherals—general-purpose timers, watchdog timers, direct memory access (DMA)

    controller, FPGA configuration manager, and clock and reset managers

    • On-chip RAM and boot ROM

    • HPS–FPGA bridges—include the FPGA-to-HPS, HPS-to-FPGA, and lightweight HPS-to-FPGA

    bridges that allow the FPGA fabric to issue transactions to slaves in the HPS, and vice versa

    • FPGA-to-HPS SDRAM controller subsystem—provides a configurable interface to the multiport

    front end (MPFE) of the HPS SDRAM controller

    • Arm CoreSight™ JTAG debug access port, trace port, and on-chip trace storage


    Configuration

    • Tamper protection—comprehensive design protection to protect your valuable IP investments

    • Enhanced advanced encryption standard (AES) design security features

    • CvP

    • Dynamic reconfiguration of the FPGA

    • Active serial (AS) x1 and x4, passive serial (PS), JTAG, and fast passive parallel (FPP) x8 and

    x16 configuration options

    • Internal scrubbing (2)

    • Partial reconfiguration (3)


    1504
    484-BGA
    EP4CGX75CF23I7N
    Cyclone® IV GX Field Programmable Gate Array (FPGA) IC 290 4257792 73920 484-BGA
    7147
    484-BGA
    10M08DFV81C7G
    MAX® 10 Field Programmable Gate Array (FPGA) IC 56 387072 8000 81-UFBGA, WLCSP
    2088
    81-UFBGA, WLCSP
    5AGXMB5G4F40I5G
    Arria V GX Field Programmable Gate Array (FPGA) IC 704 23625728 420000 1517-BBGA, FCBGA
    4488
    1517-BBGA, FCBGA
    A Comprehensive Guide to EP3C5E144C8N FPGA - Field Programmable Gate Array

    Cyclone® III Field Programmable Gate Array (FPGA) IC 94 423936 5136 144-LQFP Exposed Pad


    Description

    Cyclone® III device family offers a unique combination of high functionality, low 

    power and low cost. Based on Taiwan Semiconductor Manufacturing Company 

    (TSMC) low-power (LP) process technology, silicon optimizations and software 

    features to minimize power consumption, Cyclone III device family provides the ideal 

    solution for your high-volume, low-power, and cost-sensitive applications. To address 

    the unique design needs, Cyclone III device family offers the following two variants:

    ■ Cyclone III—lowest power, high functionality with the lowest cost 

    ■ Cyclone III LS—lowest power FPGAs with security

    With densities ranging from about 5,000 to 200,000 logic elements (LEs) and 

    0.5 Megabits (Mb) to 8 Mb of memory for less than ¼ watt of static power 

    consumption, Cyclone III device family makes it easier for you to meet your power 

    budget. Cyclone III LS devices are the first to implement a suite of security features at 

    the silicon, software, and intellectual property (IP) level on a low-power and 

    high-functionality FPGA platform. This suite of security features protects the IP from 

    tampering, reverse engineering and cloning. In addition, Cyclone III LS devices 

    support design separation which enables you to introduce redundancy in a single 

    chip to reduce size, weight, and power of your application.


    Design Security Feature

    Cyclone III LS devices offer the following design security features:

    ■ Configuration security using advanced encryption standard (AES) with 256-bit volatile key

    ■ Routing architecture optimized for design separation flow with the Quartus® II software

    ■ Design separation flow achieves both physical and functional isolation between design partitions 

    ■ Ability to disable external JTAG port

    ■ Error Detection (ED) Cycle Indicator to core

    ■ Provides a pass or fail indicator at every ED cycle

    ■ Provides visibility over intentional or unintentional change of configuration random access memory (CRAM) bits

    ■ Ability to perform zeroization to clear contents of the FPGA logic, CRAM, embedded memory, and AES key

    ■ Internal oscillator enables system monitor and health check capabilities


    Chip Altera Cyclone naming rules,Chinese chip Will replace it






    PDF

    3647
    144-LQFP Exposed Pad
    5CGTFD9D5F27C7N
    Cyclone® V GT Field Programmable Gate Array (FPGA) IC 336 14251008 301000 672-BGA
    3036
    672-BGA
    10AX115N4F45I3SGE2
    Arria 10 GX Field Programmable Gate Array (FPGA) IC 768 68857856 1150000 1932-BBGA, FCBGA
    3422
    1932-BBGA, FCBGA
    5SGSMD8K3F40C4G
    Stratix® V GS Field Programmable Gate Array (FPGA) IC 696 51200000 695000 1517-BBGA, FCBGA
    6266
    1517-BBGA, FCBGA
    A Comprehensive Guide to EP3C5E144C7N FPGA - Field Programmable Gate Array

    Cyclone® III Field Programmable Gate Array (FPGA) IC 94 423936 5136 144-LQFP Exposed Pad


    Description

    Cyclone® III device family offers a unique combination of high functionality, low 

    power and low cost. Based on Taiwan Semiconductor Manufacturing Company 

    (TSMC) low-power (LP) process technology, silicon optimizations and software 

    features to minimize power consumption, Cyclone III device family provides the ideal 

    solution for your high-volume, low-power, and cost-sensitive applications. To address 

    the unique design needs, Cyclone III device family offers the following two variants:

    ■ Cyclone III—lowest power, high functionality with the lowest cost 

    ■ Cyclone III LS—lowest power FPGAs with security

    With densities ranging from about 5,000 to 200,000 logic elements (LEs) and 

    0.5 Megabits (Mb) to 8 Mb of memory for less than ¼ watt of static power 

    consumption, Cyclone III device family makes it easier for you to meet your power 

    budget. Cyclone III LS devices are the first to implement a suite of security features at 

    the silicon, software, and intellectual property (IP) level on a low-power and 

    high-functionality FPGA platform. This suite of security features protects the IP from 

    tampering, reverse engineering and cloning. In addition, Cyclone III LS devices 

    support design separation which enables you to introduce redundancy in a single 

    chip to reduce size, weight, and power of your application.


    Design Security Feature

    Cyclone III LS devices offer the following design security features:

    ■ Configuration security using advanced encryption standard (AES) with 256-bit volatile key

    ■ Routing architecture optimized for design separation flow with the Quartus® II software

    ■ Design separation flow achieves both physical and functional isolation between design partitions 

    ■ Ability to disable external JTAG port

    ■ Error Detection (ED) Cycle Indicator to core

    ■ Provides a pass or fail indicator at every ED cycle

    ■ Provides visibility over intentional or unintentional change of configuration random access memory (CRAM) bits

    ■ Ability to perform zeroization to clear contents of the FPGA logic, CRAM, embedded memory, and AES key

    ■ Internal oscillator enables system monitor and health check capabilities


    Chip Altera Cyclone naming rules,Chinese chip Will replace it






    PDF


    6328
    144-LQFP Exposed Pad
    5CGXBC9E7F35C8N
    Cyclone® V GX Field Programmable Gate Array (FPGA) IC 560 14251008 301000 1152-BGA
    1238
    1152-BGA
    10M04DCU324C8G
    MAX® 10 Field Programmable Gate Array (FPGA) IC 246 193536 4000 324-LFBGA
    5787
    324-LFBGA
    5SGXEA5N2F40C2LG
    Stratix® V GX Field Programmable Gate Array (FPGA) IC 600 46080000 490000 1517-BBGA, FCBGA
    1357
    1517-BBGA, FCBGA
    A Comprehensive Guide to 5CGXFC7C6U19I7N Cyclone® V GX Field Programmable Gate Array (FPGA) IC

    Cyclone® V GX Field Programmable Gate Array (FPGA) IC 240 7880704 149500 484-FBGA


    Summary of Features for Cyclone V Devices

    Technology

    • TSMC's 28-nm low-power (28LP) process technology

    • 1.1 V core voltage


    Packaging

    • Wirebond low-halogen packages

    • Multiple device densities with compatible package footprints for seamless migration between

    different device densities

    • RoHS-compliant and leaded(1)options


    High-performance FPGA fabric

    Enhanced 8-input ALM with four registers


    Internal memory blocks

    • M10K—10-kilobits (Kb) memory blocks with soft error correction code (ECC)

    • Memory logic array block (MLAB)—640-bit distributed LUTRAM where you can use up to 25%

    of the ALMs as MLAB memory


    Embedded Hard IP blocks

    Variable-precision DSP

    • Native support for up to three signal processing precision levels

    (three 9 x 9, two 18 x 18, or one 27 x 27 multiplier) in the same

    variable-precision DSP block

    • 64-bit accumulator and cascade

    • Embedded internal coefficient memory

    • Preadder/subtractor for improved efficiency


    Memory controller

    DDR3, DDR2, and LPDDR2 with 16 and 32 bit ECC support


    Embedded transceiver I/O

    PCI Express* (PCIe*) Gen2 and Gen1 (x1, x2, or x4) hard IP with

    multifunction support, endpoint, and root port


    Clock networks

    • Up to 550 MHz global clock network

    • Global, quadrant, and peripheral clock networks

    • Clock networks that are not used can be powered down to reduce dynamic power


    Phase-locked loops (PLLs)

    • Precision clock synthesis, clock delay compensation, and zero delay buffering (ZDB)

    • Integer mode and fractional mode


    FPGA General-purpose I/Os (GPIOs)

    • 875 megabits per second (Mbps) LVDS receiver and 840 Mbps LVDS transmitter

    • 400 MHz/800 Mbps external memory interface

    • On-chip termination (OCT)

    • 3.3 V support with up to 16 mA drive strength


    Low-power high-speed serial interface

    • 614 Mbps to 6.144 Gbps integrated transceiver speed

    • Transmit pre-emphasis and receiver equalization

    • Dynamic partial reconfiguration of individual channels


    HPS(Cyclone V SE, SX,and ST devices only)

    • Single or dual-core Arm Cortex-A9 MPCore processor-up to 925 MHz maximum frequency with

    support for symmetric and asymmetric multiprocessing

    • Interface peripherals—10/100/1000 Ethernet media access control (EMAC), USB 2.0

    On-The-GO (OTG) controller, quad serial peripheral interface (QSPI) flash controller, NAND

    flash controller, Secure Digital/MultiMediaCard (SD/MMC) controller, UART, controller area

    network (CAN), serial peripheral interface (SPI), I2C interface, and up to 85 HPS GPIO

    interfaces

    • System peripherals—general-purpose timers, watchdog timers, direct memory access (DMA)

    controller, FPGA configuration manager, and clock and reset managers

    • On-chip RAM and boot ROM

    • HPS–FPGA bridges—include the FPGA-to-HPS, HPS-to-FPGA, and lightweight HPS-to-FPGA

    bridges that allow the FPGA fabric to issue transactions to slaves in the HPS, and vice versa

    • FPGA-to-HPS SDRAM controller subsystem—provides a configurable interface to the multiport

    front end (MPFE) of the HPS SDRAM controller

    • Arm CoreSight™ JTAG debug access port, trace port, and on-chip trace storage


    Configuration

    • Tamper protection—comprehensive design protection to protect your valuable IP investments

    • Enhanced advanced encryption standard (AES) design security features

    • CvP

    • Dynamic reconfiguration of the FPGA

    • Active serial (AS) x1 and x4, passive serial (PS), JTAG, and fast passive parallel (FPP) x8 and

    x16 configuration options

    • Internal scrubbing (2)

    • Partial reconfiguration (3)


    6413
    484-FBGA
    5CGTFD5C5F27C7N
    Cyclone® V GT Field Programmable Gate Array (FPGA) IC 336 5001216 77000 672-BGA
    7999
    672-BGA
    10M08DCU324C8G
    MAX® 10 Field Programmable Gate Array (FPGA) IC 246 387072 8000 324-LFBGA
    3971
    324-LFBGA
    5SGXEA5K3F40C3G
    Stratix® V GX Field Programmable Gate Array (FPGA) IC 696 46080000 490000 1517-BBGA, FCBGA
    6083
    1517-BBGA, FCBGA

    Please send RFQ , we will respond immediately.

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