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Today’s video is Jason walking you through what it actually takes to build the world’s first electric jet kayak. Not the highlight reel. The real process. You will see how FluxJet parts evolve from early 3D-printed test pieces, to functional prototypes, to final production components that can be manufactured consistently and survive real marine use. He breaks down the progression of key systems like the jet drive, steering assembly, pedals and control hardware, the kill switch, ride plate revisions (including drainage details most people never think about), the 360 light evolution, and the battery box and wiring approach that’s designed to make setup simple and reliable. If you’re new here and want more context, here are a few related videos that connect directly to what Jason references in this episode: Inside the FluxJet story and what makes the platform different: • Is FluxJet Legit? Inside the World’s First... On-the-water testing and real-world ride footage: • FluxJet Kayak On the Water Review! Real-Wo... A progress update with testing results and where the build is headed: • FluxJet Kayak End-of-2025 Testing Results ... Speed and power setup testing (voltage and performance comparisons): • FluxJet Speed Trials: 12V vs 24V vs Jet Dr... Lifestyle use on the water with real fishing-focused footage: • @wolf_of_walmart All Day FluxJet Fishin... Jason also teases a fun test near the start: using a standard 5Ah power tool battery with an adapter cable to see how far the kayak can go. Drop your guess in the comments and we’ll post the results in the next video. 0:00 Friday shop update + what this video covers 0:20 Power tool battery challenge (5Ah DeWalt) 0:59 Why FluxJet is a progression, not overnight 1:20 Prototype progression: 3D print to testable parts 2:16 DFM explained: making parts mold-ready and scalable 3:01 Steering assembly evolution (printed to molded) 3:47 One-piece steering line + pedal adjustment system 4:33 Handle evolution + ball detent design 5:06 Wear testing results + brass insert upgrade 5:36 PCB integration + cord set details 5:56 Kill switch evolution (test part to production) 6:12 Ride plate evolution + drain valves for pockets 7:07 360 light project overview (versions 1 and 2) 8:03 Final 360 light redesign + port relocation for protection 8:47 First run mold defects + corrected production run 9:25 NOCO battery box choice + how it ships rigged 10:20 Breaker spec + wiring and non-proprietary connector 10:54 Carbon fiber control panel: battery meter, USB, lights 12:10 Accessory terminals + regulator (17V to 60V down to 12V) 12:32 Solving wiring chaos: one-piece IP68 harness 14:12 In-house gaskets + heavy-duty track nuts 15:24 Rod holder delete plate + mounting accessories 16:04 Cable pass-through gasket (no drilling) 17:31 Jet drive stator: prototype vs injection molded production 18:51 Tooling cost realities + first production parts 20:10 Spacer pieces and extrusion challenges 21:18 Production prep update + January/February readiness 21:37 QC fix: steering cable routing consistency 22:46 Final status, remaining tweaks, and next updates 💬 Got questions or ideas for future updates? Drop them in the comments — we’re listening! 👉 Learn more: https://www.fluxjetkayaks.com 📲 Follow for exclusive updates & behind-the-scenes content: Instagram: / fluxjetkayaks TikTok: / fluxjetkayaks Facebook: / fluxjetkayaks X (Twitter): https://www.x.com/fluxjetkayaks