Radio-Controlled Delivery Drone Design
Budget: ₹12,500 – ₹37,500 INR
I want to take a delivery-class drone from concept to production-ready files, blending sleek aesthetics with rock-solid aerodynamics and structural integrity. The airframe must be modelled around lightweight composite skins and spars, keeping total mass in check while still offering enough payload volume for small-parcel logistics.
Alongside the physical design, I need a fully documented manual control system that streams real-time telemetry back to the pilot. This includes live battery, GPS, and flight-attitude data rendered on a ground-station UI as well as traditional stick-based navigation for take-off, manoeuvring, and landing.
If you regularly work in CAD suites such as SolidWorks or Fusion 360 and have experience integrating hobby-grade or professional RF modules, you’ll be able to move fast here. A familiarity with PX4, ArduPilot, or a comparable open firmware stack will be helpful when mapping sensor outputs to the telemetry channel, though I’m open to alternative approaches if you can justify the advantages.
Acceptable deliverables
• Complete 3D CAD assembly with exploded views, BOM, and weight breakdown
• Schematics, PCB Gerbers, and firmware that enable the manual control path plus the telemetry return link
• Short test video or simulation proving stable flight envelope and successful data uplink
I’ll review each stage against weight targets, compliance with real-time data requirements, and overall manufacturability in composites before releasing the next milestone. If you have questions about the flight envelope, preferred radio bands, or any edge cases, let’s sort them out early so we can keep the build timeline tight.
Alongside the physical design, I need a fully documented manual control system that streams real-time telemetry back to the pilot. This includes live battery, GPS, and flight-attitude data rendered on a ground-station UI as well as traditional stick-based navigation for take-off, manoeuvring, and landing.
If you regularly work in CAD suites such as SolidWorks or Fusion 360 and have experience integrating hobby-grade or professional RF modules, you’ll be able to move fast here. A familiarity with PX4, ArduPilot, or a comparable open firmware stack will be helpful when mapping sensor outputs to the telemetry channel, though I’m open to alternative approaches if you can justify the advantages.
Acceptable deliverables
• Complete 3D CAD assembly with exploded views, BOM, and weight breakdown
• Schematics, PCB Gerbers, and firmware that enable the manual control path plus the telemetry return link
• Short test video or simulation proving stable flight envelope and successful data uplink
I’ll review each stage against weight targets, compliance with real-time data requirements, and overall manufacturability in composites before releasing the next milestone. If you have questions about the flight envelope, preferred radio bands, or any edge cases, let’s sort them out early so we can keep the build timeline tight.