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168-CSPBGA

ADSP-BF516KBCZ-3

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Analog Devices Inc./Maxim Integrated

LOW POWER BLACKFIN WITH ADVANCED EMBEDDED CONNECTIVITY

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168-CSPBGA

ADSP-BF516KBCZ-3

Active
Analog Devices Inc./Maxim Integrated

LOW POWER BLACKFIN WITH ADVANCED EMBEDDED CONNECTIVITY

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Description

General part information

ADSP-BF516 Series

The Blackfin processor family is extended further into the industrial and instrumentation market with the availability of an on chip eMAC, a 3-phase PWM generation unit and a quadrature encoder. 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 allow system designers a flexible platform to address a wide range of connected applications, including motor control, power line monitoring, biometrics, pro-audio and femto cells.The embedded eMAC of the BF516F coupled with a 400MHz CPU and a plethora of other peripherals make the BF516F the most attractive choice for demanding network connected systems.The VoIP challenge to the embedded-system designer is to choose a processing solution that is cost-effective, easy to deploy and scaleable in performance across market spaces. A "sweet spot" embedded-solution approach is to design with a platform that can implement a low channel count basic VoIP solution, yet retain sufficient capacity for value added capabilities and services – such as video, music, imaging and system control. Unlike traditional VoIP embedded solutions that utilize two processor cores to provide VoIP functionality, the ADSP-BF516F provides a convergent solution in a unified core architecture that allows voice and video signal processing concurrent with RISC MCU processing to handle network and user-interface demands. This unique ability to offer full VoIP functionality on a single convergent processor provides for a unified software development environment, faster system debugging and deployment, and lower overall system cost.The BF516F also brings ultra low power and a removable storage interface covering SDIO, CE-ATA and eMMC for portable devices.IP protection has become a necessary part of today’s embedded computing applications. The ADSP-BF516F provides a security scheme which balances flexibility and upgradeability with performance through the inclusion of a firmware-based solution including OTP (One Time Programmable) memory to enable users to implement private keys for secure access to program code.The BF516F includes an integrated 4Mb serial Flash (SPI) memory alongside the processor.FLASH Memory Data Sheets:4Mbit SPI Flash memory

Technical Specifications

Parameters and characteristics for this part

SpecificationADSP-BF516KBCZ-3
Clock Rate (Frequency)300 MHz
InterfaceRSI, SPI, I2C, PPI, UART/USART, SPORT, Ethernet
Mounting TypeSurface Mount
Non-Volatile Memory TypeExternal
On-Chip RAM116 kB
Operating Temperature (Max)70 °C
Operating Temperature (Min)0 °C
Package / Case168-LFBGA, CSPBGA
Package Length12 mm
Package Name168-CSPBGA
Package Width12 mm
TypeFixed Point
Voltage - Core1.3 V
Voltage - I/O (Option 1)1.8 V
Voltage - I/O (Option 2)2.5 V
Voltage - I/O (Option 3)3.3 V

Pricing

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CAD

3D models and CAD resources for this part

Documents

Technical documentation and resources

Blackfin Processor Family
ADSP-BF516KBCZ-3 | Datasheet
EE-334: Using Blackfin®Processor Hibernate State for Low Standby Power (Rev.1)
EE-306: PGO Linker - A Code Layout Tool for Blackfin Processors (Rev.1)
EE-323: Implementing Dynamically Loaded Software Modules (Rev.1)
EE-304: Using the Blackfin® Processor SPORT to Emulate a SPI Interface (Rev.1)
VisualDSP++®5.0 Quick Installation Reference Card (Rev.3.1)
EE-149: Tuning C Source Code for the Blackfin® Processor Compiler
EE-192: Using C To Create Interrupt-Driven Systems On Blackfin® Processors
ADSP-BF512/ADSP-BF514/ADSP-BF516/ADSP-BF518(F) Blackfin Embedded Processor Obsolete Data Sheet (Rev.C)
EE-350: Seamlessly Interfacing MEMS Microphones with Blackfin Processors (Rev.1)
EE-197: ADSP-BF531/532/533 Blackfin® Processor Multi-cycle Instructions and Latencies
EE-68: Analog Devices JTAG Emulation Technical Reference (Rev.10)
EE-340: Connecting SHARC®and Blackfin®Processors over SPI (Rev.1)
EE-110: A Quick Primer on ELF and DWARF File Formats
EE-175: Emulator and Evaluation Hardware Troubleshooting Guide for VisualDSP++ Users (Rev.14)
EE-301: Video Templates for Developing Multimedia Applications on Blackfin® Processors (Rev.1)
ICE-1000/ICE-2000 Emulator User’s Guide (Rev.1.2)
EE-307: Blackfin® Processor Troubleshooting Tips Using VisualDSP++® Tools (Rev.1)
EE-339: Using External Switching Regulators with Blackfin® Processors (Rev.1)
EE-234: Interfacing T1/E1 Transceivers/Framers to Blackfin® Processors via the Serial Port (Rev.1)
VisualDSP++®5.0 C/C++ Compiler and Library Manual for Blackfin Processors (Rev.5.4)
EE-308: Estimating and Optimizing Booting Time for Blackfin® Processors (Rev.1)
VisualDSP++®5.0 Getting Started Guide (Rev.3.0)
Blackfin®/SHARC®USB EZ-Extender®Manual (Rev.1.1)
EE-330: Windows Vista Compatibility in VisualDSP++ 5.0 Development Tools (Rev.1)
EE-325: Interfacing Atmel Fingerprint Sensor AT77C104B with Blackfin® Processors (Rev.1)
EE-303: Using VisualDSP++® Thread-Safe Libraries with a Third-Party RTOS (Rev.1)
EE-367: Flash Programmer Drivers for ADSP-BF51xF16 Blackfin® Processors (Rev.1)
VisualDSP++®5.0 Product Release Bulletin (Rev.3.0)
EE-281: Hardware Design Checklist for the Blackfin® Processors (Rev.2)
EE-269: A Beginner’s Guide to Ethernet 802.3 (Rev.1)
EE-335: Interfacing SD Cards with Blackfin Processors (Rev.1)
EE-302: Interfacing ADSP-BF53x Blackfin® Processors to NAND FLASH Memory (Rev.1)
EE-333: Interfacing Blackfin® Processors to Winbond W25X16 SPI Flash Devices (Rev.1)
EE-309: Power Mode Transition Times of Blackfin® Processors (Rev.1)
ADSP-BF5xx/ADSP-BF60x Blackfin® Processor Programming Reference (Rev.2.2)
HPUSB, USB, and HPPCI Emulator User’s Guide (Rev.3.2)
EE-276: Video Framework Considerations for Image Processing on Blackfin® Processors (Rev.1)
EE-311: VisualDSP++® Flash Programmer API for Blackfin® Processors (Rev.1)
ADSP-BF51x Blackfin®Processor Hardware Reference (Rev.1.2)
ICE-100B Emulator User’s Guide (Rev.1.1)
EE-104: Setting Up Streams with the VisualDSP Debugger
EE-128: DSP in C++: Calling Assembly Class Member Functions From C++
VisualDSP++®5.0 Assembler and Preprocessor Manual (Rev.3.4)
VisualDSP++®5.0 Loader and Utilities Manual (Rev.2.5)
VisualDSP++®5.0 Users Guide (Rev.3.0)
EE-271: Using Cache Memory on Blackfin® Processors (Rev.2)
EE-261: Understanding Jitter Requirements of PLL-Based Processors (Rev.1)
Package Drawing - 168-Ball CSPBGA (12mm x 12mm x 1.6mm)
ADSP-BF512/ADSP-BF514/ADSP-BF516/ADSP-BF518 Blackfin Embedded Processor Data Sheet (Rev.E)
EE-347: Formatted Print to a UART Terminal with Blackfin® Processors (Rev.3)
VisualDSP++®5.0 Linker and Utilities Manual (Rev.3.5)
EE-257: A Boot Compression/Decompression Algorithm for Blackfin® Processors (Rev.1)
EE-213: Host Communication via the Asynchronous Memory Interface for Blackfin® Processors (Rev.2)
EE-326: Blackfin® Processor and SDRAM Technology (Rev.2)
VisualDSP++®5.0 Kernel (VDK) Users Guide (Rev.3.5)
EE-324: System Optimization Techniques for Blackfin® Processors (Rev.1)
EE-183: Rational Sample Rate Conversion with Blackfin® Processors (Rev.5)
EE-312: Building Complex VDK/LwIP Applications Using Blackfin® Processors (Rev.2)
EE-235: An Introduction to Scripting in VisualDSP++® (Rev.1)
EE-236: Real-Time Solutions Using Mixed-Signal Front-End Devices with the Blackfin®Processor (Rev.1)
EE-204: Blackfin® Processor SCCB Software Interface for Configuring I2C® Slave Devices (Rev.2)
EE-185: Fast Floating-Point Arithmetic Emulation on Blackfin® Processors (Rev.4)
VisualDSP++®5.0 Licensing Guide (Rev.1.4)
VisualDSP++®5.0 Device Drivers and System Services Manual for Blackfin Processors (Rev.4.3)