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News 2015 July
   
 

01.July.2015
Ontonics Further steps
We are working on the next generation of an amazing technology and already designed a related material or compound.

We developed a new electronic paper.

We also improved another display technology, which solves one of its problems.

Furthermore, we decided to start another variant of our Taxisharing services that pays our contractors respectively employees, the drivers, between 33 to 50% more compared to other companies in this market.

iRaiment Further steps
We developed a basic component, which offers several advantages.

Style of Speed Further steps
We have continued the work related with the Vertical Take-Off and Landing (VTOL) variants of our Hypersonic Cruise Vehicle HCV-1/ WhiteSwift and our Space Transportation System (STS) with Reus- able Launch Vehicle (RLV) of the Next Generation (NG), Space Shuttle NG X-3033/MagicStar, by developing a first specific concept.

This is not firework rocket science. This is leading high-technology from Style of Speed.


02.July.2015
Ontonics Further steps
We have applied a technic in an opposite way, so to say, to solve a practical problem.

Furthermore, we improved a technology and a related component based on this technology.

In addition, we improved a technology and a related component based on this technology.

Moreover, we thought about the provision to give content creators at least 70% of the revenue from ads displayed before their videos or placed in other ways compared to for example the lousy 55% offered by other companies and their platforms like Google→YouTube and Facebook→Suggested Videos.

iRaiment Further steps
Thanks to a technology improved by Ontonics, we could design some devices in another way.

We also designed our next masterpiece smartwatch.

Style of Speed Further steps
We developed three more variants of the powertrains mentioned in the Further steps of the 25th of June 2015.

Furthermore, we adapted a technology for a special variant of a system, which will baffle all kinds of competitors. Honestly, we do not know why we have not taken this direction in the past.


04.July.2015
Comment of the Day
Smartbench™

Ontonics Further steps
We made the next steps in relation with our curved and flexible virtual reality workbenches Flexbench™ and Homebench™, and the fascinating mobile variant Smartbench™ (see the Further steps of the 11th of July 2014, and the Original vs. Inspiration, Ontoscope Further steps, and intelliTablet Further steps of the 23rd of January 2015) and configured the entry-level models.

All interested programmers can get the very first basic informations about the supported immersive applications and multimodal user interfaces on the website of OntoLinux.
Furthermore, we began to develop our advertising services further so that interested entities can secure their literally spoken advertising space.

Style of Speed Further steps
We worked on a safety technology for one of our vehicle classes.


05.July.2015
Style of Speed Further steps
We designed a new car model.


07.July.2015
Softbionics Further steps
We are working on some last technical and legal details of our new Artificial Intelligence (AI) suite.

Ontonics Further steps
We improved one of our already superiorly outstanding weapon system in three areas significantly, so that exposed persons can be protected most effectively.


08.July.2015
Style of Speed Further steps
Since many years we play around with design elements of a specific concept car (see the image below), such as the hybrid doors with conventional doors hinged within gull wing doors, though the gull wing doors would be enough, but surely not the highly discussible rear section, and in recent weeks we thought about it again but this time in relation with our new muscle cars (see the Further steps of the 30th of November 2014 and 1st of December 2014) or another special model variant.

Concept Car
© :I


09.July.2015
Style of Speed Further steps
We developed a new technology in several variants based on the integration of two other technologies following the approach of a third technology.

We adapted one of our engines for the use in another vehicle to accelerate its application.


10.July.2015
Style of Speed Further steps
In relation with recent developments we also looked for a simple Vertical Takeoff, Vertical Landing (VTVL) Single Stage To Orbit (SSTO) Reusable Launch Vehicle (RLV) design as part of a specific Space Launch System (SLS) to accelerate the application of one of our special fusion rocket engines with an specific impulse (Isp) of at least 8,000 s. Yes, our readers have read correctly: We talk about fusion rockets and not firework rockets.

One design that may fulfill our requirements is the Air-breathing Rocket-Based Combined Cycle (ARBCC) launch vehicle design shown in the image below, that belongs to a program of the National Aero- nautics and Space Administration (NASA), which must be planned around the year 2000 and is based on the VTVL SSTO concept Spaceliner from the year 1971.

NASA Air-breathing Rocket-Based Combined (ARBCC) Cylce Vertical Take-off Vertical Landing (VTVL) Single Stage To Orbit (SSTO) Reusable Launch Vehicle (RLV) → SOS Air-augmented Fusion Rocket VTVL SSTO RLV
© National Aeronautics and Space Administration (NASA)

Furthermore, we continued the work on a foundational technology, which is enabling very interesting applications.

This is not rocket science. This is Hightech Competence by Style of Speed.


11.July.2015
Style of Speed Further steps
In relation with recent developments related with a simple Vertical Take-off Vertical Landing (VTVL) Single Stage To Orbit (SSTO) Reusable Launch Vehicle (RLV) design as part of a specific Space Launch System (SLS) we also looked at another engine once again, that provides interesting features as well. Best of all, for our design we can reuse components of other projects in highly elegant ways once again, so that only a very short research and development phase is needed.


12.July.2015
Ontonics Further steps
We found an elegant way to implement a specific technology and also one of its application. Now we have to find out how to operate it.

We also designed a specific component.


13.July.2015
Comment of the Day #1
Compute Node Cell™
Compute Cell™
Ccell™

Comment of the Day #2
"Democrexit"

Ontonics Further steps
We optimized three technologies significantly.

OntoLix and OntoLinux Further steps
After it has been made public in a related patent, we would like to give the information here as well that we are implementing libraries for:

  • Software-Defined Radio (SDR),
  • Cognitive Radio (CR),
  • Smart Antenna (SA) or Intelligent Antenna (IA), as well as
  • Software-Defined Mobile Networking (SDMN),

    which are supported and optimized for as well as supported and optimized by the foundational features of OntoLix and OntoLinux, the bionic libraries of Softbionics in the case of CR and IA, as well as our Wireless Supercomputer (WiSer) technology exploiting its:

  • optical wired intra-chip/on-chip and inter-chip/off-chip inter- connects and networks
  • electromagnetical wireless intra-chip/on-chip and inter-chip/ off-chip interconnects and networks, inclusive free space optical wireless interconnects and networks,
  • Wireless LAN (WLAN),
  • Wireless Wide Area Network (WWAN), and
  • Wireless Mesh Network (WMN)

    integrated components and capabilities.

    For sure, constructive interference handling comes with the general WiSer concept by design and communication techniques, such as:

  • Multiple-Input and Multiple-Output (MIMO),
  • Multi-User MIMO (MU-MIMO), as well as
  • Cooperative MIMO (CO-MIMO) based on CR and IA,

    are also included besides batteries. In this relation we also speak about our new paradigm of the Compute Node Cell™ (CNC) or Compute Cell™ (ccell™).

    For this reason, we have looked already at the Open-Source [Joint Tactical Radio System (JTRS) Software Communications Architecture (]SCA[)] Implementation - Embedded (OSSIE), which is surprisingly familiar to us.

    Style of Speed Further steps
    In relation with the development of a Vertical Take-Off and Landing (VTOL) Hypersoar (see the related Further steps of the 1st of July 2015) we created a new design. But we are not convinced that this will be the final design.

    We optimized one technology and two engines significantly.


    14.July.2015
    Ontonics Further steps
    By adding two new features we developed another variant and the next generation of a technology, which is becoming better and better. It is always a fascinating pleasure to see how thinking about and playing around with a problem results in better or even new solutions.

    Also, we have surmised in the OntoLab that one of our latest opti- mizations mentioned yesterday could be a breakthrough, though we were not sure if this was truly the case. But after looking at the attempts of other entities once again, who really overlooked some details, and playing around with our special variant of the related technology and optimizing it a further time today, we became more optimistic that these two significant optimizations might result in a solution that overcomes a specific barrier.
    Even if a revolution is not happening, at least this time, the devel- opment made so far still constitutes a huge success, because it allows us to significantly optimize some technologies based on this specific technology.

    Style of Speed Further steps
    We continued the work on the new design of a Vertical Take-Off and Landing (VTOL) Hypersoar (see the related Further steps of the 1st of July 2015 and yesterday), and found two other advantages. Now, we are more convinced about the design direction, but not about the chosen VTOL technology.

    We also designed a better variant of a Hyperjet.


    15.July.2015
    Comment of the Day
    "The Holocoust was a product of politics."

    Clarification
    From time to time someone claims to have found out how to con- struct a fusion reactor, that generates more power than it consumes to keep the power generation running or simply said generates a net power. But until today or more precisely until the 13th of July 2015 nobody was able to prove that her/his fusion reactor truly generates a net power that is relevant for practical use. In fact, we only do know one work that showed some kind of net power generation at all, but has only theoretical relevance, and another interesting work, that has to be analyzed further at first.

    Indeed, we make such a claim as well and hence have to give the proof as well. But for sure, we will not explain any details as well, definitely, and instead risk the severe critics. Nevertheless, we would like to give at least the following facts and logical implications based on these facts. As usual, we only:

  • 1. use such scientifical theories and their interpretations, which are proven and have been accepted by the whole community in this observable universe,
  • 2. use such technical building blocks, which have been construct- ed until today and have proven qualities and quantities,
  • 3. design our solutions with what is given by points 1. and 2., and
  • 4. calculate and determine qualities and quantities in the worst case scenario respectively in a very conservative way.

    Detailed explanation:

  • To 1.: We do not think that fusion and the needed conditions as well as mathematics have to be discussed here.
  • To 2.: Several fusion reactors and other fusion means exist, that provide clear data about their constructions, set-ups, and perform- ances. Some of them are close to or even provide some kind of net power.
  • To 3.: We designed our own fusion reactor in a smarter way than anybody before, which has some favourable and unique charact- eristics.
    The situation can be described by a metaphor: While all the other major players are still trying to mount on a Penny-Farthing or high wheeler bicycle and to keep balance, but eventually are falling down everytime, we simply invented the bicycle chain, then the dwarf, and finally the safety bicycle.
  • To 4.: If we take the favourable characteristics of our fusion reactor (point 3.) and add respectively substract their related quantities in the related performance calculations of the existing fusion reactors that are close to providing or even provide net power (point 2.) by applying proven theories and methods (point 1.), then we have to assume a practical net power.

    In addition, we have some more concepts and technologies that can lead to further improvements and developments, and one of them is extremely promissing.

    Ontonics Further steps
    Just before we started to connect our new (most potentially) net power fusion reactor (see the Clarification of today above) to a Quantum vacuum plasma thruster (Q-thruster), as mentioned in the Further steps of the 11th of October 2014, we were reminded by a scientist that "There is no such thing as a 'quantum vacuum virtual plasma,' so that should be a tip-off right there. There is a quantum vacuum [(see also the Casimir effect and the Casimir-Polder force)], but it is nothing like a plasma. In particular, it does not have a rest frame [(coordinate system (frame of reference) in which the particle is at rest)], so there is nothing to push against, so you can’t use it for propulsion [respectively there is nothing to act on by Magneto- HydroDynamics (MHD) at all]. The whole thing is just nonsense. They claim to measure an incredibly tiny effect that could very easily be just noise."
    Nevertheless, there are repulsive forces that potentially can be exploited (see also the Further steps of the 29th of July 2014).

    We can confirm officially that we have already begun the develop- ment phase in relation with the construction of a tactical weapon system powered by our fusion reactor technology.

    We also have begun to develop portable variants of our fusion reactor technology in the sizes of a car battery, a portable power generator, a cylindrical consumer electronics battery, a flat mobile device battery, and a flexible battery.

    Style of Speed Further steps
    We can confirm officially the beginning of the development phase in relation with the construction of fusion powered vehicles, such as an automobile and an Unmanned Combat Aerial Vehicle (UCAV) with tactical weapon system based on our Hypersonic Jet Fighter (HJF) technologies.

    Also, we have worked out the design for the Vertical Take-Off and Landing (VTOL) variants of our hypersoars and aerospaceplanes (see the related Further steps of the 1st, 13th, and 14th of July 2015).
    Not surprisingly, due to our superior general strategy with a common design approach this VTOL design also relates to our spaceships X-3³/Drake and Spacecrafter/Space Dragon, so that we are ready for landing on and take-off from for example the Mars or smaller space objects as well now and this even in a much safer way than it is possible with a capsule or a firework rocket.


    16.July.2015
    Style of Speed Further steps
    We improved an engine.


    17.July.2015
    Ontonics Further steps
    We applied the next improvement to our fusion reactor technology. As interim results a higher plasma temperature and an increased collision potential respectively fusion ratio can be achieved, and as an overall result an increased net power should be provided as well.
    The next improvement should increase the performance even more.

    We also developed a new foundational technology.

    Ontoscope Further steps
    We have begun the development phase of the next two Ontoscope models.

    intelliTablet Further steps
    We have begun the development phase of the next two intelliTablet models.


    18.July.2015
    Comment of the Day
    "There is no replacement for fusion displacement.", [Emmett Lathrop "Doc" Brown and C.S.]

    Original vs. Inspiration
    1. row: Back to the Future saga, Mr. Fusion Home Energy Reactor (1985)
    2. row: Marvel Universe saga, Iron Man, Arc Reactor and Arc Reactor Mark 1
    3. row: Stargate saga, Nullpunktsenergie Module or Zero Point Module (ZPM) and Naquadah Generator
    4. row: Georgia Institute of Technology and Chad Ramey, Inertial Electrostatic Confinement Fusion Reactor (IEC Fusor)

    Back to the Future Saga, Mr. Fusion
    Marvel Universe Saga → Iron Man, Arc ReactorMarvel Universe Saga → Iron Man, Arc Reactor Mark 1
    Stargate Saga, Zero Point Module (ZPM) → Potentially Computer DesignStargate Saga, Naquadah Generator
    Georgia Institute of Technology and Chad Ramey, Inertial Electrostatic Confinement Fusion Reactor (IEC Fusor)
    © Universal StudiosBack to the Future and :(, Walt DisneyMarvel, Metro-Goldwyn-Mayer Studios Incorporated, and Georgia Institute of Technology and Chad Ramey

    We already showed the Zero Point Module in relation with a potential computer design of our Wireless Supercomputer (WiSer) in the Original vs. Inspiration of the 14th of July 2014.

    Please keep in mind that the shown images do not reveal any tech- nical details in any ways about our technologies. Indeed, we also mentioned other types of fusion reactors such as the spheromak reactor in relation with a spaceship concept of Style of Speed.

    Nevertheless, the shown fusor of Chad Ramey, which does not gen- erate net power, may have the size of a fusion reactor for our land vehicles (see also the related Style of Speed Further steps of the 10th of January 2015 and 15th of July 2015), though we do not know if 600 kW or more is a little too much for a common auto- mobile.

    Ontonics Further steps
    After we reviewed or said more precisely recalled the whole foundat- ions of the Quantum vacuum plasma thruster (Q-thruster) and our related work done so far once again (see the Further steps of the 18th of September 2014, 11th of October 2014, and also 15th of July 2015), we came to the conclusion that there are the:

  • van der Waals forces (distance-dependent weak interaction between atoms or molecules),
  • Casimir force or Casimir effect, and Casimir-Polder force (summations of vacuum fluctuations in quantum field produce attractive or repulsive force),
  • dynamical Casimir effect (production of particles and energy out of vacuum by mirroring), and
  • long-range repulsive Casimir-Lifshitz forces (Casimir effect repulsion),

    and therefore enough proven theoretical groundings, that can be exploited for practical engineering.

    Even better, we know now how at least one of our 0 Gravity 3.0 technologies works, which uses our fusion reactor technology to scale up the output of a Quantum Vacuum particle Thruster (QVT or Q-thruster). The repulsive net force is directly proportional to the generated net power, which means in the beginning a ratio of at least 0.5 up to 1 newton per kilowatt electric (N/kW) scaled approximately with the cube of the input voltage.
    Correspondingly, the complete powertrain is simply called Fusion Quantum Vacuum particle Thruster (FQVT or FQ-thruster) or Repulsorlift engine.

    Furthermore, we have at least another technology and also found an additional technology that we would like to integrate with this initial specific FQ-thruster for improving the net ratio respectively effic- iency in the range of at least 1 magnitude, so that it gets another big punch needed for the construction of machines with extreme requirements, like a hoverboard, a swoop, a pod racer, a race space- ship or such alike, though honestly this technology competes with our Hoverinium material class in the case of terrestial applications.

    Even for us this is unbelievable and totally crazy, as we said, but only the beginning.

    "More Power - More Speed - More Fun", [Tim Taylor and C.S.]

    We also developed a new concept of an FQ-thruster, though we do not know if it really functions.

    Furthermore, we have continued the development of one compound (see the Further steps of the 1st and 18th of September 2014) and developed and improved the performance of another compound of our Hoverinium material class. This is really fascinating.

    We also developed a concept for the next Hoverinium compound, which definitely belongs to the crazy variants of this material class.

    iRaiment Further steps
    We are working on new products including another masterpiece of a very special kind, for sure a modular exosuit platform with smart helmet based on Ontoscope high-technology and other modules, and much more (see also the related Ontonics Further steps of the 15th of July 2015).

    Marvel Saga → Iron Man, Arc Reactor Mark 1 → iRaiment Quantum Calibre Mark 1 Off ModeMarvel Saga → Iron Man, Arc Reactor Mark 1 → iRaiment Quantum Calibre Mark 1 On Mode
    © Walt DisneyMarvel and iR


    19.July.2015
    Clarification
    We are sure that true experts have already seen another unique advantage of our Wireless Supercomputer (WiSer) technology, spec- ifically of the circular variant and the hybrid variant with at least an optical wired interconnect and a free space electromagnetical inter- connect (see also the OntoLix and OntoLinux Further steps of the 13th of July 2015), besides the unmatched massive bandwith and low energy consumption (see the Ontonics Further steps of the 14th of June 2015).

    In detail, most applications and foundational functions of computing systems such as:

  • Graphics Processing Units (GPUs), Physics Computing Units (PCUs), or other Accelerated Processing Units (APUs),
  • high-performance embedded systems,
  • mobile devices,
  • video game consoles, and
  • stationary workstations, as well as
  • cluster computing systems,
  • server farms, and
  • full-fledged High-Performance Computing (HPC) supercomputers

    with multicore and manycore Systems on Chip (SoCs) and Systems in Package (SiPs) are based on some kind of data processing, that independently of the scientific field of problem solving, the other kinds of applications, and the functionalities, eventually has to work with very large arrays representing:

  • matrices in relation with linear algebra including
    • vector spaces,
    • linear transformations,
    • linear equation systems, and
    • eigenvalues and eigenvectors,
  • graphs, or/and
  • other such mathematical structures

    with one or more dimensions. Correspondingly, the rule of thumb is: The larger an array (a matrix or a graph) is, that can be handled, the better the problem solving, the application, and the system functionality is.

    To handle such a large data structure it is divided in smaller chunks, that can be processed on the many single processor cores of a SoC or SiP, or/and on the many single compute nodes of an HPC system. But this divide and conquer strategy demands a mechanism, so that the single chunks are still handled together as one data structure. This mechanism is some kind of a communication protocol for parallel computation, especially a Message Passing Interface (MPI) Application Programming Interface (API).

    But the complexity of calculating and handling a matrix or a graph increases exponential with their size, as it the case with handling the intra and inter communication of a multicore and a manycore SoC and SiP, as well as a massive parallel HPC system. Exactly at this point the next very important advantage of the circular WiSer can be seen and understood, because it is able to perform the broadcast (one-to-many association) and the multicast (one-to-unique many association) network addressing methodologies in relation with an MPI system, so that in one step respectively in constant time a message can be sent to more or even all other processing cores or/and compute nodes virtually independently of the count of cores and nodes.
    This advantage is already significant with just one single SoC, SiP, or compute node, but due to the exponential complexity problem it becomes obvious that with every additional core of a SoC or SiP and every additional compute node of a HPC system the advantage increases nearly exponential as well, so to say, because a WiSer solves this foundational interconnect and communication problem as far as possible.

    Another important technique of a multicore and a manycore SoC and SiP, and a massive parallel HPC system is the synchronization of the communication between the single compute units, so that for ex- ample a single core or compute node cannot block the others, which are waiting for a message to continue their part of an overall data processing, and provoke a deadlock in this way. Here again, our electromagnetical wired and wireless interconnects and networks solve the synchronization problem as well as far as possible, spec- ifically in the case that one of our WiSers features both network types as already explained in the past (see again the Ontonics Further steps of the 14th of June 2015).

    By the way: The Oak Ridge National Laboratory (ORNL) managed for the United States Department of Energy (DOE) and running the Oak Ridge Leadership Computing Facility (OLCF) has already understood how superior our technology truly is, and as the first step copied the concept behind our Tiny WiSer (see the OntoLab Further steps Tesla #3 of the 17th of July 2014) for its Tiny Titan, which is a model of its large HPC system called Titan, which again was the fastest computer in the year 2012.

    Everybody, who still uses processors and interconnects from manu- facturers, like Intel, ARM Holdings, Advanced Micro Devices, and Nvidia for example, and installs HPC systems from another company based on those semiconductor components, like International Busi- ness Machines, Cray, and Intel for example, cannot be taken serious anymore, because acting in this way is nothing else than simply throwing massive amounts of money out of the window for consider- ably slower and more expensive machines. The same holds for all manufacturers of all kinds of consumer devices with every additional processor core added to the overall system. Literally spoken, it is always wiser to collaborate with us. :D

    OntoLix and OntoLinux Further steps
    We have started the implementation of a Message Passing Interface (MPI) library, which is part of the larger network component of the software architecture of OntoLix and OntoLinux, and in this way works together with the libraries for Software-Defined Radio (SDR), Cognitive Radio (CR), Smart Antenna (SA) or Intelligent Antenna (IA), as well as Software-Defined Mobile Network (SDMN) (see the Further steps of the 13th of July 2015), and is supported and optimized for, supported and optimized by, as well as supports and optimizes the foundational features of OntoLix and OntoLinux, all bionic libraries of Softbionics, as well as our Wireless Supercomputer (WiSer) technology.


    20.July.2015
    Comment of the Day
    F-tron™
    Q-tron™

    Ontonics Further steps
    We applied the next improvement to our fusion reactor technology after we found out how this could work in at least one way. As interim results an increased collision potential respectively fusion ratio can be achieved, and as an overall result an increased net power should be provided as well.

    OntoLix and OntoLinux Further steps
    We have started the optimization of a Natural Language Processing (NLP) library, which is part of the communicator system of the OntoBot component of the software architecture of OntoLix and OntoLinux, and in this way works together with all other multimodal user interface libraries and components, such as the Ontoscope component, and is supported and optimized for, supported and optimized by, as well as supports and optimizes the foundational features of OntoLix and OntoLinux, all bionic libraries of Softbionics, as well as our Wireless Supercomputer (WiSer) technology.

    In this relation it is most important to mention, that with our unique WiSer technology only we can process much more elaborated lang- uage models much faster (see the Clarification of yesterday for some details) and provide much more astonishingly intelligent services based on the components and the supplementing and improving bionic libraries of Softbionics (see its Further steps of the 13th, 18th, and 24th of January 2015, 11th of February 2015, 9th, 11th, and 12th of June 2015, and 7th of July 2015 than anybody else.

    Everybody, who still uses operating systems from companies, like Apple, Google, and Microsoft for example, and processors and int- erconnects from manufacturers, like Intel, ARM Holdings, Advanced Micro Devices, and Nvidia for example, cannot be taken serious any- more, because acting in this way is nothing else than simply burning massive amounts of money out of the window for considerably worse and slower hardware and software. The same holds for all manufact- urers of all kinds of consumer devices with every additional process- or core, basic service, and application added to the overall system. Literally spoken, it is always wiser to collaborate with us.

    Style of Speed Further steps
    Because we have so much power in our batteries, electric motors are relatively cheap, and our chassis is already the S version engine- ered for high-performance driving, we are thinking about a special version of our e-quattro model E6 (see for example the Further steps of the 31st of December 2014 and 13th of June 2015) designated ES6 accordingly, with two more powerful electric motors providing 350 kW each resulting in a peak power of 700 kW, so that the ES6 street rocket accelerates from 0 to 60 mph in 2.6 seconds, which is even better than a roller coaster not to mention the tin cans on wheels of other manufacturers.

    In this conjunction, we would like to show a high voltage battery module system, which is constructed by one of our many partners, that can be used with our high performance batteries (the silver components with the black and red stripes at their top edges shown in the image below).

    High Voltage Battery System
    © :)

    Indeed, this is a high-tech electric energy storage device and not some laptop batteries embedded in a fire-retardant foam.

    Warning - Hightech Competence™


    21.July.2015
    Style of Speed Further steps
    Dead are living longer

    Indeed, this is also the case with our electric sportscar model RE. On the 13th of June 2015 we said that we will not produce the RE in favour of another new model, and on the 23rd of June 2015 we said that the model RQ has become the next generation of the RE.

    But today, we are going where no man has gone before: Our RE is making a renaissance and coming back as the next generation electric sportscar featuring a revolutionary marvel of technology as power source, that makes its name all honour: The fusion reactor with neutron emission control, f-tron.

    Style of Speed RE F-Tron Fusion Reactor with Neutron Emission Control
    © :I

    As we said in the Original vs. Inspiration of the 18th of July 2015, we do not know if 600 kW or more is a little too much for a common automobile, but surely it is not too much for an electric sportscar we had already in mind. Even Anthony Stark had only that R8 without such an engine.

    In this relation, we would like to give the information that the RE is also a laboratory on wheels for the use of the f-tron powertrain in other vehicles, such as for example our:

  • rotorcrafts (see also the related Further steps of the 13th and 26th of January 2015 and the image below),
  • hoverbikes (see for example the Further steps of the 24th of June 2015),
  • Speeder Bikes and Swoops, and
  • Airspeeders (see also the Further steps of the 10th of January 2015).

    High Speed Helicopter
    © :)


    22.July.2015
    Comment of the Day
    Ibeam™

    Style of Speed Further steps
    The next revolutions by Style of Speed have come now.
    On the 24th of June 2015 we already reported that we have optimiz- ed the irail and ipad technologies significantly, but have not said that we applied a new technology that on the one hand improves the integration of our Quickcharger technology and on the other hand provides the foundation for a much more revolutionary energy transmission technology: The ibeam.

    With the ibeam technology electric energy can be transmitted over large distances, which was not possible in this special way before with other technologies due to the lack of knowledge about physics and the inability to construct related devices, so that neither a cable based connection of an electric car with a charging station or of a pad of a wireless charging station with an electric power source is needed, as it is the case with our Quickcharger Service Stations (see the related Further steps of the 4th of January 2015), nor recharging an electric energy storage device of a vehicle is needed at all, as it is already the case with our wired irail.

    For making our ibeam possible we had to develop several break- through technologies, which are revolutions of theirselves, such as:

  • directed and far range transmission of electromagnetic beams in the radiowave and microwave spectrum,
  • efficient reception of electromagnetic beams in the radiowave and microwave spectrum,
  • safe energy transmission (no burn),
  • secure energy transmission (no free lunch), and
  • much more.

    A possible architecture of our first Tesla Superpower Station in a signature design to identify our Style of Speed Quickcharger Service Station network sites is shown in the image below and will be con- structed either at the Deer Creek Road in Palo Alto or the Santa Monica Boulevard in Los Angeles, both California, U.S.A..

    Nikola Tesla Wardenclyffe Laboratory Building and Tesla Broadcast Tower → Style of Speed Tesla Superpower Station
    PD

    Another potential signature design could be similar to the Shukhov Tower (see the images of the issue Ontonics Space Elevator #5 of the 21st of March 2015), so that our customers do know where they get the best electric automobiles and services.


    24.July.2015
    Ontonics Further steps
    We added a new function to specific models of a product range.


    25.July.2015
    Comment of the Day
    General gravity™

    Ontonics Further steps
    We added a new function to specific models of a product range.

    Furthermore, we extended a single product to a product range. Either the technology does not lift off our our solutions will became the worldwide standard in this field as well.
    But at this point we did not stop and extended the product range even further.

    We already have two superior battery technologies, that can provide an electric device with 5 times more power in the beginning and at least up to 25±3 times in a mature version compared to a common lithium-ion based battery of the year 2010.
    But now the next revolution of Ontonics and the OntoLab is already in the Innovation-Pipeline: Imagine a battery that provides for ex- ample a smartphone with electric power for 1 month in the beginning and more than 6 months in a next generation. Unbelievable but true, this is the estimated performance of our newest concept of an elec- tric energy storage device based on existing techniques and techno- logies, as well as our Hightech Competence.

    We have renamed our new business division American Gravity to General Gravity™, which is responsible for our 0 Gravity and Artificial Gravity technologies.


    26.July.2015
    Comment of the Day
    General gravities™

    Ontonics Further steps
    In fact, we thought about it yesterday already, but somehow we were distracted by something more interesting. Nevertheless, we have renamed our new business division General Gravity to General Gravities™ and do apologize for the little confusion.


    28.July.2015
    Clarification
    Now that we are proving our superior and worldwide unique Hightech Competence in the field of autonomous vehicles, specifically with self-driving cars, the usual lying media changed its strategy and is trying to misled the public once again with reports that are quest- ioning the technology in general and playing down our related solut- ions. But the facts are, that:

  • our technologies are good enough yet, but surely not what the competitors have copied and stolen from us,
  • we have improved our hardware and software, and
  • only we can take the liability for autonomous vehicles due to the very easy to understand reasons respectively provided quantities and qualities, including the:
    • right philosophy,
    • honest ethics,
    • intelligent techniques, and
    • high-performance technologies,

    that others are not able to provide, obviously, as it can be learned every day again and again with for example pure marketing activ- ities, such as for example summits discussing artificial intelligence, robots, autonomous driving, and ethics to mislead the public.

    For details see again for example the:

  • Style of Speed Announcement AutoWiSer #1 of the 17th of July 2014 and
  • Style of Speed AutoWiSer #2 of the 7th of January 2015,
  • Style of Speed Further steps of the 9th of January 2015,
  • OntoLix and Style of Speed Further steps of the 12th of January 2015,
  • Style of Speed Further steps of the 1st of February 2015, and
  • Ontonics Further steps of today below, as well as
  • Clarification of the 11th of January 2015,
  • Clarification of the 10th of February 2015, and
  • Clarification of the 19th of July 2015).

    More Machine Than Machine™ - More Human Than Human™

    Ontonics Further steps
    We are pleased to announce our latest lidar systems for real-time 3D mapping and object detection, tracking, and classification, which provides improved range, scanning frequency, and accuracy (com- pare with the specification of the former generation given in the Further steps of the 7th of January 2015). The devices features are:

  • small dimensions,
  • high degree of safety,
  • industry proven quality,
  • usability in various weather conditions,
  • very cost effective,
  • field of view of up to 360°,
  • scanning range of up to 1,000 m,
  • scanning frequency of up to 240 Hz,
  • accuracy of under 1 cm at 200 m,
  • and much more,
  • as well as seamless integration with our other solutions, like e.g. the Active Components and the Computing and Multimedia techno- logies of Style of Speed.

    For sure, such high performances demand a related Automotive High-Performance Computing (AHPC) environment, that we develop- ed simultaneously with our AutoWiser 1.0 and 2.0 technologies pow- ered by OntoLix and OntoLinux as part of a unified system.


    30.July.2015
    intelliTablet Further steps
    We have added a special variant of a component to a specific tablet computer series.
    Furthermore, we have developed two new variants of this tablet computer series, which make it even better.


    31.July.2015
    Ontonics Further steps
    We have improved our already superior battery technology (see the Further steps of the 13th of June 2015) even further, which should result in an energy density increased from 25±3 times by at least 20% to 30±3 times compared to lithium-ion based battery technology of the year 2010. Even if we are not able to reach the estimated energy density, the first generation of our battery technology will outperform everything else available in this field by far.

    Furthermore, we solved a specific problem with the construction of a special battery technology.

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