AM3894
- High-Performance Sitara
ARM Microprocessors (MPUs)
- ARMCortex-A8 RISC Processor
- Up to 1.20 GHz
- ARMCortex-A8 RISC Processor
- ARM Cortex-A8 Core
- ARMv7 Architecture
- In-Order, Dual-Issue, Superscalar Processor Core
- NEON Multimedia Architecture
- Supports Integer and Floating Point
(VFPv3-IEEE754 Compliant)
- Jazelle RCT Execution Environment
- ARMv7 Architecture
- ARM Cortex-A8 Memory Architecture
- 32-KB Instruction and Data Caches
- 256-KB L2 Cache
- 64-KB RAM, 48-KB of Boot ROM
- 512KB of On-Chip Memory Controller (OCMC) RAM
- SGX530 3D Graphics Engine (Available Only on the AM3894 Device)
- Delivers up to 30 MTriangles per Second
- Universal Scalable Shader Engine
- Direct3D Mobile, OpenGL ES 1.1 and 2.0, OpenVG 1.1, OpenMax API Support
- Advanced Geometry DMA Driven Operation
- Programmable HQ Image Anti-Aliasing
- Endianness
- ARM Instructions and Data – Little Endian
- HD Video Processing Subsystem (HDVPSS)
- Two 165-MHz HD Video Capture Channels
- One 16-Bit or 24-Bit and One 16-Bit Channel
- Each Channel Splittable Into Dual 8-Bit Capture Channels
- Two 165-MHz HD Video Display Channels
- One 16-Bit, 24-Bit, 30-Bit Channel and One 16-Bit Channel
- Simultaneous SD and HD Analog Output
- Digital HDMI 1.3 Transmitter with PHY with HDCP up to 165-MHz Pixel Clock
- Three Graphics Layers
- Two 165-MHz HD Video Capture Channels
- Dual 32-Bit DDR2 and DDR3 SDRAM Interfaces
- Supports up to DDR2-800 and DDR3-1600
- Up to Eight x8 Devices Total
- 2GB of Total Address Space
- Dynamic Memory Manager (DMM)
- Programmable Multi-Zone Memory Mapping and Interleaving
- Enables Efficient 2D Block Accesses
- Supports Tiled Objects in 0°, 90°, 180°, or 270° Orientation and Mirroring
- Optimizes Interlaced Accesses
- One PCI Express
(PCIe) 2.0 Port with Integrated PHY
- Single Port with 1 or 2 Lanes at 5.0 GT per Second
- Configurable as Root Complex or Endpoint
- Serial ATA (SATA) 3.0 Gbps Controller with
Integrated PHYs
- Direct Interface for Two Hard Disk Drives
- Hardware-Assisted Native Command Queuing (NCQ) from up to 32 Entries
- Supports Port Multiplier and Command-Based Switching
- Two 10 Mbps, 100 Mbps, and 1000 Mbps Ethernet MACs
(EMAC)
- IEEE 802.3 Compliant (3.3-V I/O Only)
- MII and GMII Media Independent Interfaces
- Management Data I/O (MDIO) Module
- Dual USB 2.0 Ports with Integrated
PHYs
- USB 2.0 High-Speed and Full-Speed Client
- USB 2.0 High-Speed, Full-Speed, and Low-Speed Host
- Supports Endpoints 0-15
- General-Purpose Memory Controller
(GPMC)
- 8-Bit and 16-Bit Multiplexed Address and Data Bus
- Up to 6 Chip Selects with up to 256-MB Address Space per Chip Select Pin
- Glueless Interface to NOR Flash, NAND Flash (with BCH and Hamming Error Code Detection), SRAM and Pseudo-SRAM
- Error Locator Module (ELM) Outside of GPMC to Provide up to 16-Bit and 512-Byte Hardware ECC for NAND
- Flexible Asynchronous Protocol Control for Interface to FPGA, CPLD, ASICs
- Enhanced Direct-Memory-Access (EDMA) Controller
- Four Transfer Controllers
- 64 Independent DMA Channels and 8 Quick DMA (QDMA) Channels
- Seven 32-Bit General-Purpose Timers
- One System Watchdog Timer
- Three Configurable UART, IrDA, and CIR Modules
- UART0 with Modem Control Signals
- Supports up to 3.6864 Mbps UART
- SIR, MIR, FIR (4.0 MBAUD), and CIR
- One 40-MHz Serial Peripheral Interface (SPI) with Four Chip Selects
- SD and SDIO Serial Interface (1-Bit and 4-Bit)
- Dual Inter-Integrated Circuit (I2C bus) Ports
- Three Multichannel Audio Serial Ports (McASPs)
- One Six-Serializer Transmit and Receive Port
- Two Dual-Serializer Transmit and Receive Ports
- DIT-Capable For SDIF and PDIF (All Ports)
- Multichannel Buffered Serial Port (McBSP)
- Transmit and Receive Clocks up to 48 MHz
- Two Clock Zones and Two Serial Data Pins
- Supports TDM, I2S, and Similar Formats
- Real-Time Clock (RTC)
- One-Time or Periodic Interrupt Generation
- Up to 64 General-Purpose I/O (GPIO) Pins
- On-Chip ARM ROM Bootloader (RBL)
- Power, Reset, and Clock Management
- SmartReflex Technology (Level 2)
- Seven Independent Core Power Domains
- Clock Enable and Disable Control For Subsystems and Peripherals
- IEEE 1149.1 (JTAG) and IEEE 1149.7 (cJTAG) Compatible
- Via Channel Technology
Enables use of
0.8-mm Design Rules - 40-nm CMOS Technology
- 3.3-V Single-Ended LVCMOS I/Os (Except for DDR3 at 1.5 V, DDR2 at 1.8 V, and DEV_CLKIN at 1.8 V)
The AM389x Sitara ARM processors are a highly integrated, programmable platform that leverages TI's Sitara technology to meet the processing needs of the following applications: single-board computing, network and communications processing, industrial automation, human machine interface, and interactive point-of-service kiosks.
The device enables original-equipment manufacturers (OEMs) and original-design manufacturers (ODMs) to quickly bring to market devices featuring robust operating systems support, rich user interfaces, and high processing performance through the maximum flexibility of a fully integrated mixed processor solution. The device combines high-performance ARM processing with a highly integrated peripheral set.
The ARM Cortex-A8 32-bit RISC processor with NEON floating-point extension includes: 32KB of instruction cache; 32KB of data cache; 256KB of L2 cache; and 64KB of RAM.
The rich peripheral set provides the ability to control external peripheral devices and communicate with external processors. For details on each peripheral, see the related sections in this document and the associated peripheral reference guides. The peripheral set includes: HD video processing subsystem (HDVPSS), which provides output of simultaneous HD and SD analog video and dual HD video inputs; up to two Gigabit Ethernet MACs (10 Mbps,100, Mbps, 1000 Mbps) with GMII and MDIO interface; two USB ports with integrated 2.0 PHY; PCIe port x2 lanes GEN2 compliant interface, which allows the device to act as a PCIe root complex or device endpoint; one 6-channel McASP audio serial port (with DIT mode); two dual-channel McASP audio serial ports (with DIT mode); one McBSP multichannel buffered serial port; three UARTs with IrDA and CIR support; SPI serial interface; SD and SDIO serial interface; two I2C master and slave interfaces; up to 64 GPIO pins; seven 32-bit timers; system watchdog timer; dual DDR2 and DDR3 SDRAM interface; flexible 8-bit and 16-bit asynchronous memory interface; and up to two SATA interfaces for external storage on two disk drives or more with the use of a port multiplier.
The device also includes an SGX530 3D graphics engine (available only on the AM3894 device) to off-load many video and imaging processing tasks from the core. Additionally, the device has a complete set of development tools for the ARM, including C compilers and a Microsoft Windows debugger interface for visibility into source code execution.
The device package has been specially engineered with Via Channel technology. This technology allows use of 0.8-mm pitch PCB feature sizes in this 0.65-mm pitch package, and substantially reduces PCB costs. Via Channel technology also allows PCB routing in only two signal layers due to the increased layer efficiency of the Via Channel BGA technology.
기술 자료
설계 및 개발
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TMDSEMU200-U — XDS200 USB 디버그 프로브
XDS200은 TI 임베디드 장치를 디버깅하는 데 사용되는 디버그 프로브(에뮬레이터)입니다. 대부분의 장치의 경우 더욱 저렴한 신형 XDS110(www.ti.com/tool/TMDSEMU110-U)을 사용하실 것을 권장합니다. XDS200은 단일 포드에서 다양한 표준(IEEE1149.1, IEEE1149.7, SWD)을 지원합니다. 모든 XDS 디버그 프로브는 ETB(임베디드 트레이스 버퍼)가 포함되어 있는 모든 Arm® 및 DSP 프로세서에서 코어 및 시스템 트레이스를 지원합니다.
XDS200은 TI 20핀 커넥터(TI 14핀, (...)
TMDSEMU560V2STM-U — XDS560™ 소프트웨어 v2 시스템 추적 USB 디버그 프로브
XDS560v2는 디버그 프로브의 XDS560™ 제품군 중 최고의 성능을 가진 제품으로, 기존의 JTAG 표준(IEEE1149.1)과 cJTAG(IEEE1149.7)를 모두 지원합니다. SWD(직렬 와이어 디버그)는 지원하지 않습니다.
모든 XDS 디버그 프로브는 ETB(임베디드 추적 버퍼)가 있는 모든 ARM 및 DSP 프로세서에서 코어와 시스템 트레이스를 지원합니다. 핀을 통한 추적의 경우 XDS560v2 PRO TRACE가 필요합니다.
XDS560v2는 MIPI HSPT 60핀 커넥터(TI 14핀, TI 20핀 및 ARM (...)
TMDSEMU560V2STM-UE — XDS560v2 시스템 추적 USB 및 이더넷 디버그 프로브
The XDS560v2 is the highest performance of the XDS family of debug probes and supports both the traditional JTAG standard (IEEE1149.1) and cJTAG (IEEE1149.7). Note that it does not support serial wire debug (SWD).
All XDS debug probes support Core and System Trace in all ARM and DSP processors that (...)
LINUXEZSDK-AM389X-AM387X — Linux EZ SDK for AM3871, AM3872, AM3874, AM3894, AM3892 - ALPHA
SITARA LINUX SDK
Linux Software Development Kits (SDK) provide Sitara™ developers with an easy set up and quick out-of-box experience that is specific to and highlights the features of TI's ARM processors. Launching demos, benchmarks and applications is a snap with the included graphical user (...)
LINUXSDK-AM17X — Linux SDK for AM1707, AM1705
SITARA LINUX SDK
Linux Software Development Kits (SDK) provide Sitara™ developers with an easy set up and quick out-of-box experience that is specific to and highlights the features of TI's ARM processors. Launching demos, benchmarks and applications is a snap with the included graphical user (...)
CCSTUDIO — Code Composer Studio integrated development environment (IDE)
CCStudio™ IDE is part of TI's extensive CCStudio™ development ecosystem and is an integrated development environment for TI's microcontrollers, processors, wireless connectivity devices, and radar sensors. CCStudio IDE is available as desktop or cloud-based applications. The cloud version (...)
UNIFLASH — UniFlash for most TI microcontrollers (MCUs) and mmWave sensors
UniFlash는 TI의 광범위한 CCStudio™ 개발 에코시스템의 일부로, TI 마이크로컨트롤러 및 무선 연결 장치의 온칩 플래시와 TI 프로세서의 온보드 플래시를 프로그래밍하기 위한 소프트웨어 도구입니다. UniFlash는 그래픽 및 명령줄 인터페이스를 모두 제공하며, 데스크톱 또는 클라우드 환경에서 실행할 수 있습니다.
UniFlash는 CCStudio™ 개발자 영역의 클라우드에서 실행하거나 Windows®, Linux®, macOS® 컴퓨터에서 다운로드해 사용할 수 있습니다.
macOS는 mmWave, AMx, K2G 및 (...)
CLOCKTREETOOL — Sitara, 오토모티브, 비전 분석 및 디지털 신호 프로세서용 클록 트리 툴
The Clock Tree Tool (CTT) for Sitara™ ARM®, Automotive, and Digital Signal Processors is an interactive clock tree configuration software that provides information about the clocks and modules in these TI devices. It allows the user to:
- Visualize the device clock tree
- Interact with clock tree (...)
| 패키지 | 핀 | CAD 기호, 풋프린트 및 3D 모델 |
|---|---|---|
| FCBGA (CYG) | 1031 | Ultra Librarian |