A Unit | Small communications satellite, flying about 100m above its robotic boat, |
Unit creation costs | Already 100% financed by EC.PN, to be mass produced, significantly less than submarine cable or any other known method. |
Unit's Fuel costs | Zero. |
Unit's Fuel source | Ships separate the ocean (H2O) into its components (H2+0), H2 is rocket fuel. |
Unit's energy source to create Fuel | Wind used to generate electricity, in turn used to separate ocean water (H2O). |
Cost for Unit's electricity / rocket fuel | Zero, wind in international waters is free, ocean water (H2O) is free. |
Cost of batteries | Zero, not required; uses stored Hydrogen, converts H2 + 0 back into water. |
Power cost for Unit's satellite telecommunications | Zero, see above. |
Cost of fuel to send, retrieve and maneuver Units | Zero, see above. |
Cost to place telecommunications Units on station | Zero. |
Costs of Units running in calm conditions | Zero. Uses stored Hydrogen. |
Satellite Time lag issues | Satellites are about 100m above sea level, not in orbit, time lag between ground to orbit irrelevant. |
Unit's repair, maintenance, servicing costs | Significantly less than submarine cable, orbiting satellites or any other known method. |
Unit's Software/Hardware costs | Rights acquired, including source code, EC.PN 100% financed. Project has no 3rd party hardware/software components. |
Telecommunications Discontinuance Risk Management | Numerous Units function in parallel, numerous redundancies. |
Risk from Licensor/Licensee failure | Five Licensors running in parallel from different jurisdictions, numerous redundancies. |
Licensees | Licensees are required, 90% of license fair value is EC.PN financed. |
Financing Collateral / Security | A percentage of the project's potential revenues only, Licensor/Licensee assets not required. |