Induction-Damped Standard Brunton F-2061 Pocket Transit Compass, Azimuth
The Brunton F-2061 Pocket Transit Compass is a precise and reliable tool designed for geologists, surveyors, and outdoor professionals who require accurate measurements in the field. Known for its durability and high performance, this compass features a robust aluminum housing and advanced induction damping technology, making it a superior choice for demanding environments.
Key Features
- Precision Azimuth and Quadrant Measurements: Offers horizontal angle readings from 0-360° (Azimuth) or 0-90-0° (Quadrant), with graduations to 1° for precise measurements.
- Accurate Vertical Angles: Measures vertical angles up to ±90°, with vernier readings to 10 minutes, ensuring detailed and accurate data collection.
- Induction-Damped Needle: The advanced induction damping technology allows the needle to find magnetic North and settle approximately eight times faster than undamped models, providing quick and reliable readings.
- Durable Aluminum Housing: Built with a rugged aluminum casing, this compass is designed to withstand harsh conditions while maintaining its accuracy and reliability.
- Declination Adjustment: Features a declination adjustment for precise navigation and measurement, accounting for the difference between magnetic and true North.
- Needle Protection Mechanism: The unique lift mechanism stops the needle automatically when the case is closed, prolonging needle life. A button on the face of the transit allows you to stop the needle quickly and hold it in place.
- Compact and Portable: Measuring 2-3/4” x 3” x 1-1/8”, this pocket-sized transit compass is easy to carry in the field and comes with a protective leather case for added convenience and durability.
The Brunton F-2061 Pocket Transit Compass is an indispensable tool for professionals who demand accuracy and reliability in their fieldwork. With its durable construction, precise measurements, and user-friendly features, this compass is the ideal choice for navigating and measuring in challenging environments.