Mingjiada Electronics, as a professional core supplier of electronic components, specializes in the supply of Xilinx (now part of AMD) chips, offering comprehensive in-stock availability for the full range of Xilinx SoC FPGA chips. Xilinx SoC FPGAs feature a core architecture combining “FPGA programmable logic + ARM processor,” seamlessly integrating the flexibility of hardware programmability with the convenience of software configurability. Without requiring additional processors, they enable the simultaneous execution of multiple tasks such as embedded control, signal processing, and AI inference. These chips are widely applicable across diverse fields including industrial automation, automotive electronics, communication equipment, and AI edge computing. Leveraging premium global sourcing channels, rigorous quality control systems, and mature supply chains, Mingjiada Electronics delivers comprehensive one-stop services including genuine factory-direct products, flexible spot/forward supply options, and customized selection guidance. This empowers customers to shorten R&D cycles, reduce procurement costs, and accelerate large-scale production deployment.
Below is Mingjiada Electronics' core Xilinx SoC FPGA series, spanning entry-level to flagship offerings and general-purpose to defense-grade solutions. These comprehensively address diverse computational and functional requirements across scenarios. Detailed specifications, representative models, and application scenarios for each series are as follows:
I. Core Supply Series Overview (Full range of genuine OEM products, in-stock items available)
(1) Zynq-7000 SoC Series—Entry-Level High-Value Choice
The Zynq-7000 series is Xilinx's first SoC device integrating an ARM processor with FPGA logic. Built on a 28nm process, it excels in cost-effectiveness and low power consumption while balancing flexibility and practicality. This makes it the preferred solution for cost-sensitive embedded applications. Mingjiada Electronics offers all models of this series in stock, covering both basic and enhanced variants to accommodate both small-batch prototyping and large-scale production needs.
Core Features: Integrates a dual-core ARM Cortex-A9 MPCore processor (up to 800MHz), paired with programmable FPGA logic (6K-444K logic cells). Supports DDR3 memory interfaces with built-in dual-port block RAM (optional ECC parity). Features rich peripherals (USB, GigE, CAN, SPI, etc.) in a low-power, compact package. Enables hardware/software co-design without additional processors, significantly reducing embedded system development complexity and BOM costs.
Representative Models: XC7Z010, XC7Z020, XC7Z030, XC7Z045, XC7Z100 (e.g., XC7Z100-2FFG900I integrates 444,000 logic cells, catering to mid-to-high-end embedded requirements).
Suitable Scenarios: Embedded control, sensor interfaces, display bridging, motor control, industrial IoT terminals, low-cost machine vision, consumer electronics, and other applications. Ideal for cost-sensitive, high-volume deployments with moderate performance requirements.
(II) Zynq UltraScale+ MPSoC Series—Mid-to-High-End All-Purpose Core
The Zynq UltraScale+ MPSoC series represents Xilinx's high-performance SoC FPGA designed for mid-to-high-end embedded scenarios. Built on 16nm FinFET process technology, it delivers comprehensive upgrades in power efficiency, performance, and integration. By integrating multi-core processors, GPUs, video codec units, and high-performance FPGA logic, it serves as the core choice for complex embedded AI and real-time processing scenarios. Mingjiada Electronics offers flexible supply of all models along with comprehensive technical support.
Core Features: dual-core ARM Cortex-A53 application processors (APUs) + dual-core Cortex-R5F real-time processors (RPUs). Select models integrate Mali GPUs and video codec units. The FPGA logic unit offers extensive coverage, supporting DDR4 and LPDDR4 memory (with ECC functionality). It integrates high-speed transceivers (up to 32.75Gbps), supports PCIe Gen4, 100G Ethernet, and other high-speed interfaces. Supports AI acceleration (DPU) for real-time control, AI inference, high-speed data transmission, and video processing in multi-task collaboration. Energy efficiency significantly improved compared to the previous generation, enabling rapid deployment of complex algorithms.
Representative Models: XCZU3EG, XCZU4EV, XCZU5EV, XCZU7EV, XCZU9EG, etc., covering diverse application scenarios from entry-level to high-end, with precise model matching available based on customer requirements.
Suitable Scenarios: Autonomous driving (ADAS), high-end industrial automation control, 5G base station edge processing, medical imaging, test and measurement, high-end machine vision, embedded AI inference, smart transportation, high-end robotics, and other scenarios demanding complex embedded systems with high performance, real-time capabilities, and integration density.
(3) Versal ACAP Series—Next-Generation Adaptive Computing Flagship
The Versal ACAP series represents Xilinx's next-generation Adaptive Compute Acceleration Platform (ACAP), transcending traditional FPGAs. As a high-end flagship SoC FPGA built on a 7nm process, it features a heterogeneous architecture integrating scalar engines, adaptive engines, and intelligent engines. Specifically engineered for demanding applications like AI, 5G, and data centers, Mingjiada Electronics leverages premium supply chain resources to provide genuine factory-direct products and comprehensive technical adaptation services for this series.
Core Features: Integrated ARM Cortex-A72 scalar engines (software processing cores), FPGA adaptive engines (programmable logic cores), and AI intelligent engines (dedicated AI accelerators and DSPs). Supports PCIe Gen5, 400G Ethernet, and HBM3 high-bandwidth memory. The AI engine optimizes machine learning inference and vector operations, supports the Vitis unified development platform to simplify software-hardware co-design, and offers high security and scalability to meet the upgrade demands of high-end computing scenarios for the next decade.
Representative Models: Versal AI Core (optimized for AI and signal processing, featuring extensive AI engines), Versal Premium (targeted at ultra-high-bandwidth communications, supporting 112Gbps transceivers), Versal Prime (general-purpose high-end flagship). Each sub-series precisely aligns with distinct high-end application requirements.
Suitable Scenarios: AI inference, 5G NR (New Radio), cloud acceleration, high-performance data center computing, high-end radar signal processing, aerospace high-end equipment, hyperscale industrial control, and other scenarios demanding extreme computing power, bandwidth, and energy efficiency for high-end applications.
(IV) XQ Defense-Grade SoC FPGA Series—High-Reliability Choice for Defense and Aerospace
The XQ Defense-Grade series represents Xilinx's high-reliability SoC FPGAs engineered specifically for defense and aerospace applications. Built upon optimized core series like Kintex UltraScale and Virtex UltraScale+, it prioritizes enhanced adaptability to extreme environments and security. Mingjiada Electronics provides genuine military-grade supply for this series, meeting procurement demands for high-end specialized scenarios.
Core Features: Military-grade manufacturing and packaging Operating temperature range: -55°C to +125°C Single-Event Upset (SEU) resistant design integrated 256-bit PUF (Physically Unclonable Function) and ECC memory protection for enhanced data and system security. Compatible with core functions of corresponding commercial series while meeting military standards for stability and interference resistance (compliant with MIL-STD-883, etc.), ensuring long-term stable operation in extreme harsh environments.
Representative Models: XQ Kintex UltraScale and XQ Virtex UltraScale+ series, offering diverse logic capacities and performance tiers to meet specialized application requirements.
Target Applications: High-end specialized scenarios including satellite communications, radar systems, missile guidance, aerospace equipment, and defense electronics—suited for applications demanding extreme reliability, interference resistance, and environmental adaptability.
II. Core Supply Advantages of Mingjiada Electronics
1. Full Series Coverage: Comprehensive supply of Xilinx's four core SoC FPGA series—covering entry-level, mid-to-high-end, flagship, and defense-grade models. Complete model range (including discontinued and scarce variants) precisely matches procurement needs across industries and scenarios, eliminating multi-channel price comparisons for one-stop sourcing.
2. Quality Assurance: All chips are genuine Xilinx factory products, rigorously quality-tested to eliminate refurbished or salvaged components. Each batch comes with a quality inspection report, ensuring performance and stability to meet the stringent demands of industrial, defense, and other high-end applications.
3. Flexible Supply Models: Supports spot supply (sufficient inventory for standard models, same-day shipping for orders placed that day) and futures customization (securing supply sources based on customer mass production plans to guarantee delivery cycles). This accommodates diverse procurement needs—from small-batch sampling to large-scale production—and flexibly adapts to changes in customer production schedules.
III. Industry Compatibility and Application Value
Mingjiada Electronics' full range of Xilinx SoC FPGA chips leverage the core advantage of “programmable logic + embedded processor,” finding extensive application across nine core industries: industrial automation, automotive electronics, communication equipment, AI edge computing, defense and aerospace, medical imaging, test and measurement, smart cities, and consumer electronics.
Compared to traditional discrete processor + FPGA solutions, Xilinx SoC FPGAs significantly reduce hardware footprint, lower power consumption and BOM costs, while enhancing system stability and response speed. They enable “hardware customization and flexible software configuration,” empowering customers to rapidly achieve product innovation, address personalized demands across diverse scenarios, and accelerate the intelligent and high-end upgrade processes across industries.
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