Showing posts with label micro. Show all posts
Showing posts with label micro. Show all posts

Tuesday, July 29, 2014

Space1's Micro Spacecraft

SPACE1 MICRO SPACECRAFT
The past year in r/c hobby flight, the industry has seen advanced technical innovation introduced with helicopters, quad fliers, and other flying inventions. This has filtered down to the low cost toy store, thanks to the highly competitive China market with ability to make things cheaper, smaller, and at extremely lower cost than other products on the market.

To adapt this technology can result in yet newer innovations, at a fraction of the cost of their professional counterparts. Surprisingly, in the space industry, this may indicate the difference between $25 and 25 million dollars and development time of months instead of decades.

Space1 set out to develop the smallest spacecraft capable of connected human flight through experimental add-ons and modifications. The entire unmodified craft is about 11.9 grams in weight. When we attempted to attach a number 808 keychain camera, the added weight was a no go. A standard #808 camera weighs about 16 grams. Shedding the case can subtract 6 grams. This makes the camera just under the weight of the craft.


Friday, January 10, 2014

Exploring Space

EXPLORING SPACE
The chart illustrates how the Big Brain Machine and Humanoido Laboratories conduct their own space program. Various levels of space are defined according to their exploration programs and space definitions.

Humanoid robots are adaptable to space
The Big Brain machine has a manned space program and has launched humans into Next and Near Space approximately 40 times.

There is always a risk associated with manned space flight and as the distance from Earth increases, so does the risk.

The robust Micro Space program is relatively safe and used for academic purposes, having launched insects and various instruments into space.

Solar panels can power a tiny outpost in space
Solar System Space and Ultra Space is currently safely explored with the array of very powerful telescopes and Monster Machines.

This includes the newest M3T, IT, ET and OT space omnipresence telescopes that are able to exist in multiple places at the same time.

For example, the large Big Brain supercomputer that controls these telescopes remains on Earth at the Deep Space Center and at the Ultra Space Administration while the space parts and components are at numerous locations in space, called Adjuncts.

Brain in a jar technology
Brain in a Jar technology could keep the space station operating autonomously and evolve to various applications.

Our space program is interested in developing a micro space shuttle and a micro outpost in space. This is an ongoing project that began decades ago.

We've periodically blogged these ideas and worked on evolving the designs. Many of the designs developed, i.e. space telescope, could be integrated into the program. This would take exploration into Solar System Space and create orbital flights. We are reaching the crossroads in space exploration and foresee a new technology breakthrough.

We are at the crossroads of space and time
Conjecturing, we wonder if the next step into space for man will be represented by the human being transformed into a space faring humanoid avatar.

Our solar system space program could be conducted with space stations, shuttles and other space equipment designed for humanoid robots which won't need to breathe air, eat bulky food, drink water, or create waste products as we know it. They will also have a greater range of thermal operations.

Monday, December 30, 2013

FM Radio Station Specs Part 23

FM RADIO STATION SPECS PART 23 
FM Radio Station statement of operating specifications, characteristics and purpose

Specifications 
Radio Type - Transmitter
Band - FM
Frequency Range - 88-108 MHz
Frequency Selection - tunable
Transmit power - under 100 mW
Range - desktop within room
Antenna - 1.75" diameter mini loop wire strand
Applications - hobby, school electronics, toy
Use - intermittent, testing, educational
Type - Personal Non-commercial
Power - 3 volts low power
Audio Source - voice electret microphone
Power source - battery
Typical Broadcast Duration- 30 seconds
Location - desktop
Size - pocket portable
Cost $4

Objectives 
* to fulfill the requirements of electronics design lab
* testing fm transmitter characteristics
* learning principles of broadcast radio stations

Applications 
* Transmit short range robot speech
* Classroom radio station project
* Electronics lab requirement
* Baby monitor
* Wireless pickup for guitar or ukelele
* Wireless microphone/KTV Singing
* Hobby or toy

Conclusion The micro FM radio station is a learning toy with short desktop range, a 1.75" antenna, and power under 100 milliwatts. No license is needed.

Sunday, November 3, 2013

Brain Cortex Update Part 17

BRAIN CORTEX UPDATE PART 17
MONDAY NOVEMBER 4TH 2013
A journey farther, deeper and longer than ever before into the deepest part of the electronic parts plaza took place yesterday.

— at the heart of this experiment, as part of the Big Brain project, is a special living cortex machine which is designed for human brain to machine transfer, and to extend the life of both symbiotic human and machine, in the most simplistic way, yet representative of greater things to come —
 
There's no doubt about the sacrifices made to keep this project going. The ravages of this often arduous journey have exceeded the extreme physical limits of any human — i.e. being thrown around on a violent bus with no shock absorbers, having a leg torn, a hip twisted and sprained, bruised and being trampled by enraged stampeding crowds of thousands of people, becoming car sick on the taxi with the driver from Hell, catching flu germs from thousands of people in small hot humid places, becoming lost amidst twisting streets with no rhyme or reason and maps that don't properly match the city jungle, and walking (5 miles) to reach a futuristic home in the sky. This also includes walking up six stories and back down again, and back and forth (yoyo effect), in the skyscraper of a parts plaza, because someone decided to turn off the elevators and escalators to save money.

However, on the flip side of the coin, the rewards are totally spectacular and great, mind boggling, like a great fantastic dream from the future, and the climb upwards from level 1 to level 5 inside the electronics parts plaza was like traversing the stairway to Heaven, as every electronic part in and beyond imagination seemed to be available.

The Cortex project now has the parts it needs and remains fully funded by Humanoido Laboratories and supporters and investors are fully in favor of ramping up and increasing the project to include not only the current cortex, but a possible array of new sophisticated and simplified demonstrative cortex' and a ramping up of human brain to machine transfer experiments.

The parts rewards this time include a new solar panel for a smaller test cortex, perhaps a micro cortex (smaller than the mini cortex) to be placed in the smallest jar, and a multiple power cell mount array for ten individual cells for the large cortex. It will also serve for other experiments and directly drive a Parallax Propeller chip.

A large number of brass hardware spacers were obtained to attach the power cell mounts to the jar walls. Phenolic insulators were obtained in a quantity large enough to earthquake-proof the jar to a higher level.

An instrument panel was obtained to read the voltage level and display it on a digital readout. This has two leads for the supply to power it and two leads to be used for the voltage input. Since the device has 3 leads, one is shared with the two inputs.

One challenge is reading the Chinese instruction page for wire connections because no schematic is provided. The device instructions are not online and so a translator is needed, making some delay for work on the control panel.

Brain Cortex Index Part 16

Sunday, September 22, 2013

Robot Explorer Log 8 Wireless Camera

The complete wireless camera system for Robot Explorer produces the first color image in this setup test at the lab. The completed system will contain the battery supply, camera and transmitter on the robot carriage. The TV and receiver will locate at the base tracking station. The tracking station will include channels for picture and telemetry, along with a sound channel. As seen clockwise, the TV, camera, 1.2 GHz transmitter, battery pack and 1.2 GHz receiver.
A WIRELESS CAMERA SYSTEM
FOR ROBOT EXPLORER - Log 8

Robot Explorer is a new space robot designed under the Big Brain Initiative at Humanoido Labs, to explore new worlds at the outer fringes of the solar system.

One of the most important parts of the robotics system is the wireless camera. The camera will transmit live images from the surface of the planet or moon on its own channel and allow humans to watch as the robot explores a new world.

OVERVIEW
It took three months to design and gather all the parts necessary to build the wireless camera system for the Robot Explorer prototype. This system sends a TV color image by a 1.2 GHz frequency signal up to a long range base station, located up to 1,000 meters (.63 mile) in distance. The signal reaches the receiver, is decoded into the A/V NTSC composite 1V pp format and is fed to the TV's A/V input jack.

Specification page for the SONY CCD
WIRELESS CAMERA SYSTEM
The system consists of a miniature camera, camera image transmitter, camera and transmitter battery power pack, receiver and TV monitor. The TV monitor and receiver are located at the tracking station and the other parts remain within the robot. The modules are made in Taiwan. The units are prewired at the store by the store owner. It's apparent, the harness combines the battery plug with both transmitter and camera. The store owner wired the battery pack, which was purchased from another store, and provided the required power barrel end plug. Purchasing the system at the A/V store provided extra service, i.e. the entire system was wired, set up and tested. The other benefit, this is a take home system with no waiting for shipment for an unknown "working or not working" package that would require some assembly.

POSITIONING
The camera, battery pack, and transmitter are located on the robot. The receiver and TV are located at the tracking and telemetry station.

PURCHASING
The system was purchased locally at the A/V parts store. The owner provided service for putting the system together and testing it. He also wired the battery pack (purchased from another store), provided the power barrel jack, and tested it at no additional charge. Information is gathered from the store owner and a variety of sources.

MEASURING THE TRANSMITTER
The camera 1.2 GHz transmitter was measured with a frequency meter and actual respective channel frequencies were 1080, 1120, 1160 and 1200 Mhz.

COST IN NT$
$1,700 for the camera
$1,200 for the camera transmitter
$1,000 for the receiver
$2,500 for the TV monitor
$432.0 for batteries
$30.00 for the battery holder

Showing the battery pack, CCD camera with adjustable lens and the 1.2GHz transmitter. This is a custom made cable to join the camera and transmitter to a 12-volt battery power suppy.
CAMERA
Image Sensor ⅓” Sony Super HAD CCD (Sony SS11)
Horizontal Resolution 420 TV lines
Medium Resolution
S/N Ratio more than 48dB (AGC off)
Auto backlight compensation
3.6mm Adjustable lens
LUX (.5 LUX @ f/1.2) Color
Effective Pixels NTSC 512(H) x 492(V)
Power Supply DC 12V
Power Draw @ 110 mA
Video Out 1Vp-p  75 ohm
Operating Temperature -10 deg. C to +55
Storage Temp -30 C to +60
Dimension 35mm x 35mm (less swivel base)
Weight 240g
Model (IAS-35XT42) Taiwan
http://www.intex.com.tw/detail.php?PID=52


TRANSMITTER
Frequency 1.2 Ghz (1200 Mhz)
Channels 4 (increments of 40)
Output Power 700mW
Range (1000m line of sight)
Battery 12 volt
Weight
Dimensions


The receiver is part of the base station that feeds live video transmitted from the camera. It feeds the 1.2 GHz signal into a converter resulting in A/V NTSC composite video out. It has a choice of 4 channels using one slide switch. The AV signal can be recorded on a VCR or camcorder with AV input record capability.
RECEIVER
Receiver TR-1500
Power 12Vdc
4 channels
CH1 = 910MHz, CH2 = 980MHz, CH3 = 1010MHz, CH4 = 1040MHz
AV Video Out NTSC 1V pp composite
1.2GHz
Video input : RCA*1 composite video 1 Vp-p, 75Ω

Video output : RCA*1 composite video 1 Vp-p, 75Ω
Audio output : RCA*1
Antenna : Dipole
Operation Temperature : -5degree to 45 degree
Operation Humidity 5% TO 85%
Dimensions : 130mm*80mm*23 mm (without antenna)
Weight : 263 g
Consumption : 12VDC 350mA
Connection : White - Audio, Yellow - Video 

CAVEAT
Even if the cable looks good with shrink wrap covering the connection, it's likely the two wires were only twisted together and not soldered. If an intermittent open connection occurs, it will not be surprising. Just strip the tubing and wiring, add new tubing, solder it together and shrink the tubing.

LINKS
http://www.dronesvision.net/en/wireless-av/44-racewood-900mhz-wireless-av-receiver-vrx-for-fpv-wireless-cctv-cameras-green-label.html

http://www.goodluckbuy.com/cctv-900tr-1500-0-9ghz-a-v-mini-receiver-box-manual-4ch.html

http://www.rc-cam.com/forum/index.php?/topic/3672-comtech-tuner-module-upgrade/

Tuesday, August 6, 2013

Micro Strata Threads Discovery from Near Space

The TST Tiny Space Telescope in short EFL mode was looking downward when it captured many micro strata mixed with many banks of clouds
MANY MICRO STRATA THREADS DISCOVERED FROM NEAR SPACE
Once you rise above the majority of the clouds when exploring Near Space, you can look down and out across the majestic expanse of near Earthen clouds and see many spectacular wonders.

At least 16 micro strata are visible and counted
Telescopes are usually pointing upward towards the Heavens, capturing celestial wonders. We've taken our telescope and pointed it downward, from Near Space.

Imaging downward with a Tiny Near Space
Many rainbows, 1=circular
Telescope, you might see many rainbows beginning with a completely circular one or many micro stratas. The latter was the view captured during our manned Near Space flight on Wednesday, July 17th, 2013.

This photo shows simultaneously, at least sixteen thin pencil line dark stratas, all running parallel to the horizon. Study shows these are likely caused by the increasing frequency of contrails, due to juxtaposition relative to a ground based airport - where jets spewing fuel exhaust in their flight patterns across the wispy cloud world. However, we cannot be certain, as this could show a mysterious outcropping of a natural phenomenon.

LINKS
Rainbow from Near Space
http://humanoidolabs.blogspot.tw/2013/07/over-rainbow-space-flight.html

Saturday, August 3, 2013

Classified Leaked Documents - Rocket Crew Compartment

CLASSIFIED LEAKED DOCUMENTS FROM THE MICRO SPACE PROGRAM 

INSECT ASTRONAUT ROCKET CREW COMPARTMENT
DINKY LEAKS FROM THE MICRO SPACE PROGRAM

The classified design for the G-Force cushioning shock absorbers in the Micro Space Rocket for insect astronauts is dinky leaked to the public.

The spring action of the cotton wad located below the crew floor is the secret key mechanism to enabling a less stressful rocket flight for the insect astronaut inhabitants and ensuring their survival during heavy G forces. The cabin design for rapid in and extrusion plus periods of weightless at the zero-g moment ensures a protective capsule environment for occupants. The structure is zero cost, made from common household items, and easily replaceable if damaged during use. Not shown is an added shock absorber at the top of the crew capsule compartment. Some experiments had side wall shock absorbers as well although these were primarily for the tumbling during the return flight. The vertical scale line at left in the design drawing, with end arrows, is indicative of a distance of about 3-inches. Not shown is the vertical insertion fuel rod or gantry extension. Also not shown is the flexible fuel containment for deployment. The MSR was improved at three levels.

Friday, June 21, 2013

Propeller Mini Microcontroller

THE PROPELLER MINI
The Propeller Mini by Parallax is a tiny but powerful microcontroller computer with 8 cores and a very small footprint.

A tiny .81 x 1.52-inches

The current $24.99 cost is the same as a Proto Board, the lowest cost complete Propeller board offered by Parallax at this time. The footprint is about the same size as BASIC Stamp module.

The Propeller chip is the heart of the Big Brain Supercomputer at Humanoido Labs.

 




 













































FEATURES
  • Propeller P8X32A-M44 multi-core microcontroller 
  • 32KB EEPROM program storage 
  • 5V 1A, 3.3V 400 mA regulators
  • Removable 5 MHz crystal
  • Access to 19 digital I/O
  • 3.3 VDC regulated output @ 400 mA max
  • 5 VDC regulated, 600 mA max
  • Voltage requirement: Regulated 6.5–12 VDC though VIN
  • Dimensions: 0.81 x 1.52 in (20.5 x 38.6 mm)
  • Operating temp range: -40 to +185 °F (-40 to +85 °C)
  •  Prop Plug #32201 is required for programming (not included)
Propeller Mini Product Guide v1.1 (.pdf)
Propeller Mini Schematic (.pdf)

Thursday, December 13, 2012

Suspension Space Vehicles

EXPLORING SPACE WITH
SUSPENSION SPACE VEHICLES
Early days - Micro Space Program lofting experiment startup

The Big Brain's space program already has created a number of craft to explore various types of space. Many of these were invented for Micro Space and Next Space. The realm of space, from Micro Space to Near Space inclusive, has ideal conditions for the invention of a new craft - the Suspension Space Vehicle.


There are many types of forces in outer space that can act as a suspension upon a space craft. In particular the Big Brain's outer space program is interested in pressures formed by tenuous molecular air, conditions of wind, and water vapor.

Step one was creating the new type of satellite. Step two was creating ultra light spacecraft. Step three introduces the concept of lofting, where air pressure can loft and/or suspend a satellite or special craft. The early days of lofted craft tests and experiments have now led to actual Suspension Space Vehicles or SSVs.

Lofting is a technique of using atmospheric pressure, or other means, to suspend and balance a space craft to keep it operating longer at a particular region of space. The region may be Micro Space, Next Space, or Near Space. SSVs now include special satellites, a new propulsive technology, and specially designed vehicles to navigate and stay longer in the region of space.

SSVs may loft and suspend for specific intended periods of time, for observations, or for measuring the gradients of various space strata. In some examples, there is no way of knowing beforehand, the amount of time the SSV will remain in suspension.

Some causes of suspension, or contributors of this intervention, may include magneto measurements, or special aerial imaging of the Earth, Moon, or planets, etc.

Early tests and inventions leading up to the SSV included the following:

P69, 1368 Big Brain Adds Micro Kite Division - Expanding Micro Space Program
P74, 1470 Rocket SlipStream Drive - Micro Space invention delivers propellent energy from ground to micro space bound rockets & aerocraft using slipstream air beaming
P75, 1486 The Micro Space Tether
1490 Big Brain Discovers Micro Space Zero-G
1491 Measuring the Effects of Zero-G in Micro Space
with the Parallax Mesmic 2125 Accelerometer

P76, 1502 Electronic Micro Space Pressure Readings
with the Parallax VTI SCP1000 Pressure Sensor

1506 The Brain's New Micro Space RB-01 Rocket Balloon
1507 The Brain's Hot Energy Fuel
1508 Big Brain Micro Space Transporter
Beam things from the Earth to a Micro Space Craft

P74, 1475 Entering Balloons Into the Slipstream
P76, 1505 The First WYSIWYG Rocket Balloon
1506 The Brain's New Micro Space RB-01 Rocket Balloon


http://forums.parallax.com/showthread.php?124495-Fill-the-Big-Brain

Friday, December 7, 2012

Temporary Satellite TSAT

BIG BRAIN INVENTS THE TEMPORARY SERVICE SPACE SATELLITE TSAT
A space satellite can hold a space telescope with 3-inch or smaller optics and observe lunar terrain above the blurring effects of Earth's atmosphere for more clear imaging and study. Having your own Amateur Satellite is mind expanding learning experience that can raise the know-how level of your technology.
Large TSATs could adapt QuadLyzer BASIC Stamp
Homework boards or similar components
DEFINITION
A satellite is defined as an artificial body placed in orbit around the earth or another planet in order to collect information or for communication. The Big Brain has extended this definition to include suborbital path.

SATELLITES
One aspect in the Big Brain Space Program Initiative that could use more development is that of satellites. Years ago, the author's Amateur Space Telescope was developed as a satellite to be hoisted into orbit by the US Space Shuttle with the NASA GetAway Special Program. Satellites are expensive to create, launch, and maintain in orbit. Big Brain has found a way to bypass these complexities and cost, by introducing the temporary service satellite or TSAT.

Solar study with TSAT is possible
TSAT TYPES
There are two types of Big Brain invented TSATs. One is lofted during the Next Space Program and provides data and services during the loft. The next type is the Dropped TSAT. This will provide data and services during the trip from space to the Earth.

TSAT FLIGHT
The TSAT is launched from space and allowed free flight. TSATS can be free fall, gliding, resistive, or have powered flight.

SUBORBITAL
The difference of a TSAT and an orbital satellite is the TSAT is mainly suborbital at this time.

TIME IN SPACE
The amount of time the TSAT remains in space for use is based on a number of conditions, such as the amount of time of free fall, wind resistance, height of release, air pressure, atmospheric re-entry parameters, etc.

LAUNCHING DOMAINS
TSATS are currently capable of launching two space domains - both Micro Space and Next Space.

TSAT APPS
TSATS have use for exploring space, understanding the conditions of atmosphere in lower space, and it can serve to bounce signals or act as a launch platform for other space craft. A TSAT can hold special payloads like a Temporary Space Telescope or TST.

WORLD RECORDS
The TSAT may indeed have the smallest suborbital flight in history. For Micro Space, the suborbital position down-range can be measured by a few feet. For Next Space, based on conditions, the distance can range to several city blocks. Anything launched higher is dependent on additional conditions and the satellite can end up considerably farther down range.

TRAJECTORY
TSATs can go up by various means and drop back to the Earth. Part of the TSAT project is to maximize the satellite's time spent in space. This may include lofting based on the Jet Stream, slow lofting through special gliders in Near Space where a tenuous atmosphere exists and a slowed reentry based on a parachute, streamer or other aerodynamic means.


TSAT FUNCTION
TSATs are generally lofted and dropped in Micro Space and Next Space, providing a temporary service during their reentry trip to the ground.

LOFTED TSATS
Another type of TSAT is one that only goes up and records data and provides services within this range. Thus far, the Lofted TSAT service is provided during the Next Space Program.

TSAT COST
TSATs are relatively inexpensive. Consider, the Big Brain space exploration initiative is many things and always growing and expanding in knowledge, design, and discovery. On aspect is the creation and invention of new designs and crafts that function in space. Being a bare bones cost space exploration program, the Big Brain can offer a ride into space from a cost range of free in Micro Space, to $12 for Next Space, and $5.53 per pound of payload to go up into Near Space. 

Wednesday, October 17, 2012

Microbots

BIG BRAIN MACHINE TECHNOLOGY
MICROBOTS

A Microbot is larger than a nanobot. Though it's less than 1mm in size, it's 1,000 times larger than nanobot. This is still very small, measured in micrometers. A nanobot is measured in terms of nanometers.


The development of Microbots and Nanobots continues at Humanoido Labs. There are two types of Microbots. One type is biologically based and designed to go into the human body with the potential applications of delivering point therapy to cancerous tumors, keeping arteries clean, getting rid of toxins and repairing internal damage. It's thought that such bots will be delivered to physiological sites by magnetic propulsion induce by Nuclear Magnetic Resonance machines. The second type of Microbot is the one being developed at Humanoido Labs. It goes into a machine and has many potential applications (see Apps of a Machine Microbot). It's delivery is unique, depending on who, what, where, when or simply the 4W rule. The machine Microbot starts out as a sequence of software that instructs and tells the inside of the chip how to build and operate the Microbot. The Microbot is controlled, adjusted, moved, finessed and operated through the software instruction control panel, comprised of a programming language. The code is like sequence patterns of DNA which offer the basic building blocks of the Microbot.


APPS OF A MACHINE MICROBOT

* Exploring the world inside a chip
* Measuring inside a chip with sensors (1)
* Acting in specific ways
* Repairing circuits and functions
* Adding internalized functions
* Modifying behaviors
* Reporting
* Eliminating machine virus
* Getting rid of spurions (spurious radiative effectors)
* Rebuilding specific pathways
* Creating various cartographic data sets 

Sources: The Field of Microbotics

http://en.wikipedia.org/wiki/Microbotics

Microbotics (or microrobotics) is the field of miniature robotics, in particular mobile robots with characteristic dimensions less than 1 mm. The term can also be used for robots capable of handling micrometer size components.


MICROBOT UNDER CONSTRUCTION AT HL
In a recent Microbot construction project at Humanoido Labs, the bot is forged and machined with software designs and then injected into the machine and site delivered. It then sets up sensors and establishes the collection of data. Cartographic data is combined with sensor data to create fields of analytical parameters on the chip's functions. Analysis of the data provides a view into the chip's interior unlike ever seen before.

STAY TUNED & BUILD YOUR OWN MACHINE MICROBOT
Check back frequently and stay tuned on this blogger channel as it's likely we may present the entire instructions to create your own machine Microbot and inject it inside the chip. 

Monday, October 15, 2012

How to Go Into Space

BIG BRAIN REVEALS
HOW TO GO INTO SPACE

THE BIG BRAIN reveals how to conduct your own space program and safely go into space, on a hobby shoestring budget and within a reasonable amount of time.

Shanghai: Tall skyscraper machines reach Next Space

There are several ways to get into space, either by telepresence or by physical attendance. Machines and equipment can serve as a proxy in space exploration. A telescope acts like a time machine bringing great distances in space and time closer to home. There are numerous techniques for actually going into space. It depends on what type of space we're considering traveling to.

The Big Brain has defined seven main types of space. Some space is explored by observation only, such as microscopic space. Other space can be explored by the injection of nano machines that can report back with their effectual behaviors. Micro Machines are built within the chip, for example, and can send back observations of the MicroCosmos.

Hong Kong: night aerial photo from atop skyscraper in Next Space

Powerful telescopes, like the Paradigmic Genius Telescope can explore Ultra Space, leading to the EOL Edge of the Universe Boundary of Space Time. Even though Exo Space and Quantum Space is unexplored, great opportunity exists to explore nano space and microscopic inner space, micro space, next space, near space, orbital and solar system space, and ultra space. The Big Brain has found fast, inexpensive, and somewhat ingenious ways to penetrate the mysteries of these cosmic domains.
Taiwan: Jet turbine engine for reaching Near Space
Special techniques, tools and crafts are required to penetrate into the depths of each space domain. Starting with the smallest, nano space is explored by the creation of nanoscopic sized nano machines that exist inside a Propeller chip. The tools to create these nano machines are made of software. Next, microscopic space is explored with the creation of the PMM or Paradigmic Molecular Microscope, built to function with cascading data that penetrate down to the size of molecular structures. Now enter micro space. This great educational domain of space is explored with rockets, helicopters, flying aircraft, gliders, tethers, balloons, kites, parachutes, propelled capsules, instruments and sensors, special forms of propulsion using pressure and forms of potential and kinetic energy. Don't forget, grand exploration can take place in Micro Space with the use of elevator machines, escalators, and mag lift transports that accelerate horizontally off the ground.
Taiwan: Futuristic machine travels through Micro Space
The realm of micro space is vast and can be explored in numerous ways, safely by exercising caution and common sense. Insects, or insectronauts can be launched and returned to the earth. G-forces are measured and 0-G is studied. Next up is next space. A human journey into next space can involve a very tall skyscraper. It's possible to go up 1,555-feet or 1/3rd mile, again, in a relatively safe manner. Many of the machines of micro space can penetrate into next space. While human flight is more defined in next space, it can also happen in micro space. Now enter the vast domain of near space, otherwise known as hobby space. Humans can get into near space most reliably and relatively safe by air travel with passenger jets. One popular method of exploring near space is with balloons that loft robots. All these space programs use methods of aerial imaging to collect data. Some spectacular aerial imaging results from using skyscraper "machines" to gain access to Next Space. Either a top floor accessed by elevator or direct observation points on top of the skyscraper by supervised permission is possible with all safety measures being implemented.

Taiwan: Mall escalators are instrumental in exploring Micro Space
Warning & Disclaimer: On top of skyscrapers, a brisk wind can treat a human like a light-weight sheet of paper and loft the person overboard! So do careful planning as the Big Brain recommends all exploration by window indoors.

Hong Kong: Modern magnetic levitation transports accelerate through Micro Space
Next up is solar system space, going up from orbital space. Orbital space has satellites which can be accessed and utilized. Telescopes become important to explore solar system space. One favorite method utilized by Big Brain is to link satellites together to form powerful machines in space for a new look at space and to create new methods for space exploration. For more information about this approach, see ULT, NULT and PGT.

NASA satellites located in Earth Orbit, Solar System Space, on moons and planets, and in Ultra Space, are paid for by American taxpayers who have free use
Finally, ultra space takes us to the edge of the universe with powerful telescopes like the ULT Ultra Large Telescope, the NULT New Ultra Large Telescope, and the PGT Paradigmic Genius Telescope. These telescopes can create imagery showing great discoveries in space and time. All photos (c) copyright humanoido unless otherwise noted.

Friday, October 12, 2012

Human Journey into Near Space

Near Space
HUMAN JOURNEY INTO NEAR SPACE
Yesterday, Friday October 12th, marks two spectacular journeys into Near Space made on the same day. Two flights were made, each lasting about 2.75 hours going up to a distance of 7.4 aeronautical miles.




Levels of Space According to the Big Brain
The launch was a little rough, passing through a layer of pollution, smog, and fog, creating varying air density pockets of turbulence, then rising up above the strata, meeting a second layer of clouds, which then dissipated, then rising up above smoothly to meet a very clear sky which then turned from light blue to dark blue marking the beginning of atmospheric thin-out and finally the subtle curvature of the Earth at the apex of the flight path. It was a fantastic flight!

This was a well equipped journey into space. Equipment carried aloft included 17 Special cameras, Accelerometer, Compass, Data Recorder, Sound Recorder, a fully charged Battery Power Distribution System, Automatic Battery Monitor, Cellular 2-Way Communications Equipment, Data Logger, Clock & Date Stamper, Theodolite, Heads-Up Display, Geo Angle Determinator Machine, Night Vision Unit, GPS, gauges for Speed in MPH, Heading Indicator, Acceleration Gauge, Vertical Speed Indicator, Altitude Meter, Roll-Pitch-Yaw Unit, and other machines. Data is currently being analyzed. Unlike launches into Micro Space and Next Space, the craft compartment capsule required a containment of some pressurized air.

This marks the second highest human "astronaut" flight into the Big Brain's defined space domain, the previous was a flight up .3-mile into Next Space from China with a Mega Project. Prior, astronauts were launched into Micro Space aboard compressed O2 rockets.

LIST OF BIG BRAIN SPACE PROGRAM ASTRONAUTS
2011 Micro Space Ant Insectronauts (10-feet)
2011 Next  Space Humanoido Astronaut (1,555-feet or .3-mile)
2012 Near  Space Humanoido Astronaut (7-miles)

Next Space
LINKS
Next Space

My Journey Into Space - Part 1 of 3
Introduction, Flight Photos, Safety Considerations
http://forums.parallax.com/showthread.php?124495-Fill-the-Big-Brain&p=1033782&viewfull=1#post1033782

Part 2 of 3 - Experiences

http://forums.parallax.com/showthread.php?124495-Fill-the-Big-Brain&p=1033994&viewfull=1#post1033994

Part 3 of 3 - From Micro Space to Mega Space
http://forums.parallax.com/showthread.php?124495-Fill-the-Big-Brain&p=1034358&viewfull=1#post1034358  

Micro Space
Meet the Micronauts
Selecting the Next Crew to Go Up Into Micro Space

http://forums.parallax.com/showthread.php?124495-Fill-the-Big-Brain&p=1045284&viewfull=1#post1045284 

The Micronaut Space Program
http://forums.parallax.com/showthread.php?124495-Fill-the-Big-Brain&p=1041494&viewfull=1#post1041494

The MSR-01A Rocket - Launching Micronauts Into Space
http://forums.parallax.com/showthread.php?124495-Fill-the-Big-Brain&p=1041513&viewfull=1#post1041513

PURPOSE
As usual, these flights are designed to gather information for the Big Brain's Space Program. The Big Brain's exact purpose for exploring space is unknown but it's rumored the Brain is going on some kind of journey -  one of great adventure and exploration. Sending live astronauts into Micro Space, Next Space, and Near Space is highly interesting and sets a trend of reaching for deeper and deeper space.

SPACE DEFINED
The attainment of Near Space is a marvelous revelation. Near Space goes up 50 miles. The ISS Space Station orbits the Earth from 205 miles to 255 miles and the Hubble Space Telescope orbits at 355 miles. There is a range of "orbital space" which may be added to the space domain as defined by the Big Brain, if and when the project expands into this region. The commonly accepted definition for Low Earth Orbit LEO is between 160 kilometers (99 mi) and 2,000 kilometers (1,200 mi) above the Earth's surface.

PROJECT DIRECTION
Recent projects involve the edge of the Universe, the study of and formulation of new theories of the Universe and the connections between the EXO Space beyond the Universe and the Quantum Space connected to the Universe. Investigations and projects encompass Inner Space which includes nanotechnology. Quantum space involves a universe microcosm smaller than nanotechnology.