ADSP-BF514F16 Blackfin Embedded Processor with 16 Mbits Flash memory and RSI

The ADSP-BF512, ADSP-BF514/ADSP-BF514F16, ADSP-BF516, ADSP-BF518/ADSP-BF518F16 processors are members of the Blackfin® family of products, incorporating the Analog Devices/Intel Micro Signal Architecture (MSA). Blackfin processors combine a dual-MAC state-of-the-art signal processing engine, the advantages of a clean, orthogonal RISC-like microprocessor instruction set, and single-instruction, multiple-data (SIMD) multimedia capabilities into a single instruction-set architecture. The ADSP-BF514F16 products have been introduced to replace the now obsolete ADSP-BF51xF products. The processors are completely code compatible with other Blackfin processors. By integrating a rich set of industry-leading system peripherals and memory, Blackfin processors are the platform of choice for next-generation applications that require RISC-like programmability, multimedia support, and leading-edge signal processing in one integrated package. PORTABLE LOW POWER ARCHITECTURE Blackfin processors provide world-class power management and performance. They are produced with a low power and low voltage design methodology and feature on-chip dynamic power management, which is the ability to vary both the voltage and frequency of operation to significantly lower overall power consumption. This capability can result in a substantial reduction in power consumption, compared with just varying the frequency of operation. This allows longer battery life for portable appliances. SYSTEM INTEGRATION The ADSP-BF51x processors are highly integrated system-on-achip solutions for the next generation of embedded network connected applications. By combining industry-standard interfaces with a high performance signal processing core, costeffective applications can be developed quickly, without the need for costly external components. The system peripherals include an IEEE-compliant 802.3 10/100 Ethernet MAC with IEEE-1588 support (ADSP-BF518/ADSP-BF518F16 only), an RSI controller, a TWI controller, two UART ports, two SPI ports, two serial ports (SPORTs), nine general-purpose 32-bit timers (eight with PWM capability), 3-phase PWM for motor control, a real-time clock, a watchdog timer, and a parallel peripheral interface (PPI). BLACKFIN PROCESSOR CORE As shown in Figure 2, the Blackfin processor core contains two 16-bit multipliers, two 40-bit accumulators, two 40-bit ALUs, four video ALUs, and a 40-bit shifter. The computation units process 8-, 16-, or 32-bit data from the register file. The compute register file contains eight 32-bit registers. When performing compute operations on 16-bit operand data, the register file operates as 16 independent 16-bit registers. All operands for compute operations come from the multiported register file and instruction constant fields. Each MAC can perform a 16-bit by 16-bit multiply in each cycle, accumulating the results into the 40-bit accumulators. Signed and unsigned formats, rounding, and saturation are supported. The ALUs perform a traditional set of arithmetic and logical operations on 16-bit or 32-bit data. In addition, many special instructions are included to accelerate various signal processing tasks. These include bit operations such as field extract and population count, modulo 232 multiply, divide primitives, saturation and rounding, and sign/exponent detection. The set of video instructions include byte alignment and packing operations, 16-bit and 8-bit adds with clipping, 8-bit average operations, and 8-bit subtract/absolute value/accumulate (SAA) operations. The compare/select and vector search instructions are also provided.

The ADSP-BF514F16 products have been introduced to replace the now obsolete ADSP-BF51xF products. The processors are completely code compatible with other Blackfin processors.

By integrating a rich set of industry-leading system peripherals and memory, Blackfin processors are the platform of choice for next-generation applications that require RISC-like programmability, multimedia support, and leading-edge signal processing in one integrated package.

SYSTEM INTEGRATION

The ADSP-BF51x processors are highly integrated system-on-achip solutions for the next generation of embedded network connected applications. By combining industry-standard interfaces with a high performance signal processing core, costeffective applications can be developed quickly, without the need for costly external components. The system peripherals include an IEEE-compliant 802.3 10/100 Ethernet MAC with IEEE-1588 support (ADSP-BF518/ADSP-BF518F16 only), an RSI controller, a TWI controller, two UART ports, two SPI ports, two serial ports (SPORTs), nine general-purpose 32-bit timers (eight with PWM capability), 3-phase PWM for motor control, a real-time clock, a watchdog timer, and a parallel peripheral interface (PPI).

BLACKFIN PROCESSOR CORE

As shown in Figure 2, the Blackfin processor core contains two 16-bit multipliers, two 40-bit accumulators, two 40-bit ALUs, four video ALUs, and a 40-bit shifter. The computation units process 8-, 16-, or 32-bit data from the register file.

The compute register file contains eight 32-bit registers. When performing compute operations on 16-bit operand data, the register file operates as 16 independent 16-bit registers. All operands for compute operations come from the multiported register file and instruction constant fields.

Each MAC can perform a 16-bit by 16-bit multiply in each cycle, accumulating the results into the 40-bit accumulators. Signed and unsigned formats, rounding, and saturation are supported.

The ALUs perform a traditional set of arithmetic and logical operations on 16-bit or 32-bit data. In addition, many special instructions are included to accelerate various signal processing tasks. These include bit operations such as field extract and population count, modulo 232 multiply, divide primitives, saturation and rounding, and sign/exponent detection. The set of video instructions include byte alignment and packing operations, 16-bit and 8-bit adds with clipping, 8-bit average operations, and 8-bit subtract/absolute value/accumulate (SAA) operations. The compare/select and vector search instructions are also provided.

Features and Benefits
  • Up to 400MHz high performance Blackfin processor
    Two 16-bit MACs, two 40-bit ALUs, four 8-bit video ALUs, 40-bit shifter
    RISC-like register and instruction model for ease of programming and compiler-friendly support
  • Wide range of operating voltages
  • Qualified for Automotive Applications
  • 168-ball CSP_BGA or 176-lead LQFP_EP (with exposed pad)
  • Memory
    116K bytes of on-chip memory
    External memory controller with glueless support for SDRAM and asynchronous 8-bit and 16-bit memories
    Optional 16M bit SPI flash with boot option
  • Peripherals
    IEEE 802.3-compliant 10/100 Ethernet MAC with IEEE 1588 support (ADSP-BF518/ADSP-BF518F16 only)
    Parallel peripheral interface (PPI), supporting ITU-R 656 video data formats
  • See datasheet for additional features
Processors & DSP
Building Technology
  • LED General Lighting
Data Sheets
Documentnote
ADSP-BF512/ADSP-BF514/ADSP-BF514F16/ADSP-BF516/ADSP-BF518/ADSP-BF518F16 Blackfin Embedded Processor Data Sheet (Rev. D)
Documentation Errata
PDF 2.56 M
Application Notes
Documentnote
EE-112: Class Implementation in Analog C++PDF 31.54 K
EE-356: Emulator and Evaluation Hardware Troubleshooting Guide for CCES Users (Rev. 2)
EE-356: Associated Files
PDF 779.29 K
EE-213: Host Communication via the Asynchronous Memory Interface for Blackfin® Processors (Rev. 2)PDF 134 kB
EE-360: Utilizing the Trigger Routing Unit for System Level Synchronization (Rev. 1)
EE-360: Code Example
PDF 211 kB
EE-364: Implementing Second-Stage Loaders for ADSP-BF60x Blackfin® Processors (Rev. 1)
EE-364: Code Example
PDF 480.43 K
EE-367: Flash Programmer Drivers for ADSP-BF51xF16 Blackfin® Processors (Rev. 1)
EE-367: Code Example
PDF 359 kB
EE-362: ADSP-BF60x Blackfin® Processors System Optimization Techniques (Rev. 1)
EE-362: Code Example
PDF 747 kB
EE-365: Maximizing ADC Sampling Rate on ADSP-CM40x Mixed-Signal Control Processors (Rev. 1)
EE-365: Code example
PDF 508 kB
EE-358: Interfacing Red/Clear Sensors to ADSP-BF609® Blackfin Processors (Rev. 1)PDF 319 kB
EE-354: UART Enhancements on ADSP-BF60x Blackfin® Processors (Rev. 1)PDF 109 kB
EE-352: Soldering Considerations for Exposed-Pad Packages (Rev. 1)
EE-352: Associated Files
PDF 680 kB
EE-351: Using the ADSP-BF592 Blackfin® Processor Tools Utility ROM (Rev. 2)
EE-351: Associated Spreadsheet
PDF 168 kB
EE-350: Seamlessly Interfacing MEMS Microphones with Blackfin Processors (Rev. 1)
EE-350: Code Example
PDF 701 kB
EE-335: Interfacing SD Cards with Blackfin Processors (Rev. 1)
EE-335: Code Example
PDF 2666 kB
EE-347: Formatted Print to a UART Terminal with Blackfin® Processors (Rev. 3)
EE-347: Code example
PDF 112 kB
EE-339: Using External Switching Regulators with Blackfin® Processors (Rev. 1)PDF 163 kB
EE-332: Cycle Counting and Profiling (Rev. 2)
EE-332: Code example
PDF 142 kB
EE-331: UART Enhancements on ADSP-BF54x Blackfin® Processors (Rev. 1)PDF 81 kB
EE-326: Blackfin® Processor and SDRAM Technology (Rev. 2)
EE-326: Code example
PDF 958 kB
EE-271: Using Cache Memory on Blackfin® Processors (Rev. 2)
EE-271: Code example
PDF 1634 kB
EE-240: ADSP-BF533 Blackfin® Booting Process (Rev. 4)
EE-240: Code example
PDF 332 kB
EE-340: Connecting SHARC® and Blackfin® Processors over SPI (Rev. 1)
EE-340: Code example
PDF 209 kB
EE-337: Host DMA Port on ADSP-BF52x and ADSP-BF54x Blackfin® Processors (Rev. 1)
EE-337: Code example
PDF 614 kB
EE-336: Putting ADSP-BF54x Blackfin® Processor Booting into Practice (Rev. 1)
EE-336: Code example
PDF 151 kB
EE-301: Video Templates for Developing Multimedia Applications on Blackfin® Processors (Rev. 1)
EE-301: Video Template Code
PDF 175 kB
EE-229: Estimating Power for ADSP-BF531/BF532/BF533 Blackfin® Processors (Rev. 4)
EE-229: Power Spreadsheets
PDF 188 kB
EE-312: Building Complex VDK/LwIP Applications Using Blackfin® Processors (Rev. 2)
EE-312: Code example
PDF 162 kB
EE-344: Using the NAND Flash Controller on Blackfin Processors (Rev. 1)
Code example
PDF 2531 kB
EE-281: Hardware Design Checklist for the Blackfin® Processors (Rev. 2)PDF 77 kB
EE-297: Estimating Power for ADSP-BF534/BF536/BF537 Blackfin® Processors (Rev. 3)
EE-297: Power Spreadsheets
PDF 236 kB
EE-341: Expert Pin Multiplexing Plug-in for Blackfin® Processors (Rev. 3)
EE-341: Code Example
PDF
EE-112: Class Implementation in Analog C++ adsp-ts101s
EE-356: Emulator and Evaluation Hardware Troubleshooting Guide for CCES Users (Rev. 2) adsp-ts101s
EE-356: Associated Files adsp-ts101s
EE-213: Host Communication via the Asynchronous Memory Interface for Blackfin® Processors (Rev. 2) adsp-bf561
EE-360: Utilizing the Trigger Routing Unit for System Level Synchronization (Rev. 1) adsp-cm403f
EE-360: Code Example adsp-cm403f
EE-364: Implementing Second-Stage Loaders for ADSP-BF60x Blackfin® Processors (Rev. 1) adsp-bf561
EE-364: Code Example adsp-bf561
EE-367: Flash Programmer Drivers for ADSP-BF51xF16 Blackfin® Processors (Rev. 1) adsp-bf561
EE-367: Code Example adsp-bf561
EE-362: ADSP-BF60x Blackfin® Processors System Optimization Techniques (Rev. 1) adsp-bf561
EE-362: Code Example adsp-bf561
EE-365: Maximizing ADC Sampling Rate on ADSP-CM40x Mixed-Signal Control Processors (Rev. 1) adsp-bf561
EE-365: Code example adsp-bf561
EE-358: Interfacing Red/Clear Sensors to ADSP-BF609® Blackfin Processors (Rev. 1) adsp-bf561
EE-354: UART Enhancements on ADSP-BF60x Blackfin® Processors (Rev. 1) adsp-bf561
EE-352: Soldering Considerations for Exposed-Pad Packages (Rev. 1) adsp-21262
EE-352: Associated Files adsp-21262
EE-351: Using the ADSP-BF592 Blackfin® Processor Tools Utility ROM (Rev. 2) adsp-bf561
EE-351: Associated Spreadsheet adsp-bf561
EE-350: Seamlessly Interfacing MEMS Microphones with Blackfin Processors (Rev. 1) adsp-bf561
EE-350: Code Example adsp-bf561
EE-335: Interfacing SD Cards with Blackfin Processors (Rev. 1) adsp-bf561
EE-335: Code Example adsp-bf561
EE-347: Formatted Print to a UART Terminal with Blackfin® Processors (Rev. 3) adsp-bf561
EE-347: Code example adsp-bf561
EE-271: 高速缓冲存储器在Blackfin®处理器中的应用 (Rev. 1) adsp-bf561
EE-339: 采用外部开关电源为Blackfin®处理器供电 (Rev. 1) adsp-bf561
EE-338: Blackfin®处理器与电力线网络物理层器件Intellon INT5200的接口 (Rev. 2) adsp-bf561
EE-338: Associated ZIP File (Rev 1, 05/2008) adsp-bf561
EE-333: Blackfin®处理器与Winbond W25X16 SPI Flash设备的连接 (Rev. 1) adsp-bf561
EE-333: Associated Code (Rev 1, 1/2008) adsp-bf561
EE-332: 周期计数与分析 adsp-ts101s
EE-331: ADSP-BF54x Blackfin®处理器增强的UART (Rev. 1) adsp-bf561
EE-326: Blackfin®处理器与SDRAM技术 (Rev. 2) adsp-bf561
EE-339: Using External Switching Regulators with Blackfin® Processors (Rev. 1) adsp-bf561
EE-332: Cycle Counting and Profiling (Rev. 2) adsp-ts101s
EE-332: Code example adsp-ts101s
EE-331: UART Enhancements on ADSP-BF54x Blackfin® Processors (Rev. 1) adsp-bf561
EE-326: Blackfin® Processor and SDRAM Technology (Rev. 2) adsp-bf561
EE-326: Code example adsp-bf561
EE-271: Using Cache Memory on Blackfin® Processors (Rev. 2) adsp-bf561
EE-271: Code example adsp-bf561
EE-240: ADSP-BF533 Blackfin® Booting Process (Rev. 4) adsp-bf561
EE-185: Blackfin®处理器上快速浮点运算模拟 (Rev. 4) adsp-bf561
EE-185: Associated Code (Rev 4, 08/2007) adsp-bf561
EE-307: Blackfin®处理器利用VisualDSP++®工具的调试方法 (Rev. 1) adsp-bf561
EE-341: Blackfin®专用管脚复用插件 (Rev. 1) adsp-bf561
EE-341: Code example (Rev 1, 05/2008) adsp-bf561
EE-340: SHARC®处理器和Blackfin®处理器的SPI 连接 (Rev. 1) adsp-21262
EE-337: ADSP-BF52x 和ADSP-BF54x Blackfin®处理器上的主DMA 接口 (Rev. 1) adsp-bf561
EE-336: ADSP-BF54x Blackfin®处理器的启动 (Rev. 1) adsp-bf561
EE-334: 利用Blackfin®处理器休眠状态实现待机低功耗 (Rev. 1) adsp-bf561
EE-301: Blackfin®处理器上开发多媒体应用软件的视频模板 (Rev. 1) adsp-bf561
EE-281: Blackfin®处理器硬件设计注意事项 (Rev. 2) adsp-bf561
EE-229: ADSP-BF531/BF532/BF533 Blackfin®功耗估算 (Rev. 4) adsp-bf561
EE-175: 仿真器与EZ-KIT Lite®评估系统问题解决指南 (Rev. 10) adsp-ts101s
EE-175: RMA forms (Rev 10, 11/2007) adsp-ts101s
EE-149: 调试Blackfin®处理器编译C 源代码 adsp-bf561
EE-68: JTAG 仿真技术参考 (Rev. 10) adsp-ts101s
EE-340: Connecting SHARC® and Blackfin® Processors over SPI (Rev. 1) adsp-21262
EE-340: Code example adsp-21262
EE-337: Host DMA Port on ADSP-BF52x and ADSP-BF54x Blackfin® Processors (Rev. 1) adsp-bf561
EE-337: Code example adsp-bf561
EE-336: Putting ADSP-BF54x Blackfin® Processor Booting into Practice (Rev. 1) adsp-bf561
EE-336: Code example adsp-bf561
EE-301: Video Templates for Developing Multimedia Applications on Blackfin® Processors (Rev. 1) adsp-bf561
EE-301: Video Template Code adsp-bf561
EE-229: Estimating Power for ADSP-BF531/BF532/BF533 Blackfin® Processors (Rev. 4) adsp-bf561
EE-229: Power Spreadsheets adsp-bf561
EE-312: Building Complex VDK/LwIP Applications Using Blackfin® Processors (Rev. 2) adsp-bf561
EE-312: Code example adsp-bf561
EE-344: Using the NAND Flash Controller on Blackfin Processors (Rev. 1) adsp-bf561
Code example adsp-bf561
EE-281: Hardware Design Checklist for the Blackfin® Processors (Rev. 2) adsp-bf561
EE-297: Estimating Power for ADSP-BF534/BF536/BF537 Blackfin® Processors (Rev. 3) adsp-bf561
EE-297: Power Spreadsheets adsp-bf561
EE-341: Expert Pin Multiplexing Plug-in for Blackfin® Processors (Rev. 3) adsp-bf561
EE-341: Code Example adsp-bf561
EE-338: Interfacing Blackfin® Processors to the Intellon INT5200 HomePlug PHY (Rev. 2) adsp-bf561
EE-338: Associated ZIP File adsp-bf561
EE-334: Using Blackfin® Processor Hibernate State for Low Standby Power (Rev. 1) adsp-bf561
EE-334: Associated ZIP File adsp-bf561
EE-120: Interfacing Assembly Language Programs to C adsp-ts101s
EE-321: Connecting Blackfin® Processors to the AD7656 SAR ADC (Rev. 1) adsp-bf561
EE-321: Associated ZIP File adsp-bf561
EE-333: Interfacing Blackfin® Processors to Winbond W25X16 SPI Flash Devices (Rev. 1) adsp-bf561
EE-333: Associated Code adsp-bf561
EE-323: Implementing Dynamically Loaded Software Modules (Rev. 1) adsp-21262
EE-323: Associated Code adsp-21262
EE-245: AD7276高速数据转换器与ADSP-BF535 Blackfin®处理器的接口 (Rev. 1) adsp-bf561
EE-245 Software Code adsp-bf561
EE-330: Windows Vista Compatibility in VisualDSP++ 5.0 Development Tools (Rev. 1) adsp-ts101s
EE-185: Fast Floating-Point Arithmetic Emulation on Blackfin® Processors (Rev. 4) adsp-bf561
EE-185: Associated Code (Rev 4, 08/2007) adsp-bf561
EE-325: Interfacing Atmel Fingerprint Sensor AT77C104B with Blackfin® Processors (Rev. 1) adsp-bf561
EE-325: Code Example adsp-bf561
EE-298: Estimating Power for ADSP-BF538/BF539 Blackfin® Processors (Rev. 2) adsp-bf561
EE-298: Power Spreadsheets adsp-bf561
EE-324: System Optimization Techniques for Blackfin® Processors (Rev. 1) adsp-bf561
EE-324: Associated Code adsp-bf561
EE-293: Estimating Power for ADSP-BF561 Blackfin® Processors (Rev. 2) adsp-bf561
EE-293: Power Spreadsheets adsp-bf561
EE-315: Changing the PHY in the Ethernet Driver for Blackfin® Processors (Rev. 1) adsp-bf561
EE-315: Associated Code adsp-bf561
EE-175: Emulator and Evaluation Hardware Troubleshooting Guide for VisualDSP++ Users (Rev. 14) adsp-ts101s
EE-175: Associated Files adsp-ts101s
EE-314: Booting the ADSP-BF561 Blackfin® Processor (Rev. 1) adsp-bf561
EE-314: Associated Code adsp-bf561
EE-311: VisualDSP++® Flash Programmer API for Blackfin® Processors (Rev. 1) adsp-bf561
EE-311: Code Example adsp-bf561
EE-310: Running Two Network Interfaces with ADSP-BF537 Blackfin® Processors (Rev. 1) adsp-bf561
EE-310: Code Example adsp-bf561
EE-307: Blackfin® Processor Troubleshooting Tips Using VisualDSP++® Tools (Rev. 1) adsp-bf561
EE-308: Estimating and Optimizing Booting Time for Blackfin® Processors (Rev. 1) adsp-bf561
EE-308: Associated ZIP File adsp-bf561
EE-309: Power Mode Transition Times of Blackfin® Processors (Rev. 1) adsp-bf561
EE-306: PGO Linker - A Code Layout Tool for Blackfin Processors (Rev. 1) adsp-bf561
EE-306: Associated File adsp-bf561
EE-304: Using the Blackfin® Processor SPORT to Emulate a SPI Interface (Rev. 1) adsp-bf561
EE-304: Associated Source Code adsp-bf561
EE-303: Using VisualDSP++® Thread-Safe Libraries with a Third-Party RTOS (Rev. 1) adsp-ts101s
EE-302: Interfacing ADSP-BF53x Blackfin® Processors to NAND FLASH Memory (Rev. 1) adsp-bf561
EE-300: Interfacing Blackfin® EZ-KIT Lite® Boards to CMOS Image Sensors (Rev. 1) adsp-bf561
EE-300: Sensor Table adsp-bf561
EE-289: Implementing FAT32 File Systems on ADSP-BF533 Blackfin® Processors (Rev. 1) adsp-bf561
EE-289 Software Code adsp-bf561
EE-258: Interfacing Micron MT9V022 Image Sensors to Blackfin® Processors (Rev. 2) adsp-bf561
EE-256: Using the ADSP-BF561 Blackfin® Processor as a TFT-LCD Controller (Rev. 2) adsp-bf561
EE-256 Software Code adsp-bf561
EE-288: USB OTG Interface for ADSP-BF533 Blackfin® Processors (Rev. 1) adsp-bf561
EE-288 Software Code adsp-bf561
EE-242: PWM and Class-D Amplifiers with ADSP-BF535 Blackfin® Processors (Rev. 2) adsp-bf561
EE-242 Software Code adsp-bf561
EE-276: Video Framework Considerations for Image Processing on Blackfin® Processors (Rev. 1) adsp-bf561
EE-273: Using the VisualDSP++ Command-Line Installer (Rev. 1) adsp-ts101s
EE-272: Managing Multiple DXEs on ADSP-BF561 Blackfin® Processors (Rev. 1) adsp-bf561
EE-272 Software Code adsp-bf561
EE-269: A Beginner’s Guide to Ethernet 802.3 (Rev. 1) adsp-bf561
EE-262: ADSP-BF537 Blackfin® Highlights for ADSP-BF533 Users (Rev. 2) adsp-bf561
EE-262 Software Code adsp-bf561
EE-265: Using ADSP-BF561 Blackfin® Processor Flag Pins to Emulate the PCM Interface (Rev. 1) adsp-bf561
EE-265 Software Code adsp-bf561
EE-261: Understanding Jitter Requirements of PLL-Based Processors (Rev. 1) adsp-ts101s
EE-228: Switching Regulator Design Considerations for ADSP-BF533 Blackfin® Processors (Rev. 1) adsp-bf561
EE-240: ADSP-BF533 Blackfin®加载过程 (Rev. 4) adsp-bf561
EE-240: Code example adsp-bf561
EE-257: A Boot Compression/Decompression Algorithm for Blackfin® Processors (Rev. 1) adsp-bf561
EE-257 Software Code adsp-bf561
EE-254: Interfacing ADSP-21365 SHARC® PDAP to ADSP-BF533 Blackfin® EBIU (Rev. 1) adsp-21262
EE-254 Software Code adsp-21262
EE-245: Interfacing AD7276 High-Speed Data Converters to ADSP-BF535 Blackfin® Processors (Rev. 1) adsp-bf561
EE-245 Software Code adsp-bf561
EE-202: Using the Expert Linker for Multiprocessor LDFs (Rev. 3) adsp-ts101s
EE-202 Software Code adsp-ts101s
EE-236: Real-Time Solutions Using Mixed-Signal Front-End Devices with the Blackfin® Processor (Rev. 1) adsp-bf561
EE-236 Software Code adsp-bf561
EE-234: Interfacing T1/E1 Transceivers/Framers to Blackfin® Processors via the Serial Port (Rev. 1) adsp-bf561
Software Code and Schematics adsp-bf561
EE-239: Running Programs from Flash on ADSP-BF533 Blackfin® Processors (Rev. 1) adsp-bf561
EE-235: An Introduction to Scripting in VisualDSP++® (Rev. 1) adsp-ts101s
EE-214: Ethernet Network Interface for ADSP-BF535 Blackfin® Processors adsp-bf561
EE-187: Using the PCI Interface on the ADSP-BF535 Blackfin® Processor in Host Mode adsp-bf561
EE-187 Software Code adsp-bf561
EE-183: Rational Sample Rate Conversion with Blackfin® Processors (Rev. 5) adsp-bf561
EE-183 Software Code adsp-bf561
EE-210: SDRAM Selection and Configuration Guidelines for ADI Processors (Rev. 2) adsp-ts101s
EE-207: Using the ADSP-BF535 Blackfin Processor's PCI interface in the Device Mode adsp-bf561
EE-207 Software Code adsp-bf561
EE-197: ADSP-BF531/532/533 Blackfin® Processor Multi-cycle Instructions and Latencies adsp-bf561
EE-206: ADSP-BF535 Blackfin Processor PCI Interface Performance adsp-bf561
EE-203: Interfacing the ADSP-BF535/ADSP-BF533 Blackfin® Processor to NTSC/PAL video decoder over the asynchronous port. adsp-bf561
EE-162: Interfacing the ADSP-21535 to AD9860/2 High-Speed Converters over the External Memory Bus adsp-bf561
EE-162 Software Code adsp-bf561
EE-196: ADSP-BF535 Blackfin® EZ-KIT Lite™ CompactFlash® Interface adsp-bf561
EE-196 Software Code adsp-bf561
EE-192: Using C To Create Interrupt-Driven Systems On Blackfin® Processors adsp-bf561
EE-184: Interfacing EPSON S1D13806 memory display controller to Blackfin® Processors adsp-bf561
EE-193: Interfacing the ADSP-BF535 Blackfin® Processor to the AD73322L Codec adsp-bf561
EE-193 Software Code adsp-bf561
EE-181: Interfacing the ADSP-BF535 Blackfin® Processor to Single-Chip CIF Digital Camera “OV6630” Over the External Memory Bus adsp-bf561
EE-181 Software Code, Gerber Files and Schematics adsp-bf561
EE-68: Analog Devices JTAG Emulation Technical Reference (Rev. 10) adsp-ts101s
EE-149: Tuning C Source Code for the Blackfin® Processor Compiler adsp-bf561
EE-172: Using the Dynamic Power Management Functionality of the ADSP-BF535 Blackfin® Processor adsp-bf561
EE-171: ADSP-BF535 Blackfin® Processor Multi-cycle Instructions and Latencies adsp-bf561
EE-132: Placing C Code and Data Modules in SHARC memory using VisualDSP++™ adsp-21262
EE-132 Software Code adsp-21262
EE-128: DSP in C++: Calling Assembly Class Member Functions From C++ adsp-ts101s
EE-126: The ABCs of SDRAMemories (Rev. 1) adsp-ts101s
EE-110: A Quick Primar on ELF and DWARF File Formats adsp-ts101s
EE-159: Initializing DSP System & Control Registers From C and C++ adsp-ts101s
EE-104: Setting Up Streams with the VisualDSP Debugger adsp-ts101s
EE-104 Software Code adsp-ts101s
EE-74: Analog Devices Serial Port Development and Troubleshooting Guide adsp-21262
EE-103: Performing Level Conversion Between 5v and 3.3v IC's adsp-ts101s
ADSP-BF51x Blackfin ® Processor Hardware Reference (Rev. 1.2) adsp-bf512
ADSP-BF5xx/ADSP-BF60x Blackfin® Processor Programming Reference (Rev. 2.2) adsp-bf561
CrossCore® Embedded Studio 2.4.0 Assembler and Preprocessor Manual (Rev. 1.8) adsp-21262
CrossCore® Embedded Studio 2.4.0 Linker and Utilities Manual (Rev. 1.8) adsp-21262
CrossCore® Embedded Studio 2.4.0 Loader and Utilities Manual (Rev. 1.8) adsp-21262
CrossCore® Embedded Studio 2.4.0 C/C++ Compiler and Library Manual for Blackfin Processors (Rev. 1.8) adsp-bf561
lwIP for CrossCore® Embedded Studio 1.0.0 User’s Guide (Rev. 1.1) adsp-21262
CrossCore软件许可指南,修订版1.1,2012年7月(pdf,360 kB) (Rev. 1.4) adsp-21262
CrossCore® Software Licensing Guide (Rev. 1.5) adsp-21262
VisualDSP++® 5.0 Assembler and Preprocessor Manual (Rev. 3.4) adsp-ts101s
VisualDSP++® 5.0 C/C++ Compiler and Library Manual for Blackfin Processors (Rev. 5.4) adsp-bf561
VisualDSP++® 5.0 Loader and Utilities Manual (Rev. 2.5) adsp-ts101s
VisualDSP++® 5.0 Device Drivers and System Services Manual for Blackfin Processors (Rev. 4.3) adsp-bf561
VisualDSP++® 5.0 Licensing Guide (Rev. 1.4) adsp-ts101s
VisualDSP++® 5.0 Kernel (VDK) Users Guide (Rev. 3.5) adsp-ts101s
VisualDSP++® 5.0 Linker and Utilities Manual (Rev. 3.5) adsp-ts101s
VisualDSP++® 5.0 Users Guide (Rev. 3.0) adsp-ts101s
VisualDSP++® 5.0 Quick Installation Reference Card (Rev. 3.1) adsp-ts101s
VisualDSP++® 5.0 Getting Started Guide (Rev. 3.0) adsp-ts101s
VisualDSP++® 5.0 Product Release Bulletin (Rev. 3.0) adsp-ts101s
HPUSB, USB, and HPPCI Emulator User’s Guide (Rev. 3.2) adsp-21262
ICE-100B Emulator User’s Guide (Rev. 1.1) adsp-21262
Blackfin/SHARC USB EZ-Extender手册,修订版1.1,2012年7月 (Rev. 1.1) adsp-21262
Blackfin®/SHARC® USB EZ-Extender® Manual (Rev. 1.1) adsp-21262