AMD / Xilinx Spartan™ UltraScale+™ FPGA SCU35 Evaluation Kit
Programmable Logic Platform for High-I/O FPGA Development
General
| Product Type | Evaluation Kit |
| Applications | Prototyping & Development, Industrial, Medical, Networking, Data Center |
| Key Features | Spartan UltraScale+ SU35P, 64 Mb HyperRAM, On-Chip Memory: 1.93 Mb, Maximum I/O: 304 |
Technical Specifications
| FPGA Device | Spartan UltraScale+ SU35P |
| System Logic Cells | 36K |
| CLB Flip-Flops | 33K |
| CLB LUTs | 16K |
| DSP Slices | 48 |
| On-Chip Memory | 1.93 Mb |
| Maximum I/O | 304 |
| External Memory | 64 Mb HyperRAM |
| Expansion Interfaces | MikroE, SYZYGY, Pmod, Arduino, Raspberry Pi HAT |
Overview
The AMD / Xilinx Spartan™ UltraScale+™ FPGA SCU35 Evaluation Kit is a development platform based on the Spartan UltraScale+ SU35P FPGA, intended for prototyping and evaluating FPGA-based designs. The kit provides a range of connectivity and expansion interfaces, including MikroE click ports, SYZYGY high-speed connectors, Pmod interfaces, Arduino shield compatibility, and Raspberry Pi HAT connectors. These interfaces enable integration with sensors, peripherals, and external systems for multi-sensor and embedded applications.
The FPGA device includes 36K system logic cells, 33K flip-flops, 16K LUTs, 48 DSP slices, and 1.93 Mb of on-chip memory, supporting digital signal processing and logic-intensive tasks. The platform also integrates Ethernet connectivity via an RJ-45 interface and HyperRAM memory for external storage. Security features are implemented through a platform management controller. The kit supports power-monitoring and system-evaluation workflows across industrial, medical, networking, and data center applications.
Features of Spartan™ UltraScale+™ FPGA SCU35 Evaluation Kit
The SCU35 evaluation kit enables FPGA-based system development using the Spartan UltraScale+ architecture. It supports multiple expansion interfaces, memory resources, and connectivity options for prototyping and embedded design. Let’s go through its features in detail:
FPGA Architecture and Processing Resources
The kit is based on the Spartan UltraScale+ SU35P FPGA, providing programmable logic resources including system logic cells, LUTs, flip-flops, and DSP slices. These resources support the implementation of custom digital logic, signal processing, and control functions in embedded systems.
Connectivity and Expansion Interfaces
Multiple expansion interfaces are available, including two MikroE click ports, one SYZYGY high-speed connector, four Pmod interfaces, Arduino shield compatibility, and Raspberry Pi HAT connectors. These interfaces enable integration with sensors, communication modules, and external hardware for flexible prototyping.
Memory and Data Handling
The platform includes 64 Mb HyperRAM for external memory storage, supporting buffering and data-intensive applications. On-chip memory resources provide additional storage for logic operations and data processing within the FPGA fabric.
Networking and Communication
An Ethernet interface with 10/100 MII connectivity and an RJ-45 connector enables wired communication for networked applications. This supports integration into industrial networks, control systems, and data exchange environments.
Power Management and Security
The kit supports USB-C power input and includes mechanisms for monitoring power consumption during operation. Security features are implemented through a platform management controller, enabling protection of system configuration and data in FPGA-based designs.
Applications
The AMD / Xilinx Spartan™ UltraScale+™ FPGA SCU35 Evaluation Kit is suitable for prototyping industrial applications such as factory automation, robotics, and IIoT gateways for edge processing and control. In smart city and smart grid systems, it supports data acquisition and communication infrastructure. In medical applications, it is used for smart patient monitoring and robot-assisted surgical systems. For wired and wireless systems, it supports 4G and 5G infrastructure, board controllers, and access network devices. In data center environments, the kit is applied in board management controllers and hyperscale storage systems, enabling hardware acceleration, connectivity management, and system-level control.