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STM32F767BIT6: CAD Models, Datasheet, Features [Video&FAQ]

  • Contents

Catalog

STM32F767BIT6 Product Overview

STM32F767BIT6 Related Video Introduction

STM32F767BIT6 CAD Models

STM32F767BIT6 Pin Configuration

STM32F767BIT6 Block Diagram

STM32F767BIT6 Power Supply Scheme

STM32F767BIT6 Features

STM32F767BIT6 Applications

STM32F767BIT6 Datasheet

STM32F767BIT6 Specifications

STM32F767BIT6 Manufacturer

Using Warning

STM32F767BIT6 FAQ

STM32F767BIT6 Product Overview

The STM32F767BIT6 is a Arm® Cortex®-M7 32b MCU+FPU. The high-performance Arm® Cortex®-M7 32-bit RISC core used in the STM32F765xx, STM32F767xx, STM32F768Ax, and STM32F769xx devices operates at up to 216 MHz frequency. A floating point unit (FPU) that supports Arm® single-precision and double-precision data-processing instructions and data formats is a feature of the Cortex®-M7 core. Moreover, it incorporates a memory protection unit (MPU) that improves program security together with the whole range of DSP instructions.

 

The STM32F765xx, STM32F767xx, STM32F768Ax, and STM32F769xx devices include high-speed embedded memories with a Flash memory up to 2 Mbytes, 512 Kbytes of SRAM (including 128 Kbytes of Data TCM RAM for critical real-time data), 16 Kbytes of Instruction TCM RAM (for critical real-time routines), 4 Kbytes of backup SRAM available in the lowest power modes, and an extensive range of enhanced I/Os and peripherals connected to two APB buses, two AHB buses, a 32-bit multi-AHB bus matrix and a multi layer AXI interconnect supporting internal and external memories access.

 

Two SDMMC interfaces, a Flexible Memory Control (FMC) interface, a Quad-SPI Flash memory interface, and a camera interface for CMOS sensors are examples of advanced peripherals.

 

The STM32F765xx, STM32F767xx, STM32F768Ax, and STM32F769xx devices run on a 1.7 to 3.6 V power supply and function in the -40 to +105 °C temperature range. For a wider range of power supply options, dedicated supply inputs for USB (OTG FS and OTG HS) and SDMMC2 (clock, command, and 4-bit data) are available on all the packages with the exception of LQFP100.

 

With the aid of an external power supply supervisor, the supply voltage can fall as low as 1.7 V. The development of low-power applications is made possible by a wide range of power-saving modes.

 

The devices offered by the STM32F765xx, STM32F767xx, STM32F768Ax, and STM32F769xx come in 11 packages with pin counts ranging from 100 to 216. Depending on the device selected, a different set of peripherals are included.

 

Video Description: Microprocessors and microcontrollers nearly have the same visual appearance, although they differ greatly in many ways. They differ in terms of the application they are used for, their processing speed, memory, price, and power requirements.
You will learn about the distinctions between a microprocessor and a microcontroller in this video.

 

STM32F767BIT6 CAD Models

 

Figure: PCB Symbol

 

 

Figure: Footprint

 

 

Figure: 3D Models

 

STM32F767BIT6 Pin Configuration

 

Figure: Pin Configuration

 

STM32F767BIT6 Block Diagram

 

Figure: Block Diagram

 

STM32F767BIT6 Power Supply Scheme

 

Figure: Power Supply Scheme

 

STM32F767BIT6 Features

Includes ST state-of-the-art patented technology

  • Low-power

– Sleep, Stop and Standby modes

– VBAT supply for RTC, 32×32 bit backup registers + 4 Kbytes backup SRAM

  • 3×12-bit, 2.4 MSPS ADC: up to 24 channels
  • Digital filters for sigma delta modulator(DFSDM), 8 channels / 4 filters
  • 2×12-bit D/A converters
  • General-purpose DMA: 16-stream DMAcontroller with FIFOs and burst support
  • Up to 18 timers: up to thirteen 16-bit (1x lowpower 16-bit timer available in Stop mode) andtwo 32-bit timers, each with up to 4

IC/OC/PWM or pulse counter and quadrature (incremental) encoder input. All 15 timers running up to 216 MHz. 2x watchdogs, SysTick timer

  • Debug mode

– SWD and JTAG interfaces

– Cortex®-M7 Trace Macrocell™

  • Up to 168 I/O ports with interrupt capability

– Up to 164 fast I/Os up to 108 MHz

– Up to 166 5 V-tolerant I/Os

  • Core: Arm® 32-bit Cortex®-M7 CPU withDPFPU, ART Accelerator and L1-cache:16 Kbytes I/D cache, allowing 0-wait state execution from embedded Flash and external memories, up to 216 MHz, MPU, 462 DMIPS/2.14 DMIPS/MHz (Dhrystone 2.1), and DSP instructions.
  • Memories

– Up to 2 Mbytes of Flash memory organized into two banks allowing read-while-write

– SRAM: 512 Kbytes (including 128 Kbytes of data TCM RAM for critical real-time data) + 16 Kbytes of instruction TCM RAM (for

critical real-time routines) + 4 Kbytes of backup SRAM

– Flexible external memory controller with up to 32-bit data bus: SRAM, PSRAM, SDRAM/LPSDR SDRAM, NOR/NAND memories

  • Dual mode Quad-SPI
  • Graphics

– Chrom-ART Accelerator (DMA2D), graphical hardware accelerator enabling enhanced graphical user interface

– Hardware JPEG codec

– LCD-TFT controller supporting up to XGA resolution

– MIPI® DSI host controller supporting up to 720p 30 Hz resolution

  • Clock, reset and supply management

– 1.7 V to 3.6 V application supply and I/Os

– POR, PDR, PVD and BOR

– Dedicated USB power

– 4-to-26 MHz crystal oscillator

– Internal 16 MHz factory-trimmed RC (1% accuracy)

– 32 kHz oscillator for RTC with calibration

– Internal 32 kHz RC with calibration

  • Up to 28 communication interfaces

– Up to 4 I2C interfaces (SMBus/PMBus)

– Up to 4 USARTs/4 UARTs (12.5 Mbit/s, ISO7816 interface, LIN, IrDA, modem control)

– Up to 6 SPIs (up to 54 Mbit/s), 3 with muxed simplex I2S for audio

– 2 x SAIs (serial audio interface)

– 3 × CANs (2.0B Active) and 2x SDMMCs

– SPDIFRX interface

– HDMI-CEC

– MDIO slave interface

  • Advanced connectivity

– USB 2.0 full-speed device/host/OTG controller with on-chip PHY

– USB 2.0 high-speed/full-speed device/host/OTG controller with dedicated DMA, on-chip full-speed PHY and ULPI

– 10/100 Ethernet MAC with dedicated DMA: supports IEEE 1588v2 hardware, MII/RMII

  • 8- to 14-bit camera interface up to 54 Mbyte/s
  • True random number generator
  • CRC calculation unit
  • RTC: subsecond accuracy, hardware calendar
  • 96-bit unique ID

 

STM32F767BIT6 Applications

  • Alarm systems, video intercom, and HVAC
  • Home audio appliances
  • Mobile applications, Internet of Things
  • Wearable devices: smartwatches
  • Motor drive and application control
  • Medical equipment
  • Industrial applications: PLC, inverters, circuit breakers
  • Printers, and scanners

 

STM32F767BIT6 Datasheet

You can download the datasheet from the link given below:

 

STM32F767BIT6 Datasheet

 

STM32F767BIT6 Specifications

Type Description
Category Integrated Circuits (ICs)
Embedded
Microcontrollers
Mfr STMicroelectronics
Series STM32F7
Package Tray
Product Status Active
Core Processor ARM® Cortex®-M7
Core Size 32-Bit Single-Core
Speed 216MHz
Connectivity CANbus, EBI/EMI, Ethernet, I²C, IrDA, LINbus, MMC/SD/SDIO, QSPI, SAI, SPDIF, SPI, UART/USART, USB OTG
Peripherals Brown-out Detect/Reset, DMA, I²S, LCD, POR, PWM, WDT
Number of I/O 159
Program Memory Size 2MB (2M x 8)
Program Memory Type FLASH
EEPROM Size -
RAM Size 512K x 8
Voltage - Supply (Vcc/Vdd) 1.7V ~ 3.6V
Data Converters A/D 24x12b; D/A 2x12b
Oscillator Type Internal
Operating Temperature -40°C ~ 85°C (TA)
Mounting Type Surface Mount
Package / Case 208-LQFP
Supplier Device Package 208-LQFP (28x28)
Base Product Number STM32F767

STM32F767BIT6 Manufacturer

STMicroelectronics N.V., sometimes known as ST or STMicro, is a global Dutch firm that specializes in technology with French and Italian roots. Its headquarters are in Plan-les-Ouates, which is close to Geneva, Switzerland, and it is listed on the French stock exchange. The largest semiconductor contract manufacturing and design business in Europe is ST. In 1987, Thomson Semiconducteurs of France and SGS Microelettronica of Italy, two government-owned semiconductor businesses, merged to form the corporation.

 

Using Warning

Note: Please check their parameters and pin configuration before replacing them in your circuit.

 

STM32F767BIT6 FAQ

What is a microcontroller used for?

A microcontroller is a compact microcomputer designed to manage embedded systems in office equipment, robotics, home appliances, cars, and several other devices. A microcontroller is made up of different parts, including a CPU, memory, and peripherals.

 

Is an Arduino a microprocessor or microcontroller?

An 8-bit microcontroller board is called an Arduino. Eight bits of data can be processed at once. A 64-bit microprocessor is at the heart of the Raspberry Pi minicomputer. At one time, 64 bits of data can be processed.

 

Does microcontroller use AC or DC?

For the purpose of our needs in circuits containing microcontrollers, the output voltage must be in the form of direct current (DC).

 

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