Parameters | |
---|---|
Series | TMS320C672x |
Moisture Sensitivity Level (MSL) | 3 (168 Hours) |
RoHS Status | ROHS3 Compliant |
Package / Case | 256-BGA |
Interface | EBI/EMI, HPI, I²C, McASP, SPI |
Mfr | Texas Instruments |
Mounting Type | Surface Mount |
Operating Temperature | 0°C ~ 90°C (TC) |
Type | Floating Point |
Supplier Device Package | 256-BGA (17x17) |
Non-Volatile Memory | ROM (384kB) |
Voltage - I/O | 3.30V |
Voltage - Core | 1.20V |
Clock Rate | 275MHz |
On-Chip RAM | 288kB |
Package | Tray |
Product Status | Active |
Base Product Number | TMS320 |
REACH Status | REACH Unaffected |
Standard Package | 90 |
ECCN | 3A991A2 |
HTSUS | 8542.31.0001 |
The TMS320C6727BZDH275 is a high-performance floating-point digital signal processor from Texas Instruments' C6000™ platform, delivering exceptional computational power for demanding signal processing applications. Operating at 275 MHz, this DSP combines a 32-bit RISC CPU with VLIW architecture to achieve up to 2200 MIPS and 1650 MFLOPS performance. It features 384KB of on-chip RAM, enhanced DMA controllers, and multiple high-speed interfaces, making it ideal for professional audio, medical imaging, and industrial automation systems. The device supports real-time operating systems (RTOS) and offers low-latency processing for complex algorithms in multi-channel environments.
Key Features
● High-speed floating-point processing: 275 MHz core with VLIW architecture for parallel instruction execution.
● Large on-chip memory: 384KB RAM minimizes external memory access, improving real-time performance.
● Advanced peripherals: Includes EMIF, McASP, I2C, SPI, and UART for flexible system integration.
● Low-latency data transfer: Enhanced DMA (EDMA) enables high-throughput data movement without CPU overhead.
Power efficiency: Dynamic power management for optimized performance-per-watt in embedded designs.
Applications
The TMS320C6727BZDH275 excels in high-fidelity audio processing, ultrasound imaging, radar/sonar systems, and industrial vibration analysis. Its floating-point precision and high-speed processing make it suitable for multi-channel audio effects, biomedical signal reconstruction, and real-time spectral analysis, where computational accuracy and low latency are critical.
Alternative Models
● TMS320C6722B: Lower-cost variant with 200 MHz clock speed, suitable for less demanding applications.
● TMS320C6726B: Similar performance (256 MHz) with reduced on-chip RAM (256KB) for cost optimization.
● TMS320C6748: Combines C67x floating-point and C64x fixed-point cores for mixed-signal processing.