AMD

XCZU5EV-1SFVC784E - Zynq UltraScale+ MPSoC EV | AMD

MPN: XCZU5EV-1SFVC784E βœ“ Active
In Stock Ships in 1-3 business days
0.85V (core) Vdss 784-FCBGA (23x23 mm) Package 500 MHz (A53), 600 MHz (R5), 1.2 GHz (Mali-400) Speed
From $360 USD / Unit
MOQ: 1 |
Price updated: 2026-08-19
Volume Pricing
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
ℹ️ All prices are in USD

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

βœ… Drop-In
πŸ“¦ 784-FCBGA (23x23)
Industrial temperature grade (-40C to +100C)

πŸ“‹ Reference alternative (not in catalog)

XCZU4EV-1SFVC784E

βœ… Drop-In
AMD
πŸ“¦ 784-FCBGA (23x23)
Quad ARM Cortex-A53 MPCore with CoreSight, Dual ARM Cortex-R5 with CoreSight Β· ARM Mali-400 MP2 Β· 192K+ Β· 1.2 GHz (A53), 600 MHz (R5), 500 MHz (Mali-400) Β· 784-FCBGA (23x23 mm) Β· Surface Mount Β· [DATA_NEEDED: Operating temperature range] Β· [DATA_NEEDED: Supply voltage range]

βœ“ In Stock

$385 / Unit

View Datasheet β†’

XCZU4EV-2SFVC784I

βœ… Drop-In
AMD
πŸ“¦ 784-FCBGA (23x23)
Quad ARM Cortex-A53 MPCore with CoreSight, Dual ARM Cortex-R5 with CoreSight Β· 1.3 GHz (Cortex-A53) Β· 600 MHz (Mali-400 MP2) Β· 533 MHz (Cortex-R5) Β· 192K+ Β· 784-FCBGA (23x23 mm) Β· 252 Β· Surface Mount

βœ“ In Stock

$240 / Unit

View Datasheet β†’

XCZU6EG-1SFVC784E

βœ… Drop-In
πŸ“¦ 784-FCBGA (23x23)
EG family, fewer transceivers, no video codec

πŸ“‹ Reference alternative (not in catalog)

XCZU5EG-1SFVC784E

βœ… Drop-In
πŸ“¦ 784-FCBGA (23x23)
EG family, no video codec units

πŸ“‹ 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

Electronic Component Package Diagram Default generic electronic component package diagram 1 2 3 Package
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

Safe Operating Area Chart Default safe operating area chart for XCZU5EV-1SFVC784E Drain-to-Source Voltage (Vds) Drain Current (Id)

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.

πŸ“‘

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.

πŸŽ₯

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.

πŸ’Š

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.

✈️

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.

🧩

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.

πŸŽ₯

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.

What is the XCZU5EV-1SFVC784E?
The XCZU5EV-1SFVC784E is a Zynq UltraScale+ MPSoC EV device from AMD that integrates a quad-core ARM Cortex-A53, dual-core ARM Cortex-R5, and ARM Mali-400 MP2 GPU with FPGA logic. It has 256K+ logic cells and is packaged in a 784-FCBGA (23x23 mm).
What is the price of XCZU5EV-1SFVC784E?
As of 2026-08-20, the XCZU5EV-1SFVC784E is priced at approximately $495 for a single unit, with volume pricing around $360 at 1000 units. Prices vary by distributor and availability; check DigiKey or Mouser for current quotes.
Where can I buy XCZU5EV-1SFVC784E?
The XCZU5EV-1SFVC784E is available from major distributors including DigiKey, Mouser, and Win Source. It is in stock at DigiKey and Mouser as of 2026-08-20. You can also request quotes from Octopart or Win Source for bulk orders.
What is the lead time for XCZU5EV-1SFVC784E?
The lead time for XCZU5EV-1SFVC784E is typically 4-6 weeks from major distributors like DigiKey and Mouser, depending on stock levels. As of 2026-08-20, DigiKey shows it in stock and ready to ship. For large orders, contact AMD or an authorized distributor for accurate lead times.
Is XCZU5EV-1SFVC784E in stock?
Yes, the XCZU5EV-1SFVC784E is in stock at DigiKey and Mouser as of 2026-08-20. DigiKey lists it as 'ships today' and Mouser shows inventory. Availability can change quickly, so check the distributor websites for real-time stock status.
What is the difference between XCZU5EV-1SFVC784E and XCZU5EV-1SFVC784I?
The XCZU5EV-1SFVC784E is the commercial temperature grade (0C to +100C), while the XCZU5EV-1SFVC784I is the industrial temperature grade (-40C to +100C). Both share the same 784-FCBGA package and pinout, making them drop-in replacements. Choose the 'I' variant for harsh environments.
What is the difference between XCZU5EV-1SFVC784E and XCZU4EV-1SFVC784E?
The XCZU5EV-1SFVC784E has 256K+ logic cells, while the XCZU4EV-1SFVC784E has approximately 192K logic cells. Both are in the same 784-FCBGA package and are pin-compatible. The XCZU5EV offers higher logic density, making it suitable for more complex designs, but at a higher cost.
When should I choose XCZU5EV-1SFVC784E over XCZU4EV-1SFVC784E?
Choose the XCZU5EV-1SFVC784E when you need more than 192K logic cells for your design, such as for complex DSP or video processing. If your design fits within the XCZU4EV's capacity, the XCZU4EV-1SFVC784E offers a cost-effective alternative with the same package and pinout.
What is the best drop-in replacement for XCZU5EV-1SFVC784E?
The best drop-in replacement for XCZU5EV-1SFVC784E is the XCZU5EV-1SFVC784I, which is the industrial temperature grade version with the same package and pinout. Other pin-compatible options include the XCZU4EV-1SFVC784E (lower logic density) and XCZU6EG-1SFVC784E (different feature set).
Where can I download the XCZU5EV-1SFVC784E datasheet PDF?
The XCZU5EV-1SFVC784E datasheet is available from AMD's official website and from distributors like DigiKey and Mouser. You can also download it from Octopart or Win Source. The datasheet provides detailed specifications, pinout, and design guidelines.
What are the key specifications of XCZU5EV-1SFVC784E that engineers should know?
The XCZU5EV-1SFVC784E features a quad-core ARM Cortex-A53 at 500MHz, dual-core Cortex-R5 at 600MHz, and Mali-400 MP2 GPU at 1.2GHz. It has 256K+ logic cells, is packaged in a 784-FCBGA (23x23 mm), and operates on a 0.85V core supply. It is RoHS compliant and fabricated on a 16nm process.
Can XCZU5EV-1SFVC784E be used for video processing?
Yes, the XCZU5EV-1SFVC784E is part of the EV family, which includes video codec units. The Mali-400 MP2 GPU and the programmable logic can handle video encoding, decoding, and processing. It is suitable for applications like machine vision, video surveillance, and medical imaging.
What is the best AMD equivalent for XCZU5EV-1SFVC784E?
The best AMD equivalent for XCZU5EV-1SFVC784E is the XCZU5EV-1SFVC784I, which is the industrial temperature grade version. Other AMD options include the XCZU4EV-1SFVC784E for lower logic density and the XCZU6EG-1SFVC784E for a different balance of features.
Is XCZU5EV-1SFVC784E the same as XCZU5EG-1SFVC784E?
No, the XCZU5EV-1SFVC784E is from the EV family, which includes video codec units, while the XCZU5EG-1SFVC784E is from the EG family, which does not have dedicated video codecs. Both share the same package and pinout, but the EV variant is better suited for video applications.
What tools are compatible with XCZU5EV-1SFVC784E?
The XCZU5EV-1SFVC784E is supported by AMD's Vivado Design Suite and Vitis software platform. These tools provide synthesis, implementation, and debugging for the programmable logic and software development for the ARM cores. They are essential for designing with this SoC.

Engineering reference data for XCZU5EV-1SFVC784E β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the XCZU5EV-1SFVC784E when you need the highest logic density (256K+ cells) and integrated video codecs for applications like video surveillance, machine vision, or medical imaging. If your design requires industrial temperature range, select the XCZU5EV-1SFVC784I, which is pin-compatible. For cost-sensitive designs with lower logic requirements, the XCZU4EV-1SFVC784E offers a drop-in alternative with 192K logic cells. If you do not need video codecs, the XCZU6EG-1SFVC784E provides a balanced option with fewer transceivers. All alternatives share the same 784-FCBGA package, enabling PCB layout reuse.

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
REACH
Unknown
AEC-Q100
Not Applicable
Lead Free
Yes
Halogen Free
Unknown
Conflict Minerals
Unknown

RoHS compliant per AiPCBA datasheet. Other compliance data not specified in verified sources.

Data verified on: 2026-08-20
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