Subject: REQUIREMENTS 100% Proven Optical Simulation (15cm Projection - ASKA3D + RK3566) ​Hi, ​I am looking for a professional optical simulation to guarantee 100% success for a holographic wearable prototype. I need the mathematical certainty that this d

Job ID: 40250299

Budget: €250 – €750 EUR

Subject: REQUIREMENTS 100% Proven Optical Simulation (15cm Projection - ASKA3D + RK3566)
​Hi,
​I am looking for a professional optical simulation to guarantee 100% success for a holographic wearable prototype. I need the mathematical certainty that this design works before I purchase any hardware.
​Technical Specifications:
​Target Image Size: 6.0-inch diagonal (Smartphone size).
​Projection Height: The image must float exactly 15 cm (6 inches) ABOVE the device surface.
​Display Source: 6.0-inch High-Brightness mobile display.
​Processing Unit: Rockchip RK3566 (8GB RAM / 64GB ROM).
​Optics: ASKA3D Dihedral Corner Reflector Array (DCRA) plate.
​Interaction: ToF sensor for mid-air touch mapping (6-inch area).
​Mandatory Deliverables (Required for 100% functional proof):
​Folded Optics Simulation: Design a "folded optical path" (using internal mirrors) to achieve the 15cm projection height while keeping the bracelet wearable.
​Zemax Source Files (.zmx): I strictly require the original working files to verify the results with my assembly team.
​Exact Assembly Coordinates: Precise X, Y, Z distances and tilt angles for the display, internal mirror, and ASKA3D plate.
​Proof of Performance: Guarantee that the image is sharp, bright, and without distortions at the 15cm focal point.
​3D Visualization: A render showing the 6-inch hologram floating 15cm above the arm with touch interaction.
​My Requirement:
I need the mathematical proof that this setup is 100% functional and ready for assembly. I will only release the milestone if the simulation delivers the exact coordinates and the original .zmx files.
​Please confirm if you have experience with ASKA3D/DCRA technology and if you can provide this 100% functional guarantee.