Digital Power Supply Design Workshop from Biricha and Microchip
Overview
Learn how to design and implement digital power supplies using Microchip’s dsPIC33C range of microcontrollers during this four-day hands-on laboratory based design workshop.
The first day is dedicated to exploring the capabilities of the Microchip dsPIC® Digital Signal Controllers (DSC), the available tools and software libraries. If you are already an experienced programmer with Microchip products you may choose not to attend this first day. Days two and three cover stable compensator design and implementation for both voltage mode control and peak current mode control. By the end of day three you will have designed and then implemented several robust, stable digital power supplies.
Over the course of the three days we will cover the theory necessary to design and implement the compensators for several high performance, stable, digital power supplies. All theory is consolidated with hands-on practical labs at the well equipped work stations within the classroom. In addition, we will also measure the stability of all of the control loops using a Bode 100 network analyzer.
All attendees will also receive a complimentary Digital Power starter kit (DM330017-3) from Microchip and a free trail WDS license from Biricha if they wish*.
Agenda
Typically the morning session is dedicated to the study of theory and principles, whilst the afternoon session focuses on laboratory exercises to consolidate the theory.
All attendees will receive all of the software examples and templates which we use during the workshop to make programming your first digital power supplies easy and intuitive.
An overview of the course syllabus is given below:
Day 1: Introduction to Digital Power Programming (presented by Microchip)
- Introduction to dsPIC33 family architecture and peripherals
- Device setup: Configuration of registers and the oscillator
- General Purpose: I/O ports, timers and interrupts
- Digital Power: PWM, comparator and Analog to digital converter
- Introduction to MPLAB X IDE and program/debug tools
- Fixed point math and number formatting
- Setting up the ADC module and using ADC interrupts
Day 2: Digital Power Supply Design
- Detailed study of analog power supply design fundamentals
- Review of analog compensator design (Type II & Type III) for voltage and current mode control
- Discrete control theory, Z transforms and digital convolution
- Step-by-step digital power supply design
- Implementing a simple digital controller for your digital power supply
- Stable digital compensators for voltage mode control
- Hands-on laboratory exercises
Day 3: Digital Peak Current Mode Control
- Detailed review of analog peak current mode design
- Sub-harmonic oscillations and slope compensation
- Digital peak current mode controller design
- Reducing phase margin erosion
- High performance digital power supply design and implementation (both voltage mode and current mode)
- Hands-on laboratory exercises
Day 4: Digital PFC Design & Implementation
- Learn how to design and stabilise single phase and interleaved digital power factor correction systems from ground up quickly and easily during this in-depth day.
- Fundamentals of power delivery, power quality & PFC
- Single Phase CCM Boost PFC topology operation & design
- Digital PFC translated from analog PFC
- Step-by-step digital PFC control loop design (voltage loop and current loop)
- Voltage feed-forward & filter design in digital domain
- Digital interleaved PFC
- Live demos on Microchip digital PFC board (single phase and interleaved)
The participants will typically work in pairs at a workstation. Each workstation will be equipped with a PC with relevant development software, digital power starter kit and an oscilloscope.
The material is supported by many practical examples and tutorials and includes a brief question and answer session at the end of each section.
The course fees include training, a printed copy of the training materials and lab manuals, lunch, refreshments and a free trial license for Biricha’s power supply design software (WDS). Important: This software is NOT needed to understand the engineering material taught in the class*
Course Details
Europe
Date: TBD
Location: TBD
Workshop Language is English
2750 EUR for 4 days
North America
Date:TBD
Location: TBD
2750 USD for 4 days
The class runs from 9:00am – 5:00pm on Day 1 – 3.
The class runs from 9:00am – 4:00pm on Day 4 to allow for easy travel.
All attendees will work in pairs at a workstation. This means you may be paired up with someone else at a workstation if you have not registered in multiples of 2.
Price is for a ‘single’ seat – however you will be work in a pair with someone else at a workstation.
The price includes:
- Free trial license for Biricha’s Power Supply Design Software Biricha’s WDS*
- Lunch and refreshments throughout each day
Audience
These workshops are designed for analog PSU designers as well as embedded systems programmers who:
- Need learn how to design stable digital controllers for their power applications
- Have little or no experience of discrete time control theory and wish to reduce their learning curve
- Need to get up to speed with programming the dsPIC33 (or any Microchip PIC® MCU using the XC16 compiler) and would prefer to minimize and simplify the amount of code that they need to write
- Need to get their digital PSUs out of the door quickly and would prefer to use pre-coded templates instead of coding their own from scratch
Prerequisites
The audience should have a degree in electrical/electronic engineering, computer science or equivalent.
These workshops are highly technical, intended for professional engineers and are not suitable for the general public without relevant qualifications.
Cancellation Policy
Classes are subject to cancellation if the minimum number of attendees is not met ten days prior to the date of the workshop and full refund will be given: Minimum = 5; Maximum = 20.
In the event of short notice cancellation by Biricha due to unforeseen circumstances, the liability of Biricha and its partners is limited solely to the refund of the course fees. No refund will be given if you can not make the event but you may delay to another Biricha workshop or transfer your registration to a colleague. In fairness to all attendees, confirmed participants who do not attend the scheduled session are obliged to pay the liable fee.
Testimonials
Testimonials from Past Participants
- “This is one of the best workshops I have ever attended. In three days an analog designer can leave ready to work on their first digital power supply design. Gaining the equivalent knowledge independently could take years.”
- “This course covers everything an individual needs to know about digital power supply design. It starts from a beginners standpoint and walks you through the entire process to a complete design. Very very good course!”
- “Outstanding workshop! This answered many control theory question which have vexed me for years!”
- “The class provides a very comprehensive look at digital power supply and compensator design. It does not assume attendees have expert knowledge and covers from theory to practical design in a very straightforward and easy to understand format.”
- “The class provides a very comprehensive look at digital power supply and compensator design. It does not assume attendees have expert knowledge and covers from theory to practical design in a very straightforward and easy to understand format.”
* 6 months trial license. You must have unrestricted access to internet. These software are not necessary for understanding the material in the class and available on request.
Upcoming Workshops
New workshop dates will be released soon. Please register on our calender to receive updates.
Since 2008 Biricha has run highly popular hands-on workshops and industrial seminars. Some of the companies who have attended our workshops include:
AAC Microtec
ABB Medium Voltage Products
ABB Robotics
ABB Stotz-Kontakt GmbH
Ablepower Corp
Accutronics Ltd
Acme Aerospace
Adaptive Materials, Inc.
Advanced Space Power Equipment
Advantest Europe GmbH
AEG Power Solutions
Agemont SpA
Altergy Systems
Ametek
Apple Inc.
APtronic AG
ARROW DE
Arrow Denmark
ARROW SWEDEN
Artesyn Austria G.M.B.H & Co Kg
Artesyn Embedded Technologies
ARTI Industrial Electronics
Aselsan Elektronik San. Ve Tic. Inc.
Astrium GmbH
Aurora Networks
Automotive Ingenieurbüro
Avent Silica
AVL List GmbH
Baker Hughes Inteq
Beckman Coulter, Inc.
Belscanti
Beru Electronics GmbH
BMW – Bayerische Motoren Werke AG
BOSCH communications Systems EVI Audio GmbH
Bosch ST
Bose Corp.
BTicino S.p.A.
CAMCO Produktions und Vertriebs
Cassidian
Cassidian Electronics
CB Svendsen A/S
Chamberlain
Cisco Systems, Inc.
CM Comandos Lineares
Cobham Satcom
Cobree
Continental Automotive Austria GmbH
Continental Corporation
Contronics Engineering BV
Corrosion Service
Crane Electronics, Inc.
Cranfield University
Cybercom Sweden AB
Delphi
Delta Energy Systems
Delta Energy Systems (Switzerland) AG
Delta GmbH
Develco A/S
Dialog Semiconductor
Diehl Aerospace
Dinema S.p.A.
Dipolar AB
Dp Applications Engineering
DRS Pivotal Power
DRS Technologies
Dynexsemi
E Plug AS
EADS Germany GmbH
Eaton Corporation
Eberspächer Controls GmbH & Co. KG
EBV Elektronik
EcoPower
Effekta Regeltechnik GmbH
Efore
Elreg as
Elsis A.S.
Eltek
Eltek Valere Inc.
Emerson Process Management
Enersys
Ericsson AB
Ericsson Hungary Ltd.
Et System Electronic Gmbh
eta plus electronic gmbh
Etteplan Design Center
F5 Networks
Fairchild Semiconductor
Fieger Consulting&Softwaredesign
Filtran Limited
Flex Power
FMC Technologies Schilling Robotics
Fohhn Audio Ag
Fr.Sauter Ag
Fronius International GmbH
GE Aviation
GE Lighting
Gebrüder Frei GmbH & Co.
General Atomics Aeronautical
General Atomics Aeronautical Systems, Inc.
General Physics France
Georgia Tech
Golden Motor USA
Goodrich Aircraft Wheels and Brakes
Google Inc
Gordon Design Ltd
Gotec
Grundfos
Hamworthy Oil & Gas AS
Heim Electronic GmbH
Heinzinger electronic GmbH
Hewlett-Packard Co
HeyTech Systementwicklung
Hirschmann Automation and Control
Huawei
Huawei Technologies Sweden AB:
Icepower A/S
idem
Imagination technologies
Infineon Technologies AG
Ingenieurbüro Edel
Ingenieurbüro Sierak
Institut ELSYS
Intel Corporation
IPT Design
IPT Technology GmbH
ITT
J.W. Speaker Corperation
Jablotron Alarms
JPL (NASA)
JTOE GmbH Co. KG
JW Speaker
Kacst
kk-electronic a/s
Knorr Bremse SFS GmbH
KOSTAL Industrie Elektrik
L 3 communications
Lacon embedded
Lear Corporation
Lear Corporation GmbH
Leopold Kostal GmbH & Co.KG
Life Technologies
Liftoff
Lincoln Electric
Linde Material Handling GmbH
Lineage Power
Linera
Linestream Technologies
Lockheed Martin
Magma Mekatronik Makine San. ve Tic. A.S.
Martek Power
Martekpower
Megger
Meta System S.p.A
MGV Stromversorgungen GmbH
Microchip
Mikrokrets AS
Miller Electric
MITSUBISHI ELECTRIC
ML Electronics
Moog
MORI L. RADDRIZZATORI SRL
Moxtek Inc
Murata Power Solutions
NMB-Minebea GmbH
North China University of Technology
Norwegian Univ of Sci & Tech
NXP
Odel S.p.A.
OMICRON Lab
ON Semiconductor
Ortoceratit Ab
OSB AG
Osram GmbH
OSRAM SPA
TDK-Lambda Americas
Technologie Netzwerk Allgäu
Tehnical University of Denmark
Texas Instruments
THALES Avionics
Thales Communications, Inc.
Thita Elektronik
Thrane & Thrane A/S
Thurlby Thandar Instruments Ltd
TMD
Tomra Systems ASA
Triton Electronics Ltd
Tttech Computertechnik Ag
Tucker GmbH
Unisa
Unitech Energy AS
Università degli Studi di Salerno
Università Politecnica Delle Marche
University Of Applied Science Darmstadt
University of Nottingham
University of Salerno
University of Zilina
UTC Aerospace Systems – Wheels & Brakes
UTRC
VACON Oyj
Vektrex
Versatile Power
W-IE-NE-R Plein & Baus GmbH
WesternGeco AS
Wiener Plein & Baus
Wijdeven PS&IT
Würth Elektronik Eisos Gmbh & Co.Kg
Xcel Power
XSembedded GmbH
Zefatek Co., LTD
ZZzero Aps