Showing posts with label landing. Show all posts
Showing posts with label landing. Show all posts

Thursday, December 15, 2022

Electrodynamic Moon Landing

Majestic lunar crater schrodinger located at the extreme South Pole Terminator. Processed by Humanoido at United Space Technologies, for foreshortening and floor reveal - in regard to the impending potential electrodynamic lunar landing for a samples return mission. According to Astronaut and Mission Specialist Humanoido, sample analysis may involve water ice, volcanic remnants from 2 to 4 billion years ago, asteroid and/or comet debris, and alien-appearing life forms living in the shadows of craters just waiting for discovery, harvesting and extraction.

United Space Technologies Preps for Moon Landing
Electrodynamic Moon Landing


United Space Technologies with SPACE1 is prepping for a great Electrodynamic Moon landing, made possible by the new Electrodynamic Dynamonic Dynatronic EDD vehicular particle dynamic safety invention.

Wednesday, December 7, 2022

Lunar Landing Site Exploratory Missions

Historical SPACE1 test roll capture - United Space Technologies UST lunar mission with the electrodynamic Dynamonic transport safety system

Lunar Landing Site Exploratory Missions Conducted by UST United Space Technologies


December 7, 2022
United Space Technologies, a privately developed and shrouded space venture, is returning to the Moon and conducting a survey mission to establish firma terracotta landing sites, known as a series of Lunar Landing Site Exploratory Missions. The mission series, known as UST Lunar Exploratory I, Exploratory II, and so on, will test the criteria for smooth landing sites for which a temp electrodynamic base may be established. In each mission progression, the criteria for a potential new site will be established. Potential candidate exploratory sites currently include Moon craters Ptolemaeus and Lyot, crater Archimedes, the smooth plains of crater Plato, and Maria regio to be investigated.

Wednesday, November 30, 2022

Where to Land on the Moon





Where to Land on the Moon - Upcoming Return Mission

Above: Exciting Moon photo by Humanoido shows many possible lunar sites for the next space mission.

SPACE1 has completed a number of lunar cartographic surveys to determine the next Moon site for the newest mission. The far side is rejected due to the requirement of extra satellites in orbit, required for communications. This leaves a variety of selected sites on the visible side for establishing a lunar base, doing exploration of natural lava tubes, caves and tunnels, and conducting science experiments with the implementation of special equipment like a Moon telescope.

Moon Landing Site
Finding one is not as easy as you think
https://space1usa.blogspot.com/2019/03/space1-singularity-observatory-finding.html

Already to the Moon - South Polar Mission
Humanoido Lands on the Moon
Space1 Private Space Industry


The manned mission to the South Pole of the Moon was an applauded great success on Sunday, March 31st, 2019. The fantastic Moon technical fly-by was achieved by Astronaut Humanoido and the Electrodynamic Safety Rocket with the extremely reliable Electromag drive. Raw data is processed by the SPACE1 Pacific Ocean Space Processing Laboratory and the Center for Spacecraft Data Analysis.

Manned Moon South Polar Mission
Humanoido' Space1 Mission to the Moon

Monday, February 15, 2021

VISA for Offworld Space Travel


Secure your Space VISA for Offworld Travel
Now is the time to start thinking about securing a passport and VISA for travel beyond the Earth as part of the SPACE1 venture travel, tourist, and relocation programs.

Unlike anytime before in the history of space travel, a rich golden opportunity exists for the migration from the Earth to offworld locations.

In 2020, SPACE1 offered the first high technology Electrodynamic rendezvous with the lunar surface and opened up reservations for future high technology trips to Mars. In 2021 plans are being hatched for the first Moon Base to be occupied by tech modified humans. Also available for the first space faring travelers wanting to become a multiplanetary species are the world's first planetoids put in space by SPACE1 - artificially created worlds in space for colonization. SPACE1 is also the developer of Micron worlds with space-time compression, where vast colonies live out evolutionary lives at a very rapid pace. SPACE1 rockets also offer space trips into the varied COSMIC Dimensions.

SPACE1 owns and operates its own Space Nation where space VISAs and Passports are issued for offword travel.

SPACE1 Space Nation & Index

Get Your Visa - Choose Your Pleasure
* Lunar Tour
* Lunar Landing
* Lunar Base Colonization
* Future Trip to Mars
* Planetoid Space Colony Occupation
* Live in the Space Time Compression Micron World
* Tour Cosmic Space Dimension

Live in a new world of space time compression

Monday, February 3, 2020

Space1 Landing on Alien Worlds

Small blazing heated to thousands of degrees space capsules carry only a few people and are
a thing of the past. New space systems offload tons of supplies and up to a hundred humans
for colonization on alien off-world systems. It takes longer to land, however slower craft can
burn energy over time, reduce reentry speed nominally, and avoid intensive dangerous
temperatures.

Obsoleting tiny space capsules
Space1 Landing on Alien Worlds
SPACE1 Super Rockets favor the spacecraft landing approach on various alien worlds including the Earth and rocky moons

Considering rocky earth-like planets and moons, a spacecraft can land on the surface and take off. The spacecraft of the latest Space1 venture includes an experimental captured self contained attached space capsule that does not wander from the rocket during reentry. Landing can include parachutes, atmospheric negating streaming devices, real time active power thrusters, and designated aerial lissajoux curve fight patterns to burn off reentry energy. Each alien world has its own unique set of planetary atmosphere parameters, and some may have no atmosphere, thus designating unique Super Rocket spacecraft designs and landing methods.

Friday, October 18, 2019

Space1 Supplemental SpaceX Mission

The first Mars mission may have a cooperation between Humanoido's SPACE1 and Elon Musk's
SpaceX. The cooperation may involve a SPACE1 Safety Rocket inside Starship that launches an
Augmented Human to the surface of Mars as a safety precursor to colonization. Humanoido said
there is no cost charged to space agency as this is strictly a humanitarian mission to benefit all
mankind.
SPACE1 to Supplement SpaceX Missions
Consider a hypothetical yet potential situation. SpaceX has a Starship in orbit around Mars for the first manned landing. While still in a martian orbit, the hatch opens and out pops a manned SPACE1 Safety Rocket, sent down to the surface first.

The mission is safe, preliminary, exploratory, manned, a precursor to the colonizing volume of people about to go down to Mars and begin construction of a new world.

Like a safe probe, the SPACE1 rocket speeds to the planet's surface, and the first human will send back the data needed to help ensure the safety of the entire "awaiting for departure" colony. SPACE1 envisions many humanitarian space missions to benefit mankind in the exploration of space and the colonization of new worlds.

Thursday, October 10, 2019

Space1 America In the News

SPACE1 America In the News
Wednesday October 9th, 2019

SPACE1 News Center
https://space1usa.blogspot.com/2019/03/space1-news-center.html

Left: massive rockets are prized but remain low tech white elephants in the new American private space industry due to rapid evolution of changing AI space technology and new space travel requirements.

Launch Schedules
In the news, SPACE1 rolls out all new space rocket launch scheduling, based on the upcoming factors of A) Weather changes, B) Launch windows, and C) Other factors. For weather changes, as the Fall season is moving into October and November, the appearance of the typhoon season and end of continual Monsoon rains will definitely affect rocket launches. Depending on launch locations, oceanic factors play a big part in the region's stability. This year's changes are brought about by significantly rising ocean temperatures, imparting massive heat energy in the creation of colossal storms. Rocket launches are highly sensitive to weather fronts, wind, rain, temperature, pressure, humidity, and changing delta conditions, all elements of various weather.

EM Rocket on Standby  After being delayed on a trip to the Moon for a manned lunar landing due to bad weather and as a result missing the launch window, the EM Safety Rocket was put into suspended stasis and moved back into a towering stow position inside SPACE1 rocket hangar center one, waiting for the next favorable opposition and/or planetary/moon alignment. (EM has successfully achieved a Lunar South Pole Recon mission. See links below.)

New Safety Rocket  Humanoido has completed the new Super Safety Rocket. The previous rocket was Super X, now renamed. The new rocket has a fleet of three, inclusive of the Herculean Engine which is super reliable due to no moving parts. Additionally, the advent of the new rocket introduces design parts which can be printed, primarily the rocket engine. The engine continues to use Patonic Rocket Fuel which is available nearly everywhere (Earth, Moon, Mars, and other Solar System worlds). https://space1usa.blogspot.com/2019/05/space1-super-rocket-x.html  Herculean Rocket Engine https://space1usa.blogspot.com/ 2019/09/space1-massive-herculean-engine-approved.html Patonic Rocket Fuel https://space1usa.blogspot.com/2019/05/space1-rocket-fuel-for-super-rocket-x.html

Singularity Observatory
The Looming Moon  The Looming Moon is a series of SPACE1 projects to return SPACE1 back to the Moon since the days of the South Polar Orbiter missions. (see links) This will lead to a series of lunar missions culminating with the high tech landing of a man on the Moon unlike any Moon landing before. The timeline is variable depending on weather conditions and Moon-Earth alignments.

Rocket Space Nation  Humanoido's concept of a new country is under full development. High tech space and rocket orientated, and located off shore in the far Pacific ocean, increases safety and avoids red tape, fees, and time consuming government and regulatory bureaucracy. https://space1usa.blogspot.com /2019/09/space1-index-rocket-space-nation.html

2020 Space Currency  Space1 introduces 2020 Space Currency atop the rising data sphere of mega cryptocurrency. Beyond physical and cyber space, this special currency must transcend the gravitational boundaries of space and time, scaleable from one space program to another. https://space1usa.blogspot.com/ 2019/10/space1-space-coin-cryptocurrency-block.html

Big Brain Renamed The Big Brain evolves to the Super Super Super Brain Bionic Evolution Revolution AI (3SB). The Brain AI was elected to the President AI position. https://space1usa.blogspot.com/2019/10/space1-big-brain-update-2019.html

New Rapid High Tech Augment Development  Space flight Augments continue to rapidly develop and now include a selection of species specifics. Human Augments allow humans to undergo greater space stress. This currently includes withstanding massive G forces, experiencing great periods of weightlessness, and undergoing suspended animation hibernation for very long space journeys. For example, at 7Gs, bones break and eyeballs split apart, i.e. retinas detach. However human augments survive to around 27 Gs.

Quantum Lab  The relocated SPACE1 Quantum lab is continuing ongoing work to develop the next possible iteration expansion of 3SB. According to Google, Quantum has supremacy over classical computing. "While our processor takes about 200 seconds to sample one instance of the quantum circuit 1 million times, a state-of-the-art supercomputer would require approximately 10,000 years to perform the equivalent task. Source: Quantum Supremacy Using a Programmable Superconducting Processor https://space1usa.blogspot.com/ 2018/09/space1-lab-list-2018.html https://space1usa.blogspot.com/2017/06/ space1-quantum-singularity-quadlyzer.html

SPACE1 Looming Moon Programs
https://space1usa.blogspot.com/2019/04/space1-moon-landing-dream.html
https://space1usa.blogspot.com/2019/03/space1-moon-program.html
https://space1usa.blogspot.com/2019/04/index-moon-south-pole-mission.html
https://space1usa.blogspot.com/2019/04/space1-lunar-south-polar-mission-results.html
https://space1usa.blogspot.com/2019/04/space1-lunar-south-polar-orbiter.html
https://space1usa.blogspot.com/2019/04/space1-moon-polar-orbiter-mission.html
https://space1usa.blogspot.com/2019/04/space1-leaving-man-on-moon.html
https://space1usa.blogspot.com/2019/04/space1-taking-man-to-moon.html
https://space1usa.blogspot.com/2019/04/space1-lunar-orbiter-flyby-cube.html
https://space1usa.blogspot.com/2019/03/space1-lunar-polar-orbiter-launched.html

Quantum Effects Leading to a Next Generation 3SB
Quantum Dimension The Big Brain's Quantum Space Program began with a new theory of the Universe and how the Big Bang's prior states are connected to the quantum world which are related to the doors that exist to the quantum dimensions.
DIY Black Hole & Door to Quantum Dimension
https://humanoidolabs.blogspot.com/2013/03/diy-black-hole.html
Quantum Effect Study with the Q Machine
https://humanoidolabs.blogspot.com/2013/03/quantum-effect-study-with-q-machine.html
Q Machine
https://humanoidolabs.blogspot.com/2013/03/q-machine.html
Quantum Space 
http://humanoidolabs.blogspot.com/2012/11/quantum-space.html
Quadlyzer - Quantum Analyzer
http://humanoidolabs.blogspot.tw/2012/10/quadalyzer-quantum-analyzer.html
https://humanoidolabs.blogspot.com/2013/05/machine-variety.html
Quadlyzer Quantum Analyzer
New Universe Theory, Quantum Space

Wednesday, September 4, 2019

Space1 Planetary Rocket Landing

SPACE1 Planetary Rocket Landing
After 3 years Research, SPACE1 Has Determined Planetary Landing Zones for Super

Currently the window for space travel launches to test out the specified planetary landing areas is to be determined. The primary site is deemed capable of meeting all the requirements to land the big Super Safety Rocket. Super is currently held in a space hangar for protection against Monsoon rain storms, lightning, and ferocious typhoons in the South Pacific Ocean. This year, temps have already reached 118 deg. F. and are expected to top off around 122 this month due to measured changes from global warming. Space flights are on hold until the weather stabilizes according to flight specifications.

Thursday, August 1, 2019

Space1 Lunar Landing Update

SPACE1 Lunar Landing Update
There are two open windows for going to the Moon during 2019 to engage in a human lunar landing on the surface of the Moon by SPACE1 and its developed resources established over the past six years.

Resources include Moon suits, telemetry, two diverse Safety rockets, one Super and one Electrodynamic, perfected rocket engines and rocket fuel, Mission Control, with advanced hardware and software systems, and the launch sites in the Pacific Ocean.

Operations were ramped up with additional resources to support a man in the Moon landing, however, at both open windows, extremely bad weather resulted in cancellation of the program launch. It was a long shot, given the in-climate weather patterns occurring seasonally and coinciding with launch windows.

Normally the dichotomy of the flight would transfer to 2020, a year later, however, Mars is on a two year cycle and will be favorably close to the Earth during this time. Preparations are being made for program transference from the Moon to Mars.

Thursday, July 25, 2019

Space1 Moon Wrist Radio

1st Moon Wrist Radio
Moon image by Humanoido
The First Moon Power Wrist Radio
SPACE1 has created a wireless Moon Wrist Radio, worn like a high technology watch, using a leftover mix of matching modules.

Invented by Humanoido, the wrist radio is designed to be worn by a Moon astronaut to support a manned Lunar Landing Mission. The device can historically record the spaceflight to the Moon and show live images and live video by direct telemetry transmission.

The communications wrist device has components to include a built-in tuned frequency pipe antenna, portable power source with charger, wireless radio receiver, high resolution color display TV screen, and controls. Supporting devices to include a micro-miniature Moon Camera, wide angle lens, wireless radio transmitter, DVR camcorder, multi signal channels, right hand circularly polarized antenna, power source, power setting circuits, charging system, cabling, and controls.

The Moon Wrist Radio is worn like a watch by the astronaut. A separate micro-miniature camera part of the system records live images of the Moon as the mission proceeds. The live feed video and any audio is recorded to to a tiny micro SD card and motion video is simultaneously transmitted to the wrist device. The system has many functions. 1) Monitor the rugged lunar surface  2) Display updated parametric spacecraft info  3) Keep eyes on any target  4) Record various sub missions  5) Record the flight to the Moon  6) Safely watch apparitions within the vacuum of space 7) Check the condition of space vehicles 8) Rapidly aim & shoot space phenomena 9) Serve as a remote eye & ear for a space cyborg 10) Convenient eyes on a space pod and 11) A relay for a TV/audio signal.

Monday, July 8, 2019

Space1 Man in the Moon Update

Singularity Observatory
Man in the Moon
Space1 is providing this update to its Man in the Moon Mission, which is a trip to and from the lunar surface in record time.

This will be a cost effective, direct, simplified route to the Moon with one astronaut wearing all hats to achieve the mission. He will pilot the spacecraft to and from the Moon, navigate, operate the controls, record the mission, land and do a one lunar excursion, take photos, and immediately return to the Earth. This is the second manned trip to the Moon but the only one with a landing scheduled.

Mission Date
Space1 Mission Control has calculated potential launch windows throughout 2019. Not only must the Earth and Moon line up properly with the orbits, the weather must also cooperate. There are a calculated eight best launch windows which have a less favorable +/- 2 day leeway each. Aside from weather, this means a potential geometric 8+16 or 24 days for the launch distributed across the entire year of 2019. Inclement weather could knock down the launch window to only a few days or postpone the landing to 2020.

Rocket
The Electrodynamic Safety Rocket is equipped with the Electromag drive and is being prepped and outfitted. This is the fastest spacecraft in the fleet and the mission may last around 3 hours.

Components
Component orders are now completed and filled, and are in the process of being shipped to SPACE1 fight centers in the Pacific.

Construction
Lunar Module construction is underway for the landing head that will mechanically interface with the spacecraft. Landing software atonement for NAV is being developed. Optics for the views are being finalized to affordable levels of precision.

Astronaut
The astronaut selected is Humanoido, as he has designed the systems. He is currently in training with a new spacesuit. The helmet in particular is of extreme tech as it houses a myriad of intricate technology controls for various operations with the spacecraft.

Support
Astronaut Humanoido is the only human in the super tech mission however he will have the support of advanced AI machines, in particular Supertronic, Megatronic, 3SC and Bionic life forms - those who are members of the United Federation of Spacefaring Species.

Testing
A great number of tests still need to be completed before the mission is ready. This includes the spacecraft Module Head, AI software, Commemorative Expirative Mission to specific famous lunar craters, mountings and assembly testing, component tests with the mission config., and numerous other testing to include thermodynamic, electromechanical, mechanical stress, connective interfacing, and the electromag environment. Outdoor tests are on hold waiting for suitable weather.

Launch Tower
The Launch Tower and Mission Control are currently undergoing a vast and complete redesign with newly purchased added resources. Some equipment is being moved out to make room for new equipment and a very impressive new housing design is created to specifically facilitate the Moon Landing Mission.

Sunday, July 7, 2019

Space1 Moon Landing - the Dream


SPACE1 Industries: after our successful manned mission around the Lunar South Pole, we are equipped more than ever to achieve a technologically advanced dream of landing a man on the Moon.

Tuesday, June 25, 2019

Space1 Far Side Moon Mission Bumped

Russian Luna-3 photo
Moon Far Side Mission Bumped
SPACE1 has bumped the Moon Far Side Mission off the 2019 schedule for several reasons:

1) More time is needed for the Manned Moon Landing
2) Lunar Orbiter Flyby makes Far Side Missions unnecessary
3) More time is needed for the Moon to have proper orbital alignments
4) Parts are delayed from California

Now that the Moon Polar Orbital Flyby is a great success, SPACE1 will focus on two more missions - the ceremonial mission to Ptolemaeus, Alphonsus, Arzachel crater array and the Manned Moon Landing. The Moon Far Side mission can happen in the future, perhaps 2022, to get a look at the China probe, see craters the Russian spacecraft photographed, and to supplement the USA lunar farside program. On the other hand, SPACE1 is seriously thinking about a quick & dirty manned landing on the far side of the Moon. It would be a spartan private space industry first as no human has ever walked on the far side of the Moon!

Monday, June 24, 2019

Moon Landing Update

Moon by Humanoido
Moon Landing is Updated
When will we see Boots on the Moon?

Work and excitement is rapidly progressing at SPACE1 towards the high technology Manned Moon Landing Mission. The mission is dependent on several other mission completions and these have some requirements to be met. SPACE1 is scheduled to host the first manned return mission in 2019 to the Moon since Harrison Schmitt and Gene Cernan left the surface of the Moon 47 years ago. In this endeavor, SPACE1 appears to be at the top of the group for a scheduled first to reach the Moon ahead of NASA and ahead of private industry SpaceX, Boeing, Blue origin, and Lockheed Martin. SPACE1 has worked six years on the project and excited followers of the private space industry are looking forward to seeing results in their lifetime!

Parts Aquisition
Apparently the parts supplier put parts on backorder, after specifying parts were available, and while the lunar missions can be accomplished without the parts, it would be much better to include the new constructed modules and components. This is now a priority.

Camera Lunar Landing Imaging
While several Moon cameras are now available at SPACE1 Labs, work needs to begin on the primary mission camera. All the components are available for the primary mission camera. As a backup insurance policy, purchasing will go out this week to review new off the shelf cameras ready to be installed onto the spacecraft so as not to miss the timeline.

— We cast our line of technology into the ocean of space, catching the greatest wonders in the Universe — Humanoido

Prerequisite Lunar Missions
It's still very important to initiate and complete the lunar missions prior to the Moon landing. The includes the A) Commemorative Mission, B) Polar Orbiter Mission, C) Far Side Mission, and finally D) Lunar Landing. The one mission in question is the Far Side Mission because it requires a more specialized launch window to become available. It's possible the Lunar Polar Orbiter Mission will be pushed to the number one position and happen first because the parameter calculations are now simplified and ready to go.

Astronaut & Spacesuit
Astronaut Humanoido is prepared and trained for the mission, and will continue to prepare with instrumentation and setup plus rehearsals up to the launch date. Last minute ideas and flight conveniences are being incorporated into the Lunar Landing Mission spacesuit, primarily work with the helmet complexity.

Space Helmet design
Humanoido has designed a system to simultaneous compliment the lunar landing mission through a special space helmet that allows it to generate wireless transmission telemetry and automatically record the entire mission as it unfolds. When an astronaut looks in a direction, the flight telemetry will record that direction. This will happen with new electronic digital media lasting the entire duration of the Moon landing mission. If all goes according to plan, the mission will play back on computers equipped with playback devices at Mission Control and therefore snippets of the best part of the mission will concatenate and post to news sources.

Singularity Observatory Participation
Singularity Observatory is taking part in the pre-mission by telescopic lunar surveys and mapping the lunar topology in search of a suitable landing site. This is based on lunar regolith temperature, popularity of the site, accessibility, the shape and type of lunar terrain, and the analysis of landing parameters. Two or more telescopes will be used for the surveys and the results will be combined.

Tuesday, June 18, 2019

Space1 Singularity Observatory Finding a Moon Landing Site

Moon South Terminator by Humanoido
divided into a photo spread for analyzing
a lunar landing site for the mission
Moon Landing Site
Finding one is not as easy as you think

Thursday, March 28, 2019
by Humanoido

It's more like finding a needle in a haystack. 

Which area to choose - smooth or cratered, popular or little known, near side or far side, front facing or edge? When to land? During Full Moon, Gibbous phase, First Quarter, Last Quarter or Crescent? In full sunlight or total darkness or at a glancing solar attitude? Inside a crater or outside one? A crater with steep walls, or one with shallow slopes. One with a center mountain peak or without? Or land on the Maria smooth area, or on a bright region, or dark? Perhaps we'll see when we get there and make a choice at that time. For now we can review the photo spread and share ideas.

One thing we can do is take our Moon image from a recent Singularity Observatory archive and do a Photo Spread, then analyze the corresponding individual photos for location suitabilities. The image example is is processed with free Online Photo Editor to get the corresponding photo spread. The photo was taken by Humanoido yesterday during the Gibbous Moon.

Highest Tech Moon Landing
https://space1usa.blogspot.com/2019/03/space1-highest-tech-moon-landing.html
Humanoido Flying to the Moon
https://space1usa.blogspot.com/2019/03/space1-humanoido-fly-to-moon.html
Moon Landing in 2019
https://space1usa.blogspot.com/2019/03/space1-moon-landing-2019.html
Secret of Flight Landing
https://space1usa.blogspot.com/2019/02/space1-secret-of-em-flight-landing.html
Moon Landing Made Simple
https://space1usa.blogspot.com/2019/03/space1-moon-landing-made-simple.html
Moon Landing
https://space1usa.blogspot.com/2019/02/space1-moon-landing.html
Moon Program
https://space1usa.blogspot.com/2019/03/space1-moon-program.html
Finding a Moon Landing Site
https://space1usa.blogspot.com/2019/03/space1-singularity-observatory-finding.html
Moon Mission Prep
https://space1usa.blogspot.com/2019/03/space1-moon-mission-prep.html
Moon Camera
https://space1usa.blogspot.com/2019/03/space1-moon-camera.html
Faster Way to the Moon
https://space1usa.blogspot.com/2019/03/space1-faster-way-to-moon.html
Historical Moon Landing
https://space1usa.blogspot.com/2019/03/space1-historical-moon-landing.html
2019 Year of Space Launches
https://space1usa.blogspot.com/2019/03/space1-2019-year-of-space-launches.html
Moon Mars Missions
https://space1usa.blogspot.com/2019/02/space1-moon-mars-missions.html
Free Online Photo Editor
https://www.freeonlinephotoeditor.com/

Sunday, June 16, 2019

Space1 Moon Landing Made Simple

The Moon is only 240k miles distant. A simple high
technology manned mission to land, look around,
and return immediately to the Earth is less costly,
and should be ready to go for one SPACE1 astronaut 
to land on the Moon in 2019. Image by Humanoido
Moon Landing Made Simple...
No Time to Befriend Moon Creatures

Breaking News!
Tuesday, March 26, 2019
by Humanoido

SPACE1 and Lunar Landing Mission Designer Humanoido are cutting Moon landing mission costs and mission complexity with some innovative ideas to go to the moon as soon as possible. 
No more waiting another ten
years to go there.

This will make a more simple Moon landing. The ideas are to cut complexity making the entire mission more affordable. Just one Astronaut will fast track to the Moon, immediately trek down to the rugged lunar surface without losing a single moment of time, look around for a while at smooth regolith or inside a crater floor, and return home.

A special spacecraft will be constructed with the highest technology components that we have available. These parts, modules, and components are already on hand at SPACE1 Industries and will not need ordering or have any order delays. There is a construction process required to build devices and retrofit our spacecraft for the mission. The soonest the Lunar Landing Mission can take off is in 2019 when there's a perfect window of opportunity.

The process will have one astronaut in one craft going directly to the Moon from the Earth, landing, looking around, and expeditiously returning to the Earth - not staying overnight. This avoids the complexities of many things using this process. For the spacecraft, we are using a tested and sophisticated mobile app that can navigate and provide a window into space. It calculates the lunar orbit, Moon positions, star navigation and flight details. Another large part of the mission will be a built-for-space camcorder to record the mission for posterity and having a record of the historic details for SPACE1. The device will have an automatic light level circuit to compensate for the changing lunar illumination based on changes in lighting due to the sun's orbital position and Earth Shine - the light that reflects from the Earth.

* No need to worry about extended radiation
* No long term power source needed
* Can operate on standard sourced nuclear energy
* No extended oven-like temperatures and super freezing conditions
* Advanced walking Moon spacesuit not needed
* Supplies such as food, oxygen, water can be reduced
* The mission will be ready much sooner
* Ideal flight path dynamics happen in 2019
* Fewer parts & components reduce complexity
* Reduced complexity is more reliable
* More simple mission is easier to implement
* Fewer parts & components cost less
* More simple to send one Astronaut

Thursday, May 16, 2019

Space1 Moon Camera




Designing & Constructing
a Professional Digital Moon Camera for a SPACE1 Lunar Landing
by Humanoido

Rocket: Electrodynamic Spacecraft
Drive: Electromag Engine
Mission: Moon Landing
Action: Develop a Super Moon Mission Camera

Overview: Humanoido is building a precision Moon camera to take down to the Moon’s surface. First Step: Purchasing digital camera design optics for the Moon Camera construction

Building a Moon Camera
Optics $18,289
The first head step, after the design, is the multiple Optics train purchase. This is a hand grenade size package for disassembly - Product style: Hyperion dual 1.25/2 barrel mode, Clickstop Mark IV Zoom ultra precision 7 lenses set element continuous lensing optics for attenuating 8, 12, 16, 20, 24 mm parfocal with M54, FOV 58-60 deg. w/12-15 mm eye relief w/Hyperion phantom group multi-coatings, w/internal zoom actuators, greaseless mech for operation under harsh space and lunar conditions, lens grouping actuator sealed, M43 threading, adaptable to afocal, adapter ring 2”x24 tpi threading. Direct attach removable front barrel. For developing AFOCAL interface to electronic CCD element array. $289 Ultra Optics Lenses, the optics set includes the above, but does not include the main portions of the spacecraft rocket window and optics. These parts add another $18,000.

Optical Reducing Array $1,200
As the rocket spacecraft approaches closer and closer to the lunar surface, the optical config needs to reduce the massive encompassing view. This is accomplished with the Optical Reducing Array activating within the optical train at the required time.

Precision Machined Adapter Set $5,500
The adapter set is precision machined from metal to interface to the camera and mounting and includes multiple elements.

CCD Charge Coupled Device Array $8,249
This is the image CCD sensing chip. The spectral sensitivity must match the lunar surface ambient. The chip is color capable.

Electronics Interface Board $5,999
This board connects the camera to the computer.

Cable sets & E-couplers $424
Cables connect the camera to the computer, monitors, etc.

Wavelength Moon Filter Optics Set $2,289.99
Special lunar wavelength filters are needed for different lunar specifics.

Camera Housing $1,800
The camera housing includes the CCD chip, the mounting front plate, the holder of the optics, gimbals etc.

High Speed Rocket Computer & LED Monitor $6,999
The computer must be very fast to keep up and the monitor must be ultra high resolution and all very light weight for a Moon trip.

Misc. Interfacing $8,000
Interfacing is multiple and makes the connection of all devices as needed.

Moon Camera Total $58,749.99

Sunday, May 12, 2019

Space1 Tech Moon Landing

Moon Landing Exampling Setup & how it could happen - with the Electrodynamic spacecraft above the Moon, one Astronaut prepares the landing with the precision and control of massive electronic computerized Augmentation designed for a Moon landing. High technology of immense complexity will assist and augment the manned lunar landing and a grand exploration on the Moon's surface will unfold. Three control monitors flash flight parameters and show the surface of the Moon as the vectored approach is made in real time. The astronaut has control over the rate of descent, the location of the settlement site, and exactly what areas to explore. The public mission will be on automatic capture for SPACE1 Global News distribution across the world. If weather conditions are good for the launch and the timing is right, the mission may fly during the Anniversary of the July 20th, 1969 first NASA Apollo Moon Landing.
SPACE1 Tech Moon Landing
SPACE1's Moon Landing will be nothing like the Apollo Moon landings of yesteryear that used dangerous mechanical and electromechanical systems. The risky nature of going down to the surface of the Moon standing inside a cramped Lunar Lander, an overloaded failed computer, running out of fuel at the last second, forcing a manual detour to find a smooth landing site, and ultimately narrowly escaping a crash, are all archaic historical things of the past.

Zoom ahead into the future by 47 years! SPACE1 is incorporating the highest possible safety technology with new advanced methods, along with the most expensive precision electrodynamic rocket and derivation modules.

The mission is expected to take place in only one day, trip there, landing, and trip back home. The journey will use the powerful Electrodynamic Rocket for the highest possible speeds there and back again.

A human will be chosen to land and walk on the Moon's surface using the highest technology Augment packs and methods. The eyes of the Astronaut will be supplanted with the highest precision new state of the art space helmet and vision module manufactured to the highest and most critical specs.

Lunar navigation will be super critical and conducted by a high technology computer and software to exactly match the Moon's orbit and engage the Electrodynamic Rocket motor accordingly. The core of the rocket will be electrodynamic calibrated to the Moon and the lunar surface all throughout the flight.

SPACE1 is working on camcorders to record the mission in a presentable way for global distribution by SPACE1 Global News Agency. The last flight to the Moon was 47 years ago, December 11th, 1972, by Apollo 17. In all of the Moon missions, two people went down to the surface, while one remained in orbit overhead. In the SPACE1 Moon landing mission, one very efficient person will pilot the rocket to the Moon and go down to the surface, and return safely to the Earth.

Saturday, May 11, 2019

Space1 Moon Program

Six Moon Missions Outlined - It's Final! We're Going to the Moon!
SPACE1's Moon Program
Over the weekend, Space1 outlined its aggressive Moon Program, in a series of six step by step lunar missions, each technologically more challenging than the previous, until ultimately leading to a manned landing on the Moon.

Pack your bags - a lot of things must happen in a short period of time and if everything goes according to plan and scheduling, the landing could take place sometime in 2019. If not, if there is some delay, or the alignments are missed due to in-climate weather, the landing could be pushed outwards to 2020, but we don't want that to happen as it might interfere with the 2020 Oppositional Mars landing. We will hope for the best.

The first Moon mission, Across the Moon Face, is a simple fly by in front of the Moon, capture images and/or video, then return to the Earth. The lunar data captured on this flight could be used for a future lunar atlas, or not.

The second mission is a Lunar Mapper Mission to capture images of selected regions, possibly making an atlas that could show selected sites suitable for colonization and the location of potential Moon bases.

The third Moon mission, is the March 24th Commemorating Impactor Mission, that targets lunar craters Alphonsus and/or Ptolemaeus, with increasingly closer and closer stills and/or video until termination. These images as well could contribute to a lunar atlas.

The fourth lunar mission is a Polar Orbiter venture, to the South Pole of the Moon, capturing imagery and studying the region. Again, images of the South Pole could potentially contribute to the Lunar Atlas.

The fifth Moon mission is one of the most fantastic - a Trip to the Far Side. Less is known about the enigmatic Far Side which looks very different. When flyby conditions are best to approach a small plot of the far side, the mission will take enough images to create a map and contribute it to the Moon Atlas. Will any of the Soviet or Chinese probe sites become visible?

The sixth ultimately breathtaking and super exciting mission is a fabulous adventure, a Manned Moon Landing, and technically by far the most challenging. It would be easier to send down a robot to the surface, but this is a manned mission for a human. The human could carry some very high technology assist in terms of Augmentation to facilitate working and walking on the Moon's surface and to make the mission ultimately safe.

Saturday, May 4, 2019

SPACE1 Faster Way to the Moon

SPACE1's First Return to the Moon
A Faster Way to the Moon
In a statement published February 7th, NASA laid out how it will work with U.S. companies to develop reusable systems through which astronauts could return to the moon by 2028. However, 2028 is still almost a decade into the future and with NASA being well known for changing political policies, issuing cancellations, changing programs under different administrations, and impending delays based on funding, who wants to wait that long!

Private space industry is going to the Moon with their own funded programs and research data, and will likely get to the Moon a lot faster and sooner than a decade of time.

SPACE1 has laid out extremely high tech plans to return to the Moon after the Monsoon period ends this coming summer, in the South Pacific Ocean. This activity of a return to the Moon will happen in 2019 and not 2028 for the private space industry.

SPACE1 is now working to immediately establish a wide band spectrum lunar program of key missions that precisely lead to the focal point of a Moon landing.

 Getting to the Moon without delay is the best way to develop extreme high technology for landing on other worlds. Off world (from Earth) landings on the Moon, Mars, Ganymede and/or other moons in the Jovian system are high on the SPACE1 agenda.