The alluvial dampers made use of a servo-controlled plate to regulate the flow of ion particles from the hyperdrive, thus controlling the amount of thrust. To prevent the relativistic passing of time while in hyperspace, starships used stasis fields attuned to hyperdrive levels to keep organic crews or cargoes "in time" with the standard galactic dimension. Shields also protected the ship from fatal collisions with interstellar gas and dark matter particles. Once in hyperspace, a null quantum field generator helped stabilize the vessel and kept it from prematurely emerging from the alternate dimension. Inertial dampers were used to protect the ship, crew, and cargo from being crushed by the tremendous acceleration of the jump. Both entrances into and exits from hyperspace created wake rotation and Cronau radiation that produced a detectable signature often used to reconnoiter fleet movements or by planetary customs authorities. Upon exiting hyperspace, an unknown technology was used to decelerate the starship. Ĭertain hyperdrives used antimatter as fuel, stored in special anti-matter pods, though it remains unclear how this integrated with other hyperdrive mechanics. The energy release caused ripples in the space-time matrix, allowing the ship to propel off the ripples into hyperspace. To enter hyperspace, the hyperdrive's horizontal boosters would provide energy to the motivator's ionization chamber to begin ignition that would release the radiation through the alluvial dampers. The hyperdrive motivator, the primary lightspeed thrust initiator, built up and modified the collected radiation in a fusion generator through several kilometers of charge planes, effect channels, or looped superconducting wire. The process of a hyperspace jump began with the collection of gamma radiation by the hyperdrive field guide. To enter hyperspace, the starship's pilot would enter commands via the paralight system, a combination of mechanical and electro-optical subsystems that translated the commands into a set of corresponding reactions within the hyperdrive power plants. The process of entering hyperspace was known as a "jump." The hyperdrive used a trans-physical effect to launch a starship beyond lightspeed and into hyperspace, making use of supralight hypermatter particles to make the hyperspace jump without changing the ship's complex configuration of mass and energy. Hyperspace was a dimension of space-time that could only be entered at faster-than-light speeds. This compound was specially designed to allow hyperdrives to withstand the continual stress caused by traveling between the dimensions of realspace and hyperspace.Įxploded view of a SSP05 hyperdrive generator, showing the charge planes and effect channels of the hyperdrive motivator The hyperdrive was generally built from a titanium- chromium compound. In numbers, the hyperdrive allowed travelers to traverse a galaxy spanning over 120,000 light-years in only a few hours or days, the exact travel time depending on a number of factors including destination, point of origin, route, and class of hyperdrive. The term described the engine and all components required for its use, such as the hyperdrive motivator or hyperdrive field guide. The construction and working principle of a hyperdrive were based on Hyperdrive Theory. The hyperdrive was thus a key technology in the foundation of galactic society, trade and war. The hyperdrive (occasionally called warp drive) was a vital starship engine system that allowed vessels to enter hyperspace to traverse the vast distances of space faster than lightspeed.
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