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    5SGXMA5K1F40C2LG
    Stratix® V GX Field Programmable Gate Array (FPGA) IC 696 46080000 490000 1517-BBGA, FCBGA
    2499
    1517-BBGA, FCBGA
    A Comprehensive Guide to 5CGTFD7C5F23C7N Cyclone® V GT Field Programmable Gate Array (FPGA) IC

    Cyclone® V GT Field Programmable Gate Array (FPGA) IC 240 7880704 149500 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)


    5572
    484-BGA
    5CGTFD7C5U19A7N
    Cyclone® V GT Field Programmable Gate Array (FPGA) IC 240 7880704 149500 484-FBGA
    7393
    484-FBGA
    10AX115S4F45I3SGE2
    Arria 10 GX Field Programmable Gate Array (FPGA) IC 624 68857856 1150000 1932-BBGA, FCBGA
    1516
    1932-BBGA, FCBGA
    5SGXEA7K3F35C2G
    Stratix® V GX Field Programmable Gate Array (FPGA) IC 432 51200000 622000 1152-BBGA, FCBGA
    8258
    1152-BBGA, FCBGA
    A Comprehensive Guide to 10M08SAE144I7G FPGA - Field Programmable Gate Array

    MAX® 10 Field Programmable Gate Array (FPGA) IC 101 387072 8000 144-LQFP Exposed Pad


    Intel® MAX® 10 FPGA Device Datasheet

    This datasheet describes the electrical characteristics, switching characteristics, configuration specifications, and timing for

    Intel MAX® 10 devices.


    Intel MAX 10 Device Grades and Speed Grades Supported

    Commercial

    • –C7

    • –C8 (slowest)

    Industrial

    • –I6 (fastest)

    • –I7

    Automotive

    • –A6

    • –A7


    7806
    144-LQFP Exposed Pad
    5CGXFC7D6F27C7N
    Cyclone® V GX Field Programmable Gate Array (FPGA) IC 336 7880704 149500 672-BGA
    6865
    672-BGA
    10M08DAF256C8G
    MAX® 10 Field Programmable Gate Array (FPGA) IC 178 387072 8000 256-LBGA
    9714
    256-LBGA
    5SGXMA3H2F35I3LG
    Stratix® V GX Field Programmable Gate Array (FPGA) IC 600 19456000 340000 1152-BBGA, FCBGA
    4248
    1152-BBGA, FCBGA
    A Comprehensive Guide to 10M16SAE144C8G FPGA - Field Programmable Gate Array

    MAX® 10 Field Programmable Gate Array (FPGA) IC 101 562176 16000 144-LQFP Exposed Pad


    Intel® MAX® 10 FPGA Device Datasheet

    This datasheet describes the electrical characteristics, switching characteristics, configuration specifications, and timing for

    Intel MAX® 10 devices.


    Intel MAX 10 Device Grades and Speed Grades Supported

    Commercial

    • –C7

    • –C8 (slowest)

    Industrial

    • –I6 (fastest)

    • –I7

    Automotive

    • –A6

    • –A7


    How to choose FPGA for your project?


     

                                                                     


    1825
    144-LQFP Exposed Pad
    5CEFA2F23C8N
    Cyclone® V E Field Programmable Gate Array (FPGA) IC 224 2002944 25000 484-BGA
    1572
    484-BGA
    10M08DFV81I7G
    MAX® 10 Field Programmable Gate Array (FPGA) IC 56 387072 8000 81-UFBGA, WLCSP
    6723
    81-UFBGA, WLCSP
    5AGZME5K2F40C3G
    Arria V GZ Field Programmable Gate Array (FPGA) IC 674 34322432 400000 1517-BBGA, FCBGA
    2175
    1517-BBGA, FCBGA
    A Comprehensive Guide to 5CSEBA6U23I7NTS IC SOC CORTEX-A9 925MHZ 672UBGA

    Dual ARM® Cortex®-A9 MPCore™ with CoreSight™ System On Chip (SOC) IC Cyclone® V SE FPGA - 110K Logic Elements 925MHz 672-UBGA (23x23)


    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)


    3514
    672-FBGA
    5CGXFC7C6U19A7N
    Cyclone® V GX Field Programmable Gate Array (FPGA) IC 240 7880704 149500 484-FBGA
    1039
    484-FBGA
    5SGXEB5R3F40C2N
    Stratix® V GX Field Programmable Gate Array (FPGA) IC 432 41984000 490000 1517-FBGA (40x40)
    8451
    1517-FBGA (40x40)
    5SGXEA5K1F40C2LG
    Stratix® V GX Field Programmable Gate Array (FPGA) IC 696 46080000 490000 1517-BBGA, FCBGA
    1247
    1517-BBGA, FCBGA
    A Comprehensive Guide to 10CL055YF484I7G FPGA - Field Programmable Gate Array

    Cyclone® 10 LP Field Programmable Gate Array (FPGA) IC 321 2396160 55856 484-BGA


    Intel® Cyclone® 10 LP Device Overview

    The Intel® Intel Cyclone® 10 LP FPGAs are optimized for low cost and low static

    power, making them ideal for high-volume and cost-sensitive applications.

    Intel Cyclone 10 LP devices provide a high density sea of programmable gates, onboard resources, and general purpose I/Os. These resources satisfies the

    requirements of I/O expansion and chip-to-chip interfacing. The Intel Cyclone 10 LP

    architecture suits smart and connected end applications across many market

    segments:

    • Industrial and automotive

    • Broadcast, wireline, and wireless

    • Compute and storage

    • Government, military, and aerospace

    • Medical, consumer, and smart energy

    The free but powerful Intel Quartus® Prime Lite Edition software suite of design tools

    meets the requirements of several classes of users:

    • Existing FPGA designers

    • Embedded designers using the FPGA with Nios® II processor

    • Students and hobbyists who are new to FPGA


    Summary of Features for Intel Cyclone 10 LP Devices

    Technology

    • Low-cost, low-power FPGA fabric

    • 1.0 V and 1.2 V core voltage options

    • Available in commercial, industrial, and automotive temperature grades


    Packaging

    • Several package types and footprints:

    — FineLine BGA (FBGA)

    — Enhanced Thin Quad Flat Pack (EQFP)

    — Ultra FineLine BGA (UBGA)

    — Micro FineLine BGA (MBGA)

    • Multiple device densities with pin migration capability

    • RoHS6 compliance


    Core architecture

    • Logic elements (LEs)—four-input look-up table (LUT) and register

    • Abundant routing/metal interconnect between all LEs


    Internal memory blocks

    • M9K—9-kilobits (Kb) of embedded SRAM memory blocks, cascadable

    • Configurable as RAM (single-port, simple dual port, or true dual port), FIFO buffers, or ROM


    Embedded multiplier blocks

    • One 18 × 18 or two 9 × 9 multiplier modes, cascadable

    • Complete suite of DSP IPs for algorithmic acceleration


    Clock networks

    • Global clocks that drive throughout entire device, feeding all device quadrants

    • Up to 15 dedicated clock pins that can drive up to 20 global clocks


    Phase-locked loops (PLLs)

    • Up to four general purpose PLLs

    • Provides robust clock management and synthesis


    General-purpose I/Os (GPIOs)

    • Multiple I/O standards support

    • Programmable I/O features

    • True LVDS and emulated LVDS transmitters and receivers

    • On-chip termination (OCT)


    SEU mitigation

    SEU detection during configuration and operation


    Configuration

    • Active serial (AS), passive serial (PS), fast passive parallel (FPP)

    • JTAG configuration scheme

    • Configuration data decompression

    • Remote system upgrade


    How to choose FPGA for your project?



                                                                       




    6146
    484-BGA
    5CGXFC4C7F27C8N
    Cyclone® V GX Field Programmable Gate Array (FPGA) IC 336 2862080 50000 672-BGA
    3572
    672-BGA
    10M16DAU324I7G
    MAX® 10 Field Programmable Gate Array (FPGA) IC 246 562176 16000 324-LFBGA
    5254
    324-LFBGA
    5SGXEA9N3F45C2LG
    Stratix® V GX Field Programmable Gate Array (FPGA) IC 840 53248000 840000 1932-BBGA, FCBGA
    9527
    1932-BBGA, FCBGA
    A Comprehensive Guide to 5CSEBA4U19C8N IC SOC CORTEX-A9 600MHZ 484UBGA

    Dual ARM® Cortex®-A9 MPCore™ with CoreSight™ System On Chip (SOC) IC Cyclone® V SE FPGA - 40K Logic Elements 600MHz 484-UBGA (19x19)


    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)


    6473
    484-FBGA
    5CGXFC5C7F27C8N
    Cyclone® V GX Field Programmable Gate Array (FPGA) IC 336 5001216 77000 672-BGA
    3607
    672-BGA
    10M40DCF484C7G
    MAX® 10 Field Programmable Gate Array (FPGA) IC 360 1290240 40000 484-BGA
    1726
    484-BGA
    5SGXMA3K2F35C3G
    Stratix® V GX Field Programmable Gate Array (FPGA) IC 600 19456000 340000 1152-BBGA, FCBGA
    9169
    1152-BBGA, FCBGA
    5CGXFC4C6F23C6N
    Cyclone® V GX Field Programmable Gate Array (FPGA) IC 240 2862080 50000 484-BGA
    9569
    484-BGA
    10M50DCF672C7G
    MAX® 10 Field Programmable Gate Array (FPGA) IC 500 1677312 50000 672-BGA
    9202
    672-BGA
    5SGXEA7H3F35C2G
    Stratix® V GX Field Programmable Gate Array (FPGA) IC 552 51200000 622000 1152-BBGA, FCBGA
    6116
    1152-BBGA, FCBGA
    5CEFA9F31C7N
    Cyclone® V E Field Programmable Gate Array (FPGA) IC 480 14251008 301000 896-BGA
    4470
    896-BGA
    10M16SAU169C8G
    MAX® 10 Field Programmable Gate Array (FPGA) IC 130 562176 16000 169-LFBGA
    6133
    169-LFBGA

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