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ADSP-21161NKCAZ100

ADSP-21161NKCAZ100

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Analog Devices Inc./Maxim Integrated

DSP FLOATING-POINT 32BIT 100MHZ 225-PIN CSP-BGA TRAY

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ADSP-21161NKCAZ100

ADSP-21161NKCAZ100

Active
Analog Devices Inc./Maxim Integrated

DSP FLOATING-POINT 32BIT 100MHZ 225-PIN CSP-BGA TRAY

Find alt

Description

General part information

ADSP-21161N Series

The ADSP-21161 SHARC®DSP is the newest member of the Super Harvard Architecture (SHARC) family of programmable DSPs. Capable of 600 million math operations per second (MFLOPs), the ADSP-21161 sets a new level of performance for low-cost SHARC DSPs - more than three times the performance for comparable models at about the same price. Its road map includes a cost-effective path to 1200 MFLOPS for $5 per unit and a performance-driven path to 10 GFLOPS and beyond."This newest edition to the SHARC family will open more possibilities for designers to design-in high performance digital signal processing into client-side applications and should help others reconsider applications they couldn’t do before with a single chip," said Will Strauss, president of Forward Concepts. "Analog Devices will certainly maintain customer loyalty with this road map."The ADSP-21161 DSP is the second member of the SHARC DSP family of 32-bit floating-point programmable DSPs to be based on a SIMD core architecture that is optimized for digital signal processing performance. Like all SHARCs, the ADSP-21161 is code-compatible with all other members of the family and supports both fixed- and floating-point data types. The ADSP-21161 lowers the price for SIMD SHARC DSP performance and is an outstanding DSP solution for many price-sensitive applications.State-of-the-Art Development ToolsThe ADSP-21161, like all SHARC processors, is supported by a complete set of software and hardware development tools. The VisualDSP++®tool set offered by Analog Devices includes an optimizing C/C++ compiler, integrated development environment (IDE), assembler, linker, splitter and cycle accurate simulator that support both C and assembly debugging. Emulation support is JTAG-based and ADI offers USB, PCI, and Ethernet based emulators.SHARC DSP RoadmapThere are two code-compatible paths that the SHARC DSP roadmap will follow. One optimized for high-performance multiprocessing systems and the other for price/performance. Performance is the key for multiprocessing applications and this is the reason that ADI will offer 10 GFLOP SHARC DSPs in the future. On-chip memory sizes will be balanced to match this performance with memories increasing to unprecedented levels (64 Mbit) using newly developed technologies.Industry leading price/performance will be the driver on the other path of the roadmap. In the future, these SHARC DSPs will offer an increase in performance to 1200 MFLOPs while decreasing price to as low as $5.00. This is required to support new technologies that demand substantial signal processing performance at consumer price points.

Technical Specifications

Parameters and characteristics for this part

SpecificationADSP-21161NKCAZ100
Clock Rate (Frequency)100 MHz
InterfaceHost Interface, Serial Port, Link Port
Mounting TypeSurface Mount
Non-Volatile Memory TypeExternal
On-Chip RAM128 kB
Operating Temperature (Max)85 °C
Operating Temperature (Min)0 °C
Package / CaseCSPBGA, 255-BGA
Package Length17 mm
Package Name255-CSPBGA
Package Width17 mm
TypeFloating Point
Voltage - Core1.8 V
Voltage - I/O3.3 V

Pricing

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CAD

3D models and CAD resources for this part

Documents

Technical documentation and resources

ADSP-21161NKCAZ100 | Datasheet
EE-305: Designing and Debugging Systems with SHARC Processors (Rev.1)
TN: Considerations for Selecting a DSP Processor ADSP-21161 vs TMS360C6711/12
EE-199: Link Port Booting the ADSP-21161 SHARC® DSP
EZ-KIT Lite for Analog Devices ADSP-21161N SHARC Processor
Package Drawing - 225-Ball CSPBGA (17mm x 17mm)
EE-332: Cycle Counting and Profiling (Rev.2)
EE-223: In-Circuit Flash Programming on SHARC® Processors (Rev.2)
EE-128: DSP in C++: Calling Assembly Class Member Functions From C++
EE-68: Analog Devices JTAG Emulation Technical Reference (Rev.10)
EE-138: Recommended Handling of Unused ADSP-21161 Pins
EE-209: Asynchronous Host Interface on ADSP-21161N SHARC® Processors (Rev.2)
EE-177: SHARC® SPI Slave Booting (Rev.3)
EE-191: Implementing a Glueless UART Using The SHARC® DSP SPORTs
ADSP-21161N_SHARC_Anomaly_List_for_Revisions 0.3,1.0,1.1,1.2,1.3 (Rev.P)
EE-259: Interfacing AD7865 Parallel ADCs to ADSP-21161 SHARC® Processors (Rev.1)
EE-330: Windows Vista Compatibility in VisualDSP++ 5.0 Development Tools (Rev.1)
SHARC Processor Family
EE-141: Benchmarking C Code on the ADSP-2106x and the ADSP-2116x Family of DSPs
Apex-ICE USB Emulator Hardware Installation Guide (Rev.6.0)
EE-180: Using Code Overlays from ROM on the ADSP-21161N EZ-KIT Lite
EE-202: Using the Expert Linker for Multiprocessor LDFs (Rev.3)
Summit-ICE PCI Emulator Hardware Installation Guide (Rev.4)
EE-212: Connecting the AD74111 Mono Audio Codec Evaluation Board to the ADSP-21161N SHARC® EZ-KIT™ Lite Board
EE-194: Connecting the AD1836A Evaluation Board to the ADSP-21161N SHARC EZ-KIT Lite™
EE-323: Implementing Dynamically Loaded Software Modules (Rev.1)
EE-270: Extended-Precision Fixed-Point Arithmetic on SIMD SHARC® Processors (Rev.1)
EE-151: Implementing Software Data Overlays for the ADSP-21161 Using the EZ-KIT
TN: Interfacing the ADSP-21161 SIMD SHARC DSP to the AD1836 (24-bit/96 kHz) Multichannel Codec
EE-340: Connecting SHARC®and Blackfin®Processors over SPI (Rev.1)
EE-110: A Quick Primer on ELF and DWARF File Formats
EE-134: Writing C Compatible Assembly Code Interrupt Handlers for the SHARC® Family
EE-56: Tips and Tricks on SHARC® EPROM and Host Boot Loader (Rev.3)
EE-241: SHARC® DSPs to TigerSHARC® Processors Code Porting Guide (Rev.1)
EE-132: Placing C Code and Data Modules in SHARC memory using VisualDSP++™
EE-163: ADSP-21161N SHARC On-chip SDRAM Controller (Rev.2)
ADSP-21161N EZ-KIT Lite®Evaluation System Manual (Rev.4.0)
EE-328: Migrating from ADSP-2106x/2116x to ADSP-2126x/2136x/2137x SHARC® Processors (Rev.1)
EE-253: Power Bypass Decoupling of SHARC® Processors (Rev.1)
EE-219: Connecting Character LCD Panels to ADSP-21262 SHARC® DSPs (Rev.1)
ADSP-21161 SHARC®Processor Hardware Reference (Rev.4.0)
EE-69: Understanding and Using Linker Description Files on SHARC Processors (Rev.2)
EE-278: Interfacing NAND Flash Memory with ADSP-21161 SHARC® Processors (Rev.1)
EE-261: Understanding Jitter Requirements of PLL-Based Processors (Rev.1)
ADSP-21160 SHARC®DSP Instruction Set Reference (Rev.2.1)
EE-175: Emulator and Evaluation Hardware Troubleshooting Guide for VisualDSP++ Users (Rev.14)
EE-104: Setting Up Streams with the VisualDSP Debugger
EE-267: Implementing In-Place FFTs on SISD and SIMD SHARC® Processors (Rev.1)
EE-136: Using the Programmable I/O FLAGS and IOFLAG register on the ADSP-21161