Ultimaton
PRIME
ULTIMATON PRIME — a source of internal order and energy

ULTIMATON Prime is an innovative next-generation bioenergetic product developed using energy-activation technology. All components of the product — nitrogen (N), magnesium (Mg), sulfur (S), boron (B), copper (Cu), iron (Fe), manganese (Mn), molybdenum (Mo), zinc (Zn), and organic acids — are integrated into the Ultimaton matrix, ensuring high bioavailability, synergistic action, and long-lasting effects.
It functions not merely as nutrition, but as a fundamental code of life that activates all basic plant functions. Intended for foliar (non-root) feeding of all agricultural crops.
It functions not merely as nutrition, but as a fundamental code of life that activates all basic plant functions. Intended for foliar (non-root) feeding of all agricultural crops.
Physico-chemical characteristics
| Composition | Parameters |
| Total nitrogen (N), % | 4,00 |
| Water-soluble magnesium (MgO), % | 4,50 |
| Water-soluble sulfur (S), % | 3,90 |
| Water-soluble boron (B), % | 0,50 |
| Water-soluble copper (Cu), % | 0,50 |
| Water-soluble iron (Fe), % | 0,60 |
| Water-soluble manganese (Mn), % | 0,95 |
| Water-soluble molybdenum (Mo), % | 0,004 |
| Water-soluble zinc (Zn), % | 0,50 |
| Organic acids, % | 5,30 |
| Density, g/cm³ | 1,28 |
| рН | 3,6 |
| Water solubility | complete |
BIOENERGETIC ROLE
OF THE PREPARATION FOR PLANTS Ultimaton Prime is a bioenergetic preparation created
to restore the vital force of the plant and
to re-establish its internal energy balance,
as a result of which the plant receives living energy,
harmoniously develops root and leaf systems,
recovers faster after stress and forms
maximum yield.
Energy activation of cellular
metabolism Enhances photosynthesis, protein and chlorophyll
synthesis, activates respiratory cycles, which
increases cellular energy potential and accelerates
metabolism
metabolism Enhances photosynthesis, protein and chlorophyll
synthesis, activates respiratory cycles, which
increases cellular energy potential and accelerates
metabolism
Balance of Growth and Yield FormationRegulates cell division, root system growth, and the formation of generative organs. Thanks to the Ultimaton matrix, elements are supplied evenly to the plant, ensuring stable development and balanced growth at all stages of growth and development
Enzymatic and Antioxidant Protection Iron (Fe), copper (Cu), manganese (Mn), and molybdenum (Mo) activate respiratory enzymes and antioxidant systems (superoxide dismutase, catalase, peroxidase). This enhances the plant’s natural immunity and protects cells from oxidative stress, herbicidal impact, and temperature fluctuations
Natural conductors of energyOrganic acids in the preparation stabilize
microelements in solution and increase their
absorption through membranes. They function as
bioenergetic modulators, enhancing substance
transport and metabolic exchange within the cell
microelements in solution and increase their
absorption through membranes. They function as
bioenergetic modulators, enhancing substance
transport and metabolic exchange within the cell
Stress Resistance and Recovery
The complex of microelements and organic acids in the Ultimaton matrix ensures rapid tissue regeneration after frost, drought, or herbicide load. The plant restores turgor, photosynthetic activity, and energy potential
The complex of microelements and organic acids in the Ultimaton matrix ensures rapid tissue regeneration after frost, drought, or herbicide load. The plant restores turgor, photosynthetic activity, and energy potential
UNIQUENESS AND ADVANTAGES
OF ULTIMATON PRIME
Bioenergetic synergy of the Ultimaton matrix
All elements are present in a structured Ultimaton form, where each ion is stabilized by organic acids and connected through energetic bonds, ensuring long-lasting action and gentle bioenergetic influence at the cellular level
Maximum bioavailability of elements
Nitrogen (N), magnesium (Mg), sulfur (S), boron (B), copper (Cu), iron (Fe), manganese (Mn), molybdenum (Mo), and zinc (Zn) are present in chelated and energetically stabilized forms, ensuring rapid penetration through cell membranes and immediate involvement in metabolic processes
Activation of the plant’s internal bioenergy
Organic acids (citric, succinic, and others) act as natural energy conductors. They enhance respiration, photosynthesis, and enzyme system activity, increasing the overall energy potential of the plant
Balanced nutrition and harmonious development
The combination of macro- and microelements provides a precise balance between vegetative and generative growth. This promotes the formation of a powerful root system, a fully developed leaf apparatus, and consistently high yields
Long-lasting effect
The Ultimaton structure allows the product to act in a prolonged manner, gradually releasing elements. The synergy of nutrients and organic acids creates a stable metabolic effect
Living energy of growth
Activates the plant’s internal potential, enhances photosynthetic activity and metabolism, resulting in strong, healthy plants with high productivity and high-quality yield
APPLICATION
RECOMMENDATIONS
| Crop | Application timing | Rate, [L/ha] |
| Cereal crops (wheat, barley, rye) | Tillering stage | 0,5-1,0 |
| Stem elongation | ||
| Beginning of heading | 1,0 | |
| Winter (spring) rapeseed | Autumn (4–6 leaf stage) | 0,5-1,0 |
| Beginning of vegetation regrowth | ||
| Bud formation (before flowering) | 1,0-1,5 | |
| Sunflower | Bud formation – beginning of flowering | 1,0-1,5 |
| Maize (corn) | 5–7 leaf stage | 0,5-1,0 |
| 10–12 leaf stage | 1,0-1,5 | |
| Oil flax | 1–2 applications from 2–3 leaf pair stage until flowering | 0,5-1,0 |
| Soybean | 3rd trifoliate leaf | 0,5 |
| Bud formation | 0,5-1,0 | |
| Beginning of seed filling | 1,0-1,5 | |
| Potato | 2–3 weeks after emergence | 0,5-1,0 |
| Before flowering | ||
| After flowering | 1,0-1,5 | |
| Cotton | 1–2 applications from 6–8 true leaf stage until flowering | 0,5-1,0 |
| Vegetable crops | 2–3 weeks after emergence | 0,5-1,0 |
| Every 10–14 days (twice) | 1,0-1,5 | |
| Fruit orchards | After flowering | 0,5-1,0 |
| Every 10–14 days (4 applications) | 1,0-1,5 | |
| Grapes | Shoot length 20 cm | 0,5-1,0 |
| Before flowering | 1,0-1,5 | |
Cluster formation | ||
| Berry crops | 1–2 applications after flowering | 0,5-1,0 |
| Working solution volume [L/ha]: 100-200 – field crops; 400-1000 – fruit plantations | ||