XC4VLX200-11FFG1513I

Fabricante: AMD / Xilinx
Células lógicas: 200,448
Rebanadas lógicas: 21,120
RAM integrada (eRAM): 6,048,000 bits
Paquete: FFG1513
Temperatura de funcionamiento: ?40°C a +100°C (Industrial)

ENVÍANOS UN MENSAJE

    Especificaciones

    MODELO P/N SERIE NÚMERO DE LABORATORIOS/CLBS GRADO DE VELOCIDAD NÚMERO DE ELEMENTOS LÓGICOS / CELDAS TOTAL BITS RAM NÚMERO DE E/S TENSIÓN - ALIMENTACIÓN TIPO DE MONTAJE TEMPERATURA DE FUNCIONAMIENTO PAQUETE / ESTUCHE PAQUETE DEL DISPOSITIVO DEL PROVEEDOR
    XC4VLX200-11FFG1513I Virtex-4 LX 22.272,00 -11,00 200448 6193152 960 1,14 V ~ 1,26 V Montaje en superficie -40 °C ~ +100 °C (industrial) 1513-BBGA (FCBGA) 1513-FCBGA

    XC4VLX200-11FFG1513I: Ultra-High Density FPGA for Mission-Critical Industrial Systems

    En XC4VLX200-11FFG1513I represents the maximum logic capacity and highest performance tier within the Xilinx Virtex®-4 LX family. Combining a massive 200,448 Logic Cells with the superior -Grado de pendiente de 11 y Temperatura industrial rating, this device is specifically engineered for architects who require zero-compromise logic density and timing precision in harsh environments.

    Housed in the 1513-pin Flip-Chip BGA package, it offers the highest I/O count in its class, making it the premier choice for large-scale system integration and high-bandwidth data processing.

    Ventajas clave de ingeniería

    • Peak Logic Capacity: With over 200k Logic Cells, the LX200 is the ultimate “System-on-Chip” platform for the Virtex-4 generation, capable of hosting multiple complex IP cores, soft processors (MicroBlaze), and massive custom RTL logic without routing bottlenecks.

    • High-Speed Timing (-11 Speed Grade): The -11 grade provides critical timing headroom over the standard -10 models. It is essential for achieving timing closure in designs running 300MHz+ internal fabric speeds or high-speed memory interfaces.

    • Massive On-Chip Memory: Características 6,048 Kb of Block RAM, enabling deep data buffering for high-throughput networking packets or high-resolution video frames without the latency of external memory.

    • Fiabilidad de grado industrial: Rated for junction temperatures from De -40 °C a +100 °C, ensuring long-term stability for outdoor telecommunications, aerospace ground equipment, and heavy industrial automation.

    • Lead-Free High-Density Package (FFG1513): The RoHS-compliant Flip-Chip BGA package features an optimized pin-out for signal integrity, minimizing Simultaneous Switching Noise (SSN) even when driving hundreds of I/Os simultaneously.


    Technical Specification Matrix

    Sistema métrico Especificación
    Células lógicas 200,448
    Bloque total RAM 6,048 Kb
    DSP48 Slices 96
    User I/Os 960
    Grado de velocidad -11 (Alto rendimiento)
    Grado de temperatura Industrial (-40°C a +100°C)
    Tipo de envase FFG1513 (Lead-Free Flip-Chip BGA)
    Tecnología de procesos 90nm ASMBL™ Architecture

    Why Source the LX200-11I?

    1. Scalability Without Compromise

    The LX200 is often the designated choice for high-end “legacy-plus” systems. If your design has outgrown the LX160, the LX200 provides a seamless migration path within the same architecture, offering nearly 25% more logic resources.

    2. Signal Integrity at Scale

    Con 960 available User I/Os, the FF1513 package is a masterpiece of signal integrity engineering. It provides enough ground and power pins to support wide, high-speed parallel buses while maintaining a clean EMI profile—a critical factor for industrial certifications.

    3. Timing Headroom in Saturated Designs

    As FPGA utilization exceeds 80%, routing delays typically increase. The -Grado de pendiente de 11 mitigates this “congestion penalty,” giving designers the extra nanoseconds needed to meet setup and hold requirements in highly congested layouts.


    Primary Applications

    • Defense & Signal Intelligence: High-bandwidth radar signal processing and electronic warfare systems.

    • Imágenes médicas: Real-time 3D/4D reconstruction in MRI and CT scanners.

    • Communications: 10G/40G backplane switching and high-speed protocol conversion.

    • ASIC Prototyping: Large-scale logic verification and hardware-in-the-loop (HIL) simulation.