PolarFire
FPGAs deliver the industry’s lowest power at mid-range
densities with exceptional security and reliability. Features
12.7G transceivers and offers up to 50% lower power than competing mid-range
FPGAs. The devices are ideal for a wide range of applications within wireline
access networks and cellular infrastructure, defense and commercial aviation
markets, as well as industrial automation and IoT markets.
Lower Power "L" Devices
• Provide up to 35 percent lower static power with identical electrical
specifications
Cost-optimized Architecture
• Transceiver performance optimized for 12.7 Gbps, which yields smaller
size
• 1.6 Gbps I/Os supporting DDR4/DDR3/LPDDR3, LVDS - hardened I/O gearing
logic with CDR (supports SGMII/GbE links on GPIOs)
• Best-in-class high-performance, hardened security IP in mid-range
devices
Power Optimization
• The lowest static power—1/10 static power vs. competing devices
• Transceiver optimized for 12.7 Gbps, which yields 1/2 the power vs.
competing devices
• Integrated hard IP—DDR PHY, PCIe endpoint/root port, crypto
processor
• Total power (static and dynamic)—up to 50% lower power
Microchip's PolarFire Evaluation Kit offers high-performance evaluation across a broad class of applications. This kit is ideally suited for high-speed transceiver evaluation, 10Gb Ethernet, IEEE1588, JESD204B, SyncE, CPRI, and more. The kit connections include a high pin count (HPC) FPGA mezzanine card (FMC), numerous SMAs, PCIe, dual Gigabit Ethernet RJ45, SFP+, and USB. A 300K logic element (LE) PolarFire FPGA with DDR4, DDR3, and SPI-flash allow a broad class of high-performance designs to be developed.
This kit enables general-purpose evaluation and development for the PolarFire FPGA. The kit includes Gigabit Ethernet RJ45, PCIe®, USB and LPC FMC connectors and a PolarFire 300K LE FPGA with onboard DDR4 and SPI Flash memory.
The PCIe root port adapter is a hardware evaluation platform for evaluating and testing PolarFire® FPGA PCIe root port capabilities, like the enumeration of an endpoint device and, low-speed and high-speed data transfers.
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