Texas Instruments_66AK2H14BAAW24
original

Texas Instruments
66AK2H14BAAW24

698-66AK2H14BAAW24
PDF Datasheet
Multicore DSP+Arm, 4x Arm A15 cores, 8x C66x DSP cores, 10GE 1517-FCBGA 0 to 0

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Tech Specifications

Max Operating Temperature
85
Number of Terminals
1517
Min Operating Temperature
0
Terminal Position
BOTTOM
JEDEC Package Code
S-PBGA-B1517
Width
40
Length
40
Temperature Grade
OTHER
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66AK2H14BAAW24 Description

66AK2H14BAAW24 Description

The 66AK2H14BAAW24 is a-performance high DSP+ARM® System on Chip (SoC) from Texas Instruments, belonging to the 66AK2Hx KeyStone Multicore series. This embedded IC chip is designed for demanding applications requiring robust processing capabilities and efficient power management. The SoC integrates a 1.2GHz DSP core and a 1.4GHz ARM® core, providing versatile processing options for complex tasks. It features 384kB of ROM and 12.75MB of on-chip RAM, ensuring ample storage for embedded applications. The device operates within a temperature range of 0°C to 85°C and supports various I/O voltages, including 0.85V, 1.0V, 1.35V, 1.5V, 1.8V, and 3.3V, making it suitable for a wide range of environments. The 66AK2H14BAAW24 is packaged in a tube and has a surface mount type, facilitating easy integration into compact designs. It also includes a comprehensive set of interfaces such as EBI/EMI, Ethernet, DMA, I2C, Serial RapidIO, SPI, UART/USART, and USB 3.0, enhancing its connectivity options. Despite being marked as obsolete, the 66AK2H14BAAW24 remains a reliable choice for legacy systems and specific applications where its unique features are still advantageous.

66AK2H14BAAW24 Features

  • Dual-Core Architecture: Combines a 1.2GHz DSP core with a 1.4GHz ARM® core, offering optimized performance for both digital signal processing and general-purpose computing tasks.
  • Non-Volatile Memory: Equipped with 384kB of ROM, providing reliable storage for firmware and critical data.
  • On-Chip RAM: 12.75MB of on-chip RAM ensures efficient data handling and reduces latency for high-speed processing.
  • Operating Temperature: Designed to operate within a temperature range of 0°C to 8°C5, making it suitable for industrial and commercial applications.
  • Voltage Flexibility: Supports multiple I/O voltages (0.85V, 1.0V, 1.35V, 1.5V, 1.8V, and 3.3V), enhancing compatibility with various peripheral devices.
  • Rich Interface Options: Features a wide range of interfaces including EBI/EMI, Ethernet, DMA, I2C, Serial RapidIO, SPI, UART/USART, and USB 3.0, facilitating seamless communication and integration.
  • Compliance and Safety: Complies with REACH and ROHS3 standards, ensuring environmental safety and regulatory compliance.
  • Packaging and Mounting: Available in a tube package with surface mount type, suitable for compact and space-constrained designs.

66AK2H14BAAW24 Applications

The 66AK2H14BAAW24 is ideal for applications requiring high computational performance and efficient power management. Its dual-core architecture makes it suitable for complex tasks involving both signal processing and general-purpose computing. Specific use cases include:

  • ** AutomationIndustrial**: Provides robust processing capabilities for real-time control systems, data acquisition, and machine learning applications.
  • Telecommunications: Ideal for baseband processing, signal modulation, and demodulation in communication systems.
  • Medical Devices: Supports high-speed data processing and real-time monitoring in medical imaging and diagnostic equipment.
  • Aerospace and Defense: Offers reliable performance and security features for avionics, radar systems, and secure communication devices.
  • Consumer Electronics: Enhances the performance of smart devices, multimedia systems, and IoT gateways.

Conclusion of 66AK2H14BAAW24

The 66AK2H14BAAW24 from Texas Instruments is a versatile and powerful SoC that combines a high-performance DSP core with a capable ARM® processor. Its extensive feature set, including substantial on-chip memory and a wide range of interfaces, makes it suitable for a variety of demanding applications. Despite being marked as obsolete, the 66AK2H14BAAW24 remains a reliable choice for legacy systems and specific applications where its unique capabilities are still highly advantageous. Its compliance with industry standards and safety regulations further ensures its suitability for critical applications in various industries.

FAQ

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