Electronic Analytical Balance NEAB-103 offers a weighing capacity of 210 g and a readability of 0.1 mg. It features an RS232 port for secure and fast data exchange with external devices. The detachable LCD display reduces vibrations during operation. This unit is equipped with a rear-mounted electromagnetic force sensor for enhanced sensitivity and stability. Our Electronic Analytical Balance offers reliable performance and precise measurements.
FAQ for Electronic Analytical Balance NEAB-103
1: What makes the Electronic Analytical Balance suitable for weighing higher capacity samples?
The Electronic Analytical Balance offers a maximum capacity of 210 g with high precision readability down to 0.1 mg, making it ideal for applications requiring larger sample sizes without sacrificing accuracy.
2: What benefits does the rear-mounted electromagnetic force sensor provide?
The Electronic Analytical Balance uses a rear-mounted electromagnetic force sensor, which enhances stability by providing precise force measurement and minimizing environmental interference.
3: How do I calibrate the Electronic Analytical Balance for optimal performance?
Calibration is simplified with the one-key internal calibration function, allowing the balance to adjust automatically to maintain accuracy without manual calibration weights.
4: What types of weighing modes does the NEAB-103 support?
The Electronic Analytical Balance NEAB-103 supports multiple weighing modes, including basic weight, percentage weighing, counting, and unit conversion, to accommodate diverse analytical and quality control needs.
5: How can I extend the lifespan of the Electronic Analytical Balance NEAB-103?
Regularly clean the weighing pan and chamber, avoid exceeding the maximum capacity, and operate the balance in a stable, clean environment. Store the unit in a dust-free place when not in use.
6: How does the detachable LCD improve measurement stability?
The detachable LCD on the balance reduces vibration transfer from the user to the weighing platform, ensuring more stable and accurate readings during sensitive measurements.