TMS320C6472EZTZA6

TMS320C6472EZTZA6

Manufacturer No:

TMS320C6472EZTZA6

Manufacturer:

Texas Instruments

Description:

IC DSP FIXED-POINT 737FCBGA

Datasheet:

Datasheet

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TMS320C6472EZTZA6 Specifications

  • Type
    Parameter
  • Supplier Device Package
    737-FCBGA (24x24)
  • Package / Case
    737-BFBGA, FCBGA
  • Mounting Type
    Surface Mount
  • Operating Temperature
    -40°C ~ 100°C (TC)
  • Voltage - Core
    1.10V
  • Voltage - I/O
    1.8V, 3.3V
  • On-Chip RAM
    1.44MB
  • Non-Volatile Memory
    ROM (768kB)
  • Clock Rate
    625MHz
  • Interface
    Ethernet MAC, Host Interface, I²C, Telecom, UTPOIA
  • Type
    Fixed Point
  • Packaging
    Tube
  • Packaging
    Tube
  • Product Status
    Obsolete
  • Series
    TMS320C647x
The TMS320C6472EZTZA6 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 processing power: The TMS320C6472EZTZA6 is equipped with six C64x+ DSP cores, each capable of running at a clock speed of up to 1.0 GHz. This high processing power makes it suitable for demanding applications that require real-time signal processing, such as multimedia processing, telecommunications, and industrial automation.2. Multicore architecture: The chip's multicore architecture allows for parallel processing, enabling efficient execution of complex algorithms and tasks. This makes it ideal for applications that require high computational capabilities, such as video and audio processing, image recognition, and software-defined radio.3. Integrated peripherals: The TMS320C6472EZTZA6 includes various integrated peripherals, such as Ethernet, USB, and serial interfaces, which simplify system design and reduce the need for external components. These peripherals enable seamless connectivity and data transfer, making the chip suitable for networking applications, data acquisition systems, and communication devices.4. Low power consumption: Despite its high processing power, the TMS320C6472EZTZA6 is designed to be power-efficient. It incorporates power-saving features, such as dynamic voltage and frequency scaling, to optimize power consumption based on the workload. This makes it suitable for battery-powered devices, portable systems, and energy-conscious applications.5. Scalability and flexibility: The TMS320C6472EZTZA6 is part of the TMS320C6000 DSP platform, which offers a range of compatible chips with varying performance levels. This scalability allows developers to choose the appropriate chip based on their application requirements. Additionally, the chip supports various software development tools and libraries, providing flexibility and ease of programming.Application scenarios for the TMS320C6472EZTZA6 include:1. Multimedia processing: The chip's high processing power and integrated peripherals make it suitable for multimedia applications, such as video and audio codecs, image and speech recognition, and real-time video streaming.2. Telecommunications: The TMS320C6472EZTZA6 can be used in telecommunications infrastructure equipment, such as base stations, media gateways, and routers, to handle signal processing tasks, protocol handling, and data packet processing.3. Industrial automation: The chip's real-time processing capabilities and connectivity options make it suitable for industrial automation applications, such as robotics, machine vision, motion control, and process monitoring.4. Medical imaging: The TMS320C6472EZTZA6 can be utilized in medical imaging systems, such as ultrasound machines and MRI scanners, to process and analyze medical images in real-time.5. Software-defined radio (SDR): The chip's high computational power and flexibility make it suitable for SDR applications, where it can handle the real-time processing of radio signals and implement various wireless communication standards.Overall, the TMS320C6472EZTZA6 offers high performance, scalability, and flexibility, making it a versatile choice for applications that require real-time signal processing and high computational capabilities.