Capture accelerometer, gyroscope, and magnetometer from iOS devices. Include time stamps and Apple's enhanced device motion for reference. Export raw for research or experimentation.
by Christopher Wozny★ 3.110 ratingsEducation$0.99Data updated 2026-09-08
Record bird songs or calls using an iPhone or iPad. Analyze audio to identify species based on vocalizations. Provide bird names and details. Filter results by location and time. Share recordings and identification data.
Use compass and gyroscope to locate planets, stars, and constellations. View high-definition Retina graphics with detailed celestial objects. Access 3D views, constellation artwork, and deep sky objects. Sync with iPad for enhanced features.
Manage IoT devices with real-time monitoring, remote configuration, and data analytics. Customize deployments to fit specific needs. Integrate with existing systems and scale as required.
Lets users record observations with time-stamped entries. Tap buttons to log common events or use the keyboard for custom . Export in chronological order as CSV, JSON, or plain text to cloud storage.
Run game ROMs from six different with touchscreen and gyroscope controls. Save game progress and access offline mode. Manage favorites and automatically generate a user profile.
Trigger sounds via accelerometer, touch, GPS, or timer. Choose from loud and varied noises. Share recordings with friends. Set schedules for automated pranks.
Create slow motion and high videos with adjustable playback speeds. Flip videos left-right and modify sound pitch to match . Pro version allows custom ranges, preserves pitch, and saves as MP4, GIF, or Live Photo.
The app uses the iPhone's magnetometer to detect magnetic metal objects, such as nails, within walls. It requires a device with a magnetometer and magnetic nails for functionality.
Record lectures, meetings, and study sessions with automatic transcription. Capture handwritten and organize them into structured documents. Search for by voice or text. Share directly with others. Sync across devices for seamless access.
Generate numbers by creating sequences of bouncing that collide with walls and other . Some reach target points to serve as results. Use accelerometer data to control physics-based ball machines.
Distances and angles by moving your device. Use accelerometer data to calculate length, width, and height. Determine angles with a protractor tool. Switch between ruler, , rangefinder, and 3D angle finder modes.