XCZU11EG-2FFVF1517I - Zynq UltraScale+ MPSoC EG | AMD
MPN: XCZU11EG-2FFVF1517I β Active| Qty | Unit Price | Extended |
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| 1 | $0 | $0.00 |
| 10 | $0 | $0.00 |
| 100 | $0 | $0.00 |
| 500 | $0 | $0.00 |
| 1,000 | $0 | $0.00 |
Drop-in alternatives for XCZU11EG-2FFVF1517I β same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
Quick Comparison Tool β Select alternative parts for side-by-side comparison:
XCZU11EG-1FFVF1517I
β Drop-Inπ Reference alternative (not in catalog)
XCZU11EG-2FFVF1517E
β Drop-Inπ Reference alternative (not in catalog)
XCZU11EG-L1FFVF1517I
β Drop-Inπ Reference alternative (not in catalog)
XCZU11EG-1FFVF1517E
β Drop-Inπ Reference alternative (not in catalog)
XCZU11EG-2FFVB1517I
β‘ Same Packageπ Reference alternative (not in catalog)
XCZU11EG-L1FFVB1517I
β‘ Same Packageπ Reference alternative (not in catalog)
XCZU11EG-2FFVF1517I Maximum Ratings & Electrical Characteristics
| Product Category | Embedded - System On Chip (SoC) |
| Architecture | MCU, FPGA |
| Core Processors | Quad ARM Cortex-A53 MPCore with CoreSight, Dual ARM Cortex-R5 with CoreSight, ARM Mali-400 MP2 |
| FPGA Logic Cells | 653100 Cells |
| FPGA Registers | 597120 Registers |
| Block RAM | 22124954 Bit RAM |
| Max Processor Clock | 1.3 GHz (A53) / 600 MHz (R5) / 533 MHz (Mali) |
| Speed Grade | -2 |
| Temperature Grade | Industrial (I) |
| Package | 1517-FCBGA (40x40 mm) |
| Number of Terminals | 1517 |
| Terminal Form | BALL |
| Mounting Type | Surface Mount |
| Connectivity | CANbus, EBI/EMI, Ethernet, I2C, MMC/SD/SDIO, SPI, UART/USART, USB OTG |
| Core Supply Voltage | [DATA_NEEDED: VCCINT supply voltage] |
| I/O Supply Voltage | [DATA_NEEDED: VCCO supply voltage range] |
| RoHS Status | unknown |
| Lifecycle Status | Active |
XCZU11EG-2FFVF1517I 1517-fcbga (40x40 mm) Pin Configuration Guide
Complete pinout information for XCZU11EG-2FFVF1517I (1517-fcbga (40x40 mm) package). This digital IC includes GPIO, communication interfaces (UART, SPI, I2C), and power pins. Refer to the manufacturer datasheet for alternate pin functions and configuration options. Essential for embedded system design and PCB layout.
No detailed pinout data available for XCZU11EG-2FFVF1517I.
Refer to the datasheet for full pin configuration.
Safe Operating Area (SOA) & Thermal Characteristics
No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.
Typical Applications
XCZU11EG-2FFVF1517I is suitable for 6 applications: Edge AI Vision Acceleration, 5G/4G Wireless Baseband, Radar and Electronic Warfare, Broadcast and Professional AV, Medical Imaging, Data Center SmartNIC.
Edge AI Vision Acceleration
The XCZU11EG-2FFVF1517I delivers 653K logic cells and 22.1 Mbit block RAM, enabling convolutional neural network (CNN) inference at the edge without a server-grade GPU. The PS Cortex-A53 cluster can run the Linux-based AI framework while the PL implements quantized INT8 CNN acceleration using DSP48E2 slices. Industrial temperature support makes it suitable for factory floor machine vision systems. When paired with DDR4 memory like MT40A512M16JY-075E, memory bandwidth supports real-time 1080p or 4K frame processing. Power optimization can be achieved by using the -L1 variant for lower dynamic energy in thermally constrained camera systems.
Recommended
5G/4G Wireless Baseband
In a remote radio unit (RRU) or small-cell baseband, the XCZU11EG-2FFVF1517I handles PHY-layer processing in the PL, including FFT, channel coding, and MIMO pre-coding, while the dual Cortex-R5 processors manage real-time radio resource control. The Mali-400 MP2 GPU assists in front-haul network encryption or protocol processing. With 1517-ball FCBGA packaging and industrial temperature range, the device fits compact radio cards with constrained airflow. High-speed transceivers connect to RF front-ends and Ethernet backhaul, and the integrated block RAM reduces external memory latency for channel buffers. The -2 speed grade supports the tight timing requirements of 5G NR symbol processing.
Recommended
Radar and Electronic Warfare
The XCZU11EG-2FFVF1517I is ideal for radar pulse compression, beamforming, and electronic warfare (EW) signal processing. Its 597,120 registers and dense DSP fabric support fast data streaming and parallel FFT pipelines. The industrial temperature grade ensures operation in avionics and ground-based radar shelters from -40Β°C to +100Β°C. The integrated PCIe and multi-gigabit transceivers allow direct connection to RF sampling ADCs and high-speed data recorders. Security features in Zynq UltraScale+ protect encryption keys and boot images, which is critical for defense applications. FPGA configuration time is short enough for frequency-hopping EW systems.
Recommended
Broadcast and Professional AV
For broadcast video switchers, H.264/H.265 encoders, and pro AV distribution, the XCZU11EG-2FFVF1517I provides ample logic cells for video processing algorithms like scaling, color space conversion, and frame rate conversion. The Mali-400 MP2 GPU can generate graphics overlays, while the PL handles SDI, HDMI, and DisplayPort interfaces using high-speed transceivers. The PS runs media control software, and the Linux environment simplifies integration with streaming protocols. With 22.1 Mbit of block RAM, line buffers can be cached to reduce DDR bandwidth pressure. This MPSoC is a cost-effective alternative to separate FPGA and application processor chips in broadcast equipment.
Recommended
Medical Imaging
The XCZU11EG-2FFVF1517I suits ultrasound, CT, and MRI digital signal chains that need deterministic parallel processing. The Quad Cortex-A53 can run the host interface and image reconstruction algorithms, while the PL implements real-time beamforming and filtering. The -2 speed grade provides sufficient fabric clock margin for high-throughput sensor data. Power consumption is manageable for cart-based systems, and the industrial temperature range still covers typical hospital environments. The integrated security for IP protection helps medical device manufacturers safeguard proprietary algorithms. Companion DDR4 devices such as MT40A512M16JY-075E deliver the memory bandwidth required for large image datasets.
Recommended
Data Center SmartNIC
In a SmartNIC for data centers, the XCZU11EG-2FFVF1517I offloads packet processing, TCP segmentation, and virtualization functions from the host CPU. The programmable logic implements high-throughput parser/match/action pipelines, while the PS manages configuration and control planes. The 1517-ball package supports multiple 100G Ethernet ports via the integrated high-speed transceivers. Using block RAM and external DDR4 like K4A8G085WB-BIWE minimizes latency per packet. The -2 speed grade is well suited for line-rate processing at 100G. The device supports standards such as PCIe Gen3 and flexible I/O for NVMe-over-fabric accelerators, making it a strong platform for custom network appliances.
Recommended
Recommended Products Summary
Engineering reference data for XCZU11EG-2FFVF1517I β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | XCZU11EG-1FFVF1517I | XCZU11EG-2FFVF1517E | XCZU11EG-L1FFVF1517I |
|---|---|---|---|---|
| Brand | AMD | AMD | AMD | AMD |
| Package | 1517-FCBGA (40x40) | 1517-FCBGA (40x40) - same | 1517-FCBGA (40x40) - same | 1517-FCBGA (40x40) - same |
| Speed Grade | -2 | -1 | -2 | -L1 |
| Temperature Grade | Industrial (I) | Industrial (I) | Extended (E) | Industrial (I) |
| Logic Cells | 653100 | 653100 | 653100 | 653100 |
| Block RAM (bits) | 22124954 | 22124954 | 22124954 | 22124954 |
| Max A53 Frequency | 1.3 GHz | 1.2 GHz (typical) | 1.3 GHz | 1.2 GHz (typical) |
| Connectivity | CANbus, Ethernet, I2C, SD, SPI, UART, USB OTG | Same PS connectivity | Same PS connectivity | Same PS connectivity |
Key Differentiators
- Higher speed grade -2 compared to -1 (vs XCZU11EG-1FFVF1517I)
- Industrial temperature range vs extended (vs XCZU11EG-2FFVF1517E)
- Balanced logic-to-processor ratio (vs XCZU11EG-L1FFVF1517I)
Design Notes
The Zynq UltraScale+ MPSoC uses multiple power rails: VCCINT, VCCAUX, VCCBRAM, and PS rails (VCC_PSINTLP, VCC_PSINTFP, VCC_PSAUX, etc.). Power-up sequencing must follow the requirements in AMD PG201 (Zynq UltraScale+ Device PCB Design). Use PMICs or sequencing controllers to ensure VCCINT ramps before I/O rails. Place 4.7uF bulk capacitors near each rail and 100nF ceramics close to each ball, with a solid power plane return path.
At high utilization, XCZU11EG-2FFVF1517I can dissipate 10-20W depending on logic density and transceiver count. The 40x40 mm FCBGA package requires a thermal solution such as a heatsink with forced airflow or a heat spreader. The industrial temperature grade allows junction temperature up to 100Β°C, but the maximum power derating curve in the datasheet must be respected. Use the AMD power estimator tool to calculate actual dissipation for your design.
Use a minimum of 8-10 layers with at least three ground planes and dedicated power planes. The high-speed multi-gigabit transceivers demand controlled impedance differential routing (typically 100 ohm differential) and clock source placement close to the transceiver pins. For DDR4 interfaces, follow the AMD DDR board design guidelines, matching trace lengths and tuning within the specified skew. Block RAM in the PL can be used to reduce off-chip memory, but external DDR4 is still necessary for PS memory access.
Compliance Information
Compliance data not present in the verified web data snapshot. Contact AMD for current RoHS/REACH declarations.