Space1 Industries, a division of United Space Technologies, is a bold new space venture, taking you safely into space with futuristic technology. The mission - to the moon, planets and new worlds!
Showing posts with label shift. Show all posts
Showing posts with label shift. Show all posts
Friday, June 7, 2019
Singularity Observatory Bullet Clutch & Focus
Singularity Observatory
Master the Bullet Clutch & Focus
There's a bullet inside your telescope and how you master its use will determine the fate of your telescope!
(According to Celestron) The Celestron EdgeHD telescope series have a mirror with clutches to apply tension to a flexible rod attached to the primary mirror support. With enough tension from both clutches, they lessen mirror shift or mirror flop when the scope is moved around in different orientations while in use.
Because they are flexible, the mirror clutches won’t prevent focusing while tightened. However, because they do put force on the mirror, they should be loosened when focusing. Otherwise the combination of their force and the focusing effort may put unequal pressure on the primary mirror, causing it to bind or unevenly shift while focusing. Note: The EdgeHD 14”, like older Celestron 14” tubes, has two regular mirror locks in addition to the clutches. These locks do just that – lock the mirror. They should be used when the telescope is transported, not to prevent mirror shift. Never focus when these locks are engaged - you may damage either the focuser or mirror.
(According to link) The primary reason for focus shift in the SCT design is a result of the mirror continuing to settle when the final focus is approached using clockwise motion of the focuser. This is because the mirror can continue to settle due to the play between the threads of the focuser shaft and the carrier on the mirror. If you approach final focus using a clockwise, you are "pushing" the mirror down. When you stop, gravity will allow the mirror to now settle away from the treads that are pushing it down to the opposite face of the treads so that they are now "Holding the mirror up." The best results with a SCT will be to always approach final focus using counterclockwise turns of the focuser.
For imagers, this "Lifts" the mirror into final position so that play in the focuser is never allowed to occur. The mirror is raised into position so that the mirror carrier on the baffle is always left at the same orientation, an there is no play left for it to settle back from. For visual observers, the added benefit is that approaching focus using CCW turns will result in less chasing focus (inward direction for Refractors and Reflectors). If you overshoot final focus slightly, the eyes normal visual accommodation can easily adjust to refocus the image on their own. I have had the Celeston EdgeHD locks apart and I can assure you that the design, if the locks themselves, cannot cause any mirror shift. This means that the only shift is the same that comes with regular SCTs and the solution is an aftermarket external focuser, or using CCW motions of the focuser to approach final focus (to may not eliminate, but will greatly reduce shift). Link
Sunday, August 6, 2017
Space1 First Rocket
Space1 - the First Test Rocket FTR
The Red Shift rocket was the first rocket built and designed by Humanoido for Space1 in 2014. It was the first rocket in the fleet.
A Historical Look at the Past
Travel back to Space 2014. Space1’s first test rocket FTR was built in 2014 and stood over 6-feet tall. It was large enough to hold a small dog and standard size humanoid robots, though it would be a tight fit for a small human.
It took several weekends of work to manufacture the metal casing rocket from scratch, working with only the technical diagrams and blueprints stored in Humanoido's memory. Humanoido prefers to work with blueprints, schematics, pictorial illustrations, and various designs directly from the mind. It saves time and work, and ensures there is no theft. Nothing is committed to online cache or printed documents and hence the huge and effective security.
Forming the canister nose cone was particularly tricky with differential curves but eventually the measurements were correctly sized. No dogs were used, tested, or launched as it was designed and measured for advanced large humanoid robots, and as a result, a lengthy study incurred.
The study concluded that humanoid robots would be indoctrinated into the first fleet of rockets as an important part of Space1 Technologies and space activities. Humanoid robots in their basic physical sizes could fit into Space1rockets and the rockets could be adapted to their size parameters. The FTR fit all full size humanoid robots that existed in the Humanoid Robot Lab.
FTR could hold three large humanoid robotnauts who could communicate between each other. FTR was reminiscent of the NASA Apollo Space Program with three astronauts in the capsule. Though, the FTR used a different and inventive distributed capsule where robonauts were distributed along the rocket length, making the entire rocket usable for everything from cargo, flight computers, electronics, to more robonauts. Plus, the FTR could be recycled for the next launch.
The FTR rocket was housed indoors before spaceports and launch towers became commonplace. It was transferred at the upper level into the rocket sciences laboratory loft, and then transported through the skyscraper elevator as necessary. During times of storage, it resided elevated in a horizontal staid position across a very large Chinese cushion to absorb vibrations and to offer a method of overhanging base fins to maintain correct flexure.
The rocket was build up from welded metal canisters, and was designed to become the basis for all rockets manufactured in 2014. Given the weight of the canisters forming the rocket air frame, and for a given size diameter, a larger size engine was required with a higher thrust and impulse ratio to launch the rocket into space. The FTR theory was to start the rocket design at one size and work upwards to make increasingly larger and more powerful rockets based on test results.
The rocket however was deemed primarily for testing flight dynamics with humanoid robonauts and other humanoid robonaut aspects for future missions. Much was learned from the FTR rocket and it was retired in good recyclable condition a year later in 2016.
Space1 Contact
http://space1usa.blogspot.tw/2017/06/space1-contact.html
Space1 Index
http://space1usa.blogspot.tw/2015/12/space1-index_16.html
Space1 Index Big Brain Site Prior to 2014
http://space1usa.blogspot.tw/2017/05/space1-big-brain-index-of-space.html
Space1 Home
http://space1usa.blogspot.tw/
Space1 Profile 2017
http://space1usa.blogspot.tw/2017/03/space1-space-profile.html
About Space1 from the Founder
http://humanoidolabs.blogspot.tw/2015/01/about-space1-from-founder.html
Humanoid Robots Home
http://humanoidslabs.blogspot.tw/
Humanoid Robots Index
http://humanoidslabs.blogspot.tw/2017/02/humanoid-robots-index.html
Big Brain Home
http://humanoidolabs.blogspot.tw/
Big Brain Index 1
http://humanoidolabs.blogspot.tw/2016/12/fill-brain-project-searchable-thread.html
Big Brain Index 2
http://humanoidolabs.blogspot.tw/2016/12/big-brain-web-site-index.html
Big Brain Timeline
http://humanoidolabs.blogspot.tw/2016/12/big-brain-timeline_1.html
Big Brain Contributions
http://humanoidolabs.blogspot.tw/2016/12/big-brain-contributions_13.html
The Red Shift rocket was the first rocket built and designed by Humanoido for Space1 in 2014. It was the first rocket in the fleet.
A Historical Look at the Past
Travel back to Space 2014. Space1’s first test rocket FTR was built in 2014 and stood over 6-feet tall. It was large enough to hold a small dog and standard size humanoid robots, though it would be a tight fit for a small human.
It took several weekends of work to manufacture the metal casing rocket from scratch, working with only the technical diagrams and blueprints stored in Humanoido's memory. Humanoido prefers to work with blueprints, schematics, pictorial illustrations, and various designs directly from the mind. It saves time and work, and ensures there is no theft. Nothing is committed to online cache or printed documents and hence the huge and effective security.
Forming the canister nose cone was particularly tricky with differential curves but eventually the measurements were correctly sized. No dogs were used, tested, or launched as it was designed and measured for advanced large humanoid robots, and as a result, a lengthy study incurred.
The study concluded that humanoid robots would be indoctrinated into the first fleet of rockets as an important part of Space1 Technologies and space activities. Humanoid robots in their basic physical sizes could fit into Space1rockets and the rockets could be adapted to their size parameters. The FTR fit all full size humanoid robots that existed in the Humanoid Robot Lab.
FTR could hold three large humanoid robotnauts who could communicate between each other. FTR was reminiscent of the NASA Apollo Space Program with three astronauts in the capsule. Though, the FTR used a different and inventive distributed capsule where robonauts were distributed along the rocket length, making the entire rocket usable for everything from cargo, flight computers, electronics, to more robonauts. Plus, the FTR could be recycled for the next launch.
The FTR rocket was housed indoors before spaceports and launch towers became commonplace. It was transferred at the upper level into the rocket sciences laboratory loft, and then transported through the skyscraper elevator as necessary. During times of storage, it resided elevated in a horizontal staid position across a very large Chinese cushion to absorb vibrations and to offer a method of overhanging base fins to maintain correct flexure.
The rocket was build up from welded metal canisters, and was designed to become the basis for all rockets manufactured in 2014. Given the weight of the canisters forming the rocket air frame, and for a given size diameter, a larger size engine was required with a higher thrust and impulse ratio to launch the rocket into space. The FTR theory was to start the rocket design at one size and work upwards to make increasingly larger and more powerful rockets based on test results.
The rocket however was deemed primarily for testing flight dynamics with humanoid robonauts and other humanoid robonaut aspects for future missions. Much was learned from the FTR rocket and it was retired in good recyclable condition a year later in 2016.
Space1 Contact
http://space1usa.blogspot.tw/2017/06/space1-contact.html
Space1 Index
http://space1usa.blogspot.tw/2015/12/space1-index_16.html
Space1 Index Big Brain Site Prior to 2014
http://space1usa.blogspot.tw/2017/05/space1-big-brain-index-of-space.html
Space1 Home
http://space1usa.blogspot.tw/
Space1 Profile 2017
http://space1usa.blogspot.tw/2017/03/space1-space-profile.html
About Space1 from the Founder
http://humanoidolabs.blogspot.tw/2015/01/about-space1-from-founder.html
Humanoid Robots Home
http://humanoidslabs.blogspot.tw/
Humanoid Robots Index
http://humanoidslabs.blogspot.tw/2017/02/humanoid-robots-index.html
Big Brain Home
http://humanoidolabs.blogspot.tw/
Big Brain Index 1
http://humanoidolabs.blogspot.tw/2016/12/fill-brain-project-searchable-thread.html
Big Brain Index 2
http://humanoidolabs.blogspot.tw/2016/12/big-brain-web-site-index.html
Big Brain Timeline
http://humanoidolabs.blogspot.tw/2016/12/big-brain-timeline_1.html
Big Brain Contributions
http://humanoidolabs.blogspot.tw/2016/12/big-brain-contributions_13.html
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