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Taha Alasemi | طه العاصمي

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Washing machine

Washing machine

1,779,036 views

How a Pressure Cooker's Whistle Works | Hidden Engineering explained

How a Pressure Cooker's Whistle Works | Hidden Engineering explained

92,362 views

Fan wiring diagram

Fan wiring diagram

1,047,415 views

The AC from inside, how it looks

The AC from inside, how it looks

22,869 views

Coffee Grinder

Coffee Grinder

14,660 views

Names & Symbols electronic components

Names & Symbols electronic components

255,569 views

A tremendous amount of effort went into this!

A tremendous amount of effort went into this!

15,001 views

The Car AC Hack You Never Knew! 🚗💨

The Car AC Hack You Never Knew! 🚗💨

114,212 views

Technology becomes powerful when you can see it working.This is a simple demonstration, but it reflects how engineering turns ideas into real movement and results.Progress always starts with understanding the basics.

Technology becomes powerful when you can see it working.This is a simple demonstration, but it reflects how engineering turns ideas into real movement and results.Progress always starts with understanding the basics.

59,583 views

A Perfect welding machine

A Perfect welding machine

42,677 views

Electromotive Force Induced By Faraday's law

Electromotive Force Induced By Faraday's law

38,395 views

Think you know gears? Can you name this clever mechanism? 🤔⚙️👇

Think you know gears? Can you name this clever mechanism? 🤔⚙️👇

15,605 views

كيف يتم تجميع المحولات الكهربائية؟

كيف يتم تجميع المحولات الكهربائية؟

18,725 views

This device collects sunlight and guides it to your basement

This device collects sunlight and guides it to your basement

26,975 views

Distribution connection diagram 🔥⚡ A simple visual guide to understanding electrical distribution connections and how power is safely routed.

Distribution connection diagram 🔥⚡ A simple visual guide to understanding electrical distribution connections and how power is safely routed.

18,030 views

🔄 Ever wondered how a substation “understands” electricity? Currents flow. Voltages fluctuate. Temperatures rise. But protection relays don’t read analog waves — they read numbers. Before a breaker trips or an alarm appears on SCADA, an invisible process converts raw electrical signals into digital intelligence. That silent hero? Analog-to-Digital Conversion (ADC). Let’s break it down step by step 👇 📡➡💻 From Analog Signal to Digital Decision 1️⃣ Low-Pass Filtering (Anti-Aliasing) ⚙️ Purpose: Remove high-frequency noise before sampling. Why? If unwanted frequencies enter the ADC, they cause aliasing — distortion that corrupts measurements. 💡 Clean input = accurate digital output. 2️⃣ Sampling 📉 The continuous analog waveform is captured at fixed time intervals. Sampling rate matters. Too slow → information loss. Too fast → unnecessary data overload. In power systems, sampling is often synchronized with system frequency (50/60 Hz). 3️⃣ Quantization 🪜 Each sampled value is approximated to the nearest discrete level. Resolution depends on ADC bits: • 8-bit → 256 levels • 12-bit → 4096 levels • 16-bit → 65,536 levels Higher resolution = finer accuracy in current and voltage measurement. 4️⃣ Encoding 🔢 Quantized values are converted into binary form. Example: Analog value → Quantized level → 110010 Now the signal is no longer a waveform — it’s data. 5️⃣ Digital Output 📲 The binary stream is transmitted to: ✔ Protection relays ✔ IEDs ✔ RTUs ✔ SCADA systems From here, algorithms detect faults, measure harmonics, calculate power, and trigger protective actions. 🧠 Without accurate ADC: ❌ Protection misoperations increase ❌ Fault detection becomes unreliable ❌ Automation decisions degrade With precise ADC: ✔ Real-time protection ✔ Advanced fault diagnostics ✔ Accurate metering ✔ Seamless IEC 61850 integration Every digital substation depends on clean, time-synchronized data. ⚡ From a simple CT secondary current to a breaker trip command — it all begins with precise sampling and conversion. Next time you analyze disturbance records or SCADA logs, remember: Behind every number lies an ADC working in microseconds.

🔄 Ever wondered how a substation “understands” electricity? Currents flow. Voltages fluctuate. Temperatures rise. But protection relays don’t read analog waves — they read numbers. Before a breaker trips or an alarm appears on SCADA, an invisible process converts raw electrical signals into digital intelligence. That silent hero? Analog-to-Digital Conversion (ADC). Let’s break it down step by step 👇 📡➡💻 From Analog Signal to Digital Decision 1️⃣ Low-Pass Filtering (Anti-Aliasing) ⚙️ Purpose: Remove high-frequency noise before sampling. Why? If unwanted frequencies enter the ADC, they cause aliasing — distortion that corrupts measurements. 💡 Clean input = accurate digital output. 2️⃣ Sampling 📉 The continuous analog waveform is captured at fixed time intervals. Sampling rate matters. Too slow → information loss. Too fast → unnecessary data overload. In power systems, sampling is often synchronized with system frequency (50/60 Hz). 3️⃣ Quantization 🪜 Each sampled value is approximated to the nearest discrete level. Resolution depends on ADC bits: • 8-bit → 256 levels • 12-bit → 4096 levels • 16-bit → 65,536 levels Higher resolution = finer accuracy in current and voltage measurement. 4️⃣ Encoding 🔢 Quantized values are converted into binary form. Example: Analog value → Quantized level → 110010 Now the signal is no longer a waveform — it’s data. 5️⃣ Digital Output 📲 The binary stream is transmitted to: ✔ Protection relays ✔ IEDs ✔ RTUs ✔ SCADA systems From here, algorithms detect faults, measure harmonics, calculate power, and trigger protective actions. 🧠 Without accurate ADC: ❌ Protection misoperations increase ❌ Fault detection becomes unreliable ❌ Automation decisions degrade With precise ADC: ✔ Real-time protection ✔ Advanced fault diagnostics ✔ Accurate metering ✔ Seamless IEC 61850 integration Every digital substation depends on clean, time-synchronized data. ⚡ From a simple CT secondary current to a breaker trip command — it all begins with precise sampling and conversion. Next time you analyze disturbance records or SCADA logs, remember: Behind every number lies an ADC working in microseconds.

24,450 views

Simple way to understand how an intermediate switch actually works ⚡

Simple way to understand how an intermediate switch actually works ⚡

15,562 views

Expect the Unexpected! 🐄🏍️

Sensitive content

Expect the Unexpected! 🐄🏍️

15,711 views

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