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AM572x Sitara ARM应用处理器旨在满足现代嵌入式产品对于处理性能的强烈需求。
AM572x器件通过其极具有活性的全集成混合处理器解决方案,可实现较高的处理性能。此外,这些器件不但具有可编程视频处理功能,还融合了高度集成的外设集。每个AM572x器件都具有加密加速功能。
双核ARM Cortex-A15 RISC CPU配有Neon™扩展和两个TI C66x VLIW浮点DSP内核,可提供编程功能。借助ARM,开发人员能够控制函数与在DSP和协处理器上编程的其他算法分离开来,从而降低系统软件的复杂性。
此外,TI提供有一套针对ARM和C66x DSP的完整开发工具集,其中包括C语言编译器,用于简化编程和调度过程的DSP汇编优化器以及一个用于查看源代码执行的调试接口。
所有商标是他们各自所有者的财产。
| Arm MHz (Max.) | 
| DSP | 
| Co-Processor(s) | 
| Display | 
| Graphics Acceleration | 
| Camera | 
| EMAC | 
| USB 2.0 | 
| USB | 
| Memory | 
| Serial I/O | 
| Industrial Protocols | 
| Security Enabler | 
| Operating Temperature Range (C) | 
| Approx. Price (US$) | 
| DRAM | 
| CSI-2 | 
| PCI/PCIe | 
| DSP MHz | 
| AM5728 | AM5706 | AM5708 | AM5716 | AM5718 | AM5726 | AM5746 | AM5748 | 
|---|---|---|---|---|---|---|---|
| 1500 | 
						500 1000  | 
					1000 | 
						500 1500  | 
					1500 | 1500 | 1500 | 1500 | 
| 2 C66x | 1 C66x | 1 C66x | 1 C66x | 1 C66x | 2 C66x | 2 C66x | 2 C66x | 
| 
						Arm Cortex-M4 PRU-ICSS  | 
					
						Arm Cortex-M4 PRU-ICSS  | 
					
						Arm Cortex-M4 PRU-ICSS  | 
					
						Arm Cortex-M4 PRU-ICSS  | 
					
						Arm Cortex-M4 PRU-ICSS  | 
					
						Arm Cortex-M4 PRU-ICSS  | 
					
						Arm Cortex-M4 PRU-ICSS  | 
				|
| 3 LCD and 1 HDMI 1.4a | 2 LCD and 1 HDMI 1.4a | 3 LCD and 1 HDMI 1.4a | 1 LCD and 1 HDMI 1.4a | ||||
| 
						1 2D 2 3D  | 
					
						1 2D 1 3D  | 
					
						1 2D 1 3D  | 
					
						1 2D 2 3D  | 
				||||
| Parallel | 
						MIPI CSI-2 Parallel  | 
					
						MIPI CSI-2 Parallel  | 
					
						MIPI CSI-2 Parallel  | 
					
						MIPI CSI-2 Parallel  | 
					Parallel | ||
| 
						10/100/1000 2-Port 1Gb Switch 4-Port 10/100 PRU EMAC  | 
					
						10/100/1000 2-Port 1Gb Switch 4-Port 10/100 PRU EMAC  | 
					
						10/100/1000 2-Port 1Gb Switch 4-Port 10/100 PRU EMAC  | 
					
						10/100/1000 2-Port 1Gb Switch 4-Port 10/100 PRU EMAC 6-Port 10/100 PRU EMAC  | 
					
						10/100/1000 2-Port 1Gb Switch 4-Port 10/100 PRU EMAC 6-Port 10/100 PRU EMAC  | 
					
						10/100/1000 2-Port 1Gb Switch 4-Port 10/100 PRU EMAC  | 
					
						10/100/1000 2-Port 1Gb Switch 4-Port 10/100 PRU EMAC  | 
					
						10/100/1000 2-Port 1Gb Switch 4-Port 10/100 PRU EMAC 6-Port 10/100 PRU EMAC  | 
				
| 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 
| 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 
| ECC | |||||||
| 
						CAN I2C SPI UART USB  | 
					
						CAN I2C SPI UART USB  | 
					
						CAN I2C SPI UART USB  | 
					
						CAN I2C SPI UART USB  | 
					
						CAN I2C SPI UART USB  | 
					
						CAN I2C SPI UART USB  | 
					
						CAN CAN-FD I2C SPI UART USB  | 
					
						CAN CAN-FD I2C SPI UART USB  | 
				
| 
						EtherCAT EtherNet/IP POWERLINK PROFIBUS PROFINET RT/IRT SERCOS III  | 
					
						EtherCAT EtherNet/IP POWERLINK PROFIBUS PROFINET RT/IRT SERCOS III  | 
					
						EtherCAT EtherNet/IP POWERLINK PROFIBUS PROFINET RT/IRT SERCOS III  | 
					
						EtherCAT EtherNet/IP POWERLINK PROFIBUS PROFINET RT/IRT SERCOS III  | 
					
						EtherCAT EtherNet/IP POWERLINK PROFIBUS PROFINET RT/IRT SERCOS III  | 
					
						EtherCAT EtherNet/IP POWERLINK PROFIBUS PROFINET RT/IRT SERCOS III  | 
					
						EtherCAT EtherNet/IP POWERLINK PROFIBUS PROFINET RT/IRT SERCOS III  | 
					
						EtherCAT EtherNet/IP POWERLINK PROFIBUS PROFINET RT/IRT SERCOS III  | 
				
| 
						Cryptographic acceleration Debug security Device identity External memory protection Initial secure programming Secure boot Secure storage Software IP protection Trusted execution environment  | 
					
						Cryptographic acceleration Debug security Device identity External memory protection Initial secure programming Secure boot Secure storage Software IP protection Trusted execution environment  | 
					
						Cryptographic acceleration Debug security Device identity External memory protection Initial secure programming Secure boot Secure storage Software IP protection Trusted execution environment  | 
					
						Cryptographic acceleration Debug security Device identity External memory protection Initial secure programming Secure boot Secure storage Software IP protection Trusted execution environment  | 
					
						Cryptographic acceleration Debug security Device identity External memory protection Initial secure programming Secure boot Secure storage Software IP protection Trusted execution environment  | 
					
						Cryptographic acceleration Debug security Device identity External memory protection Initial secure programming Secure boot Secure storage Software IP protection Trusted execution environment  | 
					
						Cryptographic acceleration Debug security Device identity External memory protection Initial secure programming Secure boot Secure storage Software IP protection Trusted execution environment  | 
					
						Cryptographic acceleration Debug security Device identity External memory protection Initial secure programming Secure boot Secure storage Software IP protection Trusted execution environment  | 
				
| 
						-40 to 105 0 to 90  | 
					
						-40 to 105 0 to 90  | 
					
						-40 to 105 0 to 90  | 
					
						-40 to 105 -40 to 125 0 to 90  | 
					
						-40 to 105 -40 to 125 0 to 90  | 
					
						-40 to 105 0 to 90  | 
					-40 to 105 | -40 to 105 | 
| 40.47 | 1ku | 21.18 | 1ku | 25.65 | 1ku | 22.33 | 1ku | 30.05 | 1ku | 37.13 | 1ku | ||
| 
						DDR3 DDR3L  | 
					
						DDR3 DDR3L  | 
					
						DDR3 DDR3L  | 
					
						DDR3 DDR3L  | 
					
						DDR3 DDR3L  | 
					
						DDR3 DDR3L  | 
					
						DDR3 DDR3L  | 
					
						DDR3 DDR3L  | 
				
| 1 | 1 | 2 | 2 | ||||
| 2 PCIe Gen 2 | 2 PCIe Gen 2 | 2 PCIe Gen 2 | 2 PCIe Gen 2 | 2 PCIe Gen 2 | 2 PCIe Gen 2 | 2 PCIe Gen 2 | 2 PCIe Gen 2 | 
| 750 | 
						500 750  | 
					750 | 
						500 750  | 
					750 | 750 | 750 | 750 | 
| 无样片 | 无样片 | 
