TLD-600™ Thermoluminescent Dosimetry Material
TLD-600™ Thermoluminescent Dosimetry Material
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Thermo Scientific™

TLD-600™ Thermoluminescent Dosimetry Material

Thermo Scientific™ TLD-600 Thermoluminescent Dosimetry Material consists of Lithium Fluoride (Lithium isotope) Li:Mg, Ti. It is suitable for neutron dosimetry applications.
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Catalog NumberDescription
SNO68815TLD-600 chip (Area: 3.2 x 3.2 x 0.38 mm)
SNO68835TLD-600 chip (Area: 3.2 x 3.2 x 0.89 mm)
SNP63615TLD-600 disk (Diameter: 3.6 x 0.38 mm)
SNP64524TLD-600 disk (Diameter: 4.5 x 0.6 mm)
SNP64535TLD-600 disk (Diameter: 4.5 x 0.89 mm)
SNO60104TLD-600 rod (Diameter: 1 x 4 mm)
SNP63610TLD-600 disk (Diameter: 3.6 x 0.25 mm)
SNO60106TLD-600 rod (Diameter: 1 x 6 mm)
SNO64435TLD-600 chip (Area: 6.35 x 6.35 x 0.89 mm)
SNO60103TLD-600 rod (Diameter: 1 x 3 mm)
SNO60102TLD-600 rod (Diameter: 1 x 2 mm)
SNO60116TLD-600 square rod (Area: 1 x 1 x 6 mm)
SNO60111TLD-600 microcube (Area: 1 x 1 x 1 mm)
SNO60114TLD-600 square rod (Area: 1 x 1 x 4 mm)
SNP63015TLD-600 disk (Diameter: 3 x 0.38 mm)
Catalog number SNO68815
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Description:
TLD-600 chip (Area: 3.2 x 3.2 x 0.38 mm)

Thermo Scientific™ TLD-600 Thermoluminescent Dosimetry Material consists of Lithium Fluoride (Lithium isotope) Li:Mg, Ti. It is suitable for neutron dosimetry applications.

Single element dosimeters and assemblies are widely used in many installations and processed using Harshaw TLD Systems. These systems include a range of readers and irradiators with compatible software to implement calibration, radiation evaluation and management, dose algorithms, health physics record keeping, finder database, glow curve analysis and chain of custody monitoring.

Note:

Handling - Vacuum tweezers should always be used. (Avoid mechanical tweezers or fingers). Small scratches, loss of mass or foreign deposits affect light emission.

Annealing - For annealing temperatures up to 400°C, the containers should be made from high temperature stainless steel or oxidized aluminum, preferably thin to assist rapid cooling following annealing. (Do not use non-oxidized aluminum). The use of a dedicated annealing oven reduces the risk of contamination by foreign material. Place the annealing containers on open oven racks with air space all round to avoid inconsistent heat gradients. (Do not stack containers or allow them to touch the ovenwalls).

Specifications
DescriptionTLD-600 chip (Area: 3.2 x 3.2 x 0.38 mm)
Measurement Ranges10 pGy to 10 Gy
Radiation TypeNeutron
Emission Spectra3500 to 6000 Å (4000 maximum)
Energy Response1.25 keV/60Co
MaterialLithium Fluoride (6Li isotope) LiF:Mg, Ti
Product TypeThermoluminescent Dosimetry Material
Sensitivity1.0 at 60Co relative to LiF
Unit SizeEach

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