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66AK2H06BAAW2 - 1517-FCBGA

66AK2H06BAAW2

Unknown
Texas Instruments

IC DSP ARM SOC 1517FCBGA

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66AK2H06BAAW2 - 1517-FCBGA

66AK2H06BAAW2

Unknown
Texas Instruments

IC DSP ARM SOC 1517FCBGA

Deep-Dive with AI

DocumentsDatasheet

Technical Specifications

Parameters and characteristics for this part

Specification66AK2H06BAAW2
Clock Rate1.2 GHz
InterfaceEBI/EMI, UART/USART, USB 3.0, Ethernet, I2C, SPI, Serial RapidIO, DMA
Mounting TypeSurface Mount
Non-Volatile Memory384 kB
On-Chip RAM8.375 MB
Operating Temperature [Max]85 °C
Operating Temperature [Min]0 °C
Package / CaseFCBGA, 1517-BBGA
Supplier Device Package1517-FCBGA (40x40)
TypeDSP+ARM®
Voltage - CoreVariable
Voltage - I/O1.5 V, 1.35 V, 3.3 V, 1 V, 1.8 V, 0.85 V

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

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Description

General part information

66AK2H06 Series

The 66AK2Hxx platform combines the quad ARM Cortex-A15 processor with up to eight TMS320C66x high-performance DSPs using the KeyStone II architecture. The 66AK2H14/12/06 device provides up to 5.6 GHz of ARM and 9.6 GHz of DSP processing coupled with security, packet processing, and Ethernet switching at lower power than multichip solutions. The 66AK2H14/12/06 device is optimal for embedded infrastructure applications like cloud computing, media processing, high-performance computing, transcoding, security, gaming, analytics, and virtual desktop.

The C66x core combines fixed-point and floating-point computational capability in the processor without sacrificing speed, size, or power consumption. The raw computational performance is 38.4 GMACS/core and 19.2 Gflops/core (@ 1.2 GHz operating frequency). The C66x is also 100% backward compatible with software for C64x+ devices. The C66x core incorporates 90 new instructions targeted for floating point (FPi) and vector math oriented (VPi) processing.

The 66AK2H14/12/06 device has a complete set of development tools that includes: a C compiler, an assembly optimizer to simplify programming and scheduling, and a Windows®debugger interface for visibility into source code execution.

Documents

Technical documentation and resources