Self discharge type charge eliminator |
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Features |
Self-discharging static removers eliminate static electricity
by ion causing by corona discharge from grounded needle electrode
to generate ions making use of electrostatic energy of charged
objects. This means that their electrostatic discharge efficiency
depends on their ion generating capacity and the electric potential
of the charged objects.
It also explains why it is difficult for the self-discharging
static removers to cause corona discharge for objects charged
less that 3,000 V. But our innovative product, Thunderon cactus can do this. |
Because they are efficient, use no power, and self-discharging
static removers are often applied to office automation equipment
such as copiers, printers, etc. Thunderon
cactus, the remarkable product we recently developed, achieves
a significant improvement in function and cost compared to previous
self- discharging static removers with the latest our technology
and equipment |
The thinnest conductive layer |
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The approximately 15
diameter of the conductive fiber used as its electrode may suggest
that Thunderon fiber works less than other materials-but the thickness
of the conductive material, which is very important point of
eliminating function, is as thin as 0.8
whose conductive layer crystallizes on the surface of the fiber,
the thinnest conductive layer among current practical self-discharging
static removers.
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High conductivity |
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Though the resistivity of Thunderon fiber is 1 x 102, which is
slightly higher than stainless or carbon fiber, the resistivity
of conductive material Thunderon fiber is excellent value,
10-2is achieved by the conductive material. (Surface resistivity:
1.5 x 102 - 3.0 x 102inchj
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Low electrostatic capacitance |
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The ultrathin conductive layer and excellent conductivity
makes Thunderon cactus a static remover of
significantly low capacitance. It means that even though charged
objects voltage is low, Thunderoncactus's starting time to generate
ions is easily and quickly eliminate static electricity.
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