Difference between revisions of "Insaniti"
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==[[Motorama_2022|Motorama 2022]]== | ==[[Motorama_2022|Motorama 2022]]== | ||
− | *Results: | + | *Results: 0-2 |
**Bracket Style: Double Elimination | **Bracket Style: Double Elimination | ||
***Loss versus Mombot | ***Loss versus Mombot | ||
***Loss versus Carrotz | ***Loss versus Carrotz | ||
− | ***Electronics issues due to faulty switch. Eliminated due to lack of movement after entering the Battle Box. | + | ****Electronics issues due to faulty switch. Eliminated due to lack of movement after entering the Battle Box. |
**Grudge Matches: | **Grudge Matches: | ||
***Loss versus [[Singulariti|Singulariti]] (Video Link:) | ***Loss versus [[Singulariti|Singulariti]] (Video Link:) | ||
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=Design Overview= | =Design Overview= |
Revision as of 21:09, 25 February 2022
Insaniti is a beetleweight robot designed, machined, and assembled during the 2021-22 schoolyear. It competed in the 2022 Motorama Robot Combat event. Insaniti is a two-wheeled box-shaped robot armed with a large vertically spinning disk weighing approximately 2.8 pounds. This guide will evaluate design considerations and their consequences.
Competitions
Motorama 2022
- Results: 0-2
- Bracket Style: Double Elimination
- Loss versus Mombot
- Loss versus Carrotz
- Electronics issues due to faulty switch. Eliminated due to lack of movement after entering the Battle Box.
- Grudge Matches:
- Loss versus Singulariti (Video Link:)
- Bracket Style: Double Elimination
Design Overview
Chassis
Issues
- There was a possibility of being flipped into a diagonal where the wheels could not move
- Did not have clearance for inverted mode
- Switch was stripped due to being in a awkward position and supported by only wires
- Belt would easily slipped off due to no tension
- Weapon motor did not adjustable positioning
- The groove on the pulley was not deep enough
- Vertical weight savings being aligned with puzzle fit tap holes meant the armor was weak at those tap holes
- Not very maneuverable
- Too friction by the aluminum stand
- Not enough traction from the foam wheel
- Not enough drive motor power
- Back wheel drive meant imprecise forward movement(more testing)
- Center of gravity not being on wheel