Learn about the improved low-power modes and security features of the new STM32MP13 lines. Discover how you can quickly test your own board using the new bare metal software package.
Join us for this full-day session in person where our experts will introduce you to the new STM32MP13 microprocessors.
Explore the MPUs’ low-power modes and new security features, and get hands-on practice using the STM32MP13.
You will learn how to use our new bare metal software package to ease hardware testing, so that you can quickly get started with your own STM32MP13 prototypes.
Every participant will receive a complimentary STM32MP135F-DK board.
Register now to save your seat!
Our experts will be available during the workshop session to answer any questions you may have.
Hardware and software developers searching for an MPU for their embedded application.
Participants should already be familiar with the STM32Cube ecosystem including STM32CubeIDE and STM32CubeProgrammer. Please note that workshop attendees will be required to bring their own laptops to the training. They will require administrator rights to be able to install the workshop tools and material prior to the training.
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5 minutes
Welcome & introduction
20 minutes
Hardware and tools startup (hands-on)
25 minutes
STM32MP13 lines overview
1 hour 30 minutes
STM32MP13: simple peripheral testing (hands-on)
1 hour
DDR memory testing (hands-on)
30 minutes
STM32MP13: security features
30 minutes
STM32MP13: Linux S/W delivery
30 minutes
Low power and Linux implementation
1 hour
Low power labs (hands-on)
15 minutes
MS Azure Overview
10 minutes
Q&A session
Date
Time
Location
Status
July 4, 2023
08:00 - 16:30 CEST
Milan
Registration closed
July 11, 2023
08:00 - 16:30 BST
London
Registration closed
July 13, 2023
08:30 - 16:45 CEST
Barcelona
Registration closed
July 20, 2023
08:00 - 16:30 CEST
Munich
Registration closed
September 12, 2023
08:00 - 16:30 CEST
Paris
Registration closed
September 14, 2023
08:00 - 16:30 CEST
Aarhus
Registration closed
Afternoon session: BLDC motors with STSPIN32F0
12:30 - 1:30
BLDC theory and fundamentals
# pole pairs
What makes FOC work (donkey and carrot example)
Sensoriess vs. Sensored feedback control
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
Afternoon session: BLDC motors with STSPIN32F0
12:30 - 1:30
BLDC theory and fundamentals
# pole pairs
What makes FOC work (donkey and carrot example)
Sensoriess vs. Sensored feedback control
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
Afternoon session: BLDC motors with STSPIN32F0
12:30 - 1:30
BLDC theory and fundamentals
# pole pairs
What makes FOC work (donkey and carrot example)
Sensoriess vs. Sensored feedback control
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
Afternoon session: BLDC motors with STSPIN32F0
12:30 - 1:30
BLDC theory and fundamentals
# pole pairs
What makes FOC work (donkey and carrot example)
Sensoriess vs. Sensored feedback control
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
Afternoon session: BLDC motors with STSPIN32F0
12:30 - 1:30
BLDC theory and fundamentals
# pole pairs
What makes FOC work (donkey and carrot example)
Sensoriess vs. Sensored feedback control
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
Afternoon session: BLDC motors with STSPIN32F0
12:30 - 1:30
BLDC theory and fundamentals
# pole pairs
What makes FOC work (donkey and carrot example)
Sensoriess vs. Sensored feedback control
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
Afternoon session: BLDC motors with STSPIN32F0
12:30 - 1:30
BLDC theory and fundamentals
# pole pairs
What makes FOC work (donkey and carrot example)
Sensoriess vs. Sensored feedback control
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
Afternoon session: BLDC motors with STSPIN32F0
12:30 - 1:30
BLDC theory and fundamentals
# pole pairs
What makes FOC work (donkey and carrot example)
Sensoriess vs. Sensored feedback control
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
3:00 - 4:30
Implementing a FOC drive
Bartosz is a Senior Application Engineer for STM32. As a member of the customer support team, he helps STM32 customers in the EMEA region move forward with their design projects. He is an expert in various MCU-oriented topics such as AI, RF and ultra-low power solutions.
Corinna is a Technical Marketing Engineer for the MCU, MPU and AI/ML activities in the EMEA region at STMicroelectronics based in Paris, France. She joined ST in 2019 after several years as a Field Application Engineer in semiconductors with a specialization in IoT and AI.
Bertrand is STM32's Senior Field Application Engineer for Central Europe and is involved in driving STM32 AI solutions across EMEA region.
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