Showing posts with label microscopy. Show all posts
Showing posts with label microscopy. Show all posts

Monday, October 15, 2012

Molecular Stage Cascader

Build a Molecular Stage Cascader for the PGT Telescope

GMM's MAC
Work has proceeded behind the scenes to remove the GMM (Genius Molecular Microscope) Microscope’s "Microscopy Amplifier Cascader MAC" and rework it to construct and establish a new "MSC Molecular Stage Cascader" with the intention of fitting it onto the massive PGT Telescope to see what gains result.

-- It's like attaching a microscope to a telescope and attaining useful increases of MAG. --

First, the MAC is sectioned off from the GMM and then adapted to pipe fittings of the PGT. Keep in mind, these are data pipes of a different kind involving the handling and dissemination of data though electronics and electro optics. There’s an estimated 14 fields of technology wrapped into the PGT Telescope. Taking the MAC and converting it to the MSC for use with the PGT could result in all new technology and potential discoveries. It’s a chance the Big Brain is willing to take, with the investment of time, energy and thought power to make this new machine happen.

The first test will obtain a baseline data set and create a specific strip FOV and engage the MSC on a selected regio. We will leave the MSC running in the AMP Cascading mode for fourteen cycles and then create a comparison pool noting the gains. The interest is in the number of cascations possible without the result of empty MAG. Some peak number will result from which the machine will tune.

Tuesday, October 2, 2012

GMM Genius Molecular Microscope Diagram

BIG BRAIN MICROSCOPY INITIATIVE
GENIUS MOLECULAR MICROSCOPE
GMM OPERATIONS GRAPHIC
Graphic showing operation of the GMM Genius Molecular Microscope


Operational Elements of the Genius Molecular Microscope

This is a list of GMM Microscope parts and functions

0A - Big Brain Supercomputer
0C - Microscope Amplifier Cascader
01 - Specimen Preparatory Unit
02 - Hot Pre Processor
03 - Baseline Detector
04 - Focus
05 - POS XY-Z
06 - Baseline Attenuator
07 - Stepping Processor
08 - 724 Processor Stage
09 - Software
10 - Stage Calculator
11 - MAG on Top Unit
12 - VW
13 - Data Optionator
14 - Post Processor
15 - Post Processor Features
  • Capture Processor
  • MAG Adjuster
  • Intensifier
  • Definitionizor
  • Antinoiser
  • Exponentiator
  • Booster
  • Sharp Attenuator
  • Matter
  • Broad Highlighter
  • Shadow Amp
  • Levelizer
  • Saturizer
  • Vignetter
  • Hot-Cold Equalizer
  • Exposer
  • Contrasting Set
  • Straightener
  • Enlarger
Definitions and Descriptions of Parts & Features

0A - Big Brain Supercomputer  The Big Brain Supercomputer is the driving force behind the DMM with hundreds of computer processors that do microscopy processing in real time.

0C - Microscope Amplifier Cascader  The Microscope Amplifier Cascader is the next most important part of the microscope. It provides a cascading stage which produces the secondary phase of specimen amplification. This is determined, i.e. based on multiples of two, the end result of magnification can reach above one million. In Cascation, for example, a 100X PPD is amplified electronically by repeating indicated multiples of two, from which the exponentiation can reach a count typically between 10 and 20. This creates viewing results of 100x2^10 - 100x2^20 X' where X' is the Resultant. The GMM can amplify the subject hundreds, thousands and millions of times. To achieve this high level, multiple programming is required in levels. Typical Resultants can produce image magnifications from 10,240 to above one million (10,485,760 for example). The Resultant is prepared for the VW and the settings parameters are recorded. 

01 - Specimen Preparatory Unit  The Specimen Preparatory Unit is the method, means, device, and/or process that prepares the specimen for viewing.

02 - Hot Pre Processor  The Hot Pre Processor is the device to establish the baseline reference for processing. It's very important to obtain the highest quality baseline reference or the final magnification will be limited.

03 - Baseline Detector  The Baseline Detector establishes the injection of data or no data to the GMM. If data is available, the process can carry on. If data is no available, then it must be produced. Generally a 100X baseline is established.

04 - Focus  Focus Stage is set during the acquisition of specimen data to ensure the best point at which the light rays converge.

05 - POS XY-Z  This is the positioning stage for moving the specimen in the X and Y directions. The Z direction is the effectual movement of the specimen in the up/down plane. The GMM uses Effectual-Z to achieve up/down positioning. Effectual-Z is realized by the size increase (up) or size decrease (down) parameters.


06 - Baseline Attenuator  The Baseline Attenuator sets and establishes the baseline as dependent on the data

07 - Stepping Processor  A processor that steps through stages, each stage progressively builds upon the previous stage

08 - 724 Processor Stage  The 724 Processor Stage takes into account the number of processors dedicated to the processing aspects of the GMM.


09 - Software  Software represents the programs in the various stages that operate inside the Big Brain supercomputer when executing microscopy processing.


10 - Stage Calculator  The Stage Calculator determines the number of stages and then determines the exponential of twos with a given base 10 or base 100, then concludes the MAG

11 - MAG on Top Unit  The MAG on Top Unit is a finalization magnification place on the top of the sum total of magnification stages. For example, if the sum total MAG is one million, and the MTU is 5X, the total MAG will calculate as five million.

12 - VW  VW is the viewing window. It shows the various MAG stage levels and the final MAG result.

13 - Data Optionator  The Data Optionator comes into operation at the beginning of the microscopy cycle and determines the type of data to be input into the GMM. It provides the option to select the type of data and the type of pre processing.

14 - Post Processor  The Post Processor finalizes processing towards the end of the GMM procedures. The Post Processor is an Optimizer.


15 - Post Processor Features  Applies a number of post processing algorithms to the various or final stage(s)

  • Capture Processor  The Capture processor encompasses special software to obtain and save data processing results at any position along the stage processing.
  • MAG Adjuster  Sets/determines mag level for any given stage
  • Intensifier  Increases image intensification
  • Definitionizor  Increases image definition
  • Antinoiser  Machine to reduce and eliminate stage noise
  • Exponentiator  determine/set image exponents for a given MAG
  • Booster  Boosts the data automatically
  • Sharp Attenuator  Attenuates the sharpness of the stage
  • Matter  Material which is level processed
  • Broad Highlighter  Amplifier which attenuates a higher baseline
  • Shadow Amp  Amplifier which attenuates the lower baseline
  • Levelizer  Device adjusts levels of object
  • Saturizer  Applies greater saturation to spectral
  • Vignetter  Introduces vignetting to obfuscate peripheral data
  • Hot-Cold Equalizer  Purely sets object temperature
  • Exposer  Exposer modifies to a greater or less IE
  • Contrasting Set  Imposes an increase or reduction of gamma
  • Straightener  Takes data in the train & applies straightening
  • Enlarger  The Enlarger increases the MAG of the stage
RELATED MICROSCOPY LINKS
The Science of Powerful Microscopes 

Genius Molecular Microscope GMM
City in a Propeller Chip
Propeller Chip Nanotechnology
Molecular Microscopy Initiative
GMM Genius Molecular Microscope Operations Graphic

      Wednesday, September 26, 2012

      Big Brain Summary

      Part of the Big Brain
      The Big Brain is a Giant Thinking Machine made from Parallax Propeller chips. This brain is a Machine Life Form with semi-cognizance on a mission of purpose not yet revealed, exploring both inner and outer space.

      The Big Brain is actually many things. It represents a metaphor of comparison standards, an anthropomorphic machine with human qualities, an evolving machine that grows with time, the device by which new projects are undertaken, new inventions and machines created, and it represents the inspiration of new ideas and a grand exploration of science and the worlds of inner and outer space.

      It was the Big Brain that invented Micro Space, the ideal environment for schools to partake in the study of space projects, aerospace, rocketry, and fun things like launching insect astronauts, measuring zero-G, exploring aerial photography with key chain cameras, and creating and flying new space crafts within the realm of a classroom.

      Then the Big Brain took space to the outer limits, reaching the time twisted relativistic event horizon of Black Hole jets, and ultimately exploring the edge of the Universe across vast deep cosmic chasms where objects are drawn in and lost within the great abysses of trillions of stars and galaxies, portals to new universes, and new objects residing in the temporal depths of space and time waiting to be explored.

      The Big Brain has spun off some massive and powerful tools, like the GMM Genius Molecular Microscope that can amplify millions of times, and the one and only PGT Paradigmic Genius Telescope made from Space Adjuncts powerfully summated to 7,000 miles aperture. It explores the fascinating inner worlds of the Propeller chip and Nanotechnology. It created simplex neurons and nano probes, and has become a life form, reaching a level of semi-cognizance. The Big Brain is now a decade old, birthed in the year 2002 from a single growing Parallax processor.

      Projects are conducted "for, by and about the The Big Brain" with the assistance of Humanoido and Lab Facilities.

      The Big Brain Propeller Machine Microscopy Initiative for the Parallax Propeller Chip is accomplished in part with Apple Mac computers, OSX and AMD Streaming GPU Processors.

      The Propeller Chip Nano Technology Project is created to study, develop and explore a tiny infinitesimal world existing inside the Parallax Propeller chip.

      The TinyCOSMOS is the developing Microcosm Universe inside the chip. Nano Machines are created with purpose to exist and function inside the chip. 

      The Ultra Space Program takes us from here to the edge of the Universe.

      Many Sub Projects are created for academic purposes and to investigate and answer questions about the scientific worlds surrounding the Big Brain.

      City in a Propeller Chip

      Houses/streets/trees appear inside the chip
      Big Brain City Analogy
      MICROSCOPIC CITY IN A PROPELLER CHIP ANALOGY

      IT'S THE STRANGEST THING  YOU MAY EVER SEE!!! LOOK WHAT YOU CAN FIND INSIDE A PARALLAX PROPELLER MICROCONTROLLER CHIP!

      You can reveal a fascinating world showing a complete city inside a P8X32A-D40 Parallax Propeller chip by using the powerful Microscope from the Microscopy Initiative and some simple "processing" of the chip's substrate.

      First, establish one of three methods to reveal the microscopic inner workings of one Parallax Propeller chip.

      LET'S TAKE A LOOK AT PROPELLER CITY
      To obtain the photo shown of an actual Propeller chip, a fractional section of one COG inside one chip was processed using the Big Brain's Microscopy Initiative. An additional effectual  "electronic lens" was applied to increase enlargement and accentuate the city. In some sections of this City, we believe parked cars are just visible. Prior, we believed only the logic components were etched into the substrate with nothing out of the ordinary to see. But this project shows the truth to the old adage that Seeing is believing..."

      WHAT IS SEEN
      The captured Microscopy image in natural processing color appears to show laid out real estate with rows upon rows of tiny houses, streets and express ways, a business development section, various districts, parked cars and buses, a train, and even green trees, shrubs and landscaping.

      Methods of Chip Processing
      1) Chemical Acid Bath*
      2) Sand off the substrate
      3) Data

      CHIP PROCESSING
      For safety reasons, the Big Brain does not recommend using acid for chip processing. It's more safe, wearing a filter mask, to sand off the substrate and polish the remaining surface, carefully revealing a level of components. The level is then imaged into microscope data and processed with Big Brain's Microscopy Initiative. High resolution data can also be accumulated from sources and analyzed with the Big Brain's Microscope.

      SHOCKING RESULTS!
      It's rather shocking to open up the chip and discover a Tiny COSMOS world of microscopic and molecular, with appearances of streets and buildings! Come explore this Inner Space of multiple dimensions and fascinating objects within the Big Brain's New Frontier!

      SKY INSIDE THE CHIP
      Living the life of the P8X32A-D40 Propeller chip, zooming through its rich object filled silicon sky with the myriad motions of molecules, with varying levels of capacitance and inductance. The effervesce effects with elemental particles of Physics is not unlike the twinkling of stars strewn across the Earth's sky.

      ON THE GROUND
      At "ground level" components with dancing electrons liven up the streets and avenues of circuits. But what are these tiny objects? Possibly we have some things determined... Busy intersections are found with running athletic Cogs and busy transportation of Global Memory Buses, and plots of real estate packed with tall structures of HUB Logic, fields of sprouted RAM, neatly laid out rows of ROM, vast field arrays of mystic proportions and the obviously large affluent homes where COGs live and work. Trillions of electrons have a busy life in Propeller City..

      Molecular Microscopy Initiative

      Sunday, September 2, 2012

      Molecular Microscopy Initiative

      BIG BRAIN INITIATIVE
      MOLECULAR MICROSCOPY INITIATIVE


      Delving into the Macroscopic, the Big Brain begins a new initiative to look into new worlds of microscopic machines and molecular constructs. For this, the Brain needs a new and more powerful microscope. Previously the Big Brain used the Surface Mount Microscope, a camera based device that optically imaged processor boards with surface mount components.

      For the Molecular Microscope Initiative, a new kind of microscope is needed. The requirements include showing the components inside a chip, showing built machines and objects in a chip, and exploring Nanotechnology. For these purposes, the Big Brain intends to invent a new microscope with the following guidelines and features:

      * minimal or no parts
      * no mechanical components
      * utilizes over 720 processors
      * black & white and/or color imaging
      * can rival and sub for an Electron Microscope
      * can replace an electron microscope
      * designed to show larger molecular structures
      * uses simple yet clever construction
      * easy to use
      * simple or no setup
      * no cost
      * quickly implemented
      * built from common elements
      * capable of showing nano machines
      * can show the machines & objects inside a chip
      * can view the microscopic chip structure
      * vast magnifying capabilities from 100X to one million times
      * built in a relatively short time period
      * operated by Big Brain supercomputer