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TMS320C6413ZTSA500

TITMS320C6413ZTSA500

Texas Instruments
Fixed Point Digital Signal Processor (DSP) 500MHz 288-FCBGA (23x23)
Active41 in stock

Overview

The TMS320C6413ZTSA500 is a high-performance fixed-point Digital Signal Processor (DSP) based on the VelociTI.2 VLIW architecture. It operates at 500MHz and delivers up to 4000 MIPS, making it suitable for computationally intensive real-time processing tasks. This C64x core device features a 1.2V core voltage for efficient power management and a 3.3V I/O interface for standard peripheral connectivity.

Why Choose This Part

The VelociTI.2 architecture allows the DSP to execute eight 32-bit instructions per clock cycle, providing massive parallelism for fixed-point math. Its wide operating temperature range of -40 to 105 degrees Celsius ensures reliability in demanding industrial settings. Additionally, the device is fully software-compatible with other C64x DSPs, simplifying code migration and development.

Applications

Industrial Communication Hubs
Utilizes McBSP and McASP interfaces to manage high-speed serial data streams in industrial automation environments.
Digital Audio Processing
Leverages 4000 MIPS performance and the McASP port for complex multi-channel audio filtering and equalization.
Real-Time Control Systems
Processes high-frequency control loops with a 2-ns instruction cycle time for precision motion or power electronics.

Key Specifications

Type Fixed Point
Interface Host Interface, I2C, McASP, McBSP
Clock Rate 500MHz
On-Chip RAM 288kB
Mounting Type Surface Mount
Voltage - I/O 3.30V
Package / Case 288-BBGA, FCBGA
Voltage - Core 1.20V
Non-Volatile Memory External
Operating Temperature -40degC ~ 105degC (TC)
Supplier Device Package 288-FCBGA (23x23)

Getting Started

Development typically requires TI Code Composer Studio (CCS) and a compatible JTAG emulator for debugging. Engineers should refer to the C64x DSP Library (DSPLIB) for optimized math functions and the Chip Support Library (CSL) to configure the Host Interface and I2C peripherals. Hardware prototyping can be performed using standard BGA breakout boards or custom PCBs designed for the 288-FCBGA package.