Pico Macro Keyboard PCB Design


Fresh-place the entire Pico Macro Keyboard PCB from scratch on a 100 mm × 100 mm rounded-rectangle 4-layer board.
Top side priority:
Keep the top side clean and user-facing.
Place the mechanical key switches in a regular macro-keypad grid with consistent row/column spacing and aligned orientation.
Keep the RGB LEDs visually associated with their corresponding switches and avoid crowding the key grid.
Place rotary encoders and any user-facing controls on the top side in ergonomic positions near the key grid.
Place mounting holes near the board corners and keep them clear of switches and encoders.
Bottom side priority:
Place the Raspberry Pi Pico / MCU module and the majority of supporting electronics on the bottom side.
Group the MCU, flash, crystal/oscillator, regulator/power parts, reset/boot circuitry, USB/support passives, and decoupling capacitors by function.
Keep decoupling capacitors close to their associated IC power pins, crystal/load caps close to the MCU oscillator pins, and power components clustered together.
Minimize estimated routing distance between the bottom-side MCU and the top-side switches, LEDs, and encoders.
Prefer moving support passives on the bottom side rather than contaminating the top-side visual layout.
Placement quality goals:
Resolve overlaps, keep all components inside the board outline, preserve routing channels between the key grid and MCU area, and maintain clean edge/corner clearance.
Use both layers intentionally: top for human-interface components, bottom for dense electronics.
After placement, run DRC/review and report any remaining overlap, off-board, or layer-assignment issues.
I've made a plan, and started work on it.
Prioritize USB edge
Set key spacing
Review placement issues
Mounting hole clearance

J1
U1
C1
Capacitance
0.1uF
C16
Capacitance
15pF
C3
Capacitance
0.1uF
C17
Capacitance
47uF
C4
Capacitance
0.1uF
C8
Capacitance
0.1uF
C25
Capacitance
0.001uF
C24
Capacitance
0.001uF
C6
Capacitance
0.1uF
C27
Capacitance
0.001uF
C21
Capacitance
1nF
C9
Capacitance
0.1uF
C22
Capacitance
0.001uF
C10
Capacitance
0.1uF
C26
Capacitance
0.001uF
C19
Capacitance
0.1uF
C18
Capacitance
47uF
C15
Capacitance
15pF
C5
Capacitance
0.1uF
C2
Capacitance
0.1uF
C23
Capacitance
0.001uF
R12
Resistance
5.6kΩ
R1
Resistance
200 Ω
R11
Resistance
5.6kΩ
R3
Resistance
27 Ω
R4
Resistance
100 Ω
R18
Resistance
470 Ω
R2
Resistance
1 Ω
R10
Resistance
27 Ω
R8
Resistance
100kΩ
R14
Resistance
Resistance
R7
Resistance
1kΩ
R5
Resistance
33 Ω
R19
Resistance
470 Ω
R6
Resistance
100 Ω
R16
Resistance
100kΩ
R13
Resistance
1kΩ
R9
Resistance
100kΩ
R15
Resistance
1kΩ
R17
Resistance
1kΩ
Logo1
VBUS
VSYS
+3V3
XIN
+1V1
QSPI_SCLK
VSYS
STATUS
+3V3
ROW_3
ROW_3
VSYS
SW_ENCODER_1
ROW_1
USB_DM
+3V3
+1V1
A_ENCODER_1
GPIO29_ADC3
+3V3
USB_DP
USB_DP
+3V3
ROW_0
WS2812_DATA
SWDIO
XOUT
B_ENCODER_1
VSYS
SW_ENCODER_2
COLUMN_3
QSPI_SD3
QSPI_SD2
QSPI_SS
VSYS
ADC_VREF
WS2812_DATA
SW_ENCODER_2
VSYS
COLUMN_0
VSYS
SWCLK
LINEAR
+3V3
GPIO29_ADC3
+3V3
B_ENCODER_2
GPIO23
RUN
QSPI_SD2
QSPI_SD1
A_ENCODER_2
VSYS
SW_ENCODER_1
A_ENCODER_2
+1V1
ROW_1
VSYS
QSPI_SD1
+3V3
STATUS
VSYS
ROW_2
SWCLK
+3V3
SWDIO
GPIO23
COLUMN_3
QSPI_SS
XOUT
QSPI_SD0
+3V3
ROW_0
+3V3
+3V3
B_ENCODER_2
USB_DM
+3V3
VSYS
XIN
COLUMN_1
QSPI_SD0
QSPI_SD3
+3V3
COLUMN_2
GPIO24
VSYS
A_ENCODER_1
ROW_2
VSYS
QSPI_SCLK
COLUMN_0
GPIO24
3V3_EN
B_ENCODER_1
LINEAR
COLUMN_1
+3V3
COLUMN_2
VSYS
+3V3
U11
H3
U8
U5
H1
U7
U12
H4
U14
U4
U6
U9
U15
U13
H2
U10
SW1
SW11
SW12
SW10
SW8
SW3
SW13
SW4
SW2
SW6
SW9
SW5
SW7
D10
D3
RV1
Resistance
10kΩ
C11
Capacitance
0.1uF
D2
SW14
D11
C13
Capacitance
4.7uF
C12
Capacitance
4.7uF
D13
D12
C14
Capacitance
4.7uF
D7
D4
C20
Capacitance
4.7uF
D5
D9
D6
SW15
D8
C7
Capacitance
4.7uF
R23
Resistance
10kΩ
R22
Resistance
10kΩ
Q1
R24
Resistance
10kΩ
R21
Resistance
10kΩ
U2
PROG
R25
Resistance
10kΩ
R20
Resistance
10kΩ
L2
Inductance
2.2uH
Y1
Frequency
12MHz
D1
LED1
L1
Inductance
Inductance
U3
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