♧ STM32F7 > F7x5 Advanced

TODAY479 TOTAL2,593,000
사이트 이용안내
Login▼/회원가입
최신글보기 질문게시판 기술자료 동영상강좌

아두이노 센서 ATMEGA128 PWM LED 초음파 AVR 블루투스 LCD UART 모터 적외선


BASIC4MCU | ♧ STM32F7 | ◆F7x5 Advanced | F7x5 Advanced

페이지 정보

작성자 master 작성일2018-04-19 09:59 조회1,665회 댓글0건

본문

STM32F7 Series 


STM32F7 series of very high-performance MCUs with ARM® Cortex®-M7 core

Taking advantage of ST’s ART Accelerator™ as well as an L1 cache, STM32F7 microcontrollers deliver the maximum theoretical performance of the Cortex-M7 core, regardless if code is executed from embedded Flash or external memory: 1082 CoreMark /462 DMIPS at 216 MHz fCPU.

Smart architecture with new peripheral set

The STM32F7 series unleashes the Cortex-M7 core:

  • AXI and multi-AHB bus matrixes for interconnecting core, peripherals and memories
  • Up to 16 Kbytes +16 Kbytes of I-cache and D-cache
  • Up to 2 Mbytes of embedded Flash memory, with Read-While-Write capability on certain devices
  • Two general-purpose DMA controllers and dedicated DMA controllers for Ethernet (on some variants), high-speed USB On-The-Go interfaces and the Chrom-ART graphic accelerator (on some variants)
  • Peripheral speed is independent from CPU speed (dual clock support) allowing system clock changes without any impact on peripheral operations
  • Even more peripherals, such as two serial audio interfaces (SAI) with SPDIF output support, three I²S half-duplex interfaces with SPDIF input support, two USB OTG interfaces with dedicated power supply and Dual-mode Quad-SPI Flash memory interface
  • Large SRAM with a scattered architecture: 
    • Up to 512 Kbytes of universal data memory, including up to 128 Kbytes of Tightly-Coupled Memory for Data (DTCM) for time critical data handling (stack, heap...)
    • 16 Kbytes of Tightly-Coupled Memory for Instructions (ITCM) for time-critical routines
    • 4 Kbytes of backup SRAM to keep data in the lowest power modes
  • Protected code execution feature (PC-ROP) on some variants
  • On-chip USB high-speed PHY on some variants

Power efficiency

  • 7 CoreMark/mW at 1.8 V
  • 100 µA typical current consumption in Stop mode with all context and SRAM saved

Compatibility

  • Cortex-M7 is backwards compatible with the Cortex-M4 instruction set
  • STM32F7 series is pin-to-pin compatible with the STM32F4 series*

* Note: see datasheet for the specific case of 64- and 100-pin packages

149fab2a955c5de460a27f8e38504fba_1524099242_3188.jpg
 






STM32F7x5 Advanced 


The STM32F745 line offers the performance of the Cortex-M7 core (with floating point unit) running up to 216 MHz while reaching similar lower static power consumption (Stop mode) versus the STM32F427/429/437/439 lines.

  • Performance: At 216 MHz fCPU, the STM32F745 delivers 1082 CoreMark / 462 DMIPS performance executing from Flash memory, with 0-wait states thanks to ST’s ART Accelerator. The DSP instructions and the floating point unit enlarge the range of addressable applications. External memory can be used with no performance penalty thanks to the L1 cache
    (I/D 4 Kbytes + 4 Kbytes).

  • Power efficiency: ST’s 90 nm process, ART Accelerator and dynamic power scaling enables the power consumption in Run mode and executing from Flash memory to be at 7 CoreMark / mW at 1.8 V. In Stop mode, power consumption is typically 100 µA, which is similar to the STM32F427/429/437/439 lines.

  • Graphics: As compared to the STM32F746/756 lines, the STM32F745 doesn’t embed the LCD-TFT controller interface. However, the STM32F745 embeds the Chrom‑ART Accelerator™. This graphics accelerator performs content creation twice as fast as the core alone. As well as efficient 2-D raw data copy, additional functions are supported by the Chrom-ART Accelerator such as image format conversion or image blending (image mixing with some transparency). As a result, the Chrom-ART Accelerator boosts graphics content creation and saves the processing bandwidth of the MCU core for the rest of the application. The STM32F745 can then be used to drive displays using a standard serial interface.

  • Integration:
    • Audio: Two dedicated audio PLLs, three half-duplex I²S interfaces and a new serial audio interface (SAI) supporting time-division multiplex (TDM) mode.
      Up to 25 communication interfaces (including four USARTs in addition to four UARTs running at up to 12.5 Mbit/s, six SPIs running at up to 50 Mbit/s, four I²C interfaces with a new optional digital filter capability, two CAN, SDIO, USB 2.0 full-speed device/host/OTG controller with an on-chip PHY and a USB 2.0 high-speed/full-speed device/host/OTG controller, on-chip full-speed PHY and ULPI, Ethernet MAC, SPDIF-IN and HDMI-CEC).
    • Analog: Two 12-bit DACs, three 12-bit ADCs reaching 2.4 MSPS or 7.2 MSPS in Interleaved mode.
      Up to 18 timers: 16- and 32-bit running at up to 216 MHz.
      Easily extendable memory range using the flexible memory controller with 32-bit parallel interface, and supporting Compact Flash, SRAM, PSRAM, NOR, NAND and SDRAM memories or using the Dual-mode Quad-SPI to allow code execution from external serial Flash memory.
      An analog true random number generator.

The STM32F745 line provides from 512 Kbytes to 1 Mbyte of Flash memory, 320-Kbyte SRAM, 16-Kbyte ITCM RAM, 4-Kbyte Backup RAM and 100- to 176-pin packages. 

149fab2a955c5de460a27f8e38504fba_1524099250_8677.jpg
 

댓글 0

조회수 1,665

등록된 댓글이 없습니다.

♧ STM32F7HOME > ♧ STM32F7 > 전체 목록

게시물 검색

2022년 1월 2월 3월 4월 5월 6월 7월 8월 9월 10월 11월 12월
2021년 1월 2월 3월 4월 5월 6월 7월 8월 9월 10월 11월 12월
2020년 1월 2월 3월 4월 5월 6월 7월 8월 9월 10월 11월 12월
2019년 1월 2월 3월 4월 5월 6월 7월 8월 9월 10월 11월 12월
2018년 1월 2월 3월 4월 5월 6월 7월 8월 9월 10월 11월 12월
Privacy Policy
MCU BASIC ⓒ 2020
모바일버전으로보기