SuperXBit192
kevinjuszczyk·SuperXBit192·kicad/badgesao.kicad_pcb
About the SuperXBit192 PCB
SuperXBit192 is an open source RP2040/RP2350 PCB design by kevinjuszczyk, published on GitHub under the GPL-3.0 license. It is a 6-layer board measuring 38.1 × 50.8 mm, with 269 components from 35 distinct parts.
Its main chip is the RP2040, from the RP2040/RP2350 family. Other key parts include the XC6206P332MR-G, ZD25WQ32CEIGR, LSM6DS3TR-C and TPS61022RWUR. By type, the board carries 199 diodes, 31 capacitors, 18 resistors, 8 switches, 5 ICs and 3 connectors.
From the project
Lo-fi handheld gaming
Main components on the SuperXBit192
SuperXBit192 bill of materials (BOM)
269 components, 35 distinct parts — part numbers from the project's BOM.
| Qty | Part | Footprint | Refs |
|---|---|---|---|
| 1 | XC6206P332MR-G 3V3LDO | SOT-23 | U1 |
| 1 | ZD25WQ32CEIGR 32Mb QSPI | Winbond_USON-8-1EP_3x2mm_P0.5mm_EP0.2x1.6mm | U2 |
| 1 | LSM6DS3TR-C | LGA-14_3x2.5mm_P0.5mm_LayoutBorder3x4y | U3 |
| 1 | TPS61022RWUR TPS61022 | Texas_RWU0007A_VQFN-7_2x2mm_P0.5mm | U4 |
| 1 | RP2040 | QFN-56-1EP_7x7mm_P0.4mm_EP3.2x3.2mm | U6 |
| 1 | MMST3904 NPN_BEC | SOT-323_SC-70 | Q1 |
| 1 | 75869-131LF Simple_Addon_v2 | Simple_Addon_v2-SAO-2x3 | X1 |
| 1 | X322512MSB4SI 12M | Crystal_SMD_SeikoEpson_FA238-4Pin_3.2x2.5mm | Y1 |
| 1 | M50-3530342 DISP_DBG | PinHeader_1x03_P1.27mm_Vertical | J1 |
| 1 | 61300311121 DEBUG | PinHeader_1x03_P2.54mm_Vertical | J2 |
| 1 | U263-163N-4BLS1735 USB_C_Receptacle_USB2.0_16P | USB_C_Receptacle_GCT_USB4105-xx-A_16P_TopMnt_Horizontal | J3 |
| 1 | FUET-5020 BUZZER | CMT5023SSMTTR | LS1 |
| 1 | PTS815SJM250SMTRLFS UP | SW_SPST_PTS810 | SW1 |
| 1 | PTS815SJM250SMTRLFS DOWN | SW_SPST_PTS810 | SW2 |
| 1 | PTS815SJM250SMTRLFS LEFT | SW_SPST_PTS810 | SW3 |
| 1 | PTS815SJM250SMTRLFS RIGHT | SW_SPST_PTS810 | SW4 |
| 1 | PTS815SJM250SMTRLFS B | SW_SPST_PTS810 | SW5 |
| 1 | PTS815SJM250SMTRLFS A | SW_SPST_PTS810 | SW6 |
| 1 | PTS815SJM250SMTRLFS RESET | SW_SPST_PTS810 | SW7 |
| 1 | PTS815SJM250SMTRLFS BOOTSEL | SW_SPST_PTS810 | SW8 |
Show 15 more
| Qty | Part | Footprint | Refs |
|---|---|---|---|
| 192 | XL-1615RGBC-WS2812B WS2812B | LED_WS2812B-1615_PLCC4_1.6x1.5mm | D1, D2, D3, D4, D5, D6, D7, D8 +184 |
| 1 | 1N5819WS 1N5819 | D_SOD-323 | D193 |
| 1 | SM4007PL 1N4007 | D_SOD-123F | D194 |
| 2 | KT-0603R LED | D_0603_1608Metric | D195, D197 |
| 3 | 1N4148WT 1N4148 | D_SOD-523 | D196, D198, D199 |
| 1 | 1239AS-H-R47M=P2 470n | L_1008_2520Metric | L1 |
| 26 | CL05A105KA5NQNC 1u | C_0402_1005Metric | C1, C2, C3, C4, C5, C6, C7, C8 +18 |
| 3 | CL21A226MAQNNNE 22u | C_0805_2012Metric | C16, C27, C28 |
| 2 | 0402CG150J500NT 15p | C_0402_1005Metric | C29, C30 |
| 6 | 0402WGF5101TCE 5k1 | R_0402_1005Metric | R1, R5, R7, R14, R17, R18 |
| 5 | 0402WGF1001TCE 1k | R_0402_1005Metric | R2, R3, R4, R12, R16 |
| 1 | 0402WGF2003TCE 200k | R_0402_1005Metric | R6 |
| 2 | 0402WGF330JTCE 33 | R_0402_1005Metric | R8, R10 |
| 1 | 0402WGF3302TCE 33k | R_0402_1005Metric | R9 |
| 3 | 0402WGF3300TCE 330 | R_0402_1005Metric | R11, R13, R15 |
SuperXBit192 design files
The KiCad project lives in the kevinjuszczyk/SuperXBit192 repository on GitHub; these links point at the commit this page was built from.
SuperXBit192: common questions
What microcontroller does the SuperXBit192 use?
The SuperXBit192 is built around the RP2040, from the RP2040/RP2350 family.
How big is the SuperXBit192 PCB?
The SuperXBit192 measures 38.1 × 50.8 mm, has 6 copper layers and is 1.6 mm thick.
How many components are on the SuperXBit192?
269 components, from 35 distinct parts, with part numbers taken from the project's own BOM. The full bill of materials is listed on this page.
Where can I download the SuperXBit192 design files?
From the kevinjuszczyk/SuperXBit192 repository on GitHub, which has the KiCad layout, the schematic and the BOM; the links under Design files point to each one.
Can I use the SuperXBit192 design in my own project?
Yes, under the terms of its GPL-3.0 license, which kevinjuszczyk chose for the repository.
Can I test firmware for the SuperXBit192 without the hardware?
Yes. HardLabs builds a simulation of the board from its netlist and BOM, so you can run and debug RP2040/RP2350 firmware against it before you order a PCB.
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