Texas Instruments_66AK2H12DAAW2
original

Texas Instruments
66AK2H12DAAW2

698-66AK2H12DAAW2
PDF Datasheet
Multicore DSP+Arm, 4x Arm A15 cores, 8x C66x DSP cores 1517-FCBGA 0 to 85
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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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66AK2H12DAAW2 Description

66AK2H12DAAW2 Description

The 66AK2H12DAAW2 is a high-performance embedded IC chip from Texas Instruments, part of the 66AK2Hx KeyStone Multicore series. This chip integrates a DSP+ARM® architecture, offering a clock rate of 1.2GHz, making it suitable for demanding applications requiring both high computational power and efficient data processing. The device features 384kB of ROM and 12.75MB of on-chip RAM, providing ample non-volatile and volatile memory for complex operations. It supports a wide range of I/O voltages (0.85V, 1.0V, 1.35V, 1.5V, 1.8V, 3.3V) and a variable core voltage, ensuring flexibility in power management.

The 66AK2H12DAAW2 is designed for surface mount technology and comes in a tray package, making it ideal for automated assembly processes. It operates within a temperature range of 0°C to 85°C, ensuring reliability in various environmental conditions. The chip is compliant with REACH and ROHS3 standards, highlighting its suitability for environmentally conscious applications. It also features a Moisture Sensitivity Level (MSL) of 4 (72 Hours), ensuring robustness in manufacturing environments.

66AK2H12DAAW2 Features

  • High Clock Rate: The 1.2GHz clock rate ensures rapid processing capabilities, making it ideal for real-time applications.
  • Multicore Architecture: The combination of DSP and ARM® cores allows for efficient handling of both general-purpose and signal processing tasks.
  • Extensive Memory Options: With 384kB of ROM and 12.75MB of on-chip RAM, the chip can support complex algorithms and large datasets.
  • Flexible I/O Voltage: Multiple I/O voltage options (0.85V, 1.0V, 1.35V, 1.5V, 1.8V, 3.3V) and a variable core voltage provide flexibility in power management.
  • Robust Interfaces: The chip supports a wide range of interfaces, including EBI/EMI, Ethernet, DMA, I2C, Serial RapidIO, SPI, UART/USART, and USB 3.0, facilitating seamless connectivity.
  • Environmental Compliance: REACH Unaffected and ROHS3 Compliant status ensures the chip meets stringent environmental regulations.
  • Reliability: The MSL 4 (72 Hours) rating ensures the chip can withstand moisture exposure during manufacturing processes.

66AK2H12DAAW2 Applications

The 66AK2H12DAAW2 is well-suited for a variety of applications, including but not limited to:

  • Industrial Automation: Its high clock rate and multicore architecture make it ideal for real-time control systems and data-intensive applications.
  • Telecommunications: The extensive interface options and high-speed processing capabilities support advanced communication systems.
  • Automotive: The robustness and reliability features, combined with its wide operating temperature range, make it suitable for automotive electronic control units.
  • Medical Devices: The chip's compliance with environmental standards and its high performance make it a good fit for medical imaging and diagnostic equipment.
  • Consumer Electronics: The flexibility in power management and extensive connectivity options make it suitable for high-performance consumer devices.

Conclusion of 66AK2H12DAAW2

The 66AK2H12DAAW2 from Texas Instruments is a versatile and powerful embedded IC chip designed to meet the demands of modern electronics applications. Its combination of high clock rate, multicore architecture, extensive memory, and flexible power management options make it a standout choice for a wide range of industries. The chip's compliance with environmental standards and its robustness ensure it can be reliably deployed in various operating conditions. Whether for industrial automation, telecommunications, automotive, medical devices, or consumer electronics, the 66AK2H12DAAW2 offers a reliable and high-performance solution.

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