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Agenda:

Morning Session – Main Plenary

Time
Agenda
08:30 – 09:10
Registration & demo visit
09:10 – 09:15
Opening Remark
Giuseppe IZZO, Managing Director, ST Taiwan, VP of Greater China & South Asia Region, STMicroelectronics
09:15 – 09:35
Global Strategy Overview
Hiroshi NOGUCHI, Executive Vice President, Sales & Marketing, Asia Pacific excluding China, STMicroelectronics
09:35 – 09:50
Taiwan Overview
Polly YANG, Head of Sales, Taiwan, STMicroelectronics
09:50 – 10:10
Smart Mobility
Danny LEE, Marketing Director, Automotive Sub-Group, Asia Pacific excluding China, STMicroelectronics
10:10 – 10:55
Break & demo tour
10:55 – 11:15
Power & Energy
Francesco MUGGERI, Vice President, Marketing & Applications, Power Discrete & Analog, APAC, STMicroelectronics
11:15 – 11:35
IoT & Connectivity
Paolo OTERI, Director, Microcontrollers & Digital ICs Group, Asia Pacific excluding China, STMicroelectronics
11:35 – 11:55
Sensing the World
Shaun PARK, Director, AMS, MEMS and Imaging, Asia Pacific excluding China, STMicroelectronics
11:55 – 13:00
Lunch

Afternoon Session – Technical Seminars

Time
Program
Segments
Sub-Track 1
Smart Mobility
(Room A, 6F)
Sub-Track 2
Power & Energy
(Room B, 6F)
Sub-Track 3
IoT & Connectivity
(Room C, 6F)
13:00 – 13:20
ST Automotive Solutions Empower the Transition to e-Mobility
Speaker: Patrick Chen
The 3kW 5G Telecom Rectifier with SiC MOSFET and Digital Controller STM32G4
Speaker: Matt Yang
Enabling AI with ST Solutions
Speaker: Ryk Liu
13:20 – 13:40
ST Solutions for the Smart Cockpit: Tuner / GNSS / Audio AMP
Speaker: Johnson Wang
Digital Power Approach in Uni/Bi-Directional PFC for Telecom Rectifier and Energy Storage System
Speaker: Benson Chu
ST Sensor Solution for AR Glasses
Speaker: Johnny Yang
13:40 – 14:00
ST Automotive HW Secure Element for the Digital Key
Speaker: Marie Ando
AI based AFCI Solution for Solar Inverter
Speaker: Matteo MARAVITA
Smart, Safe and Accurate: MEMS Sensors in the Sustainable Onlife Era
Speaker: Kay Lin
14:00 – 14:40
Break & demo tour
14:40 – 15:00
ST Power Discrete Solutions Improve Performance and Density in New Energy Vehicles
Speaker: Alvin Chen
48V Power Management Solution for AI Server
Speaker: Jimy Lin
ST Wireless and IoT Solutions
Speaker: Watson Chang
15:00 – 15:20
ST Smart Gate Driver Solutions for EV Applications
Speaker: Jack Hsiao
ST Servo Drives Architecture and new LV/HV Servo Solution
Speaker: Liam PARK
Connected Security Solutions for IoT
Speaker: Kenneth Huang
15:20 – 15:40
ST Automotive Image Sensors for In-Cabin Monitoring
Speaker: Vincent Lin
KNX Energy Management System
Speaker: Eric Lo
New ST60 Solution for Contactless Connectivity at 60GHz
Speaker: Thorton Park
15:40 – 16:00
Automotive-Grade MEMS Sensors for a Broad Range of Automotive Applications
Speaker: Kay Lin
STM32 Revolutionizes Motor Control Solution
Speaker: Otis Chan
ST's ToF Technology Enriches Smart Living
Speaker: Jerry Chang
16:00 – 16:15
Lucky Draw (at the Event Space on 14F)

Morning session: Stepper motors with STSPIN820 / POWERSTEP01

9:00 - 10:00

Stepper motor fundaments

Theory: What makes a stepper turn?

Voltage and current mode drive

Limitations,speed/torque,ect

9:00 - 10:00

Stepper motor fundaments

Theory: What makes a stepper turn?

Voltage and current mode drive

Limitations,speed/torque,ect

11:30 - 12:30

Lunch

11:30 - 12:30

Lunch

11:30 - 12:30

Lunch

11:30 - 12:30

Lunch

10:00 - 11:30

STSPIN820 or POWERSTEP01

Using the GUI to evaluate motor operation

Configuring motor control parameters with the GUI

Implementing a drive based on the firmware pack

10:00 - 11:30

STSPIN820 or POWERSTEP01

Using the GUI to evaluate motor operation

Configuring motor control parameters with the GUI

Implementing a drive based on the firmware pack

9:00 - 10:00

Stepper motor fundaments

Theory: What makes a stepper turn?

Voltage and current mode drive

Limitations,speed/torque,ect

11:30 - 12:30

Lunch

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

1:30 - 3:00

Implementing a 6-step 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

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

Meet our Speakers


New products, solutions and ecosystems on display at the event

22KW OBC & DCDC Combo

New generation of on-board DC fast charging modules, highly integrated, with high performance and power density.





Learn more

The 3rd Gen. SiC Module

SiC modules are a critical component of the power system in electric vehicles, determining the output and efficiency of the driving power.





Learn more

Zonal Control Unit

Zonal control is used for managing the connection between the in-vehicle ECU, peripheral devices, and sensors. Built on ST's automotive-grade products, it supports DDS protocol and FOTA SOA.



Learn more

30kW PFC for EV Charger

A digital power design solution using a three-phase Vienna topology. This design solution utilizes third-generation SiC components, including the SCT018W65G3AG and STPSC40H12C, and built on a digital control STM32G4 MCU platform.


Learn more

30kW LLC for EV Charger

A digital power design solution using a three-phase LLC topology. This design solution utilizes third-generation SiC components, including the SCT025W12-G3A-4AG and STTH60RQ06W, and is built on a digital control STM32G4 MCU platform.

Learn more

Precision Position Control

Based on the highly integrated STSPIN32G4 platform, this solution incorporates the STM32G4 core, DC/DC, and three-phase Gate Driver all in a single chip. Design with ST's motor driving SDK, Easy to drive three-phase BLDC motors effectively to meet the demands of precision positioning.

Learn more

Edge AI Washing Machine

The NanoEdge AI software can quickly generate the required AI model through its built-in analysis and learning design, greatly improving measurement accuracy. It can measure the weight of clothing more accurately, achieving the goal of energy and water conservation.

Learn more

ST Smart Home Solution

The smart home solution is built on the latest Matter network. This solution includes switch lighting that can be controlled through mobile devices.




Learn more

Smart Factory Automation

A complete system solution that includes PLC, IO-Link, HMI, and cloud connectivity.






Learn more

Global and Rolling Shutter for DMS/OMS

The Vx1940 is a 5.1-megapixel, 2.25um global rolling shutter image sensor designed specifically for in-car monitoring. Its specific ISP function package and RGB-NIR 4x4 color filter array make it the best solution for in-car applications.


Learn more

ISPU Running Form Analysis

The embedded intelligent sensor processing unit of ST LSM6DSO16IS is integrated into the wearable device for motion. The device can provide users with accurate running form analysis.



Learn more

SVGA iToF 3D Camera

The VD55H1 is a low-interference, power-saving iToF sensor with 672 x 804 pixels (0.54MP). It can be used in 3D camera modules to generate high-resolution depth maps. Its typical ranging distance is up to 5 meters, and the pattern illumination ranging length can exceed 5 meters.

Learn more

 
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