There’s still a moderate amount left before this is a full manufacturable board. The first-pass schematic is started, but we are not ready for PCB layout/manufacturing yet.
Main things still left to figure out
Display connection
Exact Waveshare 6.25" DSI LCD-B connector pinout
DSI lane count
Backlight power/current
Touch interface, if any
Correct FPC connector part
Battery and power
Exact 10,000 mAh battery pack
Battery connector/current rating
Battery protection/NTC details
Confirm charger settings for that pack
Validate 5 V boost converter can handle CM5 + LTE + display + USB-A peaks
Protection parts
USB-C ESD protection
USB-A USB 3.0 ESD protection
HDMI ESD protection
SIM card ESD protection
Possibly battery/input fuse or protection
Regulator final values
Final inductor part numbers
Capacitor voltage/package choices
TPS61288 compensation check
Thermal/current margin check
Layout-sensitive switching-node constraints
CM5 details
Decide whether to add RTC backup for CM5 VBAT
Decide whether to expose nRPIBOOT/service pads
Confirm GPIO assignments for LTE, audio, IMU, keyboard wake
LTE/SIM7600 details
Confirm exact SIM7600G-H-M.2 hardware guide handling for VDD_AUX and VDD_1V8
Main-board FPC is planned, but keyboard PCB itself still needs to be designed
Need switch/keycap sourcing
Need keyboard RP2040 schematic/firmware pin map finalized
Mechanical basics
Rough board size
Port locations
Battery location
Screen/keyboard placement constraints
Mounting holes
Antenna placement/keepouts
PCB layout setup
Stackup choice, likely 6-layer because of USB 3.0, HDMI, MIPI DSI, RF, and power density
Controlled-impedance rules
Differential-pair rules
Power trace/current rules
Thermal copper areas
Bring-up and manufacturing prep
Test pads
Debug headers
Board bring-up checklist
BOM cleanup
Footprint review
DRC
Gerbers/BOM/pick-and-place
My estimate
Schematic is roughly 55–65% figured out.
Full board readiness is more like 30–40% complete, because layout, power validation, protection, display details, and mechanical constraints are still significant.
The biggest blockers are:
Exact display connector/pinout
Exact battery pack
Power validation for the 5 V rail
ESD/protection parts
Mechanical board size/port placement
Keyboard PCB design
Once those are decided, the remaining work becomes much more straightforward.
Wirelessly connects nets on schematic. Used to organize schematics and separate functional blocks. To wirelessly connect net portals, give them same designator. #portal
General Purpose Thick Film Standard Power
and High-Power Chip Resistor
47 kOhms ±5% 0.125W, 1/8W Chip Resistor 0805 (2012 Metric) Automotive AEC-Q200 Thick Film
Features:
- RMCF – standard power ratings
- RMCP – high power ratings
- Nickel barrier terminations standard
- Power derating from 100% at 70ºC to zero at +155ºC
- RoHS compliant, REACH compliant, and halogen free
- AEC-Q200 compliant