Description
Precision-designed for dependable Level 1 certification performance and repeatable high-power flights.
| Included | 29 mm Version | 38 mm Version | Recommended Extras |
Not Included
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| Airframe Tube | Precision-Cut 65 × 625 mm Airframe Tube | Precision-Cut 65 × 625 mm Airframe Tube | Ripstop Nylon Recovery Parachute (30″) | Motor |
| Fin Set | Laser-Cut Level Up Fin Set (6 mm Plywood) | Laser-Cut Level Up Fin Set (6 mm Plywood) | Nomex Recovery Blanket (9″) | Igniter |
| Internal Structure | Laser-Cut Internal Structure Set (3mm Centring Rings + 6mm Thrust Plate) |
Heavy-Duty Internal Structure Set (6 mm Plywood + Recovery Bulkhead)
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Adhesives / Glue
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| Nosecone | 3D Printed LV-Haack Nosecone |
3D Printed LV-Haack Nosecone
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Paint | |
| Shock Cord | Kevlar Shock Cord (2.5 m, 750 lbf) |
Kevlar Shock Cord (2.5 m, 750 lbf)
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| Recovery Hardware | Stainless Steel Eyebolt + Mounting Hardware |
Stainless Steel Eyebolt + Recovery Bulkhead System
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| Motor Retention Hardware | Threaded Inserts + Machine Screws Included |
Threaded Inserts + Machine Screws Included
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| Launch System | 1010/2020-Compatible Conformal Rail Guides |
1010/2020-Compatible Conformal Rail Guides
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| Motor Mount | 29 mm Mounting System |
38 mm Mounting System
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| Stickers | All Included | All Included |
Technical Specifications
| Specification | Value |
|---|---|
| Skill Level | Level B = Some hobby experience |
| Rocket Height | 837 mm |
| Diameter | 65 mm |
| Weight (Without Motor) | 609 g |
| Recovery | 30″ Parachute |
| Motor Mount | 29 mm or 38 mm Options |
| Recommended Motors | G74W-9, F67C-6, H128W-10, H165R-10, H182R-10, H195NT-10 and more |
| Construction | Cardboard / Plywood / PLA |
| Finish Required | Paint + Vinyl |
| Assembly Time | 4–8 hours |
| Adhesives Needed | Epoxy / Wood Glue |
| Launch Guide | 1010 Rail Buttons |
| Electronics Bay | N/A |
| Max Simulated Altitude | ~2,791 ft |
OpenRocket Simulation
See how this rocket is expected to perform with different motor configurations by downloading the free OpenRocket design file.
The file can be opened using OpenRocket, a free rocket design and flight simulation program available for Windows, macOS and Linux.
What is an OpenRocket design file?
An OpenRocket design file contains a digital model of the rocket, including its dimensions, weight, body components, fin shape and recovery system.
The rocket has already been entered into the software, so you can open the file and begin testing different compatible motors without building the model from scratch.
OpenRocket can help you explore:
- estimated altitude and maximum speed;
- flight stability;
- acceleration and flight duration;
- deployment timing;
- descent rate;
- the effect of wind; and
- where the rocket may land.
It is a useful way to learn more about the rocket’s expected performance and compare motor options before building or launching.
Download the .ork file, open it in OpenRocket and start running your own flight simulations. Always confirm your final motor selection and launch conditions with an experienced rocketeer or launch official before flying.










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