Get Quote
Contact us now to receive a detailed quotation.
Overview
Nuclear Radiation Detector LMND-A101 offers an energy detection range of 48 keV to 1.5 MeV. It features multifunctional real-time monitoring interface for dose rate, average, and cumulative data. Equipped with rechargeable lithium battery lasting up to 6 hours for continuous performance. Incorporates GM tube with energy compensation for improved sensitivity and reliability. Our Detector ensures detection of gamma, beta, and X-rays.
Features :
Handheld and durable
Environmentally friendly
High-definition display
Visual alert indicator
Audible alarm
Navigation control keys
Specifications :
| Energy Detection Range | 48 keV to 1.5 MeV |
| Detectable Radiations | Gamma (γ), X-ray (χ), Beta (β) |
| Detector | Geiger Counter |
| Working Temperature | -5 to 40℃ |
| Dose Rate Range | 0.00 to 10000 µSv/h |
| Total Dose Measurement Range | 0.00 µSv to 500.0 mSv |
| Sensitivity (Co-60) | 80 CPM/μSv |
| Measurement Deviation (Cs-137) | Less than or equal to ±30% |
| Humidity | Less than 80% |
| Power Supply | 3.7 V / 850 mAh battery |
| Dimension | 106.5×44.5×25 mm |
| Weight | 73 g |
Applications :
Nuclear Radiation Detector LMND-A101 is ideal for monitoring radiation exposure levels in food safety checks, metal screening, ore analysis, marble inspection, nuclear facilities, radioactive labs, medical device testing, and environmental radiation assessment.
Selection Guide :
Nuclear Radiation Detector LMND-A101 is a high-sensitivity detection device designed for the accurate measurement of ionizing radiation such as gamma (γ), beta (β), and X-rays (χ). Based on research studies, this model is suitable for a wide range of applications, including nuclear research labs, radiation safety inspections, environmental radiation monitoring, and educational experiments. Customers should select this detector when precision, portability, and a wide detection range are required. It is certified with relevant safety and quality standards, ensuring reliable performance in both field and laboratory environments. The model's ergonomic design, easy interface, and fast response time make it suitable for professionals and researchers who require dependable radiation measurement in real-time scenarios.