====== Turn On LED using Webpage ====== Jul 2026 \\ \\ {{ :micro-python.png?100 |}} ---- ===== Introduction ===== \\ I got the idea for this from this webpage [[https://core-electronics.com.au/guides/raspberry-pi-pico-w-create-a-simple-http-server/|here]]. You can also watch a YouTube video about it [[https://www.youtube.com/watch?v=AK8UYh7pMGM|here]]. I decided to add it to my wiki site because (a) so many sites disappear these days and (b) I just wanted to try to add more comments to the code. \\ \\ In this example, we are going to turn on an LED on our Raspberry Pi Pico using a simple web page with two buttons. There is a second function where we can display the state of a hardware button also. \\ \\ The three projects we will build for this are as follows: \\ * Add an LED and a Button to the Pico. This is just to test the hardware and wiring is good. * Add a small web server and page to the Pico, this will be text only. * Add a webserver and page that is graphical to the Pico. This will allow us to make defined steps towards the final goal of having a web page control the LED on our Pico. \\ \\ ---- ==== Add an LED and Button to the Pico ==== The image below shows what we are trying to achieve. \\ \\ {{ :button-led-pico-003.png?500 |}} In this example, we have the LED being connected to GP14 (pin 19) and GND (pin 18) via a 100 ohm resistor. You can use one of the GND pins on the Pico, or a common GND rail if you have made one. \\ \\ Remember, the Anode of the LED (the longer leg) goes to GP14 and Cathode goes to GND. \\ \\ The button is wired between pins GP16 (pin 21) and GND (pin 23) \\ \\ ---- === Micro Python Code === Here is the code that we will use: \\ # Hardware Test # Blink and LED (GP14) slowly/quickly while a button (GP16) is not-pressed/pressed from machine import Pin # Import Pin class to control GPIO pins from time import sleep_ms # Import millisecond sleep function led = Pin(14, Pin.OUT) # Create an output pin on GPIO14 for the LED button = Pin(16, Pin.IN, Pin.PULL_UP) # Create an input pin on GPIO16 with internal pull‑up resistor while True: # Infinite loop if button.value() == 0: # If button is pressed (input pulled LOW) delay = 100 # Use short delay (fast blink) else: # Otherwise (button not pressed) delay = 1000 # Use long delay (slow blink) led.toggle() # Flip LED state: ON → OFF or OFF → ON sleep_ms(delay) # Wait for the chosen delay before next toggle Because the button uses Pin.PULL_UP, its normal (unpressed) state is HIGH (1). \\ \\ Pressing the button pulls the pin to LOW (0), which is why the code checks button.value() == 0. \\ \\ {{ :button-led-pico-004.mp4?480x360 |}} Looking at the simulation above, we can see that when the button is not pressed, we get a delay of 1000mS as per the MicroPython code, so 1 flash every two seconds (1s on, 1s off). \\ \\ When the button is pressed, we get a delay of only 100mS, so 5 flashes every second (100mS on, 100mS off x 5). \\ \\ If you have connected the LED and Button to your Pico correctly, this is what you should observe when you run the code on your setup. \\ \\ ---- ==== Add a Small Web Server and Page to the Pico ==== \\ NOTE*** The LED status will not change on the Raspberry Pi Pico unless you refresh the web browswer when you either Press or Release the button. \\ \\ For this example, we do not need to change any of the Pico hardware, so the LED and Button wiring remain as they were in the previous example. This is just a software change. \\ \\ You need to load the following code in to Thonny. \\ \\ # Simple HTTP Server Example # Control an LED and read a Button using a web browser import time # Provides sleep and timing functions import network # Wi‑Fi control for Pico W import socket # Low‑level networking (TCP sockets) from machine import Pin # GPIO pin control led = Pin(14, Pin.OUT) # LED on GPIO14 as an output ledState = 'LED State Unknown' # Text placeholder for LED status button = Pin(16, Pin.IN, Pin.PULL_UP) # Button on GPIO16 with pull‑up resistor ssid = 'YourSSID' # Wi‑Fi network name password = 'YourWifiPassword' # Wi‑Fi password wlan = network.WLAN(network.STA_IF) # Use Wi‑Fi in station mode wlan.active(True) # Turn Wi‑Fi hardware on wlan.connect(ssid, password) # Connect to the Wi‑Fi network # HTML template for the webpage html = """ Pico W

Pico W HTTP Server

Hello, World!

%s

""" # Wait for Wi‑Fi connection or timeout max_wait = 10 while max_wait > 0: if wlan.status() < 0 or wlan.status() >= 3: # Error or connected break max_wait -= 1 print('waiting for connection...') time.sleep(1) # If not connected, stop the program if wlan.status() != 3: raise RuntimeError('network connection failed') else: print('Connected') status = wlan.ifconfig() # Get IP configuration print('ip = ' + status[0]) # Print IP address # Create a listening TCP socket on port 80 (HTTP) addr = socket.getaddrinfo('0.0.0.0', 80)[0][-1] # Bind to all interfaces s = socket.socket() # Create socket s.bind(addr) # Bind to address/port s.listen(1) # Listen for connections print('listening on', addr) # Main server loop while True: try: cl, addr = s.accept() # Accept a client connection print('client connected from', addr) request = cl.recv(1024) # Read HTTP request print("request:") print(request) request = str(request) # Convert bytes → string # Look for URL parameters: ?led=on or ?led=off led_on = request.find('led=on') led_off = request.find('led=off') print('led on = ' + str(led_on)) print('led off = ' + str(led_off)) # If found at position 8 (typical for GET requests) if led_on == 8: print("led on") led.value(1) if led_off == 8: print("led off") led.value(0) # Update LED state text ledState = "LED is OFF" if led.value() == 0 else "LED is ON" # Read button state if button.value() == 1: # Button not pressed (pull‑up = HIGH) print("button NOT pressed") buttonState = "Button is NOT pressed" led.value(0) # Force LED OFF else: print("button pressed") buttonState = "Button is pressed" led.value(1) # Force LED ON # Build webpage content stateis = ledState + " and " + buttonState response = html % stateis # Insert text into HTML template # Send HTTP response cl.send('HTTP/1.0 200 OK\r\nContent-type: text/html\r\n\r\n') cl.send(response) cl.close() # Close connection except OSError as e: cl.close() print('connection closed') Before you attempt to run this code, look at the top of the code, lines 14 and 15. \\ ssid = 'YourSSID' password = 'YourWifiPassword' You need to enter your wifi details here, then you can run the code. \\ \\ I suspect the one thing that will cause issues for you will be connecting to the Wifi, so take your time and get this right. \\ \\ ---- === Running the Code === When you run the code, it will initially do three things: \\ - Connect to your SSID - Login using your credentials - Get an IP Address Once all three of these criteria are met, you will see the IP Address in the bottom window of Thonny. \\ \\ >>> %Run -c $EDITOR_CONTENT MPY: soft reboot Connected ip = 10.194.1.206 listening on ('0.0.0.0', 80) \\ Above we can see we got the IP Address 10.194.1.206 and we are listening on 0.0.0.0:80 - (0.0.0.0 means we are listening on port 80 on ALL IP interfaces). \\ \\ On your computer (that is on the same network) run a web browser, and browse to the IP Address that you were given. \\ \\ If all is well, you should have a webpage showing that looks like the one below (I only captured the top corner). \\ \\ {{ :button-led-pico-005.png?500 |}} \\ The page clearly states that the Button is NOT pressed, and the LED is off. \\ \\ Now, on the Pico, press AND HOLD the button, while pressing and holing the button, refresh the webpage. \\ \\ {{ :button-led-pico-006.png?500 |}} \\ You should see now that the page states that the button IS pressed and that the LED is on. \\ \\ When you let go of the button, to get the update, and to turn off the LED, you have to refresh the webpage. \\ \\ ---- ==== Add a Webserver and Page with Buttons to the Pico. ==== In this section, all we are doing is adding some buttons that you can click to turn the LED on and OFF. The only thing we have to do is replace the HTML section in our previous code, with a new HTML section. \\ \\ When looking at the code, we can see a section called html that starts at line 21 and goes to line 29, like so. \\ html = """ Pico W

Pico W HTTP Server

Hello, World!

%s

""" What we need to do, is to replace the lines above, with the following block of code: \\ html = """

Control Panel









%s

""" \\ All we have to do now is to refresh the webpage (check your IP has not changed). \\ \\ {{ :button-led-pico-007.png?800 |}} \\ You can now change the LED status on or off by simply clicking the buttons on the webpage, clicking either button also refreshed the webpage. This means, if you hold the button down (or not) and click a button to change the LED, the LED status will change, and the text at the bottom of the webpage will also change to reflect the button status. \\ \\ ---- ==== Full Code ==== # Simple HTTP Server Example # Control an LED and read a Button using a web browser import time import network import socket from machine import Pin led = Pin(14, Pin.OUT) ledState = 'LED State Unknown' button = Pin(16, Pin.IN, Pin.PULL_UP) ssid = 'YourSSID' password = 'YourWifiPassword' wlan = network.WLAN(network.STA_IF) wlan.active(True) wlan.connect(ssid, password) # replace the "html" variable with the following to create a more user-friendly control panel html = """

Control Panel









%s

""" # Wait for connect or fail max_wait = 10 while max_wait > 0: if wlan.status() < 0 or wlan.status() >= 3: break max_wait -= 1 print('waiting for connection...') time.sleep(1) # Handle connection error if wlan.status() != 3: raise RuntimeError('network connection failed') else: print('Connected') status = wlan.ifconfig() print( 'ip = ' + status[0] ) # Open socket addr = socket.getaddrinfo('0.0.0.0', 80)[0][-1] s = socket.socket() s.bind(addr) s.listen(1) print('listening on', addr) # Listen for connections, serve client while True: try: cl, addr = s.accept() print('client connected from', addr) request = cl.recv(1024) print("request:") print(request) request = str(request) led_on = request.find('led=on') led_off = request.find('led=off') print( 'led on = ' + str(led_on)) print( 'led off = ' + str(led_off)) if led_on == 8: print("led on") led.value(1) if led_off == 8: print("led off") led.value(0) ledState = "LED is OFF" if led.value() == 0 else "LED is ON" # a compact if-else statement if button.value() == 1: # button not pressed print("button NOT pressed") buttonState = "Button is NOT pressed" else: print("button pressed") buttonState = "Button is pressed" # Create and send response stateis = ledState + " and " + buttonState response = html % stateis cl.send('HTTP/1.0 200 OK\r\nContent-type: text/html\r\n\r\n') cl.send(response) cl.close() except OSError as e: cl.close() print('connection closed') ----