Variable Rate Prescription Generator

Variable Rate Prescription Generator

Soil Test → Nutrient Requirement → Product Blend → Variable Rate Prescription

1. Prescription Method
Distance in feet over which the Safe Range Estimate transitions from minimum range → target.
Final rates are rounded to this increment.
2. Upload Data
No CSV loaded.
No shapefile loaded.
Expected soil-location field: The application looks for the soil sample Plus Code in a column named Sample ID 2 (or Grid, if your lab uses that header instead). The Plus Code is converted into latitude/longitude and spatially associated with the uploaded field boundary.
Expected lime/pH fields: For lime recommendations, the application looks for a soil pH column (pH or Soil pH), a Buffer pH column (BpH, Buffer pH, or SMP Buffer pH), and a CEC column (CEC or CEC (meq/100g)). Buffer pH is preferred when present; CEC is used as a fallback when Buffer pH is missing. See section 4b for the calibration table.
3. Products Used in Prescription

Enter the guaranteed analysis as percent by weight. For example, 0-0-60 Potash = K 60%. In Single Product Blend Rate mode, these products are treated as blend ingredients and the calculated ingredient rates are converted into one total blend rate.

Product N % P % K % Ca % Mg % S % B % Cu % Fe % Mn % Zn % CCE % Unit Min Max

4. Soil Interpretation Edit optimal ranges, targets, and requirement factors

These are your current optimal ranges and target values. You can edit them before generating the prescription.

Nutrient Minimum Target Maximum Requirement Factor
Requirement Factor: This is the amount of actual nutrient, in lb/ac, that the application engine will consider necessary for each one-unit increase in the soil test value. These values should be calibrated to your soil-test method, CEC, crop, soil depth and agronomic recommendations before using the generated prescription operationally.
4b. Lime Program (pH Management) Calibrate the Buffer pH lime-requirement table and fallback factors

The desired pH for each point is taken from the pH row in section 4 (Soil Interpretation) and follows whichever Prescription Method is selected in section 2 — Target, Range, or Safe Range Estimate — exactly like the other nutrients.

The pH the Buffer pH table below assumes you are correcting to. Requirement is scaled down if the desired pH for a point is less than this.
Tons ENP/ac per CEC unit per pH unit needed to raise. Used only when Buffer pH is missing for a row but CEC is present.
Tons ENP/ac per pH unit needed to raise. Last-resort fallback when neither Buffer pH nor CEC is present.
Rounds lime product rates to this many lb/ac. Product min/max rates are pulled from the Product Input section.

Buffer pH ENP Required (tons/ac to reach Reference Target pH)

Buffer pH Table: These starting values are a generic, illustrative approximation of a Buffer pH → lime-requirement relationship (in tons of effective neutralizing power, ENP, per acre, to reach the Reference Target pH above). Buffer pH methods (SMP, Mehlich, Adams-Evans, Woodruff, etc.) each have their own calibration curve — replace these values with the table published for the specific buffer method your lab uses before relying on this operationally.
Product CCE: For any product checked as Lime in section 3, the ENP requirement (tons/ac) is divided by that product's CCE % (Calcium Carbonate Equivalent, entered as percent by weight) to get the actual product application rate: Product Rate = ENP Required ÷ (CCE ÷ 100). A product with CCE below 100% needs a heavier rate to supply the same neutralizing power as pure calcium carbonate.
5. Generate Prescription
Waiting for data.