-40%
Tantaldraht 99.9% Ø 0 1/32in-0 3/32in Metal Item 73 Tantalum Drahtelektroden
$ 9.19
- Description
- Size Guide
Description
Tantalum wire 99.9% Ø 0.5mm-2mm metal element 73 Tantalum wire electrodes metalTantalum wire 99.9% Ø 0.5mm-2mm metal element 73 Tantalum wire electrodes metal
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When the wire length is supplied, the tolerance can be +/- 2% of the ordered quantity
Technical specifications:
Brand:
Evek
Manufacturing Country And Region:
Germany
Manufacturer number:
Not applicable
Type:
wire
Material:
Tantalum
Operation area:
Metal element 73
Standard classifications:
Name, symbol, ordinal number:
Tantalum, Ta, 73
Assay:
99.85%
Additional Information:
Melting point:
3290 K (3017 ° C)
Density:
16.65 g / cm3 (20 ° C)
Thermal conductivity:
57 W m − 1 K − 1
Boiling point:
5693 K (5420 ° C)
Description:
Most of the tantalum is used for very small, high capacitance capacitors. In 2007, 60% of the tantalum was used in the manufacture of capacitors. These tantalum electrolytic capacitors are used everywhere in modern microelectronics, for example for cell phones and in automobile construction. The effect is based on the tantalum oxide layer on the surface of the wound tantalum foil, which is still stable and reliably insulating even in very thin versions. The thinner the layer between the electrodes, the higher the capacity with the same foil surface; In addition, tantalum oxide has an extremely high permittivity, which also increases the capacity.
Areas of application:
Railing construction
food industry
Beverage industry
chemistry
documentation
Datasheet (German)
Listing and template services provided by inkFrog
Tantalum wire 99.9% Ø 0.5mm-2mm metal element 73 Tantalum wire electrodes metal When the wire length is supplied, the tolerance can be +/- 2% of the ordered quantity Most of the tantalum is used for very small, high capacitance capacitors. In 2007, 60% of the tantalum was used in the manufacture of capacitors. These tantalum electrolytic capacitors are used everywhere in modern microelectronics, for example for cell phones and in automobile construction. The effect is based on the tantalum oxide layer on the surface of the wound tantalum foil, which is still stable and reliably insulating even in very thin versions. The thinner the layer between the electrodes, the higher the capacity with the same foil surface; In addition, tantalum oxide has an extremely high permittivity, which also inc