Three Solutions for T6 Water (Electrochemically Balanced Water)

Three Solutions for T6 Water (Electrochemically Balanced Water)

GuideVoltage MVPublished 08/06/2026
ContributorsMengmengswordboomerangAuthor
  • Mom no longer has to worry about me not knowing how to make T6 water.

  • 'Xie Ying'the big shot and'single-block machines using virtual circuits need to use a programmable cover plate'the big shot is really impressive

  • The first solution:Super Chest solution

    Bind the hypercube to the lens chamber. The one on the left is the input interface (redstone card set to pulse activation). Set the Super Chest to auto-output direction and allow item input on the output face.

  • The second solution:AE pseudo-crafting order

    Bind the hypercube to the lens chamber. Attach an input bus on the right (redstone card set to pulse activation). Put a storage cell containing lenses in the ME chest. Put the written pattern in the pattern provider (write it in order). Attach an output bus under the chest (crafting card, mark order).

  1. Third solution:Output Bus ordered output solution

    1. Attach an Import Bus to the right side of the Hypercube (bound lens chamber), activated by a redstone card pulse; use a Storage Bus on the chest (for scheduling) to collect lenses, and set the Level Emitter to activate when >=10.

    2. Attach an Import Bus to chest #1 (redstone card activates with a signal), and attach a Storage Bus to the chest behind.

    3. Attach an Export Bus behind the Hypercube, and mark the lenses in order.

Comments

3
  • Anonymous 35206/06/2026

    By the way, the third method can be completed without using the bus's marking function at all, relying only on the order of the lenses within the box to achieve sequential entry.

    • swordboomerang06/07/2026

      This effectively prevents the pig from making mistakes, meow.

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