Overview
VCI 0702PRO Lite motor is a compact micro brushless motor option for 1S (4V) micro FPV builds, available in 23000KV, 27000KV, and 30000KV variants. It uses a 9S12P configuration with 52SH arc magnets and a lightweight 0702-size stator for high-RPM, small-prop applications.
Key Features
- Available KV selections: 23000KV / 27000KV / 30000KV
- Rated voltage: 1S (4V)
- Compact 0702 form factor: Ă9 x L11.4 mm
- Ă1 mm shaft with 30AWG silicone wire (35 mm)
- Static test data provided with GF1219S-3 propeller at 4V
Specifications
Mechanical
| Dimensions | Ă9 x L11.4 mm |
| Shaft diameter | Ă1 mm |
| Shaft length | 3.4 mm |
| Mounting | 3 x M1.4 |
| Mounting circle diameter | Ă6.6 mm |
| Wire | 30AWG silicone wire, 35 mm |
Electrical / Build
| Configuration | 9S12P |
| Magnets | 52SH arc |
| Stator size | Ă7 x L2 mm |
| Rated voltage | 1S (4V) |
Variant Specifications
| KV Option | Internal Resistance | Peak Current | Max Instantaneous Power | Idle Current | Weight (Incl. Cable) |
|---|---|---|---|---|---|
| 23000KV | 230 mΩ | 3.9 A | 15.6 W | 0.55 A (3.7V) | 1.4 g |
| 27000KV | 180 mΩ | 5.15 A | 20.6 W | 0.72 A (3.3V) | 1.4 g |
| 30000KV | 170 mΩ | 5.9 A | 23.6 W | 0.7 A (2.9V) | 1.38 g |
Testing Data (Static, Reference)
Static test conditions: GF1219S-3 propeller, 4V. Motor temperature values are spindle temperature after throttle testing from 0 to 100.
| KV Option | Voltage | Max Thrust | Current at Max Thrust | Power at Max Thrust | Efficiency at Max Thrust | Temperature |
|---|---|---|---|---|---|---|
| 23000KV | 4V | 32.00 g | 3.90 A | 15.60 W | 2.05 g/W | 53°C |
| 27000KV | 4V | 35.00 g | 5.15 A | 20.60 W | 1.70 g/W | 62°C |
| 30000KV | 4V | 37.10 g | 5.90 A | 23.60 W | 1.57 g/W | 66°C |
What's Included
- VCI 0702PRO Lite motor (quantity as selected: 1PCS (Unpacked) or 4PCS/Pack)
If help is needed choosing the KV option or pack quantity for a specific micro FPV build, contact [email protected].
Details


Reference static test results at 4V with a GF1219S-3 propeller help compare thrust, current draw, and efficiency across KV options.
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