Star Wars Roleplay: Chaos

Register a free account today to become a member! Once signed in, you'll be able to participate on this site by adding your own topics and posts, as well as connect with other members through your own private inbox!

Approved Tech Room-Temperature Superconducting Electronics

Status
Not open for further replies.

Mauda

Well-Known Member
06123a93b018908e960770bb83bd33b4.jpg


OOC INFO

Intent: To sub an oft-used Wiring for use in Saevus and Emergence tech

Image Source: Pinterest

Canon: No

Primary Source: None

PRODUCTION INFO

Name: Room Temperature Superconducting Electronics / RTSCE

Manufacturer: D.E.A.D / Saevus Engineering

Affiliation: The Emergence Empire / Orex Mauda

Model: RTSCE-01

Modularity: None

Production: Minor

Material: Metallic Hydrogen Wiring

PHYSICAL SPECS

Classification: Electrical Component

Weight: Very Light

Resistances:
  • Blasters: None
  • Kinetic: None
  • Lightsaber: None
  • Other: None
Colour: Silver

Special Features:

Need an emergency fuel for your archaic chemical rocket? Scrap any Emergence Droid or Vof Vorn Helmet and chuck the wires in the fuel tank. As long as the combustion process is compatible with Metallic Hydrogen, you'll have a chemical fuel with the highest Joule/gram of any ancient chemical substance, taking you a long way for only a kilo or so of Wires

Strengths:

Zero Resistance: Have the lowest minimum energy input to function. One electron thrown into a circuit will continue for months/years before losing significant energy

Nyoom: As good as Wireless. Response time and general speed of devices wired with RTSCE's is far beyond any traditional Copper or Fibre Optic.

Weaknesses:

EMP/ION: Depends on intensity. The average EMP/Ion discharge won't necessarily deactivate the RTSCE's, they will only carry this spike in current. Which of course means it will be carried to other parts of the Droid body (or any other device) which may lead to deactivation.

A discharge of sufficient intensity will lead to the dissipation of current raising the overall temperature of the wiring. This will pull the RTSCE's out of their optimum temperature range and remove their superconducting ability. This will drastically reduce the performance of the device and can easily lead to deactivation.

Temperature: RTSCE's will function well at or below Room Temperature. However, above the average 17 degrees is more delicate. Unless the device is fitted with a capable temp. regulation system, a hot environment may remove the RTSCE's Superconducting ability.

Description:

Possibly the best Electrical Wiring system on the Market, below Wireless Electrical Transfer. As the name implies, RTSCE's are Metallic Hydrogen Wires that maintain Superconductivity at Room Temperature. While Room Temperature is the optimum temperature, below this, down to absolute zero (-273 degrees C) will see continued Superconductivity, allowing for no-resistance, super-fast function in such an extreme environment. In warm temperatures however, the range is much smaller. Up to 100deg and the RTSCE's will perform poorly. Anywhere above 200 and Superconductivity will no longer be possible.

This will essentially render the wiring as good as any ancient Copper design, with massively reduced response times and energy life-time. Copper Wire is in no way compatible with the massive energy requirements of modern devices and will effectively render the host device deactivated.
 
Status
Not open for further replies.

Users who are viewing this thread

Top Bottom