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STM8S207CBT6: CAD Models, Datasheet, Features [Video&FAQ]

  • Contents

Catalog

STM8S207CBT6 Product Overview

STM8S207CBT6 Related Video Introduction

STM8S207CBT6 CAD Models

STM8S207CBT6 Pin Configuration

STM8S207CBT6 Block Diagram

STM8S207CBT6 Features

STM8S207CBT6 Applications

STM8S207CBT6 Package Dimensions

STM8S207CBT6 Datasheet

STM8S207CBT6 Specifications

STM8S207CBT6 Manufacturer

Using Warning

STM8S207CBT6 FAQ

 

STM8S207CBT6 Product Overview

The STM8S207CBT6 is a Performance line, 24 MHz STM8S 8-bit MCU, up to 128 KB Flash, integrated EEPROM, 10-bit ADC, timers, 2 UARTs, SPI, I²C, CAN. The performance series of STM8S20xxx 8-bit microcontrollers provides 32–128 Kbytes of Flash program memory. In the reference handbook for the STM8S microcontroller family, they are referred to as high-density devices.

 

The advantages of all STM8S20xxx devices are lower system costs, reliable performance, quick development times, and long product lifespans.

 

An integrated real data EEPROM with up to 300 k write/erase cycles and a high level of system integration with internal clock oscillators, a watchdog, and brown-out reset lower the system cost.

 

The 20 MIPS at 24 MHz CPU clock frequency and improved characteristics, such as strong I/O, independent watchdogs (with a separate clock source), and a clock security mechanism, guarantee device performance.

 

Due to application scalability over a common family product architecture with compatible pinout, memory map, and modular peripherals, short development cycles are ensured. A large selection of development tools are available with full documentation.

 

The STM8S family's sophisticated core, which is created using cutting-edge technology for applications with operating supplies ranging from 2.95 V to 5.5 V, ensures the longevity of their products.

 

Video Description: This video will tell you What is a microcontroller and how microcontroller works.

 

STM8S207CBT6 CAD Models

 

Figure: PCB Symbol

 

 

Figure: Footprint

 

 

Figure: 3D Models

 

STM8S207CBT6 Pin Configuration

 

Figure: Pin Configuration

 

STM8S207CBT6 Block Diagram

 

Figure: Block Diagram

 

STM8S207CBT6 Features

  • Communications interfaces

– High speed 1 Mbit/s active beCAN 2.0B

– UART with clock output for synchronous operation - LIN master mode

– UART with LIN 2.1 compliant, master/slave modes and automatic resynchronization

– SPI interface up to 10 Mbit/s

– I2C interface up to 400 Kbit/s

  • 10-bit ADC with up to 16 channels
  • I/Os

– Up to 68 I/Os on an 80-pin package including 18 high sink outputs

– Highly robust I/O design, immune against current injection

– Development support

– Single wire interface module (SWIM) and debug module (DM)

  • 96-bit unique ID key for each device
  • Core

– Max fCPU: up to 24 MHz, 0 wait states @ fCPU £ 16 MHz

– Advanced STM8 core with Harvard architecture and 3-stage pipeline

– Extended instruction set

– Max 20 MIPS @ 24 MHz

  • Memories

– Program: up to 128 Kbytes Flash; data retention 20 years at 55 °C after 10 kcycles

– Data: up to 2 Kbytes true data EEPROM; endurance 300 kcycles

– RAM: up to 6 Kbytes

  • Clock, reset and supply management

– 2.95 to 5.5 V operating voltage

– Low power crystal resonator oscillator

– External clock input

– Internal, user-trimmable 16 MHz RC

– Internal low power 128 kHz RC

– Clock security system with clock monitor

– Wait, active-halt, & halt low power modes

– Peripheral clocks switched off individually

– Permanently active, low consumption power-on and power-down reset

  • Interrupt management

– Nested interrupt controller with 32 interrupts

– Up to 37 external interrupts on 6 vectors

  • Timers

– 2x 16-bit general purpose timers, with 2+3 CAPCOM channels (IC, OC or PWM)

– Advanced control timer: 16-bit, 4 CAPCOM channels, 3 complementary outputs, deadtime insertion and flexible synchronization

– 8-bit basic timer with 8-bit prescaler

– Auto wakeup timer

– Window watchdog, independent watchdog

 

STM8S207CBT6 Applications

  • Fire detection & safety devices
  • Industrial instrumentation devices
  • Process control devices
  • Light sensing & controlling devices
  • Temperature sensing and controlling devices

 

STM8S207CBT6 Package Dimensions

 

Figure: Package Dimensions

 

STM8S207CBT6 Datasheet

You can download the datasheet from the link given below:

 

STM8S207CBT6 Datasheet

 

STM8S207CBT6 Specifications

Type Description
Category Integrated Circuits (ICs)
Embedded
Microcontrollers
Mfr STMicroelectronics
Series STM8S
Package Tray
Product Status Active
Core Processor STM8
Core Size 8-Bit
Speed 24MHz
Connectivity I²C, IrDA, LINbus, SPI, UART/USART
Peripherals Brown-out Detect/Reset, POR, PWM, WDT
Number of I/O 38
Program Memory Size 128KB (128K x 8)
Program Memory Type FLASH
EEPROM Size 2K x 8
RAM Size 6K x 8
Voltage - Supply (Vcc/Vdd) 2.95V ~ 5.5V
Data Converters A/D 10x10b
Oscillator Type Internal
Operating Temperature -40°C ~ 85°C (TA)
Mounting Type Surface Mount
Package / Case 48-LQFP
Base Product Number STM8

 

STM8S207CBT6 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.

 

STM8S207CBT6 FAQ

What are microcontrollers 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 microcontroller 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).

 

What is the difference between microcontroller and chip?

A microcontroller often has a low processing speed and little ROM (flash) and memory. A System-on-Chip, however, represents the opposite extreme of the spectrum. More emphasis is placed on total freedom and user involvement.

 

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