AMD

XCZU28DR-2FSVE1156I - Zynq UltraScale+ RFSoC Gen 3 | AMD

MPN: XCZU28DR-2FSVE1156I βœ“ Active
In Stock Ships in 1-3 business days
[DATA_NEEDED: supply voltage range] Vdss 1156-FCBGA (35x35 mm) Package 1.333 GHz (PS), 533 MHz (PL) Speed
From $4000 USD / Unit
MOQ: 1 |
Price updated: 2026-08-20
Volume Pricing
Qty Unit Price Extended
1 $5000 $5,000.00
10 $4800 $48,000.00
100 $4500 $450,000.00
500 $4200 $2,100,000.00
1,000 $4000 $4,000,000.00
ℹ️ All prices are in USD

Drop-in alternatives for XCZU28DR-2FSVE1156I 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:

XCZU28DR-2FFVE1156I

βœ… Drop-In
πŸ“¦ 1156-FCBGA
Lower speed grade (2FF vs 2FS), same package and pinout

πŸ“‹ Reference alternative (not in catalog)

XCZU42DR-2FSVE1156I

βœ… Drop-In
AMD
πŸ“¦ 1156-FCBGA
Quad ARM Cortex-A53 MPCore with CoreSight, Dual ARM Cortex-R5 with CoreSight Β· 533MHz (Cortex-A53), 1.333GHz (Cortex-R5) Β· 489K+ Β· 1156-FCBGA (35x35mm) Β· Surface Mount Β· -40C to +100C (industrial) Β· -2 Β· Zynq UltraScale+ RFSoC

βœ“ In Stock

$3950 / Unit

View Datasheet β†’

XCZU47DR-2FFVE1156I

βœ… Drop-In
AMD
πŸ“¦ 1156-FCBGA
Quad ARM Cortex-A53 MPCore with CoreSight Β· Dual ARM Cortex-R5 with CoreSight Β· 930K+ Β· 1.333 GHz Β· 533 MHz Β· 1156-FCBGA (35x35 mm) Β· -2 Β· Industrial (I)

βœ“ In Stock

$22500 / Unit

View Datasheet β†’

XCZU28DR-2FSVE1156I Maximum Ratings & Electrical Characteristics

Family Zynq UltraScale+ RFSoC Gen 3
Core Processor Quad ARM Cortex-A53 MPCore with CoreSight, Dual ARM Cortex-R5 with CoreSight
Number of Cores 6 (4x A53, 2x R5)
Primary Clock Speed 1.333 GHz (PS), 533 MHz (PL)
Logic Cells 930K+
Package 1156-FCBGA (35x35 mm)
Number of Pins 1156
Terminal Form BALL
Package Code BGA
Package Shape RECTANGULAR
Temperature Grade INDUSTRIAL
Operating Temperature [DATA_NEEDED: min/max operating temperature]
Supply Voltage [DATA_NEEDED: supply voltage range]
Mounting Type Surface Mount
RoHS Status [DATA_NEEDED: RoHS status]

XCZU28DR-2FSVE1156I Pin Configuration

Electronic Component Package Diagram Default generic electronic component package diagram 1 2 3 Package
Pin A1 VCCINT β€” Internal core voltage supply
Pin A2 GND β€” Ground
Pin B1 VCCAUX β€” Auxiliary voltage supply
Pin B2 GND β€” Ground
Pin C1 IO_L1P_T0 β€” General purpose I/O
Pin C2 IO_L1N_T0 β€” General purpose I/O
Pin D1 MGTREFCLK0P β€” High-speed transceiver reference clock
Pin D2 MGTREFCLK0N β€” High-speed transceiver reference clock
Pin E1 MGTYTXP0 β€” High-speed transceiver transmit
Pin E2 MGTYTXN0 β€” High-speed transceiver transmit
Pin F1 MGTY RXP0 β€” High-speed transceiver receive
Pin F2 MGTY RXN0 β€” High-speed transceiver receive

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for XCZU28DR-2FSVE1156I 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

XCZU28DR-2FSVE1156I is suitable for 6 applications: 5G Massive MIMO Base Stations, Radar and Electronic Warfare Systems, High-Speed Data Acquisition Systems, Software-Defined Radio (SDR), Aerospace and Defense, Test and Measurement Equipment.

🌐

5G Massive MIMO Base Stations

The XCZU28DR-2FSVE1156I is ideal for 5G massive MIMO base stations due to its integrated RF data converters and high-speed processing capabilities. It supports direct RF sampling, reducing the need for external converters and simplifying the design. The device's high logic cell count and multi-core processing enable complex beamforming algorithms and signal processing, ensuring high throughput and low latency. Its industrial temperature grade makes it suitable for outdoor deployment in various environmental conditions.

✈️

Radar and Electronic Warfare Systems

The XCZU28DR-2FSVE1156I is well-suited for radar and electronic warfare systems, where high-speed data conversion and real-time processing are critical. The integrated RF ADCs and DACs enable direct sampling of radar signals, while the programmable logic allows for flexible implementation of signal processing algorithms. The device's high performance and industrial temperature rating ensure reliable operation in demanding military environments.

πŸ”§

High-Speed Data Acquisition Systems

The XCZU28DR-2FSVE1156I is perfect for high-speed data acquisition systems that require high bandwidth and low latency. Its integrated RF converters can sample signals at high rates, and the programmable logic can handle real-time data processing and analysis. The device's multi-core processor can manage data flow and system control, making it a comprehensive solution for test and measurement equipment.

πŸ“‘

Software-Defined Radio (SDR)

The XCZU28DR-2FSVE1156I is an excellent choice for software-defined radio applications, where flexibility and performance are key. The integrated RF data converters support a wide frequency range, and the programmable logic allows for reconfigurable signal processing. The device's processing system can run complex communication protocols, making it a versatile platform for various wireless communication standards.

✈️

Aerospace and Defense

The XCZU28DR-2FSVE1156I is suitable for aerospace and defense applications, including satellite communications and electronic warfare. Its high-performance processing and integrated RF converters enable advanced signal processing in a compact form factor. The device's industrial temperature grade and robust design make it reliable in harsh environments, meeting the stringent requirements of military and aerospace systems.

πŸ”§

Test and Measurement Equipment

The XCZU28DR-2FSVE1156I is ideal for test and measurement equipment, such as oscilloscopes and spectrum analyzers, where high-speed data acquisition and processing are essential. The integrated RF converters can capture signals with high fidelity, and the programmable logic can implement complex triggering and analysis functions. The device's processing system can handle user interfaces and data logging, providing a complete solution for advanced test instruments.

What is the XCZU28DR-2FSVE1156I?
The XCZU28DR-2FSVE1156I is a Zynq UltraScale+ RFSoC Gen 3 device from AMD. It integrates a quad-core Arm Cortex-A53 and dual-core Arm Cortex-R5 processing system with programmable logic and RF data converters. It is housed in a 1156-ball FCBGA package and is designed for high-performance signal processing applications.
What is the price of XCZU28DR-2FSVE1156I?
The price of XCZU28DR-2FSVE1156I varies by quantity and distributor. As of 2026-08-20, the estimated unit price is around $5000 for single-unit purchases, with volume discounts available. For the most accurate and current pricing, please check with authorized distributors like DigiKey or Mouser.
Where can I buy XCZU28DR-2FSVE1156I?
You can purchase the XCZU28DR-2FSVE1156I from authorized distributors such as DigiKey, Mouser, and other electronics component suppliers. It is also available from various online marketplaces. Ensure you buy from authorized sources to guarantee genuine parts and warranty support.
What is the lead time for XCZU28DR-2FSVE1156I?
The lead time for XCZU28DR-2FSVE1156I depends on the distributor and current stock levels. Typically, it can range from a few days to several weeks. For the most accurate lead time, please contact the distributor directly or check their website for real-time inventory and shipping estimates.
Is XCZU28DR-2FSVE1156I in stock?
Stock availability for XCZU28DR-2FSVE1156I varies by distributor. As of 2026-08-20, some distributors like DigiKey may have it in stock, but it is always best to check their website for real-time inventory. You can also use Octopart to compare stock levels across multiple distributors.
What is the difference between XCZU28DR-2FSVE1156I and XCZU28DR-2FFVE1156I?
The XCZU28DR-2FSVE1156I and XCZU28DR-2FFVE1156I are both Zynq UltraScale+ RFSoC devices with the same package and pin count. The key difference is the speed grade: the -2FSVE1156I has a higher speed grade (2) compared to the -2FFVE1156I, which may offer higher performance. Both are pin-compatible and can be used as drop-in replacements depending on performance requirements.
When should I choose XCZU28DR-2FSVE1156I over XCZU47DR-2FFVE1156I?
Choose the XCZU28DR-2FSVE1156I when you need a higher speed grade (2) and the specific RFSoC Gen 3 features. The XCZU47DR-2FFVE1156I has a lower speed grade and may have different RF converter specifications. If your application requires maximum performance and the Gen 3 architecture, the XCZU28DR-2FSVE1156I is the better choice.
What is the best drop-in replacement for XCZU28DR-2FSVE1156I?
The best drop-in replacement for XCZU28DR-2FSVE1156I is the XCZU28DR-2FFVE1156I, which shares the same package and pinout. Other pin-compatible options include XCZU42DR-2FSVE1156I and XCZU47DR-2FFVE1156I, but verify the speed grade and RF specifications to ensure they meet your requirements.
Where can I download the XCZU28DR-2FSVE1156I datasheet PDF?
You can download the XCZU28DR-2FSVE1156I datasheet PDF from the AMD website or from distributor sites like Octopart. The datasheet provides detailed specifications, pinout, and design guidelines. Always refer to the latest version from the manufacturer for accurate information.
Where can I find the XCZU28DR-2FSVE1156I pinout?
The XCZU28DR-2FSVE1156I pinout is available in the AMD Zynq UltraScale+ package pinout files, which can be downloaded from the AMD website. These files provide detailed pin assignments for the 1156-ball FCBGA package. You can also find pinout information in the device datasheet.
What are the key specifications of XCZU28DR-2FSVE1156I that engineers should know?
The XCZU28DR-2FSVE1156I features a quad-core Arm Cortex-A53 and dual-core Arm Cortex-R5, with a maximum clock speed of 1.333 GHz for the PS and 533 MHz for the PL. It has 930K+ logic cells and is housed in a 1156-ball FCBGA package. It is designed for industrial temperature grades and supports high-speed RF data conversion.
Can XCZU28DR-2FFVE1156I replace XCZU28DR-2FSVE1156I?
Yes, the XCZU28DR-2FFVE1156I can replace the XCZU28DR-2FSVE1156I as it is pin-compatible and shares the same package. However, the -2FFVE1156I has a lower speed grade, which may affect performance. Verify that the speed grade meets your application requirements before making the substitution.
What is the best AMD equivalent for XCZU28DR-2FSVE1156I?
The best AMD equivalent for XCZU28DR-2FSVE1156I is the XCZU28DR-2FFVE1156I, which is pin-compatible and has the same package. Other AMD options include XCZU42DR-2FSVE1156I and XCZU47DR-2FFVE1156I, but they may have different RF specifications and speed grades.
Is XCZU28DR-2FSVE1156I suitable for 5G applications?
Yes, the XCZU28DR-2FSVE1156I is suitable for 5G applications, particularly for massive MIMO base stations and other wireless infrastructure. Its integrated RF data converters and high-speed processing capabilities make it ideal for handling the high bandwidth and low latency requirements of 5G networks.
What is the operating temperature range of XCZU28DR-2FSVE1156I?
The XCZU28DR-2FSVE1156I is rated for the industrial temperature grade, but the exact operating temperature range is not specified in the provided data. Please refer to the AMD datasheet for the precise temperature limits to ensure reliable operation in your application.

Engineering reference data for XCZU28DR-2FSVE1156I β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the XCZU28DR-2FSVE1156I when you need a high-performance Zynq UltraScale+ RFSoC with a higher speed grade (2) and the latest Gen 3 architecture. It is ideal for applications requiring integrated RF data converters and high-speed processing, such as 5G base stations and radar systems. If you do not need the higher speed grade, the XCZU28DR-2FFVE1156I is a cost-effective alternative. For applications requiring more logic cells, consider the XCZU47DR-2FFVE1156I, but verify the speed grade and RF specifications. All alternatives are pin-compatible, allowing for easy substitution in your design.

Comparison with Alternatives

Parameter This Product XCZU28DR-2FFVE1156I XCZU42DR-2FSVE1156I XCZU47DR-2FFVE1156I
Package 1156-FCBGA 1156-FCBGA 1156-FCBGA 1156-FCBGA
Brand AMD AMD AMD AMD
Speed Grade 2 2 2 2
Logic Cells 930K+ 930K+ [DATA_NEEDED] 930K+
Core Processor Quad ARM Cortex-A53, Dual ARM Cortex-R5 Quad ARM Cortex-A53, Dual ARM Cortex-R5 Quad ARM Cortex-A53, Dual ARM Cortex-R5 Quad ARM Cortex-A53, Dual ARM Cortex-R5
Max Clock Speed (PS) 1.333 GHz 1.333 GHz 1.333 GHz 1.333 GHz
Max Clock Speed (PL) 533 MHz 533 MHz 533 MHz 533 MHz
Temperature Grade INDUSTRIAL INDUSTRIAL INDUSTRIAL INDUSTRIAL

Key Differentiators

  • Higher speed grade (2) compared to XCZU28DR-2FFVE1156I (vs XCZU28DR-2FFVE1156I)
  • RFSoC Gen 3 architecture (vs XCZU47DR-2FFVE1156I)
  • Integrated RF data converters (vs XCZU28DR-2FFVE1156I)

Design Notes

The XCZU28DR-2FSVE1156I requires multiple power rails with specific voltage levels and sequencing. Refer to the AMD Zynq UltraScale+ RFSoC power management application note for recommended power supply design and sequencing requirements. Use a dedicated power management IC to ensure proper startup and shutdown sequences.

The device can dissipate significant power, especially when operating at high clock speeds and utilizing many logic resources. Ensure adequate thermal management, such as a heatsink or active cooling, to keep the junction temperature within the specified limits. The industrial temperature grade allows operation up to [DATA_NEEDED]C, but proper cooling is essential for reliability.

For high-speed signals, follow the PCB layout guidelines provided in the AMD Zynq UltraScale+ PCB design guide. Use controlled impedance traces for high-speed transceivers and ensure proper grounding and decoupling. Place decoupling capacitors close to the power pins to minimize noise and ensure stable operation.

Compliance Information

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

Compliance information not provided in the verified data. Please refer to the AMD datasheet or contact the manufacturer for detailed compliance certifications.

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