Digital Signal Processors & Controllers (DSP, DSC) Multicore Dig Signal
TMS320C6474FZUN2: Digital Signal Processors & Controllers (DSP, DSC) Multicore Dig Signal
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The TMS320C6474FZUN2 is designed as multicore digital signal processor. It is based on the third-generation high-performance, advanced velociTI very-long-instruction-word (VLIW) architecture developed by texas instruments (TI).
TMS320C6474FZUN2 has many features and some are listed here. (1) High-performance multicore DSP. (2) Three TMS320C64x+ DSP cores. (3) TMS320C64x+ megamodule L1 memory architecture. (4) Enhanced VCP2. (5) Enhanced turbo decoder coprocessor (TCP2). (6) Endianness: little endian, big endian. (7) Frame synchronization interface. (8) 16-/32-bit DDR2-667 memory controller. (9) EDMA3 controller (64 independent channels). (10) Antenna interface. (11) Two 1x serial rapidIO links, v1.2 compliant. (12) One 1.8-V inter integrated circuit (I2C) bus. (13) Two 1.8V McBSPs. (14) 1000 Mbps ethernet MAC (EMAC). (15) Six 64-bit general-purpose timers. (16) 16 general-purpose I/O (GPIO) pins. And so on.
Some absolute maximum ratings of TMS320C6474FZUN2 have been concluded into several points as follow. (1) Its CVdd supply voltage is from -0.3V to 1.35V. (2) Its DVdd11 supply voltage is from -0.3V to 1.35V. (3) Its DVdd18 supply voltage is from -0.3V to 2.45V. (4) Its AIF_Vdda11, AIF_Vddd11, AIF_Vddt11 supply voltage is from -0.3V to 1.35V. (5) Its AIF_Vddr18 supply voltage is from -0.3V to 2.45V. (6) Its SGR_Vdda11, SGR_Vddd1, SGR_Vddt11 supply voltage is from -0.3V to 1.35V. (7) Its SGR_Vddr18 supply voltage is from -0.3V to 2.45V. (8) Its AVdd118, AVdd218 supply voltage is from -0.3V to 2.45V. (9) Its Vss ground is 0V. (10) Its 1.8V signal-ended I/Os input voltage is from -0.3V to DVdd18+0.3V. (11) Its DDR2 input voltage is from -0.3V to 2.45V. (12) Its 12C/VCNTL input voltage is from -0.3V to 2.45V. (13) Its frame sync differential clocks input voltage is from -0.3V to DVdd18+0.3V. And so on. It should be noted that stresses above those listed in absolute maximum ratings may cause permanent damage to device. If you have any question or suggestion or want to know more information please contact us for details. Thank you!