Flying byte v1
PanBabinicz·ghost-feather·hardware/flying-byte-v1/flying-byte-v1.kicad_pcb
About the Flying byte v1 PCB
Flying byte v1 is an open source STM32 PCB design by PanBabinicz, published on GitHub. It is a 4-layer board measuring 52 × 25 mm, with 43 components from 23 distinct parts.
Its main chip is the STM32WB55CEU6, from the STM32 family. Other key parts include the USBLC6-2SC6 and MIC5365-3.3YD5-TR. By type, the board carries 19 capacitors, 9 resistors, 3 ICs, 3 connectors, 3 inductors and 2 crystals.
It belongs with the dev boards & breakouts designs in this gallery.
From the project
- Anaconda – a large distribution that includes many preinstalled scientific packages. - Miniconda – a lightweight version that installs only Conda and Python.
- Anaconda – a large distribution that includes many preinstalled scientific packages. - Miniconda – a lightweight version that installs only Conda and Python.
- Dependency management – automatically installs required libraries. - Environment isolation – different projects can use different package versions. - Cross-language support – works with Python, R, and other tools. - Reproducibility – environments can be exported and recreated.
Main components on the Flying byte v1
Flying byte v1 bill of materials (BOM)
43 components, 23 distinct parts — part numbers from the project's BOM.
| Qty | Part | Footprint | Refs |
|---|---|---|---|
| 1 | STM32WB55CEU6 | QFN-48-1EP_7x7mm_P0.5mm_EP5.6x5.6mm | U1 |
| 1 | USBLC6-2SC6 USBLC6-2SC6_MOD | SOT-23-6 | U2 |
| 1 | MIC5365-3.3YD5-TR MIC5365-3.3YD5 | SOT-23-5 | U3 |
| 1 | NX2016SA-32M-EXS00A-CS06465 32MHz | Crystal_SMD_2016-4Pin_2.0x1.6mm | X1 |
| 1 | NX2012SA-32.768K-STD-MUB-1 32kHz768 | Crystal_SMD_2012-2Pin_2.0x1.2mm | X2 |
| 1 | U.FL-R-SMT(01) Conn_Coaxial | U.FL_Hirose_U.FL-R-SMT-1_Vertical | J1 |
| 1 | USB4105-GF-A USB_C_Receptacle_USB2.0 | USB_C_Receptacle_GCT_USB4105-xx-A_16P_TopMnt_Horizontal | J3 |
| 1 | 53048-0410 Conn_01x04 | Molex_PicoBlade_53048-0410_1x04_P1.25mm_Horizontal | J4 |
| 1 | DLF162500LT-5028A1 | DLF162500LT-5028A1 | FLT1 |
| 1 | RS282G05A3SMRT SW_Push | SW_SPST_CK_RS282G05A3 | SW1 |
| 1 | FHR1105P-TR LED | LED_0402_1005Metric | D1 |
| 1 | FHY1105P-TR LED | LED_0402_1005Metric | D2 |
| 1 | LQG15WZ10NJ02D 10n | L_0402_1005Metric | L1 |
| 1 | LQM21FN100M80L 10u | L_0805_2012Metric | L2 |
| 1 | LQG15HS2N7S02D 2n7 | L_0402_1005Metric | L3 |
| 5 | GRT188R61E475KE13D 4u7 | C_0603_1608Metric | C1, C2, C3, C10, C14 |
| 10 | 885012205092 100n | C_0402_1005Metric | C4, C5, C6, C7, C8, C9, C11, C12 +2 |
| 1 | GRM1555C1HR80BA01D 0p8 | C_0402_1005Metric | C15 |
| 1 | GRM1555C1HR30WA01D 0p3 | C_0402_1005Metric | C16 |
| 2 | C0402C100J5RAC 10p | C_0402_1005Metric | C17, C18 |
Show 3 more
| Qty | Part | Footprint | Refs |
|---|---|---|---|
| 5 | RNCF0402BKE220R 220R | R_0402_1005Metric | R1, R2, R3, R4, R9 |
| 3 | RNCF0402BKE5K10 5k1 | R_0402_1005Metric | R5, R6, R8 |
| 1 | MCS04020Z0000ZE000 0 | R_0402_1005Metric | R7 |
Flying byte v1 design files
The KiCad project lives in the PanBabinicz/ghost-feather repository on GitHub; these links point at the commit this page was built from.
Flying byte v1: common questions
What microcontroller does the Flying byte v1 use?
The Flying byte v1 is built around the STM32WB55CEU6, from the STM32 family.
How big is the Flying byte v1 PCB?
The Flying byte v1 measures 52 × 25 mm, has 4 copper layers and is 1.58 mm thick.
How many components are on the Flying byte v1?
43 components, from 23 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 Flying byte v1 design files?
From the PanBabinicz/ghost-feather 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 Flying byte v1 design in my own project?
The repository has no license, so all rights stay with PanBabinicz. Use it as a reference, and ask the author before reusing the design.
Can I test firmware for the Flying byte v1 without the hardware?
Yes. HardLabs builds a simulation of the board from its netlist and BOM, so you can run and debug STM32 firmware against it before you order a PCB.
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