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| Categories | Integrated Circuit Chip | 
|---|---|
| Brand Name: | Anterwell | 
| Model Number: | STM8S103F3P6TR | 
| Certification: | new & original | 
| Place of Origin: | original factory | 
| MOQ: | 10pcs | 
| Price: | Negotiate | 
| Payment Terms: | T/T, Western Union, Paypal | 
| Supply Ability: | 8200pcs | 
| Delivery Time: | 1 day | 
| Packaging Details: | Please contact me for details | 
| KB: | 8KB | 
| Data RAM room: | 1 kB | 
| VDD POWER: | 2.95 V to 5.5 V | 
| Max working tempertaure: | + 85 °C | 
| Min working tempertaure: | - 40 °C | 
| packing: | reel | 
| Company Info. | 
| Anterwell Technology Ltd. | 
| View Contact Details | 
| Product List | 
STM8S103F3P6TR Access line 8 Kbytes Flash, data EEPROM,10-bit ADC, 3 timers
Features
Core
16 MHz advanced STM8 core with Harvard architecture and 3-stage pipeline
Extended instruction set Memories
Program memory:8 Kbytes Flash;dataretention 20 years at 55 °C after 10 kcycles
Data memory: 640 bytes true data EEPROM; endurance 300 kcycles
RAM: 1 Kbytes Clock, reset and supply management
2.95 to 5.5 V operating voltage
Flexible clock control, 4 master clock sources: - 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
Power management: - Low power modes (wait, active-halt, halt) - Switch-off peripheral clocks individually
Permanentlyactive, low consumptionpower-on and power-down reset
Interrupt management
Nested interrupt controller with 32 interrupts
Up to 27 external interrupts on 6 vectors
Timers
Advanced control timer: 16-bit, 4 CAPCOM channels, 3 complementary outputs, dead-time insertion and flexible synchronization
16-bit general purpose timer, with 3 CAPCOM channels (IC, OC or PWM)
8-bit basic timer with 8-bit prescaler
Auto wake-up timer
Window watchdog and independent watchdog timers
Communications interfaces
UART with clock output for synchronous operation, Smartcard, IrDA, LIN master mode
SPI interface up to 8 Mbit/s
I 2C interface up to 400 Kbit/s
Analog to digital converter (ADC)
10-bit, ±1 LSB ADC with up to 5 multiplexed channels, scan mode and analog watchdog
I/Os
Up to 28 I/Os on a 32-pin package including 21 high sink outputs
Highly robust I/O design, immuneagainst current injection
Development support - Embedded single wire interface module (SWIM) for fast on-chip programming and non intrusive debugging
Unique ID
96-bit unique key for each device
1 Introduction
Thisdatasheet contains thedescriptionof thedevicefeatures,pinout,electrical characteristics, mechanical data and ordering information. • For completeinformationonthe STM8S microcontroller memory, registersandperipherals, please refer to the STM8S microcontroller family reference manual (RM0016). • For information on programming, erasing and protection of the internal Flash memory please refer to the STM8S Flash programming manual (PM0051). • For information on the debug and SWIM (single wire interface module) refer to the STM8 SWIM communication protocol and debug module user manual (UM0470). • For information on the STM8 core, please refer to the STM8 CPU programming manual (PM0044).
2 Description
The STM8S103x access line 8-bit microcontrollers offer 8 Kbytes Flash program memory, plus integrated true data EEPROM. The STM8S microcontroller family reference manual (RM0016) refers to devices in this family as low-density. They provide the following benefits: • Reduced system cost - Integrated true data EEPROM for up to 300 k write/erase cycles - High system integration level with internal clock oscillators, watchdog and brown-out reset. • Performance and robustness - 16 MHz CPU clock frequency - Robust I/O, independent watchdogs with separate clock source - Clock security system • Full documentation and a wide choice of development tools • Advanced core and peripherals made in a state-of-the art technology
Table 1: STM8S103xx access line features
| Device | STM8S103K3 | STM8S103F3 | STM8S103F2 | 
| Pin count | 32 | 20 | 20 | 
| Maximum numberof GPIOs (I/Os) | 28 | 16 | 16 | 
| Ext. interrupt pins | 27 | 16 | 16 | 
| Timer CAPCOM channels | 7 | 7 | 7 | 
| Timer complementary outputs | 3 | 2 | 2 | 
| A/D converter channels | 4 | 5 | 5 | 
| High sink I/Os | 21 | 12 | 12 | 
| Low density Flash program memory (bytes) | 8K | 8K | 4K | 
| Data EEPROM (bytes) | 640(1) | 640(1) | 640(1) | 
| RAM (bytes) | 1K | 1K | 1K | 
| Peripheral set | Multipurpose timer (TIM1), SPI, I 2C, UART window WDG,independent WDG, ADC, PWM timer (TIM2),8-bit timer (TIM4) | ||

4 Product overview
Thefollowingsectionintends togiveanoverview of thebasic featuresof thedevicefunctional modules and peripherals. For more detailed information please refer to the corresponding family reference manual (RM0016).
4.1 Central processing unit STM8
The 8-bit STM8 core is designed for code efficiency and performance. It contains 6 internal registers which are directly addressable in each execution context, 20 addressing modes including indexed indirect and relative addressing and 80 instructions.
Architecture and registers
Harvard architecture
3-stage pipeline
32-bit wide program memory bus - single cycle fetching for most instructions
X and Y 16-bit index registers - enabling indexed addressing modes with or without offset and read-modify-write type data manipulations
8-bit accumulator
24-bit program counter - 16-Mbyte linear memory space
16-bit stack pointer - access to a 64 K-level stack
8-bit condition code register - 7 condition flags for the result of the last instruction
Addressing
20 addressing modes
Indexed indirect addressing mode for look-up tables located anywhere in the address space
Stack pointer relative addressing mode for local variables and parameter passing
Instruction set
80 instructions with 2-byte average instruction size
Standard data movement and logic/arithmetic functions
8-bit by 8-bit multiplication
16-bit by 8-bit and 16-bit by 16-bit division
Bit manipulation
Data transfer between stack and accumulator (push/pop) with direct stack access
Data transfer using the X and Y registers or direct memory-to-memory transfers
4.2 Single wire interface module (SWIM) and debug module (DM)
The single wire interface module and debug module permits non-intrusive, real-time in-circuit debugging and fast memory programming.
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