Shadowing Practice: The Ultimate IoT Roadmap in 2026? | Embedded Systems & IoT Career Roadmap - Learn English Speaking with Video

Les maken...
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If you want to become IoT engineer in 2026, one thing is very important to understand.
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The industry has changed a lot.
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A few years ago building a simple EFP32 project and connecting with the Wi -Fi was enough to impress people.
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But now companies expect much more.
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Modern IoT system involves embedded firmware, art of networking, aged processing, cloud infrastructure, and real -time debugging.
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So in this video, I will give you a practical roadmap.
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This is not a beginner motivational roadmap.
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This is the same skill that is actually used in the IoT and embedded system field in the industry.
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The first thing you need is a strong fundamental for basics of electronics and embedded fee.
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Now, Deathboard, and a mobile app.
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without understanding the core concept of embedded system and iot
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so it starts with gpio sensors relays mospets adc dfe pwm voltage level pull up
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and pull down concept power supplies then move to embedded fee
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and honestly this is the most important stage because almost every embedded interview focus heavily on pointers,
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structures, memory, bit manipulation, volatile keywords, And.. low level logic If you see fundamental for weak advanced firmware development becomes difficult later.
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After that, start with microcontroller.
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ESP32 is one of the best platforms for learning because it gives you Wi -Fi,
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BLE, free art of networking support and enough processing power for advanced project.
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The TM32 is also very important
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because it is widely used in the industry then start learning communication protocol you can start with UART,
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ITUFI, FPI, RS -485 Modbuff
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can but don't learn them only theoretical learn how to debug them for example how to identify uart
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framing if you would how to analyze FPI timing.
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How to debug an I2C buff problem?
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How to verify ModBuff CRP packets?
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This is where embedded engineering becomes practical instead of tutorial based.
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Now comes one of the most important skill for professional firmware development that is RTOF.
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Modern embedded systems rarely run on single loop program anymore.
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Most real products use as multi -tasking firmware.
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Fuller, Taft, Feduler, QH, Famofor, Mutex.
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event group software timer IFR -FAP APIs,
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but more importantly, understand concept deeply because companies usually test conceptual understanding not only API fintechs.
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After RTOF, moving into
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networking
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and honestly this is where many embedded developers become much more
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valuable learn tcp ip basics tcp versus udp dhcp dnf socket communication
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and basic network architecture then move into iot protocols you can learn mqtt http httpf webfockets dle gigby and Modbus TCP.
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Especially understand MQTT deeply because almost every modern IoT product depends on reliable networking.
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Now connect your embedded system with cloud infrastructure.
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Learn Node -read.
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InfluxDB, Grafana, AWF IoT Core,
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you can also learn Microsoft Azure OTA updates remote dashboard telemetry system.
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Companies no longer want isolated devices, they want complete ecosystems with remote monitoring,
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analytics, firmware updates, halt alerts and escalable device management.
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This is where firmware engineering connects with cloud computing or you can see cloud engineering.
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If you want to target higher level embedded roles, then embedded Linux becomes very important.
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Specifically for industrial gateways, AJI fish tanks a smart controller and advanced IoT devices.
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Start with Raspberry Pi or Linux FBCs.
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learn Linux commands, processes and riffs, faucets, fail scripting, git, makefiles, serial debugging and tools like GDB.
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Linux knowledge significantly increase your opportunity in embedded system.
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This is probably most important part of the roadmap.
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Do not build only beginner level projects.
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Build systems that look like actual product.
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For example, industrial IoT gateway.
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Smart environment monitoring system energy monitoring devices.
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Smart HVIFE controllers, DLE -based monitoring system, is analytics device.
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Try to include art of networking, cloud communication, local dev board, modular firmware, fault handling and proper architecture.
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Projects are what convert knowledge into engineering experience.
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The IoT and embedded industry in 2026 is becoming much more advanced.
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Companies are looking for engineers who can debug systems, understand firmware architecture, work with networking,
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Integrate hardware and software and solve real -world problems.
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So don't focus on only fertilizer or watching tutorial build systems,
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debug them, improve them and gradually develop engineering depth.
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That deep knowledge is what separates
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hobby level development from professional embedded engineering and
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if you want more advanced content on embedded system art of fp32 firmware architecture industrial iot
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and product development make sure to subscribe to the channel thanks for watching guys

Woordenschat en spreektips bij deze les

Deze spreekles op niveau C1 is gebaseerd op de video “The Ultimate IoT Roadmap in 2026?”. Deze woorden komen het vaakst terug: embedded, iot, firmware, learn, networking. Deze video bevat 67 zinnen en 733 woorden om na te spreken. Het gesproken deel duurt 6:12. De spreker praat in een gelijkmatig tempo van ongeveer 118 woorden per minuut, prettig om te shadowen. Slechts 67% van de woorden hoort bij de 3.000 meest gebruikte Engelse woorden, dus de woordenschat is pittig.

Belangrijke woorden in deze video

De 15 moeilijkste woorden uit de video, met uitspraak en betekenis:

WoordUitspraakBetekenis
embed werkwoord/ɪmˈbɛd/vastleggen, inbedden
debug werkwoord/diːˈbʌɡ/debuggen
beginner zelfstandig naamwoord/bəˈɡɪnɚ/beginneling, beginnelinge
tutorial zelfstandig naamwoord/ˌtjuːˈtɔːɹɪəl/snelcursus, tutorial
compute werkwoord/kəmˈpjuːt/uitrekenen, berekenen
dashboard zelfstandig naamwoord/ˈdæʃˌboɹd/dashboard, instrumentenpaneel
faucet zelfstandig naamwoord/ˈfɔsɪt/kraan, tap
fintech zelfstandig naamwoord/ˈfɪntɛk/fintech, financiële technologie
keyword zelfstandig naamwoord/ˈkiː.wɜːd/sleutelwoord
microcontroller zelfstandig naamwoord/ˈmaɪkɹoʊkənˌtɹoʊlɚ/microcontroller
telemetry zelfstandig naamwoord/tɪˈlɛm.ɪ.tɹi/telemetrie
modular bijvoeglijk naamwoord/ˈmɑd͡ʒəlɚ/modulair
socket zelfstandig naamwoord/ˈsɑkɪt/stopcontact, fitting
isolate werkwoord/ˈaɪ.sə.leɪt/isoleren
conceptual bijvoeglijk naamwoord/kənˈsɛp.tjʊəl/conceptueel

Uitspraak om op te letten

  • De klanken “sh” en “zh”: dashboard /ˈdæʃˌboɹd/, manipulation /məˌnɪp.juˈleɪ.ʃən/
  • Lange woorden — let op de klemtoon: analytics /ˌæn.əˈlɪt.ɪks/, microcontroller /ˈmaɪkɹoʊkənˌtɹoʊlɚ/, telemetry /tɪˈlɛm.ɪ.tɹi/, ecosystem /ˈikoʊˌsɪstəm/, manipulation /məˌnɪp.juˈleɪ.ʃən/

Zo oefen je met deze video

  1. Luister de hele video één keer zonder te spreken en noteer de woorden die je niet kent.
  2. Spreek zin voor zin na op normale snelheid en herhaal elke zin tot je ritme gelijk is aan dat van de spreker.
  3. Neem jezelf op en vergelijk met het origineel; let daarbij op woorden als embed, debug, beginner.

Wat is de Shadowing-techniek?

Shadowing is een wetenschappelijk onderbouwde taalleermethode die oorspronkelijk is ontwikkeld voor professionele tolkentraining en gepopulariseerd door polyglot Dr. Alexander Arguelles. De methode is eenvoudig maar krachtig: je luistert naar native Engelse audio en herhaalt het onmiddellijk hardop — als een schaduw die de spreker volgt met slechts 1–2 seconden vertraging. In tegenstelling tot passief luisteren of grammaticadrills, dwingt shadowing je hersenen en mondspieren om echte spraakpatronen tegelijkertijd te verwerken en te reproduceren. Onderzoek toont aan dat het de uitspraaknauwkeurigheid, intonatie, ritme, verbonden spraak, luisterbegrip en spreekvaardigheid aanzienlijk verbetert — waardoor het een van de meest effectieve methoden is voor IELTS Speaking-voorbereiding en echte Engelse communicatie.

Shadowing-techniek: lees de volledige stap-voor-stap-gids →