● Range: 3 to 19,999 RPM; 0 to 99999 m; 0 to 1999.99 m/min; 0 to 9999.9 ft/min. ● Units: ft/min, m/min, m. ● Ambient range: -10°C to 50°C. ● Contact measurement with idler wheel. ● LCD display: 5 digits with clear RPM and temperature readings. ● Data Hold and Max/Min display. ● Compact and durable design for industrial use. ● Low battery indicator for timely replacement.
The MASTECH MS6209B is a digital tachometer designed for accurate contact-based RPM (revolutions per minute) measurements. Using an idler wheel, this model provides highly reliable readings for applications that require direct physical measurement.
Key Features:
Contact Measurement Mode: Measures RPM by contacting the rotating surface with an idler wheel.
Wide RPM Range: Measure RPM from 3 to 19,999 with high precision.
High Accuracy: Accuracy ensures precise measurements, even at high speeds.
LCD Display: Large 5-digit display with clear readings of RPM, temperature, and other important data.
Data Hold Function: Freeze the current measurement for easy recording.
Max/Min Display: Shows the maximum and minimum RPM values recorded.
Compact and Durable: Designed to withstand industrial environments while remaining portable.
Low Battery Indicator: Alerts when the battery is running low for timely replacements.
Specifications:
Range: 3 to 19,999 RPM, 0 to 99999m, 0 to 1999.99 m/min, 0 to 9999.9 ft/min
Various Units: Including ft/min, m/min and m.
Ambient Range: -10°C to 50°C
Benefits:
Precision Contact Measurement: Offers more accurate RPM readings through direct contact, ideal for detailed analysis of machinery speed.
Flexible Use: Compatible with various idler wheels for versatile use in different mechanical systems.
Reliable Data Logging: Capture and store up to 2000 measurement groups for later analysis.
Why Choose the MASTECH MS6209B? The MS6209B is the perfect solution for professionals needing accurate contact-based RPM measurements. Whether you're measuring motors, fans, or other machinery, this tachometer delivers high precision and durability in demanding environments.