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This document explains how to interface parallel ADCs to ADSP-21161 SHARC® processors. The parallel ADC considered in this application note is AD7865. This application note also provides example code to demonstrate how the SHARC processor’s external port can be programmed to receive data from the AD7865 in core and DMA modes.
This document describes a boot compression/decompression algorithm for ADSP-BF533 and ADSP-BF561 Blackfin® processors. The code included with this document was verified using the VisualDSP++® 3.5 tools suite for Blackfin processors. The project was run on an EZ-KIT Lite® evaluation system for ADSP-BF533 Blackfin processors (ADDS-BF533-EZLITE, Rev 1.2) and on an EZ-KIT Lite evaluation system for ADSP-BF561 Blackfin processors.
This document discusses the technical notes on using Analog Devices DSPs, processors, and development tools, specifically focusing on porting PC-based MP3 player software to ADSP-21262 SHARC® processors. It provides an overview of the features and characteristics of the ADSP-21262 processors.
This document is a technical note on using Analog Devices DSPs, processors, and development tools, specifically focusing on the interface between the ADSP-21365 SHARC® PDAP and the ADSP-BF533 Blackfin® EBIU. The ADSP-21365 processors offer a high-bandwidth input data port (PDAP) for data acquisition from an external device, automatically packing the received data into 32-bit words. The document provides information on technical support and online resources.
This application note explains how to interface an AD7676 analog-to-digital (ADC) converter in master serial mode (internal discontinuous clock) with SHARC® ADSP-21065L processors. This application note also provides example code to demonstrate how to program the ADSP-21065L processor's serial port to receive data from the AD7676 converter when the AD7676 is configured in master serial mode.
This document analyzes the power consumption of ADSP-21375 SHARC® processors and introduces the characterization data measured over power supply voltage, core frequency (CCLK), and junction temperature (TJ) to help board designers estimate their power budget for power supply design and relief designs using ADSP-21375 processors.
This document discusses the power consumption of ADSP-21371 SHARC® processors based on characterization data measured over power supply voltage, core frequency (CCLK), and junction temperature (TJ).
This document introduces system optimization techniques for Blackfin® processors, including external memory access latency optimization and system resource utilization optimization.
Introduces energy-aware programming technology on Blackfin® processors, including the technology's features and advantages, and how to use the technology to improve processor performance.
This EE-Note describes how to achieve networking functionality with ADSP- BF536/ADSP-BF537 Blackfin® processors together with MII-compatible Ethernet Physical Layer Transceivers (PHYs) other than the SMSC LAN83C185, which is populated on the ADSP- BF537 EZ-KIT Lite® evaluation system.