Hello friends, I hope you are doing well. This is the eighth tutorial in our series on how to create a Proteus library. In the previous tutorial, How to Use Make Device in Proteus to Create a New Part , we turned our Traffic Light Module into a real Proteus part, TRAFFICLIGHTTEP, stored it in USERDVC and placed it on the sheet as U1. The part works, but it carries no information beyond its name. Today, we give it properties. Our topic is how to add component properties in Proteus . We will see what component properties are and what they are used for, open the Component Properties and Definitions page of Make Device again, add two property definitions of different kinds, explore every property type, option and visibility setting that Proteus 8.5 offers, store the part again, and check the r ...
Hello friends, I hope you all are doing great. Today, I am going to share a list of I2C Sensor Libraries for Proteus . Most modern sensor modules talk to the microcontroller over I2C: two wires, SDA for data and SCL for the clock, shared by every sensor on the board. On an Arduino Uno, these are the A4 and A5 pins. That's why I2C sensors are so popular in student projects: you can connect several of them to one Arduino and still have plenty of pins left for everything else. Our team designed eight I2C sensor libraries for Proteus in September 2026: the BME280, BH1750, TCS34725, SHT31, VL53L0X, BMP280, MAX30102 and MPU6050. Each one talks to the Arduino over I2C like the real chip, has interactive sliders or controls beside it, and comes with a complete Arduino example, a compiled HEX file ...
Hello friends, I hope you are doing well. This is the seventh tutorial in our series on how to create a Proteus library. In the previous tutorial, How to Add Pins to a Component in Proteus , we placed the four pins of our Traffic Light Module, GND, R, Y and G, and gave them their names, numbers and electrical types. The drawing is now complete. Today, we turn it into a real Proteus part that can be picked from a library like any other. Our topic is how to use Make Device in Proteus to create a new part . We will tag the whole drawing, walk through all five pages of the Make Device wizard, give the part its name and reference prefix, choose its category, sub-category and manufacturer, write a description that helps people find it, and store it in a device library. Then we will look into the ...
Hello friends, I hope you are doing well. This is the sixth tutorial in our series on how to create a Proteus library. In the previous tutorial, How to Use Make Symbol in Proteus , we saw how graphics become reusable symbols and how Proteus layers overlapping shapes. Our Traffic Light Module now has a finished drawing, but it cannot be wired yet, because it has no pins. Today, we change that. Our topic is how to add pins to a component in Proteus . We will look at the Device Pins mode and its pin types, rotate a pin so that it points the right way, place the four pins GND, R, Y and G exactly at the coordinates of our plan, and then give each pin its name, number and electrical type in the Edit Pin dialogue. We will also decide which pin labels Proteus should draw, see how hidden power pins ...
Hello friends, I hope you all are doing great. Today, I am going to share the new HC-12 Library for Proteus V1.1 . The HC-12 is a small 433 MHz radio module that works like a wireless serial cable : whatever your Arduino prints into one HC-12 comes out of another HC-12, hundreds of metres away. It is cheap and simple, so students love it for remote controls, weather stations and wireless sensor projects. In this new version, you get two HC-12 devices in one library: HC-12 Simple with its control panel drawn right on the schematic, and HC-12 Advance with a modern pop-up panel full of test tools. I am also sharing a complete Arduino HC-12 Proteus simulation: two Arduino UNOs chatting over the air, each with our TEP Serial Monitor. NOTICE: We are really proud of this one. As far as we know, o ...
Hello friends, I hope you all are doing great. Today, I am going to share a complete List of Embedded Sensors in Proteus . Sensors are the eyes and ears of every embedded project: they measure temperature, detect motion, sense gas, count heartbeats and tell your microcontroller what is happening around it. The problem is that Proteus has very few of these sensors in its own component library, so our team has been designing them for years, and today I have collected all 35 of our sensor libraries in one place. Our sensor libraries come in two generations. The new 2026 sensors are I2C sensors with interactive sliders and controls, so you can change the temperature, the light level or the acceleration while your Arduino program is running, and each one comes with a complete Arduino example. O ...
Hello friends, I hope you are doing well. This is the fifth tutorial in our series on how to create a Proteus library. In the previous tutorial, How to Make a Realistic Component in Proteus , we gave our Traffic Light Module its final colours and saw why a realistic part should carry local colours instead of following the global style. Today, we look at how Proteus groups graphics into reusable building blocks. Our topic is how to use Make Symbol in Proteus , together with the way Proteus layers overlapping shapes. We will see what a symbol is, where Proteus stores symbols, how to tag a group of shapes with a tag box, how to turn them into a symbol with the Make Symbol command, how to find and place the symbol again with the Pick Symbols browser, and how to break it apart with Decompose. A ...