Title: Lead Engineer for Standalone Holographic Bracelet - RK3566 - 100% Optimized A-to-Z Technical Package
Budget: €1,500 – €3,000 EUR
Project Objective:
Develop a 100% functional, industrial-ready prototype of a wearable holographic smartphone (bracelet). The goal is high-end performance (Mid-range Samsung level) with zero wasted costs on software licenses. I need a perfect balance between high-quality optics and cost-optimized hardware.
Core Hardware & Memory:
Processor: RK3566 (Optimized for performance/thermal balance).
Memory: 8 GB RAM and 128 GB Storage (Must be fast and reliable).
Holographic Engine: Hybrid Laser/Optical system with Japanese DCRA plates. Target: Sharp 6-inch floating image at 15cm distance.
Sensors: Full sensor suite (Ambient Light, Proximity, GPS, Gyroscope) for a 100% smartphone experience.
Zero Extra Costs & Quality Optimization:
Software: Use Open Source Android (AOSP) + Google Services. I will not pay for any software licenses. Everything must be functional out of the box for free.
Hardware Efficiency: Select components that offer the best "Price-to-Performance" ratio to keep mass production costs low without sacrificing quality.
MANDATORY DELIVERABLES (The "No-Excuse" List):
You must deliver the prototype plus a complete technical package from A to Z. If a single screw is missing from the documentation, the project is incomplete:
Full Bill of Materials (BOM): A complete list of EVERY part (from the RK3566 chip to the smallest screw and connector) with supplier links.
Assembly Blueprints: Detailed guide on how to assemble the optics, laser, and PCB into the 4cm bracelet.
Optical Engineering Files: Exact measurements and angles for the 15cm projection.
Software Source: Full OS image and instructions on how to replicate/flash the software for free.
Final Requirement:
I want a high-quality, perfectly working device in my hands. It must include every single detail from the "A" of the architecture to the "Z" of the final screw. Total transparency is mandatory.
Develop a 100% functional, industrial-ready prototype of a wearable holographic smartphone (bracelet). The goal is high-end performance (Mid-range Samsung level) with zero wasted costs on software licenses. I need a perfect balance between high-quality optics and cost-optimized hardware.
Core Hardware & Memory:
Processor: RK3566 (Optimized for performance/thermal balance).
Memory: 8 GB RAM and 128 GB Storage (Must be fast and reliable).
Holographic Engine: Hybrid Laser/Optical system with Japanese DCRA plates. Target: Sharp 6-inch floating image at 15cm distance.
Sensors: Full sensor suite (Ambient Light, Proximity, GPS, Gyroscope) for a 100% smartphone experience.
Zero Extra Costs & Quality Optimization:
Software: Use Open Source Android (AOSP) + Google Services. I will not pay for any software licenses. Everything must be functional out of the box for free.
Hardware Efficiency: Select components that offer the best "Price-to-Performance" ratio to keep mass production costs low without sacrificing quality.
MANDATORY DELIVERABLES (The "No-Excuse" List):
You must deliver the prototype plus a complete technical package from A to Z. If a single screw is missing from the documentation, the project is incomplete:
Full Bill of Materials (BOM): A complete list of EVERY part (from the RK3566 chip to the smallest screw and connector) with supplier links.
Assembly Blueprints: Detailed guide on how to assemble the optics, laser, and PCB into the 4cm bracelet.
Optical Engineering Files: Exact measurements and angles for the 15cm projection.
Software Source: Full OS image and instructions on how to replicate/flash the software for free.
Final Requirement:
I want a high-quality, perfectly working device in my hands. It must include every single detail from the "A" of the architecture to the "Z" of the final screw. Total transparency is mandatory.