| MOQ: | 1 pc |
| Price: | Negotiable |
| Standard Packaging: | Carton |
| Delivery Period: | 5~8 working days |
| Payment Method: | L/C,T/T |
| Supply Capacity: | 50000 pcs per month |
Product introduction
Lithium fluoride thermoluminescence detectors are passive solid integral detectors. It is characterized by small size (high spatial resolution), effective atomic number close to air and human tissue, free from electromagnetic radiation interference, wide measurement range, low measurable lower limit, good reproducibility, and high dose rate pulse measurement characteristics of the radiation field. They can be applied to personal monitoring of ionizing radiation, environmental monitoring, and measurement of specific radiation fields (including the differential measurement of n and γ mixed fields). It can also be used in radiology, radiation biology, reactor engineering, archaeology and other disciplines.
Technical parameters
|
Item |
Specification |
|
Detection object |
X, γ-ray; Material: LiF: Mg, Cu, P or LiF: Mg, Ti optional |
|
Detection object |
Neutron rays; Material: 6LiF: Mg, Cu, P or 6LiF: Mg, Ti optional |
|
Shape |
Disc (also square, powder, square rod optional) |
|
Specifications |
φ4.5×0.80mm (other specifications can be customized) |
|
Energy response |
(photons from 30KeV to 3MeV): <20% |
|
Relative sensitivity |
62 times (TLD-100) |
|
Linear range |
100nGy~12Gy |
|
Detection threshold |
0.1μGy |
|
Dispersion |
≤± 5%, 3%, 1% (optional) |
|
Response to neutrons |
Response to absorbed dose due to heavy particles is LET dependent, which favors the difference of gamma components in n, gamma mixed fields |
|
Stability |
There is no obvious decline after one month of storage at room temperature, and about 3% decline after one month of storage at 50°C |
|
Illumination effect |
There is no obvious response to indoor scattered sunlight, incandescent light, and fluorescent lamp; there is a response to direct sunlight (ultraviolet light) |
|
Working environment |
T<50%; RH<90% |
Specification
|
Thermoluminescence detector |
||||
|
No. |
Model |
Type |
Specification |
Shape |
|
1 |
TLD-200A |
LiF(Mg,Cu,P) |
ф4.5×0.80mm (1%) |
Round Chip |
|
2 |
TLD-200A |
LiF(Mg,Cu,P) |
ф4.5×0.80mm (2%) |
Round Chip |
|
3 |
TLD-200A |
LiF(Mg,Cu,P) |
ф4.5×0.80mm (3%) |
Round Chip |
|
4 |
TLD-200A |
LiF(Mg,Cu,P) |
ф4.5×0.80mm (5%) |
Round Chip |
|
5 |
TLD-200A |
LiF(Mg,Cu,P) |
ф3.6×0.40mm (2%) |
Round Chip |
|
6 |
TLD-200A |
LiF(Mg,Cu,P) |
ф3.6×0.60mm (2%) |
Round Chip |
|
7 |
TLD-200A |
LiF(Mg,Cu,P) |
ф3.6×0.80mm (2%) |
Round Chip |
|
8 |
TLD-200 |
LiF(Mg,Cu,P) |
4.0×4.0×0.89mm |
Square Chip |
|
9 |
TLD-200 |
LiF(Mg,Cu,P) |
3.2×3.2×0.89mm |
Square Chip |
|
10 |
TLD-200 |
LiF(Mg,Cu,P) |
3.0×3.0×0.89mm |
Square Chip |
|
11 |
TLD207A |
7LiF(Mg,Cu,P) |
ф4.5×0.80mm |
Round Chip |
|
12 |
TLD207 |
7LiF(Mg,Cu,P) |
4.0×4.0×0.80mm |
Square Chip |
|
13 |
TLD207 |
7LiF(Mg,Cu,P) |
3.2×3.2×0.20mm |
Square Chip |
|
14 |
TLD207 |
7LiF(Mg,Cu,P) |
3.2×3.2×0.40mm |
Square Chip |
|
15 |
TLD207 |
7LiF(Mg,Cu,P) |
3.2×3.2×0.60mm |
Square Chip |
|
16 |
TLD207 |
7LiF(Mg,Cu,P) |
3.2×3.2×0.80mm |
Square Chip |
|
17 |
TLD-200F |
7LiF(Mg,Cu,P) |
Film 5.0×5.0mm |
Square Chip |
|
18 |
TLD-200F |
LiF(Mg,Cu,P) |
Film 4.0×4.0mm |
SquareChip |
|
19 |
TLD-200F |
LiF(Mg,Cu,P) |
Film ф4.5×0.20mm |
Round Chip |
|
20 |
TLD206A |
6LiF(Mg,Cu,P) |
ф4.5×0.80mm |
Round Chip |
|
21 |
TLD-200R |
LiF(Mg,Cu,P) |
0.1×0.1×0.6mm |
Rod |
|
22 |
TLD-200R |
LiF(Mg,Cu,P) |
1.0×1.0×1.0mm |
Rod |
|
23 |
TLD-200R |
7LiF(Mg,Cu,P) |
1.0×1.0×6.0mm |
Rod |
|
24 |
TLD-100M |
LiF(Mg,Ti-M) |
5.0×5.0×0.80mm |
Square Chip |
|
25 |
TLD-100M |
LiF(Mg,Ti-M) |
4.0×4.0×0.80mm |
Square Chip |
|
26 |
TLD-100M |
LiF(Mg,Ti-M) |
ф4.5×0.80mm |
Round Chip |
|
27 |
TLD-100 |
LiF(Mg,Ti) |
ф4.5×0.80mm |
Round Chip |
|
28 |
chemically pure powder |
80~200 mesh |
Powder |
|
|
29 |
Analytical Pure Powder |
80~200 mesh |
Powder |
|