My initial idea for the "Badminton Training Device" project was to sense the form and intensity of the racket swing, whether it hit the badminton and where it was hit, etc., record the quality of all swings after a game, and combine it with the host computer to make a badminton shot. Play the practice analysis system. The MLC and FSM modules in LSM6DSOX can analyze and identify actions, which greatly reduces the data processing requirements of the MCU and can save resources to complete prompt or record functions.
This is a single-channel LiDAR demonstration board that allows you to check the operation of a high-speed optical front-end using LiDAR ToF scope technology. The measuring distance can reach 50m. LiDAR ToF architecture can be used in automotive as well as consumer and industrial machinery.
The NXP Mechatronics Robot is an easy-to-use mechatronics development and demonstration platform for operating with the TWR-MECH Board.
The LS1028A development board has most of the features of the LS1028A processor, built with a high-performance core, HMI functionality and TSN.
This project uses LSM6DSOX high-performance sensor and LIS25BA high-precision bone conduction sensor to control the four-axis robotic arm. By combining FMS and MLC with LSM6DSOX, the robotic arm can grab and put down items. Through LIS25BA, the vibration can be recognized and the steering gear can be controlled to complete the corresponding actions.
Surface mount to DIP evaluation board
This single-phase energy meter reference design is used for the measurement and registration of active and reactive energy within a directly connected single-phase two-wire network.
The MAXREFDES1044 is a reference design for the MAX30101 and several other Maxim® products that demonstrates how a small size, low cost, low power, high accuracy heart-rate monitor can be easily implemented. This design can monitor heart rate using red, infrared (IR), or green LEDs.
The MAXREFDES171# is a complete, high-accuracy, IO-Link distance sensor reference design that provides accurate ranging up to 4m. Built in an industrial form factor, the design makes use of a commercially available time-of-flight (ToF), laser-ranging sensor.
The MAXREFDES103# is a wrist-worn wearable form factor that demonstrates the high sensitivity and algorithm processing functions for health-sensing applications. This health sensor band platform includes an enclosure and a biometric sensor hub with an embedded heart-rate, SpO2 algorithm (the MAX32664C) which processes PPG signals from the analog-front-end (AFE) sensor (the MAX86141). Algorithm output and raw data can be streamed through Bluetooth® technology to an Android® app or PC GUI for demonstration, evaluation, and customized development.
The LS1012A-RDB is a compact tool that can be used to evaluate LS1012A solutions for consumer electronics, industrial control and networking applications.
The design is a custom 3d model from Sensirion. Sensirion provides a 3d model, but it has very few features.
The EPC901 is a 1024x1 CCD sensor capable of providing 50MHz pixel output. It outputs analog voltage from the CCD element. The author paired it with a 50MSps ADC on a SYZYGY board. The datasheet says it can run up to 50k fps. External I/O is provided via optocouplers to facilitate connection to external trigger sources such as motion controllers. This board will assist in conducting experiments on the new PnP platform. Objects can be moved through the line scanner to capture the position of the photo.
The MAXREFDES1161# is a small form factor, high accuracy, 2-wire 4mA to 20mA transmitter which integrates all functional and protection blocks in a small 1.0in x 0.6in dual-row header footprint that is compatible with breadboards and off-the-shelf peripheral expansion boards.
In this design a single 12V input supplies a circuit which outputs 6 separate rails ranging from 500mW to 130W. The design is specified to meet the XILINX Versal ACAP AI Core Series UC1/3 requirements. The design layout is also optimized for the Versal ACAP IC.
BRKOUT-FXLN83xxQ kit includesBreakout board for the FXLN83xxQ acceleration sensor series.
The MAXREFDES164# IO-Link® temp sensor reference design uses the MAX14828 IO-Link device transceiver and supports the TMG TE IO-Link or TEConcept IO-Link stack.
A Russian Github master has open sourced a DIY lidar project, from PCB to host computer software.