This data brief provides detailed information about the STEVAL-ILL019V1 32 W offline RGGB LED driver, including features, specifications, application examples and schematic diagrams.
This data brief provides the features of the STEVAL-CCM001V2 graphic panel demonstration board, including microcontroller, screen, module interface, RTC, MEMS device, microSD card, USB connector, power supply, battery circuit, JTAG connector and ESD protection device
The STEVAL-PCC011V1 ST802RT1B Ethernet PHY demonstration board is designed as an evaluation platform for the ST802RT1B, Fast Ethernet physical layer (PHY) interface supporting 100BASE-FX applications.
This document introduces the STEVAL-MKI042V1 adapter board, which can be used for the evaluation of MEMS devices in the LPR503AL product family. The board offers an effective solution for fast system prototyping and device evaluation directly within the user’s own application.
The STEVAL-MKI043V1 is an adapter board designed to facilitate the evaluation of MEMS devices in the LPR510AL product family. The board offers an effective solution for fast system prototyping and device evaluation directly within the user’s own application. The STEVAL-MKI043V1 can be plugged into a standard DIL 24 socket. The adapter provides the complete LPR510AL pinout and comes ready-to-use with the required decoupling capacitors on the VDD power supply line. The pinout of the adapter is fully compatible with all other available adapter boards, making it possible to easily switch from one sensor to another during device evaluation without the need for board redesign.
The second generation of the iNEMO™ module family. It combines accelerometers, gyroscopes and magnetometers with pressure and temperature sensors to provide 3-axis sensing of linear, angular and magnetic motion, complemented with temperature and barometer/altitude.
The STEVAL-MKI044V1 is an adapter board designed to facilitate the evaluation of MEMS devices in the LPR530AL product family. The board can be plugged into a standard DIL 24 socket and provides the complete LPR530AL pinout. The pinout of the adapter is fully compatible with all other available adapter boards, making it possible to easily switch from one sensor to another during device evaluation without the need for board redesign.
The STEVAL-ISQ009V1 demonstration board is composed of three identical sections (daughterboards) and a motherboard. Each daughterboard is capable of performing DC-DC conversion starting from +5 VDC and is designed to deliver 3.3 V / 5 A to the load. The input terminals of the motherboard are connected to a +5 VDC external source and the output terminals to the load. The board can accommodate up to three DC-DC converters. The motherboard contains the circuitry necessary to perform current sharing (utilizing the L6615) and to isolate a failed section from the load. It is designed to be adaptable to all power supplies (compatible with the L6615 absolute maximum ratings) having remote sense pins. By changing just a few components, it can be modified for new specifications. It is possible to build a system to supply a 10 A load at +3.3 V in a 2+1 redundant configuration. That is, whenever three sections are running, each of them supplies 3.33 A, a value lower than its no
The STEVAL-ICB002V1 is a capacitive touch daughterboard based on the STMPE821 8-channel capacitive touch key controller. This board connects to the STEVAL-PCC009V3 interface board to form a STM32-based capacitive touch demonstration application designed to evaluate the functioning of the STMPE821 device.
This data brief describes the features and characteristics of the STEVAL-ISB011V1 Li-ion battery monitoring system demonstration board based on the STC3100 and STM32.