STEVAL-MKI030V1 STMicroelectronics, STEVAL-MKI030V1 Datasheet - Page 13

BOARD DEMO STM8S207R6/LIS331DLH

STEVAL-MKI030V1

Manufacturer Part Number
STEVAL-MKI030V1
Description
BOARD DEMO STM8S207R6/LIS331DLH
Manufacturer
STMicroelectronics
Series
MEMSr

Specifications of STEVAL-MKI030V1

Design Resources
STEVAL-MKI030V1 Schematic
Sensor Type
Accelerometer, 3 Axis
Sensing Range
±2g, 4g, 8g
Interface
I²C, SCI
Sensitivity
3.9mg/digit, 2mg/digit, 1mg/digit
Voltage - Supply
4.5V
Embedded
Yes, MCU, 8-Bit
Utilized Ic / Part
LIS331DLH, STM8S207R6T6
Sensing Axis
Triple Axis
Operating Voltage
5 V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
497-8852
STM8S207xx, STM8S208xx
4
4.1
Product overview
The following section intends to give an overview of the basic features of the STM8S20xxx
performance line functional modules and peripherals.
For more detailed information please refer to the corresponding family reference manual
(RM0016).
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
Addressing
Instruction set
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
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
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
Doc ID 14733 Rev 11
Product overview
13/105

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