OpenRX-Lite-UFL
tetraethylmethane·NIDAR-RescueSwarm·pcb/OpenRX-Lite-UFL-main/hardware/OpenRX-Lite-UFL.kicad_pcb
About the OpenRX-Lite-UFL PCB
OpenRX-Lite-UFL is an open source ESP32 PCB design by tetraethylmethane, published on GitHub. It is a 6-layer board measuring 10 × 11.5 mm, with 47 components from 28 distinct parts.
Its main chip is the ESP32-C3, from the ESP32 family. Other key parts include the TLV75533PDQNR and SX1281IMLTRT. By type, the board carries 25 capacitors, 5 test points, 4 inductors, 4 resistors, 3 ICs and 1 crystal.
It belongs with the rf & radio, iot & wireless and wearables designs in this gallery.
From the project
Open-source 2.4 GHz ExpressLRS receiver for small FPV aircraft. OpenRX Lite-UFL combines an ESP32-C3 and SX1281 with a U.FL link-antenna connector in a 10.0 x 11.5 mm board.
Open-source 2.4 GHz ExpressLRS receiver for small FPV aircraft. OpenRX Lite-UFL combines an ESP32-C3 and SX1281 with a U.FL link-antenna connector in a 10.0 x 11.5 mm board.
Technical write-up, part list and layout constraints: AGENTS.md.
What pairs with what, and what is available: opendrone.be.
Hardware licensed under CERN-OHL-S-2.0, see LICENSE.

Main components on the OpenRX-Lite-UFL
OpenRX-Lite-UFL bill of materials (BOM)
47 components, 28 distinct parts — part numbers from the project's BOM.
| Qty | Part | Footprint | Refs |
|---|---|---|---|
| 1 | ESP32-C3 | QFN-32-1EP_5x5mm_P0.5mm_EP3.7x3.7mm | U1 |
| 1 | TLV75533PDQNR TI | X2SON-4_L1.0-W1.0-P0.65-TL-EP | U2 |
| 1 | SX1281IMLTRT SEMTECH | QFN-24_L4.0-W4.0-P0.50-TL-EP2.6 | U3 |
| 1 | CJ17-400001010B20 JSCJ | CRYSTAL-SMD_4P-L1.6-W1.2-BL | X1 |
| 1 | U.FL-R-SMT-1(80) Conn_Coaxial HRS | U.FL_Hirose_U.FL-R-SMT-1_Vertical | J1 |
| 1 | 2450AT18A100E Johanson Dielectrics | ANT-SMD_L3.2-W1.6 | AE1 |
| 1 | 2450FM07D0034T JOHANSON(约翰逊) | FILTER-SMD_4P-L1.0-W0.5-L | FL1 |
| 1 | OW7EL89CENUNFAYLC-52M YXC Crystal Oscillators | OSC-SMD_4P-L2.0-W1.6-BL_TXC_7Z | OSC1 |
| 1 | RX | SolderPad_1.2x2.0mm | TP1 |
| 1 | TX | SolderPad_1.2x2.0mm | TP2 |
| 1 | 5V | SolderPad_1.2x2.0mm | TP3 |
| 1 | GND | SolderPad_1.2x2.0mm | TP4 |
| 1 | BOOT | SolderPad_1.2x2.0mm | TP5 |
| 1 | XL-1010RGBC-2812B XL-1010RGBC-WS2812B XINGLIGHT | LED-SMD_4P-L1.0-W1.0-TL_XL-1010RGBC-WS2812B | D1 |
| 1 | LQP03TN24NH02D 24nH muRata | L_0201_0603Metric | L1 |
| 1 | LQP03TN2N5C02D 2.5nH muRata | L_0201_0603Metric | L2 |
| 1 | LQP03TN2N0B02D 2.0nH muRata | L_0201_0603Metric | L3 |
| 1 | 15uH | L_0805_2012Metric | L4 |
| 2 | GRM0335C1H150JA01D 15pF muRata | C_0201_0603Metric | C1, C3 |
| 6 | GRM033R61A105ME44D 1uF muRata | C_0201_0603Metric | C4, C10, C15, C23, C25, C28 |
Show 8 more
| Qty | Part | Footprint | Refs |
|---|---|---|---|
| 7 | GRM033R61E104KE14D 100nF muRata | C_0201_0603Metric | C5, C6, C9, C12, C13, C14, C17 |
| 2 | CL05A106MQ5NUNC 10uF Samsung Electro-Mechanics | C_0402_1005Metric | C8, C16 |
| 1 | GRM155R60J106ME44D 10uF muRata | C_0402_1005Metric | C11 |
| 1 | 0201B102K500NT 1nF FH | C_0201_0603Metric | C19 |
| 1 | GRM033R60J474KE90D 470nF muRata | C_0201_0603Metric | C20 |
| 2 | GRM0335C1H1R2BA01D 1.2pF muRata | C_0201_0603Metric | C21, C22 |
| 3 | GRM033R61A103KA01J 10nF muRata | C_0201_0603Metric | C24, C26, C27 |
| 4 | RC0201FR-0710KL 10k YAGEO | R_0201_0603Metric | R2, R3, R4, R5 |
OpenRX-Lite-UFL design files
The KiCad project lives in the tetraethylmethane/NIDAR-RescueSwarm repository on GitHub; these links point at the commit this page was built from.
OpenRX-Lite-UFL: common questions
What microcontroller does the OpenRX-Lite-UFL use?
The OpenRX-Lite-UFL is built around the ESP32-C3, from the ESP32 family.
How big is the OpenRX-Lite-UFL PCB?
The OpenRX-Lite-UFL measures 10 × 11.5 mm, has 6 copper layers and is 1 mm thick.
How many components are on the OpenRX-Lite-UFL?
47 components, from 28 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 OpenRX-Lite-UFL design files?
From the tetraethylmethane/NIDAR-RescueSwarm 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 OpenRX-Lite-UFL design in my own project?
The repository has no license, so all rights stay with tetraethylmethane. Use it as a reference, and ask the author before reusing the design.
Can I test firmware for the OpenRX-Lite-UFL without the hardware?
Yes. HardLabs builds a simulation of the board from its netlist and BOM, so you can run and debug ESP32 firmware against it before you order a PCB.
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