Micron Document
ScotMesh RNS Network
LilyGO LoRa32 V1.0

About this board
Maker: LilyGO
Microcontroller: ESP32 Radio: SX1276 / SX1278
Bands: 433 MHz (410–525 MHz), 868 MHz (820–1020 MHz)
Firmware here: RNode firmware 1.86, ScotMesh microReticulum firmware v1.86-scotmesh.6

RNode firmware 1.86
An RNode: a LoRa radio for a computer or phone running Reticulum. The computer or phone sets the radio.

Download
SHA-256: ec04cf97d270e45204d933126665493d0c0af52e33d13ab6df02ae1753e15ae6

Easiest: rnodeconf autoinstall, offline
rnodeconf can flash and set up this board in one go without internet, if you give it the firmware and its release hash first. You need rnodeconf and pyserial from the Tools page. Linux and macOS:

mkdir -p ~/.config/rnodeconf/update/1.86
cp rnode_firmware_lora32v10.zip ~/.config/rnodeconf/update/1.86/
echo "1.86 ec04cf97d270e45204d933126665493d0c0af52e33d13ab6df02ae1753e15ae6" > ~/.config/rnodeconf/update/1.86/rnode_firmware_lora32v10.zip.version
rnodeconf /dev/ttyUSB0 --autoinstall --nocheck --fw-version 1.86
Windows (Command Prompt):

mkdir "%USERPROFILE%\.config\rnodeconf\update\1.86"
copy rnode_firmware_lora32v10.zip "%USERPROFILE%\.config\rnodeconf\update\1.86"
echo 1.86 ec04cf97d270e45204d933126665493d0c0af52e33d13ab6df02ae1753e15ae6> "%USERPROFILE%\.config\rnodeconf\update\1.86\rnode_firmware_lora32v10.zip.version"
rnodeconf COM3 --autoinstall --nocheck --fw-version 1.86
It asks what the board is and which band, flashes it, then does the provisioning below for you. The rest of this section is for doing it by hand.

Flash it: Linux and macOS
Unzip the firmware into its own folder and run the esptool.py that comes inside it. You need Python 3 with pyserial (Tools page).

mkdir lora32v10 && cd lora32v10
python3 -m zipfile -e ../rnode_firmware_lora32v10.zip .
python3 esptool.py --chip esp32 --port /dev/ttyUSB0
--baud 921600 --before default_reset --after hard_reset
write_flash -z --flash_mode dio --flash_freq 80m
--flash_size 4MB
0x1000 rnode_firmware_lora32v10.bootloader
0x8000 rnode_firmware_lora32v10.partitions
0xe000 rnode_firmware_lora32v10.boot_app0
0x10000 rnode_firmware_lora32v10.bin
0x210000 console_image.bin
On a Mac the port looks like /dev/cu.usbserial-0001. If writing fails at 921600 baud, use --baud 115200.
No Python? Use the standalone esptool from the Tools page: in place of python3 esptool.py, run ../esptool-linux-amd64/esptool (or the folder for your Mac or ARM computer).

Flash it: Windows
Put rnode_firmware_lora32v10.zip and esptool-v4.12.0-windows-amd64.zip (Tools page) in the same folder, open Command Prompt there (type cmd in the Explorer address bar and press Enter), then:

tar -xf esptool-v4.12.0-windows-amd64.zip
mkdir lora32v10
tar -xf rnode_firmware_lora32v10.zip -C lora32v10
cd lora32v10
..\esptool-windows-amd64\esptool.exe --chip esp32 --port COM3 ^
--baud 921600 --before default_reset --after hard_reset ^
write_flash -z --flash_mode dio --flash_freq 80m ^
--flash_size 4MB ^
0x1000 rnode_firmware_lora32v10.bootloader ^
0x8000 rnode_firmware_lora32v10.partitions ^
0xe000 rnode_firmware_lora32v10.boot_app0 ^
0x10000 rnode_firmware_lora32v10.bin ^
0x210000 console_image.bin
Your port is in Device Manager under Ports (COM & LPT).

Set up the board (provisioning)
The firmware will not start its radio until the board's EEPROM holds what the board is (product, model, hardware revision) and the hash of the firmware you just flashed. How to flash explains why. With rnodeconf installed (Tools):

rnodeconf -k
rnodeconf /dev/ttyUSB0 -r --product b2 --model bb --hwrev 1
rnodeconf /dev/ttyUSB0 -H 6b8df2602d2d02a56f2aff73a2303b1bb50b264a317cfdaef515ea44fcb5f4c8
Model code by band: ba for 433 MHz (410–525 MHz), bb for 868 MHz (820–1020 MHz). Use the one for your board's band.

The first line makes a signing key; you only need it once on each computer. Skip the second line if the board has been set up before: the EEPROM survives a normal reflash. The third line is needed after every flash. Wait 5 seconds after it before you reset or unplug the board.
On Windows use the COM port instead, for example COM3.

ScotMesh microReticulum firmware v1.86-scotmesh.6
A standalone Reticulum node with its own identity. It needs no computer once it is set up.

Download
SHA-256: 1b7058708e92357dfb6129b8b2960f87699cf95917937a9a30baa682bd510485

Flash it: Linux and macOS
Unzip the firmware into its own folder and run the esptool.py that comes inside it. You need Python 3 with pyserial (Tools page).

mkdir lora32v10 && cd lora32v10
python3 -m zipfile -e ../rnode_firmware_lora32v10.zip .
python3 esptool.py --chip esp32 --port /dev/ttyUSB0
--baud 921600 --before default_reset --after hard_reset
write_flash -z --flash_mode dio --flash_freq 80m
--flash_size 4MB
0x1000 rnode_firmware_lora32v10.bootloader
0x8000 rnode_firmware_lora32v10.partitions
0xe000 rnode_firmware_lora32v10.boot_app0
0x10000 rnode_firmware_lora32v10.bin
On a Mac the port looks like /dev/cu.usbserial-0001. If writing fails at 921600 baud, use --baud 115200.
No Python? Use the standalone esptool from the Tools page: in place of python3 esptool.py, run ../esptool-linux-amd64/esptool (or the folder for your Mac or ARM computer).
The console image is left out on purpose: a ScotMesh node keeps its own data in that part of the flash. To start from scratch (new identity, EEPROM wiped), first run python3 esptool.py --chip esp32 --port /dev/ttyUSB0 erase_flash and then do the provisioning below in full.

Flash it: Windows
Put rnode_firmware_lora32v10.zip and esptool-v4.12.0-windows-amd64.zip (Tools page) in the same folder, open Command Prompt there (type cmd in the Explorer address bar and press Enter), then:

tar -xf esptool-v4.12.0-windows-amd64.zip
mkdir lora32v10
tar -xf rnode_firmware_lora32v10.zip -C lora32v10
cd lora32v10
..\esptool-windows-amd64\esptool.exe --chip esp32 --port COM3 ^
--baud 921600 --before default_reset --after hard_reset ^
write_flash -z --flash_mode dio --flash_freq 80m ^
--flash_size 4MB ^
0x1000 rnode_firmware_lora32v10.bootloader ^
0x8000 rnode_firmware_lora32v10.partitions ^
0xe000 rnode_firmware_lora32v10.boot_app0 ^
0x10000 rnode_firmware_lora32v10.bin
Your port is in Device Manager under Ports (COM & LPT).

Set up the board (provisioning)
The firmware will not start its radio until the board's EEPROM holds what the board is (product, model, hardware revision) and the hash of the firmware you just flashed. How to flash explains why. With rnodeconf installed (Tools):

rnodeconf -k
rnodeconf /dev/ttyUSB0 -r --product b2 --model bb --hwrev 1
rnodeconf /dev/ttyUSB0 -H 62eff668967eba99161fadf1e768e94c6fabfef242c6429111fb4994acaebe40
Model code by band: ba for 433 MHz (410–525 MHz), bb for 868 MHz (820–1020 MHz). Use the one for your board's band.

The first line makes a signing key; you only need it once on each computer. Skip the second line if the board has been set up before: the EEPROM survives a normal reflash. The third line is needed after every flash. Wait 5 seconds after it before you reset or unplug the board.
On Windows use the COM port instead, for example COM3.

Put it on the air
A standalone node needs its radio settings. With internet, the web flasher at rnode.scotmesh.net (Reconfigure) or the RNode Console will set it up, including the node's name and admin settings. Without internet, rnodeconf stores the radio settings and switches the node into transport mode, which is what the web flasher does over USB:

ScotMesh 868 (869.462 MHz, 125 kHz, SF9, 4/5, 17 dBm):
rnodeconf /dev/ttyUSB0 -T --freq 869462500 --bw 125000 --txp 17 --sf 9 --cr 5
ScotMesh 433 (433.775 MHz, 125 kHz, SF8, 4/5, 7 dBm):
rnodeconf /dev/ttyUSB0 -T --freq 433775000 --bw 125000 --txp 7 --sf 8 --cr 5
These are the ScotMesh profiles. Other ScotMesh nodes will only hear you if yours match.