Manufacturer Part Number
TMS320DM6467TCUTD1
Manufacturer
Texas Instruments
Introduction
TMS320DM6467TCUTD1 is a high-performance Digital Media System-on-Chip belonging to Texas Instruments' TMS320DM646x, DaVinci™ series, tailored for advanced digital media applications.
Product Features and Performance
Integrates a 1GHz Digital Signal Processor and 500MHz ARM® core
Offers versatile interfaces including EBI/EMI, Ethernet, HPI, I2C, McASP, PCI, SPI, UART, USB
8kB of Non-Volatile ROM and 248kB On-Chip RAM
High-speed system performance suitable for multimedia processing
Can handle complex digital signal processing algorithms efficiently
Product Advantages
Simultaneous high-speed DSP and ARM processing capabilities
Wide range of interfaces for enhanced connectivity
Suitable for multitasking in demanding environments
Key Technical Parameters
1GHz Clock Rate for DSP
500MHz Clock Rate for ARM® core
8V and 3.3V I/O Voltages
30V Core Voltage
-40°C to 85°C Operating Temperature Range
529-BFBGA, FCBGA Mounting Package
Quality and Safety Features
Rugged 529-FCBGA (19x19) package ensuring secure and reliable mounting
Operates effectively over an industrial temperature range, maintaining performance under extreme conditions
Compatibility
Broad interfaces for compatibility with various peripheral and I/O options
Application Areas
Multimedia processing and streaming
High-definition imaging and video applications
Digital media networking
Industrial automation
Product Lifecycle
Product Status: Active
Not near discontinuation, with ongoing support and potential for replacements or upgrades available
Several Key Reasons to Choose This Product
Superior performance with integrated dual-core processor setup (DSP and ARM)
Comprehensive connectivity and interface options cater to varied applications
High reliability with an extensive industrial temperature range and robust packaging
Supported by Texas Instruments' proven track record in DSP technology
Optimal choice for cutting-edge digital media applications requiring multitasking and high data throughput