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Revolutionary vector processor
From early Motorola and TI DSPs to modern smartphone DSPs in application processors, DSPs have been designed and optimized for increasingly higher degree of integration, computing power, and power efficiency. In terms of the processor architecture, DSP went from the first-generation VLIW architecture to the second-generation vector processor architecture.
The vector processor design was first seen on the Cray-1 supercomputer. It is now implemented in the Hexagon DSP in Qualcomm's latest smartphones APs. RiVAI is the world's first to apply the vector processor architecture in professional audio DSPs.
The vector processor design was first seen on the Cray-1 supercomputer. It is now implemented in the Hexagon DSP in Qualcomm's latest smartphones APs. RiVAI is the world's first to apply the vector processor architecture in professional audio DSPs.
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Block Diagram of the Revolutionary vector processor
Audio DSP IP
- Modern Audio DSP, designed for battery operated, high-performance, audio and voice applications
- Modern, high performance Audio DSP, optimized for far-field noise reduction and Artificial Intelligence speech recognition
- Multifunctional DSP Architecture for High-Performance, Low-Power Audio/Voice/Sensing and Wireless Communication Applications
- Low-power, low-gate-count, highly-configurable DSP core for audio and control processing
- I2S/Left-Justified/TDM Digital Audio Interface
- High Performance Scalable Sensor Hub DSP Architecture