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Underconstruction- but operational. - Wheatley 

The Type - WL01 (T) - HBL 
Wheatley Laboratories (Strictly Mechanize Technology) 
Heavy Bipodal Legs. Constructed for exoskeleton weight cumbersome situations. The bipodal Legs weight over 4 tonnes due to armor reinforcements and servomotors and hydraulic operations that are built within it's thick spaced interior giving it the strength programmed to lift four times own it's weight during constant use. 16 tonnes. With the great energy output of the heavy bipedal legs produce it carries its support by the individual Thermonuclear Magnetohydrodynamic Fusion Reactor (Power unit size) it carries in the higher buttock area that connects to the possible torso piece. Proving no worries for over usage of energy depletion rather than armor degradation. The armor parts needs its own energy generator due to the mass to move it's own weight, booster powers, individual magnetic coil barriers and high defensive reinforced nano technology. With the notable listed, The generator supplied would give out spare energy making movability less work for the ease to the transfer of energy into the leg thrusters for easier movement. These heavy legs would be in constant booster pressure drag due to it's lack of reps per step due to it's weight. 

The motor that calculates signals from nerve fiber extractions is constructed by a basic electromagnetic system that transfers electricity. The motor is contained in alternative gears and a cage of three magnetic rods that repel and extract from each other to create a kinetic force generating a electromagnet rotation around the constructed armature that continues the hydraulic gear system. The flipping of the armature is controlled by programmed pulses produced by fiber extractions and sent into the generators commutator to the wiring of the armature calculating how much kinetic energy that should be applied. The amount of pulses determines how much pressure the motor should take to communicate with the interior environment. It then connects to turning systems and thruster ignition systems thus making movability of its intense weight of feeling only 20 pounds. Due to the framework of the exoskeleton making the legs part of the user to simulate full control, though due to the weight reps per second is limited to the user. With access to the exoskeleton, the user is augmented with a neural ability that makes slight movements of their muscles into bigger commands of the bipedal. Resulting in big results. 

Titanium Leg Suit: It is alloy protection that serves as skin tight trousers between the external and internal interior that connects to the exoskeleton. One of its main functions is the accessibility to wear the legs, thus provided by the inter slots that provide space for legs. The leg-suit constructed by titanium-base material proving it to be flexible with located joints pin pointed, also due to its material. It is very durability against ballistics and heat resistant to thermal weaponry. 

Non-Newtonian Fluid Hydrotastic Gel Padding: Within the suit layers inter slots contains gel-filled layers. The gel reacts with kinetic force, such as movement and most likely impacts. It then uses the force to turn it's liquid state into advance pressurized non-Newtonian padding that potentially leave the user unharmed from great vole cities such as extreme G forces. The gel also acts as its own cryostat layer from the users skin, keeping its density to conform the physical shape of the users legs and keeping it at a moderate temperature by protecting the user from interior heat, if ever exposed. 

Environmental Catalyzed Pressure: It is a seal that is constructed to keep the systems airtight in all conditions. It is durable to stay active during extreme situations such as high velocity impact due to its possibility of unharmed interior shieldings and steel framework. The only way the seal would be exposed is through critical damage under extreme pressure. Even though if damage, The non-Newtonian fluid also acts through the kinetic force and beings to insulate damages making the inner leg surfaces into a pressure seal, which is the main purpose of keeping the user safe if it is not able to survive in certain conditions. 

Biofoam Mitosis Injectors: The interior introduces classic models of biofoam injectors that is integrated into combat situations. It serves as a limited medical supply through the battlefield that keeps the user functioning if the armor is exposed and caused physical harm to the user. It introduces the wound into a advance cycle of mitosis that increases cell regeneration that temporary replicates flesh. It is also used to contain minor viruses and infections depending on the users individual immune system. The injectors go through a painful process for applying the gel to the users liquid stream by releasing certain amounts of pressurized biofoam all at once, making it fully effective. 

Copper conductors surround most of the frames wiring with the exception of its outer cells. Copper conductors are used for when EMPs are used against the user. The electromagnet pulse produces a electric current which is absorbed through the conductors and are bought to the power core to use as energy through copper wiring. The copper rods of the conductors are then grounded to the floor so the electromagnetic pulse does not interact with the currents within the bipedal. 

Single Crystal Steel Fibers: The outer protective frame that produces 60% of the legs weight. It is comprised of manufactured thick Single Crystal Steel Fibers used for dense structure to handle ballistic impacts and extreme thermal heating. The frame focuses on the main structures of the legs that are most likely to get hit based on battle statistics. Based around the forelegs, calves, knees and thighs. The legs are built to take heavy significant amount of punishment towards its outer hull. The metal is covered with refractive coating to disperse experienced heat from basic weapons. 

The blanket modules is the first defense of the framework. It is a layer built over the surface of the frames. The main purpose is provided that it contains against thermal energy. Reconstructing the blanket layers from the thermonuclear power core, It is designed to handle heating by individual modules that faces towards the combat of projectiles. Taking the load of heat of thermal energy in quick submission and transfers the heat into energy rendering known plasma with average temperatures of 12 000 c into inefficient damage due to the frameworks resistances. The durability of the modules are self sustaining being able to handle combat punishment being made out of tungsten. The modules work as a semi-layer shield that are programmed to provide necessary cycles that are dedicated for magnetic shielding. 

Coils are placed around the surface of the blanket layers. The wire working is placed underneath the framework of single crystal steel fiber layers. The coils are used for electromagnets that carries their currents in a form of a wire. The currents then creates a magnetic field from the electromagnets that are formed into a helical. It then generates enough force inside itself to form a series of circles. The magnetic field generated is limited to the amount of coils the piece of gear has. The Type WL01-(T)-HBL contains 4 coils per leg. 2 on each sector of its leg. The coils are activated through the energy output of the thermonuclear power core imitating its very own magnetic field with coils that are super size. The magnetic field generated by the super coils prevents damage from the outside world e.g: missiles, thermal, kinetic hostility. If the magnetic field is punctured it will divert energy into the remaining coils recharging it faster than it should be damaged. The magnetic fields with stable energy output can handle the punishment of 12 000 Celsius on constant assault for a short time period until the energy of the coils is overwhelmed. 

Standard reinforcements on focused areas of protection. These super layers consists of millions of grain sized discrete cell units that are shaped to the surface of the bipedal for increased effectiveness. The basic structure of the magnetic field is performed by the structural integrity / durability of the energy output from the armors cell locations. They act as a group, but each cell contributes energy that integrates with a computing power that determines the amount of energy needed. The mass production of barrier cells are constructed by programmed bacteria that absorb amounts of tungsten then arrange to march into an organized wafer leaving grain amounts of precision made alloys into mechanical cells that release energy into a magnetic field providing basic protection against ballistics and thermal energy. The cells alone on the mass framework have the resistances to handle punishment of 7 000 C constantly for a short period of time before they are overwhelmed. 

Power mode is a passive ability that the user activates. It transfers 50% of incoming energy from the legs power core into reps per second. It performs these feats through the situation of hand to hand containment procedures or replacing the thrusters into a joint relying power jump going three times its normal jump height. (5 ft x 3) It also uses power mode for sprinting and faster leg retrieval which would lead to the determination on the users skill level of physical interaction. Due to the legs weight, It can easily perform overwhelming titanic attacks, but over use of power mode might exhaust the energy generation resulting to go into restoration mode. 

Restoration mode is a passive ability that the user activates. It decreases the use of thrusters and decreases the amount of defense by reducing the work of the frames cells and coils (optional, though energy is generated much less), making Restoration mode very vulnerable as it attempts to generate more power. Restoration mode is basically in simple terms, saving power for long term use. Units will use this mode off combat when they aren't on the move. They can use it under fire while in cover for quick switches to resupply the legs magnetic shields and thruster systems that spend the most amount of power. Though while the shields that are optional to reduce, the energy being generated for the time period of the mode increases the recharge rate and recharge delay of the magnetic barriers into a few seconds. 

Back and Side Thrusters. The Type -WL01-(T)-HBL has formulated 4 ion powered thrusters on each leg. 2 located at the back of the legs and the other 2 located at its sides for turning purposes. The Ion thrusters form electric propulsion that accelerate ions in a certain direction to thrust. They accelerate by electromagnetic force that performs the Lorentz energy for ions.The ions are then passed through a gateway electrostatic grid engine and the electric field converts it into kinetic energy. The energy is turn released through a carbon-carbon magnetic nozzle. The thermonuclear plasma core gives most of its supply to the boosters. Its a system of superconducting electromagnets to contain the plasma and power to run those same electromagnets, Containing the components of quartz tubes, Magnet coils and Helicon antennas. 

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