| Value | Deliverables |
|---|---|
| Programmable Systems Integration | Programmable hardware accelerators, flexible serial/parallel interconnect, and scalable logic to deliver driver assistance feature bundles on a single flexible platform. |
| Increased System Performance | Tightly coupled dual-core ARM® Cortex™-A9 processor and Artix™-7 FPGA fabric for optimal partitioning and computational performance supporting multi-feature advanced driver assistance processing efficiency. |
| BOM Cost Reduction | Multi-chip designs integrated into one device with hardware accelerators increases performance and decreases cost meeting price thresholds and closing the cost/performance gap. |
| Total Power Reduction | Decreased power through parallel processing at lower clock speeds, high integration, and optimized processes increasing compute requirements which can be at odds with a fixed power budget. |
| Accelerated Design Productivity | Available advanced Driver Assistance development platforms eliminates months from development schedules enabling faster times to demonstration and production. |
XA Zynq™-7000 All Programmable SoC is ideally suited to the high computation requirements of advanced driver assistance systems (ADAS). The combined programmability of hardware and software means that functions within the ADAS imaging flow, from sensing through environmental characterization to feature implementation, can be moved between hardware and software to maximize performance and minimize resources.
| Name | File Size | Modified Date |
|---|---|---|
| Xilinx Automotive Zynq-7000 Product Brief | 4.29 MB | 10/01/2012 |