精品国产人成在线_亚洲高清无码在线观看_国产在线视频国产永久2021_国产AV综合第一页一个的一区免费影院黑人_最近中文字幕MV高清在线视频

企業(yè)號介紹

全部
  • 全部
  • 產(chǎn)品
  • 方案
  • 文章
  • 資料
  • 企業(yè)

華秋商城

元器件現(xiàn)貨采購/代購/選型一站式BOM配單

1.8w 內(nèi)容數(shù) 99w+ 瀏覽量 182 粉絲

TI處理器AM1707

--- 產(chǎn)品詳情 ---

Sitara 處理器:Arm9,SDRAM,以太網(wǎng),顯示
Arm CPU 1 Arm9
Arm MHz (Max.) 375, 456
Co-processor(s) PRU-ICSS
CPU 32-bit
Display type 1 LCD
Protocols Ethernet
Ethernet MAC 1-Port 10/100
Hardware accelerators PRUSS
Operating system Linux, RTOS
Security Device identity, Memory protection
Rating Catalog
Power supply solution TPS650061
Operating temperature range (C) -40 to 105, -40 to 90, 0 to 90
  • 375- and 456-MHz ARM926EJ-S? RISC Core
    • 32-Bit and 16-Bit (Thumb?) Instructions
    • Single-Cycle MAC
    • ARM Jazelle? Technology
    • Embedded ICE-RT? for Real-Time Debug
  • ARM9 Memory Architecture
    • 16KB of Instruction Cache
    • 16KB of Data Cache
    • 8KB of RAM (Vector Table)
    • 64KB of ROM
  • Enhanced Direct Memory Access Controller 3 (EDMA3):
    • 2 Transfer Controllers
    • 32 Independent DMA Channels
    • 8 Quick DMA Channels
    • Programmable Transfer Burst Size
  • 128KB of RAM Memory
  • 3.3-V LVCMOS I/Os (Except for USB Interfaces)
  • Two External Memory Interfaces:
    • EMIFA
      • NOR (8- or 16-Bit-Wide Data)
      • NAND (8- or 16-Bit-Wide Data)
      • 16-Bit SDRAM with 128-MB Address Space
    • EMIFB
      • 32-Bit or 16-Bit SDRAM with 256-MB Address Space
  • Three Configurable 16550-Type UART Modules:
    • UART0 with Modem Control Signals
    • 16-Byte FIFO
    • 16x or 13x Oversampling Option
    • Autoflow Control Signals (CTS, RTS) on UART0 Only
  • LCD Controller
  • Two Serial Peripheral Interfaces (SPIs) Each with One Chip Select
  • Programmable Real-Time Unit Subsystem (PRUSS)
    • Two Independent Programmable Real-Time Unit (PRU) Cores
      • 32-Bit Load-Store RISC Architecture
      • 4KB of Instruction RAM per Core
      • 512 Bytes of Data RAM per Core
      • PRUSS can be Disabled via Software to Save Power
    • Standard Power-Management Mechanism
      • Clock Gating
      • Entire Subsystem Under a Single PSC Clock Gating Domain
    • Dedicated Interrupt Controller
    • Dedicated Switched Central Resource
  • Multimedia Card (MMC)/Secure Digital (SD) Card Interface with Secure Data I/O (SDIO)
  • Two Master and Slave Inter-Integrated Circuit (I2C Bus?)
  • One Host-Port Interface (HPI) with 16-Bit-Wide Muxed Address/Data Bus for High Bandwidth
  • USB 1.1 OHCI (Host) with Integrated PHY (USB1)
  • USB 2.0 OTG Port with Integrated PHY (USB0)
    • USB 2.0 High- and Full-Speed Client
    • USB 2.0 High-, Full-, and Low-Speed Host
    • End Point 0 (Control)
    • End Points 1,2,3,4 (Control, Bulk, Interrupt or ISOC) RX and TX
  • Three Multichannel Audio Serial Ports (McASPs):
    • Six Clock Zones and 28 Serial Data Pins
    • Supports TDM, I2S, and Similar Formats
    • DIT-Capable (McASP2)
    • FIFO Buffers for Transmit and Receive
  • 10/100 Mbps Ethernet MAC (EMAC):
    • IEEE 802.3 Compliant (3.3-V I/O Only)
    • RMII Media-Independent Interface
    • Management Data I/O (MDIO) Module
  • Real-Time Clock (RTC) with 32-kHz Oscillator and Separate Power Rail
  • One 64-Bit General-Purpose Timer (Configurable as Two 32-Bit Timers)
  • One 64-Bit General-Purpose Watchdog Timer (Configurable as Two 32-Bit General-Purpose Timers)
  • Three Enhanced Pulse Width Modulators (eHRPWMs):
    • Dedicated 16-Bit Time-Base Counter with Period and Frequency Control
    • 6 Single Edge, 6 Dual Edge Symmetric, or 3 Dual Edge Asymmetric Outputs
    • Dead-Band Generation
    • PWM Chopping by High-Frequency Carrier
    • Trip Zone Input
  • Three 32-Bit Enhanced Capture (eCAP) Modules:
    • Configurable as 3 Capture Inputs or 3 Auxiliary Pulse Width Modulator (APWM) Outputs
    • Single-Shot Capture of up to Four Event Time-Stamps
  • Two 32-Bit Enhanced Quadrature Encoder Pulse (eQEP) Modules
  • 256-Ball Pb-Free Plastic Ball Grid Array (PBGA) [ZKB Suffix], 1.0-mm Ball Pitch
  • Commercial, Industrial, Automotive, or Extended Temperature

The device is a low-power ARM microprocessor based on an ARM926EJ-S.

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 life through the maximum flexibility of a fully integrated mixed processor solution.

The ARM926EJ-S is a 32-bit RISC processor core that performs 32-bit or 16-bit instructions and processes 32-bit, 16-bit, or 8-bit data. The core uses pipelining so that all parts of the processor and memory system can operate continuously.

The ARM core has a coprocessor 15 (CP15), protection module, and data and program memory management units (MMUs) with table look-aside buffers. The ARM core has separate 16KB of instruction and 16-KB data caches. Both memory blocks are four-way associative with virtual index virtual tag (VIVT). The ARM core also has 8KB of RAM (Vector Table) and 64KB of ROM.

The peripheral set includes: a 10/100 Mbps Ethernet MAC (EMAC) with a management data input/output (MDIO) module; two I2C Bus interfaces; 3 multichannel audio serial port (McASP) with 16/12/4 serializers and FIFO buffers; two 64-bit general-purpose timers each configurable (one configurable as watchdog); a configurable 16-bit host-port interface (HPI); up to 8 banks of 16 pins of general-purpose input/output (GPIO) with programmable interrupt/event generation modes, multiplexed with other peripherals; three UART interfaces (one with both RTS and CTS); three enhanced high-resolution pulse width modulator (eHRPWM) peripherals; three 32-bit enhanced capture (eCAP) module peripherals which can be configured as 3 capture inputs or 3 auxiliary pulse width modulator (APWM) outputs; two 32-bit enhanced quadrature encoded pulse (eQEP) peripherals; and 2 external memory interfaces: an asynchronous and SDRAM external memory interface (EMIFA) for slower memories or peripherals, and a higher speed memory interface (EMIFB) for SDRAM.

The Ethernet Media Access Controller (EMAC) provides an efficient interface between the device and the network. The EMAC supports both 10Base-T and 100Base-TX, or 10 Mbps and 100 Mbps in either half- or full-duplex mode. Additionally, an MDIO interface is available for PHY configuration.

The HPI, I2C, SPI, USB1.1, and USB2.0 ports allow the device to easily control peripheral devices and/or communicate with host processors.

The rich peripheral set provides the ability to control external peripheral devices and communicate with external processors. For details on each of the peripherals, see the related sections later in this document and the associated peripheral reference guides.

The device has a complete set of development tools for the ARM processor. These include C compilers and a Windows? debugger interface for visibility into source code execution.

為你推薦

  • 如何利用運算放大器設(shè)計振蕩電路?2023-08-09 08:08

    使用運算放大器設(shè)計振蕩電路運算放大器的工作原理發(fā)明運算放大器的人絕對是天才。中間兩端接上電源,當同相輸入大于反相輸入,右側(cè)就會輸出(接近)電源電壓(Vcc),如果反過來小于同相輸入,則輸出0V(負電源)電壓。在輸出端接上燈泡,假設(shè)我想控制燈泡循環(huán)亮滅,那就需要一會輸出高電平點亮,一會輸出低電平熄滅。也就是我需要讓左邊能自動變化大小,就能實現(xiàn)控制燈泡。如何讓電
  • 【PCB設(shè)計必備】31條布線技巧2023-08-03 08:09

    相信大家在做PCB設(shè)計時,都會發(fā)現(xiàn)布線這個環(huán)節(jié)必不可少,而且布線的合理性,也決定了PCB的美觀度和其生產(chǎn)成本的高低,同時還能體現(xiàn)出電路性能和散熱性能的好壞,以及是否可以讓器件的性能達到最優(yōu)等。在上篇內(nèi)容中,小編主要分享了PCB線寬線距的一些設(shè)計規(guī)則,那么本篇內(nèi)容,將針對PCB的布線方式,做個全面的總結(jié)給到大家,希望能夠?qū)︷B(yǎng)成良好的設(shè)計習慣有所幫助。1走線長度
  • 電動汽車直流快充方案設(shè)計【含參考設(shè)計】2023-08-03 08:08

    大功率直流充電系統(tǒng)架構(gòu)大功率直流充電設(shè)計標準國家大功率充電標準“Chaoji”技術(shù)標準設(shè)計目標是未來可實現(xiàn)電動汽車充電5分鐘行駛400公里。“Chaoji”技術(shù)標準主要設(shè)計參數(shù)如下:最大電壓:目前1000V(可擴展到1500V);最大電流:帶冷卻系統(tǒng)500A(可擴展到600A);不帶冷卻系統(tǒng)150-200A;最大功率:900KW。大功率直流充電系統(tǒng)架構(gòu)大功率
  • Buck電路的原理及器件選型指南2023-07-31 22:28

    Buck電路工作原理電源閉合時電壓會快速增加,當斷開時電壓會快速減小,如果開關(guān)速度足夠快的話,是不是就能把負載,控制在想要的電壓值以內(nèi)呢?假設(shè)12V降壓到5V,也就意味著,MOS管開關(guān)需要42%時間導通,58%時間斷開。當42%時間MOS管導通時,電感被充磁儲能,同時對電容進行充電,給負載提供電量。當58%時間MOS管斷開時,由于電感上的電流不能突變,電路通
    1741瀏覽量
  • 100W USB PD 3.0電源2023-07-31 22:27

    什么是PD3.0快充?PD快充協(xié)議全稱“USBPowerDelivery”功率傳輸協(xié)議,簡稱為“PD協(xié)議”。2015年11月,USBPD快充迎來了大版本更新,進入到了USBPD3.0快充時代。USBPD3.0相對于USBPD2.0的變化主要有三方面:增加了對設(shè)備內(nèi)置電池特性更為詳細的描述;增加了通過PD通信進行設(shè)備軟硬件版本識別和軟件更新的功能,以及增加了數(shù)
    1240瀏覽量
  • 千萬不要忽略PCB設(shè)計中線寬線距的重要性2023-07-31 22:27

    想要做好PCB設(shè)計,除了整體的布線布局外,線寬線距的規(guī)則也非常重要,因為線寬線距決定著電路板的性能和穩(wěn)定性。所以本篇以RK3588為例,詳細為大家介紹一下PCB線寬線距的通用設(shè)計規(guī)則。要注意的是,布線之前須把軟件默認設(shè)置選項設(shè)置好,并打開DRC檢測開關(guān)。布線建議打開5mil格點,等長時可根據(jù)情況設(shè)置1mil格點。PCB布線線寬01布線首先應滿足工廠加工能力,
  • 基于STM32的300W無刷直流電機驅(qū)動方案2023-07-06 10:02

    如何驅(qū)動無刷電機?近些年,由于無刷直流電機大規(guī)模的研發(fā)和技術(shù)的逐漸成熟,已逐步成為工業(yè)用電機的發(fā)展主流。圍繞降低生產(chǎn)成本和提高運行效率,各大廠商也提供不同型號的電機以滿足不同驅(qū)動系統(tǒng)的需求。現(xiàn)階段已經(jīng)在紡織、冶金、印刷、自動化生產(chǎn)流水線、數(shù)控機床等工業(yè)生產(chǎn)方面應用。無刷直流電機的優(yōu)點與局限性優(yōu)點:高輸出功率、小尺寸和重量、散熱性好、效率高、運行速度范圍寬、低
  • 上新啦!開發(fā)板僅需9.9元!2023-06-21 17:43

    上新啦!開發(fā)板僅需9.9元!
  • 參考設(shè)計 | 2KW AC/DC數(shù)字電源方案2023-06-21 17:43

    什么是數(shù)字電源?數(shù)字電源,以數(shù)字信號處理器(DSP)或微控制器(MCU)為核心,將數(shù)字電源驅(qū)動器、PWM控制器等作為控制對象,能實現(xiàn)控制、管理和監(jiān)測功能的電源產(chǎn)品。它是通過設(shè)定開關(guān)電源的內(nèi)部參數(shù)來改變其外特性,并在“電源控制”的基礎(chǔ)上增加了“電源管理”。所謂電源管理是指將電源有效地分配給系統(tǒng)的不同組件,最大限度地降低損耗。數(shù)字電源的管理(如電源排序)必須全部
  • 千萬不能小瞧的PCB半孔板2023-06-21 17:34

    PCB半孔是沿著PCB邊界鉆出的成排的孔,當孔被鍍銅時,邊緣被修剪掉,使沿邊界的孔減半,讓PCB的邊緣看起來像電鍍表面孔內(nèi)有銅。模塊類PCB基本上都設(shè)計有半孔,主要是方便焊接,因為模塊面積小,功能需求多,所以通常半孔設(shè)計在PCB單只最邊沿,在鑼外形時鑼去一半,只留下半邊孔在PCB上。半孔板的可制造性設(shè)計最小半孔最小半孔的工藝制成能力是0.5mm,前提是孔必須
    2638瀏覽量