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Founded by passionate advocates of learning and innovation, Learni set out to make professional training accessible to everyone, everywhere in the world. Our team works in the largest cities such as Paris, Lyon, Marseille, and internationally, to support talents and organizations in their skills development.
10 spots per session maximum — 10 already taken
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Don't let this gap widen
Without mastery of GPIO interfaces on microcontrollers and SBCs, electronics teams face rampant misconfigurations that trigger hardware shorts and unreliable I/O signals.
Studies reveal that 35% of embedded system failures stem from GPIO errors, costing companies an average of $8,500 per incident in damaged prototypes, rework, and expedited replacements.
These setbacks delay product launches by 4-6 weeks on average, eroding market share and exposing firms to competitive disadvantages.
Engineers without this expertise risk stalled careers amid rising project failures, while every month of delay amplifies financial losses into the tens of thousands.
The Mastering GPIO: Complete Training for Electronics Professionals training is delivered in-person or remotely (blended-learning, e-learning, virtual classroom, remote in-person). At Learni, a Qualiopi-certified training organization, each program is designed to maximize skills acquisition, regardless of the training mode chosen.
The trainer alternates between demonstrative, interrogative, and active methods (through practical exercises and/or real-world scenarios). This pedagogical approach ensures concrete and directly applicable learning in the workplace.
To ensure the quality of the Mastering GPIO: Complete Training for Electronics Professionals training, Learni provides the following teaching resources:
For in-house training at a location external to Learni, the client ensures and commits to having all necessary teaching materials (IT equipment, internet connection...) for the proper conduct of the training action in accordance with the prerequisites indicated in the communicated training program.
The assessment of skills acquired during the Mastering GPIO: Complete Training for Electronics Professionals training is carried out through:
Learni is committed to the accessibility of its professional training programs. All our training programs are accessible to people with disabilities. Our teams are available to adapt teaching methods to your specific needs. Do not hesitate to contact us for any accommodation request.
Learni training programs are available for inter-company and intra-company settings, both in-person and remote. Registration is possible up to 48 business hours before the start of training. Our programs are eligible for OPCO, Pôle emploi, and FNE-Formation funding. Contact us to discuss your training project and funding possibilities.
Definitions and uses of GPIO, operating logic, difference between inputs and outputs, allowable voltages and currents, typical electrical schematics, presentation of hardware platforms (Raspberry Pi, Arduino, ESP32...).
Pin initialization, mode management (INPUT/OUTPUT/INTERRUPT), pull-up and pull-down, C language, Python and Arduino IDE, common libraries, reading a digital signal, software and hardware debounce, handling protections.
Connection and control of LEDs, buttons, relays, buzzers, motors, analog (ADC) and digital sensors, galvanic isolation, optocouplers, power management, ESD precautions, lab tests, communication with modules via PWM, SPI, I2C.
Creating automation scripts (Python, Node.js), interaction with home automation systems, integration into an IT system, remote GPIO status monitoring via web interface, data collection, alerts, preventive maintenance.
Thread project: realization of a small GPIO-controlled system (motor control, temperature monitoring and ventilation, etc.), study of experience feedback, audit of an existing schematic proposed by a participant, practical advice for industrialization.
Target audience
Technicians, engineers, and developers wishing to effectively interact with GPIO interfaces on microcontrollers or SBCs (Raspberry Pi, Arduino, etc.)
Prerequisites
Basic knowledge in electronics and programming
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