Useful if the main computer is not working:
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This panel provides important information about the status of the capsule. It can function even in the complete absence of energy and has shock resistance.
This indicator shows the current temperature of the reactor. The red arrow means the current temperature of the reactor. The blue arrow indicates the ideal reactor temperature needed to provide the capsule systems with sufficient power.
The ammeter allows you to find out how much energy from the reactor is needed to operate all active systems relative to how much energy is being generated at the moment. Red arrow - how much energy is produced, blue - how much is needed. Ideally, both arrows should be aligned.
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Shows the temperature on board the capsule.
The air suitability level indicates how breathable the atmosphere is at the current moment. If this rate drops below 70%, act quickly to prevent blackouts. The oxygen level in the atmosphere, the level of carbon dioxide and the pressure indicator play a role in the level of air suitability.
They allow you to know how much oxygen, carbon dioxide and nitrogen are present in the atmosphere, as well as the current pressure. As a reminder, the ideal levels at 1 Bar are as follows:
Consider the functionality and warnings.
Generates the energy needed to run the capsule's systems. A nuclear reactor located in the center produces heat, which is then converted into energy by a generator. The higher the temperature of the reactor, the more energy is produced.
The green bar indicates the amount of power required for all systems that are currently on.
It takes some time for a nuclear reactor to heat up or cool down. Always check if the systems are equipped with transformers and fuses to avoid damaging them due to incorrect energy levels.
The processor inside the generator stabilizes the temperature to the right level depending on the power consumption of the system. A damaged processor can prevent proper cooling of a nuclear reactor.
There is a risk of serious radiation damage if a nuclear reactor is operated without protective equipment.
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It releases oxygen into the atmosphere from a cylinder located inside. The green bars on the monitor show the ideal oxygen level at the current pressure.
The required oxygen level will vary depending on atmospheric pressure. At a pressure of 1 bar (standard), 20% oxygen is needed. The higher the pressure, the less oxygen is needed. Too much oxygen in the atmosphere can start a fire and cause hyperoxia.
This device removes carbon dioxide from the atmosphere so that its content does not reach dangerous levels. The green bars on the monitor show the maximum safe level of carbon dioxide based on the current pressure.
The maximum level of CO2 before the risk of poisoning is approx. 6% at a pressure of 1 bar. The maximum levels will be lower if the pressure is higher.
The pressure stabilizer maintains the internal atmospheric pressure in the capsule at 1 bar (as on Earth) by releasing or taking in nitrogen from the atmosphere.
Pressure is a determining factor in the breathability of both oxygen and carbon dioxide. It is also important to note that excessive pressure levels can compromise the structural integrity of the escape pod.
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Generates heat and cold to regulate air temperature. Green bars indicate a target temperature of 21 degrees or 70 degrees Fahrenheit (F). Heat is generated from electricity, and cold is produced by a bottle of liquid nitrogen inside the system. It is important to note that most of the capsule's heat is generated by the atomic reactor, while space slowly cools it.
Capsule lighting is located inside the drawers. It ensures the correct operation of the lamps on board the capsule. Lighting is divided into main and emergency lights. Emergency lighting requires much less energy and is equipped with an emergency battery. It will turn on immediately if the main lighting cannot work properly. For example, in the event of a power outage.
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Uses a complex system of gravity fields to create artificial gravity similar to Earth's. Please note that when running on battery power, the system may reduce its power consumption and gravity levels to maximize run time before running out of power. In case of insufficient power or damaged processors, gravity can become unstable, either too high or too low.
The host computer displays a general list of all systems and their status. Decodes error codes on each system monitor. Without a host computer, you will have to decipher the error codes yourself with the help of our guide.
The battery charger allows you to charge your batteries very quickly.
Warning : The battery charger consumes a very large amount of
And the amount of energy and, therefore, reduces the power of other systems until the nuclear reactor adapts to its consumption.
Caution : Unprotected systems may suffer overload damage when removingbattery from the charger.
The airlock is the main door to the escape pod. To open it, you'll need to make sure you're properly docked, then pull and twist the handle to unlock the airlock.
Once unlocked, you can simply pull the door inward.
Warning : Opening an airlock in space will result in an immediate loss of pressure and may cause hypoxia and then death.
The CO2 to O2 Converter allows you to refill an empty oxygen tank with a full carbon dioxide tank by converting carbon dioxide into oxygen.
Note that this CO-OTTO process is vital to conserving your oxygen supply.
The repair station allows you to repair damaged components whenever possible. The repair station also allows you to dismantle a component for parts by placing it inside and pressing the DISMANTLE button.
Built-in screens display the number of spare parts required and the number of spare parts that are at the user's disposal. Repair speed depends on the complexity of the part and the condition of the repair station.