Measure loss during combine harvesting by counting or weighing lost grains using a loss control pan. Calculate losses, calibrate equipment, and adjust settings for optimal harvesting efficiency. Input data to track and analyze loss measurements.
Manage Raspberry Pi remotely with GPIO control for on/off and impulse functions. Access a file manager to explore and transfer files. Send terminal commands, view camera images, and retrieve sensor data.
Measure noise levels in real time with . Calibrate for accurate readings. Track lowest, average, and highest noise levels. Switch to dark mode for better visibility in low light.
Monitor device data including , network usage, and system information. Record logs over time and export data in various formats. View detailed device specifications and track changes in real-time. Remove ads with a purchase.
Create floorplans using AR by calibrating the camera and marking room corners. dimensions and visualize layouts. Export plans and share with contractors or save for personal use.
Measure distances and heights using the phone's camera and accelerometer. Point the device at an object to calculate distance or height. Results are displayed in real-time without requiring movement.
Configure vehicle display settings with customizable colors and themes. Calibrate gauges and set warning thresholds. Use GPS for speedometer calibration. Access real-time sensor data for diagnostics. Arrange gauge layouts in programmable groups.
A tuning with auto noise filtering. Select frequency and tuning settings. Display pitch for each string as high or low. Calibrate piano sound by clicking an open string. Adjust A4 frequency between 428 and 452.
Calibrate and Pendulum clocks by measuring and adjusting their beat period. Sync with a known accurate time source to correct drift. Monitor daily time gain or loss with precision up to 0.001 milliseconds.