Diatone Roma F7
Score: 75/100
Eielediy Drone DIY Kit
Score: 77/100Rankings

The EIELEDIY RM Quadrotor Drone DIY Kit is a build-your-own quadcopter offering brushless motors, optical flow stabilization and a 30-minute flight time. Its extensive assembly requirements and lack of an included remote controller make it less convenient for beginners. Ideal for STEM-focused hobbyists and educators seeking hands-on learning.
The Diatone Roma F7 is a 290 mm carbon-fiber racing frame designed for 7-inch props and 6S batteries, delivering efficient long-range cruising and freestyle capability. Its heavier build and taller stack can affect agility and antenna placement, making it less ideal for ultra-light racing. Targeted at intermediate to advanced pilots seeking a versatile, durable platform.
| Attribute | Diatone Roma F7 | ![]() |
|---|---|---|
— | 30 minutesbest | |
— | 2,000 mAhbest | |
| ↓ lower better | 200 gbest | 480 g |
290 mmbest | — | |
7 inbest | — | |
1,100 KVbest | — | |
— | 13best |
Click an attribute name to sort · Green = best, red = worst (relative to this comparison)
| Attribute | Diatone Roma F7 | ![]() |
|---|---|---|
Build & Design(2) | ||
Weight (net) (g) | 200 g | 480 g |
Frame Material | 3K carbon fiber | Plastic, acrylic, carbon fiber |

Products in the top-left offer the best value (high score, low price).
Professional reviewers highlight the Roma F7's robust 4 mm arms and 3 mm bottom plate, noting its high crash resistance and efficient setup for 1800 mAh 6S flights. They commend its craftsmanship, modularity, and balanced performance for both freestyle and long-range cruising, while pointing out that it is not a punchy freestyle quadcopter and its taller stack can cause antenna challenges.
Everyday users consistently praise the frame’s durability and the ease of customizing it to their needs, often mentioning the long flight times achieved with 6S batteries. Common criticisms focus on its cruiser‑oriented nature, antenna interference with larger batteries, and the need for extra tuning to reach optimal performance.
