Kintex™ UltraScale+™ devices provide the best price/performance/watt balance in a FinFET node, delivering a cost-effective solution for applications that require high-end capabilities including 33Gb/s transceivers and 100G connectivity cores. Our mid-range family is ideal for both packet processing and DSP-intensive functions and is well suited for applications such as wireless MIMO technology, Nx100G wired networking, and data center networking and storage acceleration.

Product Advantages

Best Price/Performance/Watt Balance on FinFET

Programmable System Integration

Increased System Performance

  • 6.3 TeraMACs of DSP compute performance
  • Over 2X system-level performance per watt over Kintex 7 FPGAs
  • 16G and 28G backplane-capable transceivers
  • 2666Mb/s DDR4 in the mid-speed grade

BOM Cost Reduction

  • 12.5Gb/s transceivers in slowest speed grade
  • VCXO and fractional PLL integration reduces clocking component cost


Total Power Reduction

  • Up to 60% lower power vs. 7 series FPGAs
  • Voltage scaling options for performance and power
  • Tighter logic cell packing for dynamic power reduction

Accelerated Design Productivity

  • Co-optimized with Vivado™ Design Suite for rapid design closure
  • SmartConnect technology for intelligent IP integration

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Explore New Possibilities with the Kintex UltraScale+ FPGAs

PON Access

PON Access

Passive Optical Network (PON) is one of the main broadband access technologies deployed by many operators. Packet processing and traffic management functions are critical to process the aggregated end-user traffic and provisioning per QoS policies. With programmable logic and hardware acceleration blocks, Kintex UltraScale+ FPGAs are well suited to perform Layer 2 to Layer 4 packet processing functions, such as classification, filtering, lookup, and packet forwarding. The integrated 100G Ethernet MAC enables efficient uplink management and saves thousands of LUTs for hardware differentiation. As network operators are always looking for the balance among performance, cost, and power, the Kintex UltraScale+ FPGA’s DSP resources, serial connectivity, memory, and logic performance—combined with its power efficiency and ideal price point—makes it suitable for applications such as high-volume 100G PON OLT line cards.

Mobile Backhaul

Mobile Backhaul

Wireless traffic has grown tremendously in recent years. The surging demand for higher data capacity leads to innovation in radio access network (RAN) and mobile backhaul applications. Traditional microwave bands support 112MHz signal bandwidth, which requires multiple FPGAs. The Kintex UltraScale+ FPGA is an ideal platform to develop point-to-point microwave modems with higher packet processing in a single device. Increased logic resources, compared to the previous generation, enables end-product differentiation and fast feature deployment in the evolving wireless market. Also, designers can take advantage of up to 20% lower power and easy timing closure enabled by integrated IP.

Data Center Network Acceleration

Data Center Network Acceleration

Network port speeds are growing faster than traditional server nodes can keep pace, and new network functions are evolving too quickly for fixed-function devices. Kintex UltraScale+ FPGAs offer an ideal solution to address these challenges, providing high-performance packet processing and datapath offloading, advanced SerDes technology, and 100G Ethernet IP to enable unmatched scalability and connectivity for fast data movement. Kintex UltraScale+ FPGAs deliver a strong balance of performance and power that allows network designers to accelerate a comprehensive range of network workloads while minimizing total cost of ownership. Whether implementing emerging proprietary functionality or accelerating complex algorithms, Kintex UltraScale+ FPGAs provide a compelling solution for the data center with deterministic, ultra low-latency, and adaptable networking solutions with efficient power consumption.

Product Table

Kintex UltraScale+ Product Table

System Logic Cells (K) 356 475 600 653 747 1,143 1,843
CLB LUTs (K) 163 217 274 299 341 523 842
DSP Slices 1,368 1,824 2,520 2,928 3,528 1,968 1,080
Memory (Mb) 26.2 34.9
32.1 43.6 57.7 70.6 141.8
GTH 16.3 Gb/s Transceivers 0 0 28 32 28 44 0
GTY 32.75 Gb/s Transceivers 16 16 0 20 0 32 32
I/O Pins 304 304
304 512 304 668 540
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