FLEX800 FLX35 and FLX55 performance in metric units
This working reference converts Toro's published 25° main-nozzle performance data for the FLEX800 FLX35 and FLX55 into metric units. The two rotor bodies and their nozzle sets are kept in separate tables.
The FLEX800 35/55 family has both 25° and 15° trajectory settings. This page covers the 25° setting only. It does not combine the low-angle chart, back nozzles, intermediate nozzles, conversion assemblies or other FLEX800 families.
Configuration and controlled sources
- Models: Toro FLEX800 FLX35 and FLX55
- Configuration: part-circle and full-circle rotor, 25° main-nozzle trajectory
- Source sheet: Toro FLEX800 35/55 Series Golf Rotors, P/N 15-5059-IG, © 2015
- Current model check: Toro UK product page checked 6 September 2026
- Conversions: 1 foot = 0.3048 metres and 1 US gallon per minute = 3.785411784 litres per minute. Distances and l/min are rounded to one decimal place. The displayed m³/h values are converted from the displayed l/min figures using 1 l/min = 0.06 m³/h and rounded to two decimal places.
Toro describes the distance as radius. On site, this is the sprinkler throw in metres. Flow is shown in m³/h first, with l/min retained as a secondary check.
View Toro's current UK FLEX800 35/55 product page
Open Toro's FLEX800 35/55 performance sheet
FLX35 at 25° trajectory
Published nozzle sets 30 to 37. Blank combinations in Toro's source sheet are omitted rather than inferred.
On a phone: swipe left and right across the table to see every column.
| Nozzle set | Pressure (bar) |
Radius (m) |
Flow (m³/h) |
Flow (l/min) |
|---|---|---|---|---|
| 30 | 3.4 | 13.1 | 1.86 | 31.0 |
| 30 | 4.5 | 13.7 | 2.27 | 37.9 |
| 30 | 5.5 | 14.0 | 2.61 | 43.5 |
| 30 | 6.9 | 14.3 | 3.04 | 50.7 |
| 31 | 3.4 | 16.2 | 3.13 | 52.2 |
| 31 | 4.5 | 16.2 | 3.52 | 58.7 |
| 31 | 5.5 | 17.4 | 3.93 | 65.5 |
| 31 | 6.9 | 18.0 | 4.34 | 72.3 |
| 32 | 3.4 | 17.1 | 4.16 | 69.3 |
| 32 | 4.5 | 18.0 | 4.66 | 77.6 |
| 32 | 5.5 | 18.9 | 5.15 | 85.9 |
| 32 | 6.9 | 19.8 | 5.66 | 94.3 |
| 33 | 3.4 | 18.6 | 4.93 | 82.1 |
| 33 | 4.5 | 19.5 | 5.54 | 92.4 |
| 33 | 5.5 | 20.4 | 6.16 | 102.6 |
| 33 | 6.9 | 21.3 | 6.77 | 112.8 |
| 34 | 3.4 | 19.8 | 5.75 | 95.8 |
| 34 | 4.5 | 20.7 | 6.40 | 106.7 |
| 34 | 5.5 | 21.6 | 7.06 | 117.7 |
| 34 | 6.9 | 22.6 | 7.75 | 129.1 |
| 35 | 4.5 | 21.9 | 7.75 | 129.1 |
| 35 | 5.5 | 22.9 | 8.59 | 143.1 |
| 35 | 6.9 | 24.1 | 9.29 | 154.8 |
| 36 | 5.5 | 23.8 | 9.16 | 152.6 |
| 36 | 6.9 | 24.7 | 9.95 | 165.8 |
| 37 | 5.5 | 24.4 | 10.00 | 166.6 |
| 37 | 6.9 | 25.3 | 10.74 | 179.0 |
FLX55 at 25° trajectory
Published nozzle sets 51 to 59. Blank combinations in Toro's source sheet are omitted rather than inferred.
| Nozzle set | Pressure (bar) |
Radius (m) |
Flow (m³/h) |
Flow (l/min) |
|---|---|---|---|---|
| 51 | 3.4 | 16.8 | 3.20 | 53.4 |
| 51 | 4.5 | 17.4 | 3.59 | 59.8 |
| 51 | 5.5 | 18.0 | 3.97 | 66.2 |
| 51 | 6.9 | 18.6 | 4.39 | 73.1 |
| 52 | 3.4 | 17.4 | 4.20 | 70.0 |
| 52 | 4.5 | 18.3 | 4.75 | 79.1 |
| 52 | 5.5 | 18.6 | 5.24 | 87.4 |
| 52 | 6.9 | 19.2 | 5.75 | 95.8 |
| 53 | 3.4 | 18.9 | 5.06 | 84.4 |
| 53 | 4.5 | 19.8 | 5.70 | 95.0 |
| 53 | 5.5 | 20.7 | 6.31 | 105.2 |
| 53 | 6.9 | 21.6 | 6.88 | 114.7 |
| 54 | 3.4 | 20.1 | 5.86 | 97.7 |
| 54 | 4.5 | 21.0 | 6.52 | 108.6 |
| 54 | 5.5 | 21.9 | 7.20 | 120.0 |
| 54 | 6.9 | 22.9 | 7.84 | 130.6 |
| 55 | 4.5 | 22.3 | 8.15 | 135.9 |
| 55 | 5.5 | 23.2 | 9.02 | 150.3 |
| 55 | 6.9 | 24.4 | 9.88 | 164.7 |
| 56 | 5.5 | 24.4 | 9.79 | 163.2 |
| 56 | 6.9 | 25.3 | 11.13 | 185.5 |
| 57 | 5.5 | 25.3 | 10.95 | 182.5 |
| 57 | 6.9 | 26.8 | 11.69 | 194.9 |
| 58 | 5.5 | 25.9 | 11.36 | 189.3 |
| 58 | 6.9 | 27.4 | 12.24 | 204.0 |
| 59 | 5.5 | 27.1 | 13.06 | 217.7 |
| 59 | 6.9 | 28.0 | 13.92 | 232.0 |
Pressure and field-use notes
Toro's current UK page gives a recommended operating-pressure range of 4.48 to 6.89 bar. The source performance sheet also publishes selected values at 3.4 bar, so those rows are retained for identification but sit below the current recommended range.
These figures are manufacturer test data, not a guarantee of field coverage. Check dynamic pressure at the rotor, elevation, pipe losses, spacing, wind, trajectory setting, nozzle condition and system demand before applying them to design or diagnosis.
Confirm the installed rotor body and nozzle set before use. Similar appearance does not establish compatibility with other FLEX800, INFINITY, conversion or control configurations.
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