Tantalum powder (Metallurgical grade)
Specs : FTa-01 grade
Nb 0.005%max
O 0.18%max
N 0.005%max
H 0.003%max
C 0.008%max
Fe 0.005%max
Ni 0.005%max
Si 0.005%max
Ti 0.001%max
W 0.003%max
Mo 0.002%max
Mn 0.001%max
Cr 0.003%max
Size : 3-7 micron or -150mesh.
Packing : inner double plastic outside iron drum of 50 or 100kg
net each.
Tantalum Powder (Capacitor Grade) |
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Chemical impurities (ppm max) |
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Grade |
C |
O |
N |
H |
Al |
Fe+Cr+Ni |
P |
Ca |
Mo |
Mn |
Nb |
Si |
Mg |
Ti |
Cu |
W |
K |
Na |
FTa16-500 |
50 |
2800 |
300 |
70 |
5 |
90 |
90 |
5 |
5 |
5 |
30 |
20 |
10 |
5 |
10 |
5 |
10 |
10 |
FTa16-400 |
60 |
2800 |
300 |
70 |
5 |
90 |
100 |
5 |
5 |
5 |
30 |
20 |
10 |
5 |
10 |
5 |
10 |
10 |
FTa16-300 |
70 |
2600 |
200 |
70 |
5 |
70 |
70 |
5 |
5 |
5 |
30 |
30 |
10 |
5 |
10 |
10 |
15 |
5 |
FTa16-250 |
70 |
2600 |
200 |
100 |
5 |
70 |
70 |
5 |
5 |
5 |
30 |
30 |
10 |
5 |
10 |
10 |
15 |
5 |
FTa16-220 |
70 |
2400 |
150 |
100 |
5 |
70 |
70 |
5 |
5 |
5 |
30 |
30 |
10 |
5 |
10 |
10 |
15 |
5 |
FTa16-200 |
70 |
2400 |
120 |
100 |
5 |
70 |
70 |
5 |
5 |
5 |
30 |
30 |
10 |
5 |
10 |
10 |
15 |
5 |
FTa16-180 |
70 |
2400 |
120 |
100 |
5 |
70 |
70 |
5 |
5 |
5 |
30 |
30 |
10 |
5 |
10 |
10 |
15 |
5 |
FTa16-150 |
70 |
2400 |
120 |
100 |
5 |
70 |
70 |
5 |
5 |
5 |
30 |
30 |
10 |
5 |
10 |
10 |
15 |
5 |
FTa16-120 |
70 |
2400 |
120 |
100 |
5 |
70 |
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5 |
5 |
5 |
30 |
30 |
10 |
5 |
10 |
10 |
15 |
5 |
FTa16-100 |
70 |
2400 |
120 |
100 |
5 |
70 |
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5 |
5 |
5 |
30 |
30 |
10 |
5 |
10 |
10 |
15 |
5 |
FTa16-80 |
70 |
2300 |
120 |
100 |
5 |
70 |
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5 |
5 |
5 |
30 |
30 |
10 |
5 |
10 |
10 |
15 |
5 |
FTa16-42 |
70 |
1800 |
70 |
100 |
5 |
70 |
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5 |
5 |
5 |
30 |
30 |
10 |
5 |
10 |
10 |
15 |
5 |
FTa16-35 |
70 |
1600 |
70 |
100 |
5 |
70 |
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5 |
5 |
5 |
30 |
30 |
10 |
5 |
10 |
10 |
15 |
5 |
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2. Physical Properties |
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Grade |
Press Density |
Bulk Density |
Fisher Size |
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FTa16-500 |
5.0 g/cm3 |
1.2-2.0 g/cm3 |
1.2-2.0micron |
FTa16-400 |
4.8 g/cm3 |
1.2-1.8 g/cm3 |
1.2-2.0micron |
FTa16-300 |
4.5 g/cm3 |
1.5-2.2 g/cm3 |
1.4-3.0micron |
FTa16-250 |
4.5 g/cm3 |
1.5-2.2 g/cm3 |
1.4-3.0micron |
FTa16-220 |
4.5 g/cm3 |
1.5-2.5 g/cm3 |
1.5-3.0micron |
FTa16-200 |
4.5 g/cm3 |
1.5-2.5 g/cm3 |
1.5-3.0micron |
FTa16-180 |
4.5 g/cm3 |
1.5-2.5 g/cm3 |
1.5-3.0micron |
FTa16-150 |
4.5 g/cm3 |
1.5-3.5 g/cm3 |
1.5-3.0micron |
FTa16-120 |
5.0 g/cm3 |
2.0-3.5 g/cm3 |
3.0-5.0micron |
FTa16-100 |
6.5 g/cm3 |
1.5-3.0 g/cm3 |
2.5-3.5micron |
FTa16-80 |
5.5 g/cm3 |
2.0-3.5 g/cm3 |
4.0-6.0micron |
FTa16-42 |
6.5 g/cm3 |
2.0-3.5 g/cm3 |
5.0-8.0micron |
FTa16-35 |
6.5 g/cm3 |
3.0-4.0 g/cm3 |
7.0-9.5micron |
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3. Electrical Properties |
Grade |
Voltage |
Weight |
Pressed Density |
Sintering(℃/min. |
Specific capaci-tance(µfv/g) |
Leakage current(µA/µFV) |
Dissipa-tion factor(tgδ%) |
Breakdown Voltage |
Volume Contrac-tion |
FTa16-500 |
30V |
0.15g/B |
5.0±0.1 g/cm3 |
1350/30 |
50000±5% |
4x10ˉ4 |
20 |
120 V |
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FTa16-400 |
50V |
0.15g/B |
4.8±0.1 g/cm3 |
1400/20 |
40000±5% |
4x10ˉ4 |
20 |
120 V |
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FTa16-300 |
70V |
0.15g/B |
4.5-5.0g/cm3 |
1450/30 |
30000 |
5x10ˉ4 |
20 |
120 V |
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FTa16-250 |
70V |
0.15g/B |
4.5-5.0g/cm3 |
1450/30 |
25000 |
5x10ˉ4 |
20 |
120 V |
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FTa16-220 |
70V |
0.5g/B |
4.5-5.5g/cm3 |
1550/20 |
22000 |
5x10ˉ4 |
20 |
120 V |
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FTa16-200 |
70V |
0.5g/B |
4.5-5.5g/cm3 |
1550/20 |
20000 |
5x10ˉ4 |
20 |
120 V |
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FTa16-180 |
100V |
1.0g/B |
4.5-5.5g/cm3 |
1600/30 |
18000 |
5x10ˉ4 |
20 |
140 V |
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FTa16-150 |
100V |
1.0g/B |
4.5-5.5g/cm3 |
1600/30 |
15000 |
5x10ˉ4 |
15 |
160 V |
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FTa16-120 |
100V |
1.0g/B |
4.5-6.0g/cm3 |
1600/30 |
12000 |
5x10ˉ4 |
15 |
160 V |
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FTa16-100 |
160V |
1.0g/B |
5.0-6.5g/cm3 |
1700/30 |
10000 |
5x10ˉ4 |
15 |
180 V |
20% |
FTa16-80 |
160V |
1.0g/B |
5.5-6.5g/cm3 |
1700/30 |
8000 |
5x10ˉ4 |
12 |
190 V |
20% |
FTa16-42 |
200V |
2.0g/B |
6.0-7.5g/cm3 |
1900/30 |
4200 |
5x10ˉ4 |
8 |
240 V |
20% |
FTa16-35 |
200V |
2.0g/B |
6.0-8.0g/cm3 |
1900/30 |
3500 |
5x10ˉ4 |
8 |
240 V |
20 |
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Packing :inner double plastic outside iron drum of 50 or 100kg net each.
Tantalum is one of the so-called " Electronic Metals" , without these speciality metals like Tantalum(Ta), Cadmium(Cd), Cobalt(Co), Gallium(Ga), Germanium(Ge), Indium(In), Lithium(Li), Selenium(Se) and Tellurium(Te) most electronic devices would not function. In most cases these metals are a by-product of other metals and as a consequence this creates supply inelasticity which str les to meet changes in demand and technology resulting in price volatility.