Showing posts with label equipment. Show all posts
Showing posts with label equipment. Show all posts

Saturday, August 3, 2019

Space1 Mission Control Instrumentation

SPACE1 Advanced Instrumentation
SPACE1 Industries expands Mission Control and Laboratory Rocket Facilities

New Digital Electronic Realtime Space Rocket Monitoring and Calibration Instrumentation

Digital modernization includes meters, gauges, displays, storage devices, and equipment to handle resistance, capacitance, current, frequency, duty cycle, period, diode, temperature, continuity, data hold, multiple channels, RMS, waveform, impedance, coupling, attenuation, recording, nanoseconds realm, timebase, FFT, trigger, pulse width, etc.

Multiple new advanced instruments are installed at the Lab and at Mission Control. Functions include manual and autonomous operations in laboratory mode or space flight mode. This sizable investment increases the functionality of SPACE1 Industries and adds to the capabilities of rocket design and space flight.

Friday, April 26, 2019

Space1 Lunar Mission Equipment Inventory

Is SPACE1 Ready for a Rocket to the Moon Mission in 2019?
SPACE1 is taking Lunar Moon Mission inventory to see if the private space industry is ready for a return to the Moon.

The answer is yes, as a list of available parts, modules, and rockets are on hand to match the Moon mission 100%.

Some things needed for a Lunar Moon Mission include the working Nuclear Power Source that drives the EM safety Rocket, the EM Safety Rocket, trained astronauts, instrument control panels, an environment suitable for humans, NAV module and accessories, Capture Kit to snare the Moon during approach, Lunar Camcorders to preserve a record of the mission, an amplifier during the mission to hone the tunnel effect, parametric devices, flight computers, Lunar Guidance Module, and the Advanced Notice Astrophysics Mathematical Calculation System.

This includes SPACE1's own version of the Jet Propulsion Laboratory (JPL) that's located in Pasadena California to calculate the orbits, times, locations, physical parameters, and Moon trajectory dynamics. Humanoido holds simultaneous degrees in Astrophysicists and Mathematics, and heads up the the organization to calculate rocket space flights. This Space Flight Lab is part of the Humanoido United Laboratories complex.

Index of Humanoido Laboratories
https://space1usa.blogspot.com/2018/09/space1-lab-list-2018.html
https://space1usa.blogspot.com/2018/11/space1-index-labs.html

Saturday, March 30, 2019

Space1 EM Rocket NAV Invention

Navigational Equipment Install
EM Rocket NAV Invention

Space1 installed a new NAV system on the Safety EM Rocket for upcoming Lunar Missions and a future supporting mission to Mars.

The equipment will facilitate Lunar injection and orbital insertion points and will allow the astronaut to line up the spacecraft in space as needed.

Precision EM Rocket NAV parts and modules were already on hand, purchased with an initial batch of rocket parts. Humanoido invented the NAV and put together the invention in time for Moon and Mars missions. The NAV will greatly increase the effectiveness of the EM Rocket in terms of missions, opening up new missions that would be otherwise challenging.

Monday, August 29, 2016

Space1 Portable Space Hangar PSH

Space1 has completed the Portable Space Hangar PSH this summer of 2016. As of August 1st, 2016, Space1 had completed the development of a temporary hangar for testing and constructing spacecraft. By the end of August, work was proceeding to bring online ISP security cameras, additional motion detectors, and a multiplicity of reporting alarm systems.
Truck unloads supplies to Portable Space Hangar

Reviewing equipment at the supplier potentially for Portable Space Hangar
Space Hangar has the capacity to temp hold large equipment, spacecraft, house space experiments, store supplies, shield from weather, and support new developments. As Space Hangar is portable, it can be relocated. Currently projects are set up and work is initiated, completed, then the materials and tools are removed.

The expected span of the PSH is two years, at which time the canopy will be removed and a new one installed. One thought is to double the strength by doubling the steel supports at that time. Another idea is to install an invention, as a sacrificial topper to extend the life of the structure by several years. Tests continue to find a coating material that can adhere to the skin over the long term.

Space1 Index