Blackfin Processor for Automotive Navigation, Entertainment and Audio Systems
Model: ADSP-BF539
Media transceiver (MXVR) for connection to a MOST® automotive multi-media network
Powerful and flexible cache architecture suitable for soft real-time control tasks and industry-standard operating systems, plus hard real-time signal processing tasks
Applications-tuned peripherals provide glueless connectivity to general-purpose converters in data acquisition applications
Enhanced dynamic power management with on-chip voltage regulation
High performance 16-/32-bit embedded processor core
The blackfin processor family has been expanded to address the ever-increasing need for more connection possibilities with new family members. This connectivity is coupled with the high performance 16-/32-bit blackfin embedded processor core, the flexible cache architecture, the enhanced DMA subsystem, and the dynamic power management (DPM) functionality. System designers can take advantage of the combined control and signal processing capabilities of the processor core through code compatibility of these new family members with existing blackfin offerings. The ADSP-BF539 is designed and targeted for use as the system control processor in control and signal processing rich applications such as automotive navigation systems, audio head units and audio amplifiers. Dynamic power management additionally lowers power consumption and minimizes power dissipation in enclosed applications.
Media transceiver (MXVR) for connection to a MOST® automotive multi-media network
Powerful and flexible cache architecture suitable for soft real-time control tasks and industry-standard operating systems, plus hard real-time signal processing tasks
Applications-tuned peripherals provide glueless connectivity to general-purpose converters in data acquisition applications
Enhanced dynamic power management with on-chip voltage regulation
High performance 16-/32-bit embedded processor core
10-stage RISC MCU/DSP pipeline with mixed 16-/32-bit ISA for optimal code density
Full SIMD architecture, including instructions for accelerated video and image processing
Memory management unit (MMU) supporting full memory protection for an isolated and secure environment