LaBr₃:Ce CRYSTAL
∅2-Inch LaBr₃: Ce Scintillation Detector
∅2-Inch LaBr₃: Ce Scintillation Detector ∅2-inch LaBr3 : Ce scintillation detector is a fully integrated radiation detection solution, combining a premium Cerium-doped Lanthanum Bromide crystal with matched photomultiplier tube and protective housing. This compact system delivers exceptional energy resolution and fast timing characteristics, making it ideal for portable instruments, laboratory spectroscopy, and space-constrained applications. Main Advantages Fast decay time
LaBr₃: Ce Scintillators | High Light Output & 16ns Fast Decay for Gamma Spectroscopy
LaBr₃: Ce Scintillators | High Light Output & 16ns Fast Decay for Gamma Spectroscopy LaBr₃: Ce crystal is a new-found inorganic scintillation crystal with very bright light output and excellent energy resolution. They can be widely applied in fields such as nuclear medical imaging,geological exploration, well logging and nuclear radiation detection. Main advantages Best energy resolution for improved isotope identification in handheld Radio-Isotope Identification Device (RIID
Encapsulated ∅1-Inch LaBr₃: Ce Crystal Assembly
Encapsulated ∅1-Inch LaBr₃: Ce Crystal Assembly Encapsulated ∅1-Inch LaBr₃: Ce Crystal Assembly deliver exceptional gamma-ray detection performance with industry-leading energy resolution and timing characteristics. Each complete package integrates a premium Ce-doped LaBr₃ crystal with optimized optical interfaces and protective housing, providing unmatched performance for demanding spectroscopy applications. The Main Advantages Fast decay time enabling high count rate
Encapsulated ∅1.5-Inch LaBr₃: Ce Crystal Assembly
Encapsulated ∅1.5-Inch LaBr₃: Ce Crystal Assembly Encapsulated ∅1.5-Inch LaBr₃: Ce Crystal Assembly offers the optimal balance between detection efficiency and energy resolution. This complete system integrates a premium Cerium-doped Lanthanum Bromide crystal with matched optical components and hermetic housing, delivering exceptional performance for applications requiring both high efficiency and superior spectroscopic capabilities. The Main Advantages Excellent light output
Encapsulated ∅2-Inch LaBr₃:Ce Crystal Assembly
Encapsulated ∅2-Inch LaBr₃:Ce Crystal Assembly This encapsulated ∅2-inch LaBr₃:Ce crystal assembly adopts hermetic moisture-proof packaging to protect the highly hygroscopic scintillation crystal. It features outstanding energy resolution, fast decay time and high light output, making it ideal for high-precision nuclear spectroscopy, radiation monitoring and imaging systems. The Main Advantages High density and strong radiation blocking ability to reduce crystal size (vs NaI
∅1-Inch LaBr₃: Ce Scintillation Detector
∅1-Inch LaBr³ : Ce Scintillation Detector ∅1-inch LaBr³ : Ce scintillation detector is a fully integrated radiation detection solution, combining a premium Cerium-doped Lanthanum Bromide crystal with matched photomultiplier tube and protective housing. This compact system delivers exceptional energy resolution and fast timing characteristics, making it ideal for portable instruments, laboratory spectroscopy, and space-constrained applications. The Main Advantages Excellent
∅1.5-Inch LaBr₃: Ce Scintillation Detector
∅1.5-Inch LaBr₃: Ce Scintillation Detector ∅1.5-inch LaBr³ : Ce scintillation detector represents the perfect balance between detection efficiency and spectroscopic performance. This fully integrated system combines a premium Cerium-doped Lanthanum Bromide crystal with matched photomultiplier tube and rugged housing, delivering superior performance for applications requiring both high sensitivity and excellent energy resolution. The Main Advantages Best energy resolution for
LaBr₃ Raw Material High-Purity Crystal-Grade Material for Scintillation & Optical Applications
LaBr₃ Raw Material High-Purity Crystal-Grade Material for Scintillation & Optical Applications LaBr₃ is an high-purity raw material specifically engineered for synthesizing advanced scintillation crystals and optical components. With a melting point of 780°C , this material serves as the foundational precursor for producing LaBr₃:Ce scintillators, renowned for their exceptional gamma-ray detection capabilities . Its superior stoichiometric consistency and low trace metal