Introduction
Dosimeter (x, γ and β) operates within a temperature range of -10°C to 45°C. It efficiently detects X-rays, γ (gamma), and hard β (beta) rays with a fast response and wide measurement range. Its built-in high-sensitivity Geiger tube ensures accurate radiation monitoring. The compact design and rechargeable battery make it easy to use in the field or laboratory. Our device is suitable for radioactive workplaces such as nuclear power plants, accelerators, steel and chemical industries, isotope applications, and medical radiology labs.
This dosimeter is designed to meet the rigorous requirements of modern laboratory operations, ensuring high precision, reliability, and ease of use for various experimental applications.Applications
Our Dosimeter (x, γ and β) is ideal for radioactive workplaces, including nuclear power plants, accelerators, steel and chemical industries, isotope applications, and medical radiology labs.
Specifications
| Operation Temperature | -10°C to 45°C |
| Operation Humidity | ≤ 95% ( +45°C) |
| Dose rate range | 0.01 to 1000 Svh Maximum 10 mSv/h |
| Cumulative dose | 0.01 usv/h to 500.0 msv |
| Energy response | 50 KeV to 1.5 MeVs ± 30% |
| Detecting Rays | X, γ, hard β rays, radiation |
| Detector Type | Energy compensation GM tube |
| Sensitivity | 80CPM/Sv/h |
| Power Supply | 2000 mAh |
| Dimensions | 189 × 70 × 30 mm |
| Weight | 154g |
Features
High-sensitivity Geiger Tube
Wide Measurement Range
Fast Radiation Detection
Real-time Dose Display
Cumulative Dose Monitoring
FAQs
1. What types of radiation does the Dosimeter detect?
The Dosimeter detects X-rays, gamma rays, and hard beta rays, making it suitable for a wide range of radiation monitoring applications .Its high-sensitivity Geiger-Muller tube ensures accurate detection across various energy levels, providing reliable results even in complex environments. This makes it an essential tool for both field and lab-based radiation monitoring tasks. Its robust performance ensures consistent readings in challenging conditions.
2. How is the radiation dose displayed?
It features a clear screen that displays both the current dose rate and the cumulative dose, allowing for real-time monitoring and dose tracking. The user-friendly interface ensures quick data reading, which is especially helpful in critical environments where timely information is essential. The intuitive layout of the screen simplifies data interpretation during field or laboratory operations. The screen's backlight ensures visibility even in low-light conditions.
3. Is the Dosimeter suitable for field use?
Yes, the compact design and rechargeable battery make it ideal for portable use in the field or in laboratory settings. It is lightweight and easy to carry, ensuring minimal burden during extended monitoring tasks. The rugged construction adds durability, making it dependable even in demanding industrial or outdoor environments. Its fast response time ensures immediate detection, which is crucial for prompt safety measures. The long-lasting battery ensures uninterrupted monitoring in remote locations.
4. What is the operating temperature range of the Dosimeter?
The device operates effectively within a temperature range of -10°C to 45°C, making it adaptable to various environments. This range ensures reliable performance in both indoor and outdoor conditions, including industrial settings with fluctuating temperatures. Its durability and stability make it ideal for extended use in radiation-prone areas. The robust design ensures the device maintains accuracy even in extreme conditions. This versatility allows it to function seamlessly in a variety of operational environments.
5. What industries use this Dosimeter?
The Dosimeter is commonly used in nuclear power plants, particle accelerators, steel and chemical industries, isotope applications, and medical radiology labs. Its versatility and accurate radiation detection capabilities make it suitable for both routine monitoring and emergency response across high-risk radiation environments. It is also ideal for educational and research institutions working with radiation sources. It is employed in environmental monitoring to ensure safety around radioactive materials.
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