TMS320C6412AGNZ7

TMS320C6412AGNZ7

Manufacturer No:

TMS320C6412AGNZ7

Manufacturer:

Texas Instruments

Description:

IC FIXED-POINT DSP 548-FCBGA

Datasheet:

Datasheet

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TMS320C6412AGNZ7 Specifications

  • Type
    Parameter
  • Supplier Device Package
    548-FCBGA (27x27)
  • Package / Case
    548-BBGA, FCBGA
  • Mounting Type
    Surface Mount
  • Operating Temperature
    0°C ~ 90°C (TC)
  • Voltage - Core
    1.40V
  • Voltage - I/O
    3.30V
  • On-Chip RAM
    288kB
  • Non-Volatile Memory
    External
  • Clock Rate
    720MHz
  • Interface
    Host Interface, McBSP, PCI
  • Type
    Fixed Point
  • Packaging
    Tray
  • Packaging
    Bulk
  • Product Status
    Active
  • Series
    TMS320C6410/12/13/18
The TMS320C6412AGNZ7 is a high-performance digital signal processor (DSP) chip developed by Texas Instruments. It offers several advantages and can be applied in various scenarios:1. High Performance: The TMS320C6412AGNZ7 is based on the TMS320C64x DSP core, which provides high processing power and performance. It operates at a clock frequency of up to 720 MHz, enabling it to handle complex signal processing tasks efficiently.2. Multichannel Audio and Video Processing: The chip supports multichannel audio and video processing, making it suitable for applications such as audio and video codecs, multimedia systems, and digital audio workstations. It can handle real-time encoding, decoding, and transcoding of audio and video streams.3. Real-Time Signal Processing: The TMS320C6412AGNZ7 is designed for real-time signal processing applications, where low latency and high throughput are crucial. It is commonly used in applications like telecommunications, radar systems, medical imaging, and industrial automation, where real-time processing of signals is required.4. Integrated Peripherals: The chip includes various integrated peripherals, such as a high-speed external memory interface, multiple serial ports, general-purpose I/O pins, and a direct memory access (DMA) controller. These peripherals enhance the chip's versatility and enable seamless integration with other components in a system.5. Software Development Tools: Texas Instruments provides a comprehensive software development kit (SDK) for the TMS320C6412AGNZ7, including a C compiler, assembler, debugger, and various libraries. These tools simplify the development process and enable programmers to efficiently utilize the chip's capabilities.6. Low Power Consumption: Despite its high performance, the TMS320C6412AGNZ7 is designed to be power-efficient. It incorporates power-saving features like dynamic voltage and frequency scaling, which allow the chip to adjust its power consumption based on the processing requirements. This makes it suitable for battery-powered devices and applications with strict power constraints.Application scenarios for the TMS320C6412AGNZ7 include:1. Audio and Video Processing: The chip can be used in audio and video codecs, multimedia systems, and professional audio equipment to process and encode/decode audio and video streams.2. Telecommunications: It can be applied in telecommunications infrastructure equipment, such as base stations, media gateways, and voice over IP (VoIP) systems, to handle real-time signal processing tasks.3. Medical Imaging: The chip's high-performance capabilities make it suitable for medical imaging applications, including ultrasound machines, MRI scanners, and digital X-ray systems, where real-time processing of medical signals is required.4. Industrial Automation: The TMS320C6412AGNZ7 can be used in industrial automation systems for tasks like motor control, robotics, and machine vision, where real-time signal processing and control are essential.5. Radar Systems: It can be employed in radar systems for signal processing tasks like target detection, tracking, and signal analysis.Overall, the TMS320C6412AGNZ7 offers high performance, real-time signal processing capabilities, and a range of integrated peripherals, making it suitable for a wide range of applications that require efficient and powerful digital signal processing.