Explore the complete development journey of Ra-Mon, from raw materials to the final precision-engineered gamma radiation detector, including technical specifications and calibration data.
Witness the complete journey from raw CsI:Tl materials to precision-engineered crystals through our advanced Bridgman crystal growth method and meticulous finishing processes.

Specialized crucible loaded with raw materials, prepared for the high-temperature growth process.

High-purity CsI:Tl raw materials carefully selected for optimal scintillation properties.

Final polished crystal ready for assembly, meeting strict optical and dimensional specifications.

Multiple crystals assembled and prepared for integration into the Ra-Mon detector system.
Comprehensive testing and calibration data demonstrating Ra-Mon's exceptional performance characteristics and precision measurement capabilities.

Linear calibration curve for Cesium-137 demonstrating excellent detector linearity and accuracy across the measurement range. The plot shows consistent response characteristics essential for reliable radiation measurements.

High-resolution spectrum demonstrating our industry-leading 7% energy resolution at 662 keV. The sharp peak definition enables precise isotope identification and accurate dose rate measurements.

Comprehensive signal analysis showing optimal detector response characteristics, including noise levels, signal-to-noise ratio, and temporal stability measurements under various operating conditions.
Complete Ra-Mon system including the main detector unit and precision calibration accessories for accurate and reliable radiation monitoring.

Complete portable gamma radiation detector system featuring CsI:Tl crystal scintillator, advanced electronics, and user-friendly interface for professional radiation monitoring applications.

Precision reference calibration block manufactured to NIST standards for regular verification and calibration of the Ra-Mon detector system, ensuring long-term accuracy and reliability.

High-density lead shielding blocks for background reduction and controlled testing environments. Essential for accurate low-level radiation measurements and system validation procedures.