PCB Design for Gut Monitoring Wearable
Budget: ₹12,500 – ₹37,500 INR
I already have the concept for a mental-productivity wearable that centres on gut monitoring, and now I need a hardware specialist to turn that idea into a reliable, compact PCB we can iterate on quickly.
The first phase is straightforward: translate my existing schematics and component preferences into a manufacturable board that cleanly integrates the gut-monitoring sensor array, power management, BLE module and a discreet haptic feedback driver. Heart-rate, sleep or stress tracking are not priorities right now; everything hinges on accurate gut data capture and seamless data transmission to a companion app.
Once the initial board is spun, I want to move into short, continuous prototyping cycles—fabricate, test, tweak—until we arrive at a form factor and performance envelope that feels invisible to the user yet delivers robust, noise-free readings. I’ll provide access to my Figma mechanical mock-ups, firmware stubs and current component short-list during a quick kickoff call.
Deliverables – each build cycle should end with:
• Updated schematic, Gerber files and BOM
• Assembled sample (or clear hand-off package if you’re remote)
• Brief test report highlighting signal quality, power draw and thermal behaviour
Altium, KiCad or Eagle are all acceptable as long as the file set is complete and revision-controlled. If you bring experience with low-power design, flex-PCB layouts or micro-impedance sensing, you’ll feel right at home here. Let’s set up that short call and start pushing this device toward pilots.
The first phase is straightforward: translate my existing schematics and component preferences into a manufacturable board that cleanly integrates the gut-monitoring sensor array, power management, BLE module and a discreet haptic feedback driver. Heart-rate, sleep or stress tracking are not priorities right now; everything hinges on accurate gut data capture and seamless data transmission to a companion app.
Once the initial board is spun, I want to move into short, continuous prototyping cycles—fabricate, test, tweak—until we arrive at a form factor and performance envelope that feels invisible to the user yet delivers robust, noise-free readings. I’ll provide access to my Figma mechanical mock-ups, firmware stubs and current component short-list during a quick kickoff call.
Deliverables – each build cycle should end with:
• Updated schematic, Gerber files and BOM
• Assembled sample (or clear hand-off package if you’re remote)
• Brief test report highlighting signal quality, power draw and thermal behaviour
Altium, KiCad or Eagle are all acceptable as long as the file set is complete and revision-controlled. If you bring experience with low-power design, flex-PCB layouts or micro-impedance sensing, you’ll feel right at home here. Let’s set up that short call and start pushing this device toward pilots.