I've now thoroughly reviewed both PDFs. Let me give you a clear summary.
Yes, both USB charging and battery protection are already covered in your battery architecture — they're part of the self-contained battery pack design you've been developing. Here's the breakdown:
The battery pack includes a full USB-C PD charging system built into the electronics bay at the bottom of the scaffold: ppl-ai-file-upload.s3.amazonaws
- USB-C panel-mount port (IP67, on the side of the battery end cap)
- PD trigger board (ZY12PDN or STUSB4531, ~31×15×4mm) — negotiates 20V from any charger 45W–240W automatically
- Boost converter (XL6019, 20V→42V CC/CV) — steps up to pack charge voltage
- Total electronics fit in ~60×45×25mm, tucked into the electronics bay
The key design point: all electronics live on the battery, not in the frame. You pull the battery out, plug your MacBook charger into the USB-C port on the side, charge on the kitchen table. The frame side is 100% passive — just flat copper pads. ppl-ai-file-upload.s3.amazonaws
A 10S BMS is included in the electronics bay, handling: ppl-ai-file-upload.s3.amazonaws
- Overcurrent, overvoltage, undervoltage protection
- Short-circuit and temperature cutoff
- Cell balancing during charge
- Per-cell fusing was deliberately skipped — at 3.5A per cell in 2P, the BMS alone handles everything adequately
The connector design settled on an elevated pad island + recessed pogo pin dock approach: ppl-ai-file-upload.s3.amazonaws
- Frame side: Elevated flat gold pads on a raised "speed bump" — water sheets off, no pooling
- Battery side: 6-pin pogo block recessed deep inside a dock cavity — finger-safe by geometry (IP2X-style)
- 2 power pins + signal/thermistor/comm pins
Your notes confirm the DT dimensions are not locked down yet, and you've been exploring both round and oval options: ppl-ai-file-upload.s3.amazonaws
| Discussed Size | Context |
|---|---|
| 50mm round | Original spec for 2×2 grid of 21700 cells |
| 55–60mm | Referenced for fitting 21700s with BMS/wiring room |
| 43×59mm oval | The 1-2-1 diamond layout (narrower, taller) |
| ~50×65 (your current thinking) | Wider than the diamond, gives more lateral room |
The 50×65 oval gives you more cross-sectional area than the 43×59 diamond and better lateral stiffness for pedaling loads. The tall axis (65mm) resists braking/vertical loads while the narrow axis (50mm) keeps the frame slim between your knees. Since you're building in aluminum (not steel), you have freedom to specify custom oval tubing from the fabricator. ppl-ai-file-upload.s3.amazonaws
The scaffold cage parameters (currently cagew = 53, cageh = 48 in the OpenSCAD file) would need updating to match whatever oval you settle on. With a 50×65 outer and ~2mm wall, you'd have roughly 46×61mm inner bore — plenty of room for the 2×2 cell grid (~43×43mm footprint) plus wiring channel and air gaps. ppl-ai-file-upload.s3.amazonaws
Bottom line: your electronics stack is already specced and costed at $22–38 total for BMS + USB-C PD + boost converter. The DT oval just needs to be finalized around whatever gives comfortable clearance for the scaffold + 1mm air gap on each side. ppl-ai-file-upload.s3.amazonaws
Exactly. This is the shift from being an engineering project to being a product company. You don't build the motor (Bafang), you don't build the battery (Reention), you don't build the lights (LightSKIN), you don't build the controller (KT), you don't build the torque sensor (Bikone). You design how it all comes together — and you own the experience.
What Omera Actually Is Now
The Business Model
This is how every premium brand works:
Bang & Olufsen doesn't make their own DACs or speaker drivers — they source them. They design the enclosure, the interaction, the feeling.
Brompton doesn't make their own brakes, shifters, or tires. They design the fold, the ride, the lifestyle.
Cowboy/VanMoof sourced Bafang motors and generic cells. They sold the app, the look, the brand.[hypeandhyper]
The difference between a €400 AliExpress e-bike and a €2,500 Omera isn't the bill of materials. It's the curation, the integration, the identity, and the story.
Your Immediate Path
Contact Reention — get Coral dock specs + custom battery quote
Set DT diameter based on whatever Reention comes back with
Model the frame in SCAD — now with a simple round DT, which is actually easier
Source everything else — H1E, SFE-SC, G020, KT, Bikone, standard track components
Build one prototype — welded frame, all sourced parts bolted on
Brand it — name, logo, colorway, photography, website, social
Sell the first 10 — pre-orders, Instagram, Oslo cycling community
The engineering is now a bill of materials and an assembly spec, not a multi-year R&D project. The custom battery scaffold, the user-swappable cells, the advanced BMS — that's all Phase 2, when you have revenue, a brand, and customers asking for it.
You just went from building a bike to building a brand. That's the right move.
What Omera Actually Is Now
The Business Model
This is how every premium brand works:
The difference between a €400 AliExpress e-bike and a €2,500 Omera isn't the bill of materials. It's the curation, the integration, the identity, and the story.
Your Immediate Path
The engineering is now a bill of materials and an assembly spec, not a multi-year R&D project. The custom battery scaffold, the user-swappable cells, the advanced BMS — that's all Phase 2, when you have revenue, a brand, and customers asking for it.
You just went from building a bike to building a brand. That's the right move.