Made working app; updated README with instructions on how to flash
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2026-09-07 19:31:51 -04:00
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# Pico Time # Pico Time
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A [MicroPython](https://micropython.org/) app to display local time on an SSD1306 display. A [MicroPython](https://micropython.org/) app to display local time on an SSD1306 display.
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### Requirements ### Requirements
* [MicroPython](https://micropython.org/download/) - MicroPython downloads * [MicroPython](https://micropython.org/download/) - MicroPython downloads
* [mpremote](https://docs.micropython.org/en/latest/reference/mpremote.html) - MicroPython remote serial tool
* (Linux users) Your user should be a part of the `dialout` group
### Steps ### Steps
1. Flash your Raspberry Pi Pico with MicroPython. 1. Connect your SSD1306 display to your Pico.
2. Copy `config.example.py` to `config.py` and edit the settings to match your environment. 2. Connect your Pico to your PC via a micro-USB to USB type-A cable.
3. Copy `main.py` and `config.py` to the root of the filesystem on the Pico. 3. [Flash your Raspberry Pi Pico with MicroPython](https://docs.micropython.org/en/latest/rp2/tutorial/reset.html).
4. Connect the SSD1306 display to your Pico and power on. a. This has been tested with MicroPython 1.29, but other versions should work.
4. Clone this git repository: `git clone https://git.metaunix.net/BitGoblin/pico-time`.
5. `cd` into the repo: `cd pico-time`.
6. Copy `config.example.py` to `config.py` and edit the settings to match your environment.
7. Copy the Python code over to the Pico:
a. `mpremote cp main.py :main.py`
b. `mpremote cp config.py :config.py`
8. Reset the Pico: `mpremote reset`
If it worked you should see the display show a message about connecting to WiFi, then syncing time and finally displaying the local time. If it failed, you can monitor the app via `mpremote repl` or using an IDE like [Thonny](https://thonny.org/).
## License ## License
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# Wi-Fi credentials # Wi-Fi credentials
WIFI_SSID = "YourSSID" # Set this to your Wi-Fi network name WIFI_SSID = "YourSSID" # Set this to your Wi-Fi network name
WIFI_PASS = "YourPassword" # Set this to your Wi-Fi network password WIFI_PASSWORD = "YourPassword" # Set this to your Wi-Fi network password
# NTP settings # Timezone settings
NTP_HOST = "time.google.com" # Set this to your desired NTP server UTC_OFFSET = -5 # Set this to your desired NTP server
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import network
import ntptime
import time
from machine import Pin, I2C
import ssd1306
# --- Configuration ---
try:
import config as Config
except ImportError:
print("ERROR: config.py not found.")
print("Create config.py on the device with your Wi-Fi and NTP settings.")
while True:
time.sleep(2)
# --- Hardware Setup ---
i2c = I2C(0, sda=Pin(16), scl=Pin(17), freq=400000)
oled = ssd1306.SSD1306_I2C(128, 64, i2c)
def display_message(line1, line2=""):
oled.fill(0)
oled.text(line1, 0, 16)
oled.text(line2, 0, 32)
oled.show()
# --- Wi-Fi Connection ---
display_message("Connecting to", "Wi-Fi...")
wlan = network.WLAN(network.STA_IF)
wlan.active(True)
wlan.connect(Config.WIFI_SSID, Config.WIFI_PASSWORD)
timeout = 20
while not wlan.isconnected() and timeout > 0:
time.sleep(1)
timeout -= 1
if not wlan.isconnected():
display_message("Wi-Fi Error", "Check settings")
raise RuntimeError("Failed to connect to Wi-Fi")
# --- NTP Synchronization ---
display_message("Syncing time...", "NTP server")
try:
ntptime.settime() # Sets the Pico internal RTC to UTC
except Exception as e:
display_message("NTP Failed", str(e))
time.sleep(3)
# Disconnect Wi-Fi to conserve power once time is synchronized
wlan.active(False)
# --- Main Loop ---
DAYS = ["Mon", "Tue", "Wed", "Thu", "Fri", "Sat", "Sun"]
while True:
# Apply UTC offset to local epoch
local_epoch = time.time() + (Config.UTC_OFFSET * 3600)
year, month, day, hour, minute, second, weekday, _ = time.localtime(local_epoch)
time_str = f"{hour:02d}:{minute:02d}:{second:02d}"
date_str = f"{DAYS[weekday]} {year}-{month:02d}-{day:02d}"
oled.fill(0)
# Center-align roughly for 8x8 font
oled.text(time_str, 32, 20)
oled.text(date_str, 12, 38)
oled.show()
time.sleep(0.5)
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ssd1306