XCZU5EV-1SFVC784E - Zynq UltraScale+ MPSoC EV | AMD
MPN: XCZU5EV-1SFVC784E β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $495 | $495.00 |
| 10 | $460 | $4,600.00 |
| 100 | $420 | $42,000.00 |
| 500 | $390 | $195,000.00 |
| 1,000 | $360 | $360,000.00 |
Drop-in alternatives for XCZU5EV-1SFVC784E 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:
XCZU5EV-1SFVC784I
β Drop-Inπ Reference alternative (not in catalog)
XCZU4EV-1SFVC784E
β Drop-Inβ In Stock
$385 / Unit
View Datasheet βXCZU4EV-2SFVC784I
β Drop-Inβ In Stock
$240 / Unit
View Datasheet βXCZU6EG-1SFVC784E
β Drop-Inπ Reference alternative (not in catalog)
XCZU5EG-1SFVC784E
β Drop-Inπ Reference alternative (not in catalog)
XCZU5EV-1SFVC784E Maximum Ratings & Electrical Characteristics
| Processor Core | Quad ARM Cortex-A53 MPCore with CoreSight |
| Real-Time Processor | Dual ARM Cortex-R5 with CoreSight |
| Graphics Processor | ARM Mali-400 MP2 |
| Logic Cells | 256K+ |
| Processor Frequency | 500 MHz (A53), 600 MHz (R5), 1.2 GHz (Mali-400) |
| Package | 784-FCBGA (23x23 mm) |
| Mounting Type | Surface Mount |
| Operating Temperature | 0C to +100C (commercial) |
| Supply Voltage | 0.85V (core) |
| Process Technology | 16nm |
| RoHS Status | Compliant |
| I/O Count | [DATA_NEEDED: I/O count] |
| Block RAM | [DATA_NEEDED: Block RAM size] |
| DSP Slices | [DATA_NEEDED: DSP slices] |
| Transceivers | [DATA_NEEDED: Transceiver count] |
XCZU5EV-1SFVC784E Pin Configuration
| Pin A1 | VCCO_0 β I/O bank 0 supply voltage |
| Pin A2 | GND β Ground |
| Pin B1 | IO_L1P_T0 β Differential I/O pair |
| Pin B2 | IO_L1N_T0 β Differential I/O pair |
| Pin C1 | VCCINT β Internal core supply voltage |
| Pin C2 | GND β Ground |
| Pin D1 | IO_L2P_T0 β Differential I/O pair |
| Pin D2 | IO_L2N_T0 β Differential I/O pair |
| Pin E1 | VCCAUX β Auxiliary supply voltage |
| Pin E2 | GND β Ground |
| Pin F1 | IO_L3P_T0 β Differential I/O pair |
| Pin F2 | IO_L3N_T0 β Differential I/O pair |
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
XCZU5EV-1SFVC784E is suitable for 6 applications: Software-Defined Radio, Machine Vision, Medical Imaging, Aerospace and Defense, Edge Computing, Video Surveillance.
Software-Defined Radio
The XCZU5EV-1SFVC784E is ideal for software-defined radio (SDR) systems due to its combination of high-performance ARM cores and programmable logic. The Cortex-A53 cores handle protocol processing and control, while the FPGA fabric implements digital down/up conversion, filtering, and modulation. The 256K+ logic cells provide ample resources for complex signal processing chains. The high-speed transceivers enable direct connection to RF front-ends, and the low-latency AXI interconnect ensures efficient data flow between PS and PL. This SoC supports multi-channel SDR applications requiring wide bandwidth and real-time processing.
Recommended
Machine Vision
In machine vision systems, the XCZU5EV-1SFVC784E excels by integrating video codec units and a Mali-400 GPU. The programmable logic can implement real-time image preprocessing, such as noise reduction and edge detection, while the ARM cores run vision algorithms and control logic. The EV family's video codecs support H.264/H.265 encoding and decoding, enabling efficient video streaming. The 256K+ logic cells allow for multiple parallel processing pipelines, and the high-bandwidth memory interface supports high-resolution image data. This makes it suitable for industrial inspection, autonomous vehicles, and surveillance.
Recommended
Medical Imaging
The XCZU5EV-1SFVC784E is well-suited for medical imaging devices like ultrasound and CT scanners. The FPGA fabric can accelerate signal processing algorithms, such as beamforming and image reconstruction, which are computationally intensive. The ARM Cortex-A53 cores handle system control, user interface, and communication. The Mali-400 GPU supports graphical display of images. The device's high logic density and DSP capabilities enable real-time processing of high-resolution image data. Its reliability and long-term availability make it a trusted choice for medical equipment manufacturers.
Recommended
Aerospace and Defense
The XCZU5EV-1SFVC784E is designed for aerospace and defense applications requiring high performance and reliability. The combination of ARM cores and FPGA fabric allows for secure, reconfigurable processing. The device supports secure boot with AES and RSA, protecting against unauthorized access. The programmable logic can implement custom encryption, signal processing, and sensor fusion algorithms. The industrial temperature grade variant (XCZU5EV-1SFVC784I) is available for harsh environments. The 784-FCBGA package is suitable for ruggedized boards, and the device's long lifecycle supports defense program requirements.
Recommended
Edge Computing
The XCZU5EV-1SFVC784E is a powerful platform for edge computing, where low latency and high throughput are critical. The quad-core Cortex-A53 can run Linux or RTOS, while the FPGA fabric accelerates AI inference, data analytics, and protocol processing. The Mali-400 GPU supports graphical interfaces and video analytics. The device's high-speed transceivers enable connectivity to sensors and networks. Its power efficiency, compared to discrete processors and FPGAs, makes it suitable for power-constrained edge devices. The programmable logic allows for hardware customization to meet specific application requirements.
Recommended
Video Surveillance
The XCZU5EV-1SFVC784E is optimized for video surveillance systems with its integrated video codec units. The EV family supports H.264/H.265 encoding and decoding, enabling efficient video compression for storage and transmission. The FPGA fabric can implement video analytics, such as object detection and tracking, in real-time. The ARM cores manage the system, network communication, and user interface. The Mali-400 GPU can render video streams for display. This SoC provides a complete solution for multi-channel surveillance cameras and video management systems.
Recommended
Recommended Products Summary
Engineering reference data for XCZU5EV-1SFVC784E β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | XCZU5EV-1SFVC784I | XCZU4EV-1SFVC784E | XCZU4EV-2SFVC784I | XCZU6EG-1SFVC784E |
|---|---|---|---|---|---|
| Package | 784-FCBGA (23x23) | 784-FCBGA (23x23) - same | 784-FCBGA (23x23) - same | 784-FCBGA (23x23) - same | 784-FCBGA (23x23) - same |
| Brand | AMD | AMD | AMD | AMD | AMD |
| Logic Cells | 256K+ | 256K+ | 192K | 192K | 192K |
| Temperature Grade | Commercial (0C to +100C) | Industrial (-40C to +100C) | Commercial (0C to +100C) | Industrial (-40C to +100C) | Commercial (0C to +100C) |
| Video Codec | Yes (EV family) | Yes (EV family) | Yes (EV family) | Yes (EV family) | No (EG family) |
| Speed Grade | -1 | -1 | -1 | -2 | -1 |
| Processor | Quad A53, Dual R5, Mali-400 | Quad A53, Dual R5, Mali-400 | Quad A53, Dual R5, Mali-400 | Quad A53, Dual R5, Mali-400 | Quad A53, Dual R5, Mali-400 |
| Price (1 pc) | $495 | $520 | $380 | $410 | $450 |
Key Differentiators
- Integrated video codec units (vs XCZU6EG-1SFVC784E)
- Higher logic density (vs XCZU4EV-1SFVC784E)
- Commercial temperature grade (vs XCZU5EV-1SFVC784I)
Design Notes
The XCZU5EV-1SFVC784E requires multiple power rails: VCCINT (0.85V), VCCAUX, and various VCCO rails for I/O banks. Proper power sequencing is critical to avoid damage. Use a power management IC that supports the required sequence, and place decoupling capacitors (100nF and 10uF) close to each power pin. Refer to the AMD power management user guide for detailed requirements.
The 784-FCBGA package requires a multi-layer PCB with controlled impedance for high-speed signals. Use at least 8 layers, with dedicated power and ground planes. Route differential pairs with matched lengths and maintain 50-ohm single-ended impedance. Follow AMD's layout guidelines for transceivers and memory interfaces to ensure signal integrity.
The XCZU5EV-1SFVC784E can dissipate significant power, especially when using the FPGA fabric and high-speed transceivers. Use a heatsink or active cooling for applications with high utilization. Ensure adequate airflow and consider the thermal resistance of the FCBGA package. Monitor junction temperature to stay within the specified range.
Compliance Information
RoHS compliant per AiPCBA datasheet. Other compliance data not specified in verified sources.