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Related Documentation From Texas Instruments
SPRU790— TMS320x28xx, 28xxx Enhanced Quadrature Encoder Pulse (eQEP) Reference Guide describes the eQEP module, which is used for interfacing with a linear or rotary incremental encoder to get position, direction, and speed information from a rotating machine in high performance motion and position control systems. It includes the module description and registers
SPRU074— TMS320x28xx, 28xxx Enhanced Controller Area Network (eCAN) Reference Guide describes the eCAN that uses established protocol to communicate serially with other controllers in electrically noisy environments.
SPRU051— TMS320x28xx, 28xxx Serial Communication Interface (SCI) Reference Guide describes the SCI, which is a
SPRU059— TMS320x28xx, 28xxx Serial Peripheral Interface (SPI) Reference Guide describes the SPI - a
SPRU721— TMS320x28xx, 28xxx
SPRU722— TMS320x280x, 2801x, 2804x Boot ROM Reference Guide describes the purpose and features of the bootloader
Tools Guides—
SPRU513— TMS320C28x Assembly Language Tools User's Guide describes the assembly language tools (assembler and other tools used to develop assembly language code), assembler directives, macros, common object file format, and symbolic debugging directives for the TMS320C28x device.
SPRU514— TMS320C28x Optimizing C Compiler User's Guide describes the TMS320C28x™ C/C++ compiler. This compiler accepts ANSI standard C/C++ source code and produces TMS320 DSP assembly language source code for the TMS320C28x device.
SPRU608— The TMS320C28x Instruction Set Simulator Technical Overview describes the simulator, available within the Code Composer Studio for TMS320C2000 IDE, that simulates the instruction set of the C28x™ core.
SPRU625— TMS320C28x DSP/BIOS Application Programming Interface (API) Reference Guide describes development using DSP/BIOS.
Application Reports—
SPRAAM0— Getting Started With TMS320C28x™ Digital Signal Controllers is organized by development flow and functional areas to make your design effort as seamless as possible. Tips on getting started with C28x™ DSP software and hardware development are provided to aid in your initial design and debug efforts. Each section includes pointers to valuable information including technical documentation, software, and tools for use in each phase of design.
SPRAAD5— Power Line Communication for Lighting Apps using BPSK w/ a Single DSP Controller presents a complete implementation of a power line modem following
SPRAA85— Programming TMS320x28xx and 28xxx Peripherals in C/C++ explores a hardware abstraction layer implementation to make C/C++ coding easier on 28x DSPs. This method is compared to traditional #define macros and topics of code efficiency and special case registers are also addressed.
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