TMX320C6472CZTZ7

TMX320C6472CZTZ7

Manufacturer No:

TMX320C6472CZTZ7

Manufacturer:

Texas Instruments

Description:

IC DSP FIXED POINT 737FCBGA

Datasheet:

Datasheet

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TMX320C6472CZTZ7 Specifications

  • Type
    Parameter
  • Supplier Device Package
    737-FCBGA (24x24)
  • Package / Case
    737-BFBGA, FCBGA
  • Mounting Type
    Surface Mount
  • Operating Temperature
    0°C ~ 85°C (TC)
  • Voltage - Core
    1.20V
  • Voltage - I/O
    1.8V, 3.3V
  • On-Chip RAM
    1.44MB
  • Non-Volatile Memory
    ROM (768kB)
  • Clock Rate
    700MHz
  • Interface
    Ethernet MAC, Host Interface, I²C, Telecom, UTPOIA
  • Type
    Fixed Point
  • Packaging
    Tray
  • Product Status
    Obsolete
  • Series
    TMS320C647x
The TMX320C6472CZTZ7 is a high-performance digital signal processor (DSP) integrated circuit chip developed by Texas Instruments. It offers several advantages and can be applied in various scenarios:1. High Performance: The TMX320C6472CZTZ7 chip is designed to deliver high processing power with a clock speed of up to 1.2 GHz. It has multiple cores and supports multi-threading, enabling it to handle complex computational tasks efficiently.2. Digital Signal Processing: As a DSP chip, the TMX320C6472CZTZ7 is specifically optimized for digital signal processing applications. It offers a wide range of built-in instructions and hardware accelerators, making it ideal for tasks such as audio and video processing, telecommunications, radar systems, and industrial automation.3. Low Power Consumption: Despite its high performance, the TMX320C6472CZTZ7 chip is designed to be power-efficient. It incorporates power management features that allow it to dynamically adjust its power consumption based on the workload, making it suitable for battery-powered devices or applications with strict power constraints.4. Connectivity and Interfaces: The TMX320C6472CZTZ7 chip provides various connectivity options and interfaces, including Ethernet, USB, Serial ATA (SATA), and Serial RapidIO (SRIO). This makes it suitable for applications requiring high-speed data transfer, networking, or interfacing with other devices.5. Real-Time Processing: The TMX320C6472CZTZ7 chip is capable of real-time processing, meaning it can handle time-critical tasks with low latency. This makes it suitable for applications that require immediate response and processing, such as real-time control systems, robotics, and audio/video streaming.6. Scalability: The TMX320C6472CZTZ7 chip is part of the Texas Instruments' TMS320C64x+ DSP family, which offers a range of compatible chips with varying performance levels. This allows for scalability, where the same software and development tools can be used across different chips, making it easier to upgrade or customize the system based on specific requirements.Application scenarios for the TMX320C6472CZTZ7 chip include:1. Audio and Video Processing: The chip can be used in audio and video processing systems, such as professional audio equipment, video conferencing systems, and multimedia devices.2. Telecommunications: The TMX320C6472CZTZ7 chip can be applied in telecommunications infrastructure, including base stations, voice over IP (VoIP) gateways, and wireless communication systems.3. Industrial Automation: It can be used in industrial automation systems for tasks like motor control, robotics, and machine vision.4. Radar and Sonar Systems: The chip's high-performance DSP capabilities make it suitable for radar and sonar systems used in defense, aerospace, and maritime applications.5. Medical Imaging: The TMX320C6472CZTZ7 chip can be utilized in medical imaging devices, such as ultrasound machines and magnetic resonance imaging (MRI) systems.6. Automotive Electronics: It can be applied in automotive electronics for tasks like advanced driver assistance systems (ADAS), infotainment systems, and engine control units (ECUs).Overall, the TMX320C6472CZTZ7 chip's high performance, power efficiency, and real-time processing capabilities make it a versatile choice for a wide range of applications requiring digital signal processing.