Intel FLEX 6000 series FPGAs

Introduction, stock information and FAQs of FLEX 6000 series FPGAs

In this post, you will learn features, applications, PDF datasheets, substitute products and the latest stock and pricing information of Intel FLEX 6000 series FPGAs.

Applications

  • Industrial transport (non-car & non-light truck)
  • Lighting
  • Medical
Associated Products

Part NumberDescriptionStockRFQ
EPF6016BC256-2FPGA FLEX 6000 Family 16K Gates 1320 Cells 125MHz 0.42um Technology 5V 256-Pin BGA0RFQ
EPF10K100EQC240-2XIC FPGA 189 I/O 240QFP0RFQ
EPF10K30EQC208-2XFPGA FLEX 10KE Family 30K Gates 1728 Cells 200MHz 0.22um Technology 2.5V 208-Pin PQFP0RFQ
EPF10K50VBC356-3NIC FPGA 274 I/O 356BGA1RFQ
EPF10K10ATC144-2NFPGA FLEX 10KA Family 10K Gates 576 Cells 142.86MHz 0.3um Technology 3.3V 144-Pin TQFP0RFQ
EPF6010ATC100-3IC FPGA 71 I/O 100TQFP0RFQ
EPF10K30AQC208-3IC FPGA 147 I/O 208QFP0RFQ
EPF10K100ARC240-3IC FPGA 189 I/O 240RQFP0RFQ
EPF10K100EFC484-1FPGA FLEX 10KE Family 100K Gates 4992 Cells 333.33MHz 0.22um Technology 2.5V 484-Pin FBGA0RFQ
EPF6016AQI208-2IC FPGA 171 I/O 208QFP0RFQ
EPF10K50VRC240-4IC FPGA 189 I/O 240RQFP11RFQ
EPF10K50VRC240-1IC FPGA 189 I/O 240RQFP0RFQ
EPF10K30ETC144-2XIC FPGA 102 I/O 144TQFP0RFQ
EPF6024AQC240-2NIC FPGA 199 I/O 240QFP0RFQ
EPF6016ATC144-2NIC FPGA 117 I/O 144TQFP0RFQ
EPF10K50VRI240-4NIC FPGA 189 I/O 240RQFP0RFQ
EPF10K30ATI144-3NALTERA EPF10K30ATI144-3N FPGA, FLEX 10KA, 30K GATES, 144TQFP0RFQ
EPF10K50VQI240-2NIC FPGA 189 I/O 240QFP0RFQ
EPF10K10ATC100-3FPGA FLEX 10KA Family 10K Gates 576 Cells 125MHz 0.3um Technology 3.3V 100-Pin TQFP0RFQ
EPF10K40RC240-4IC FPGA 189 I/O 240RQFP0RFQ
Technical Documents

Description


The Intel FLEX 6000 series FPGAs are a family of high-performance, low-power, and cost-effective FPGAs designed to meet the needs of a wide range of applications. These FPGAs feature a wide range of features, including high-speed transceivers, high-density logic, and advanced power management. The FLEX 6000 series FPGAs are ideal for applications such as high-speed networking, video processing, and embedded systems. With their low power consumption and high performance, these FPGAs are ideal for a variety of applications.



Features


• High-performance, low-power FPGA fabric with up to 6.5 million logic elements

• High-speed transceivers with up to 28.1 Gbps data rate

• High-density memory blocks with up to 1.5 Mbits of RAM

• High-speed DSP blocks with up to 1.2 TFLOPS of performance

• High-speed I/O with up to 8.5 Gbps data rate

• Advanced power management features

• Advanced security features

• Advanced debug features



Applications


• High-performance computing

• Networking and communications

• Automotive and industrial control

• Video and image processing

• Medical imaging

• Aerospace and defense

• Machine learning and artificial intelligence


Frequently Asked Questions

What are the Alternative Products of Intel FLEX 6000 series FPGAs?

1. Xilinx Virtex UltraScale+ FPGAs 2. Altera Stratix 10 FPGAs 3. Lattice Semiconductor CrossLink FPGAs 4. Microsemi SmartFusion2 FPGAs 5. Achronix Speedster FPGAs 6. QuickLogic PolarPro FPGAs 7. Tabula ABAX FPGAs 8. Atmel AT40K FPGAs 9. QuickLogic EOS S3 FPGAs 10. Actel Fusion FPGAs

What are the differences between the types of Intel FLEX 6000 series FPGAs?

The Intel FLEX 6000 series FPGAs are divided into three categories: Stratix 10, Arria 10, and Cyclone 10. Each type of FPGA has its own unique features and capabilities.  Stratix 10 FPGAs are the highest performance FPGAs in the Intel FLEX 6000 series. They offer the highest levels of system integration, scalability, and performance. Stratix 10 FPGAs are ideal for applications that require high-speed data processing, high-bandwidth memory, and high-performance networking.  Arria 10 FPGAs are mid-range FPGAs that offer a balance of performance and cost. They are suitable for applications that require a moderate level of system integration, scalability, and performance.  Cyclone 10 FPGAs are the lowest cost FPGAs in the Intel FLEX 6000 series. They are suitable for applications that require low-cost, low-power, and low-performance solutions.