Super E-Caps is the ideal Capacitor solving a number of problems such as an electron transfer, distortion, non-polarity, durability, internal resonance etc. |
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Two serious defects in ordinary polarised
electrolytic capacitors (wet type, dry type).
Quality of a capacitor depends
on whether its dielectric is good or not. Electrolytic capacitors
using an aluminum oxide, which is most excellent dielectric or earth,
should be, therefore, ranked at the top of the electrolytic capacitors.
However, they have two serious defects. |
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It has been a long desire in the world to remove the
above defects of polarised one, so it is necessary to achieve a complete
non-polarised electrolytic capacitor having an eternal oxide film at the
cathode electrode as well as at the anode electrode. It has been, however
thought to be almost impossible. As is well known, an electrolytic
capacitor comprises electrode foils, an electrolyte and a separator. With
respect to the former two elements, many improvements have been made,
however, neither of them contributes directly to the performance of the
capacitor itself. |
It was exactly the remarkable feat that we achieved. The
tunnel effect has happened in the separator that is an unexpected great
change. With this tunnel effect, electrons are separated from ions and are
transferred turning their transmission type from ion transfer to The
Transcendence Electron Transfer at ultra high speed. With respect to
frequency characteristics, 10GHz have been achieved which are 100,000
times as high as that of conventional capacitors. |
Since there is very few obstacles in a path along which
the electrons flow, the power transmission efficiency increases by five
times as high as that of conventional capacitors Moreover, the structure
of the Black Gate is non-polarised, so it makes the above efficiency even
higher than that of an ordinary polarised electrolytic capacitors with
only a single pole as shown in |
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Breakdown of the cathode oxide film was completely ceased
by The Transcendence Electron Transfer. At last a definitely
non-polarised capacitor has been completed which has been desired all over
the world. As described, the ion transfer has disappeared and the movement
of ions has been stopped by The Transcendence Electron Transfer. The
cathode electrode is created which has the same structure as the anode
electrode and which has a symmetric structure with respect to the electric
operation as shown in Figure 3A. The distance S between the electrodes becomes
substantially zero due to the tunnel effect. |
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An electrolytic capacitor, consisting
a rolled pair of aluminum electrodes set face to face, forms a specific
resonance frequency between the inductance L element of the electrodes
and its self capacitance. In this type of capacitor, it is impossible
to eliminate resonance. Normally the resonance frequency is about
200KHz at 100 µF, about 70KHz at I000µF, and about 35KHz at 2200µF.
These values apply almost equally to capacitors of the same capacitance
per area, whether polarized or non-polarized. |
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Jelmax has developed a new system which
uses a pair of two BG-Ns of the same voltage and capacity in such
a way that their internal inductance's (L) cancelled each other by
utilizing the mechanical characteristic of the BG-N using a rolled
pair of electrode foils of the same area and same mechanism set face
to face, and thereby, allows the pair to function as a single ideal
capacitor called Super E-Caps". |
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The BG - N and BG - NX are always manufactured in the same manner as shown in Figure 7, each product shows the foil roll starting and ending positions by means of lead lines of different lengths or by the marking of O and × on the terminal rivets. These allow users to connect these capacitors in parallel or in series as needed to cancel the resonance frequency due to residual inductance. |
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Figure 8 gives a sample + 2power supply "Super E-Caps" L-Cancel Pair circuit widely used for IC power supplies it is a power supply of 12V and 5V. C1 to C6 are BG-Ns. Correcting them as shown in the figure based on the rivet marks and/or lead line lengths forms an ideal power supply for very high-speed, high-density information processing meeting the requirements for a very low level of noise and a very high speed. |
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Figure 9 is a parallel L-Cancel Pair power supply circuit diagram just shown in Figure 6 'principle of BG-N pair Super E-Caps'. The alternating voltage or the secondary side is rectified, causing DC output to be generated at BG-N C1 and C2 and also 12V DC output to be generated at BG-N C3 and C4 on the output side of The stabilization circuit T1. |
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When an alternating supply on the secondary side is to be given as intermittent high frequency pulse voltage it is a switching power supply and its applications are numerous. This type of circuit can keep the level of residual ripple-noise down to several mV. The BG-N permits making the world's first completely noiseless switching power supply. |
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A direct current having a voltage over l00v is used in switching power source, TV sets, inverter ballast devices for lighting apparatuses and so on. A method widely supported for obtaining such a direct current applied to a load Z11 from a commercial power source is using a circuit as shown in Figure 10, which is |
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recognized as the
standard for a capacitor input type. |
In the second step, a pair of the
non-polarised Black Gate capacitor were arranged in Super E-Caps connection so
that an unconventional high voltage Super E-Caps is created which operates even
In GHz band with ideal characteristics. At this moment, a complete noiseless
operation has been achieved at every voltage and in every frequency band. Thus,
completely noise-less direct current can be supplied to the load Z12 for the
first time as shown in Figure 11. |
In summary above, the main
features of Super-E Caps are as follows:
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Since Super E-Caps shows an ideal capacitor
characteristics which conventional ones do not have, it can be used
for every circuit other than the power source with advantages which
has not been realized before Main uses of Super E-Caps are listed
below. |
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A
capacitor C, a resistor and an inductance L which are basic parts of electronic
circuits have become of high quality with the development of recent technology.
Most of capacitor in components are, however, still occupied by polarised ion
transfer type electrolytic capacitors. Those capacitors have been a stumbling
block which limits the improvement of the performance of electronic devices in
every aspect including transmission rate, distortion, power, phase
characteristic, operating band and durability compared with other electronic
components. |
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Without exception, electronic
equipment uses a lot of electrolytic capacitors serving as routes for the
signals Even though the ion transfer and polarised mechanism produce a variety
of distortions beyond expectation, the problem has yet to be
resolved. It has been common that even
when a product delivers performance which is far less than expected, the maker
continues designing and manufacturing equipment without thinking that the
electrolytic capacitors used are the cause of the unsatisfactory
performance.
Patent
Registration The Idling Process
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