The TC1782 combines three powerful technologies within one silicon die, achieving new levels of power, speed, and economy for embedded applications: • Reduced Instruction Set Computing (RISC) processor architecture • Digital Signal Processing (DSP) operations and addressing modes • On-chip memories and peripherals DSP operations and addressing modes provide the computational power necessary to efficiently analyze complex real-world signals. The RISC load/store architecture provides high computational bandwidth with low system cost. On-chip memory and peripherals are designed to support even the most demanding high-bandwidth real-time embedded control-systems tasks. Additional high-level features of the TC1782 include: • Efficient memory organization: instruction and data scratch memories, caches • Serial communication interfaces – flexible synchronous and asynchronous modes • Peripheral Control Processor – standalone data operations and interrupt servicing • DMA Controller – DMA operations and interrupt servicing • General-purpose timers • High-performance on-chip buses • On-chip debugging and emulation facilities • Flexible interconnections to external components • Flexible power-management The TC1782 is a high-performance microcontroller with TriCore CPU, program and data memories, buses, bus arbitration, an interrupt controller, a peripheral control processor and a DMA controller and several on-chip peripherals. The TC1782 is designed to meet the needs of the most demanding embedded control systems applications where the competing issues of price/performance, real-time responsiveness, computational power, data bandwidth, and power consumption are key design elements. The TC1782 offers several versatile on-chip peripheral units such as serial controllers, timer units, and Analog-to-Digital converters. Within the TC1782, all these peripheral units are connected to the TriCore CPU/system via the Flexible Peripheral Interconnect (FPI) Bus and the Local Memory Bus (LMB). Several I/O lines on the TC1782 ports are reserved for these peripheral units to communicate with the external world.
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