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#Linearmotor Reel by @getnlab - After spotting the problems in Part 1, it's time to debug.

First check: wiring. The power connections to 5V and ground weren't color coded, which mad
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GE
@getnlab
After spotting the problems in Part 1, it’s time to debug. First check: wiring. The power connections to 5V and ground weren’t color coded, which made it harder to see that the op amp wasn’t powered at all. Next problem: the gain resistors were in the wrong order. Then a design issue appeared — the resistor in series with the LED was 100k instead of 100Ω, so almost no current could flow. And finally… the LED itself was backwards. Debugging circuits isn’t magic. It’s just checking things step by step. Want to learn to troubleshoot circuits like this? Reserve your nLab kit for $1 at getnlab.com. #ElectronicsDebugging #CircuitDesign #STEMlearning #EngineeringSkills #nLab
#Linearmotor Reel by @i2c_jason (verified account) - Let's design a bottom dollar inductive sensing circuit and algorithm for this linear motor loop. We are using microcontroller peripherals because this
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I2
@i2c_jason
Let’s design a bottom dollar inductive sensing circuit and algorithm for this linear motor loop. We are using microcontroller peripherals because this is for an 8-bit micro intro kit. #electronics #stem #engineering #education #diy
#Linearmotor Reel by @i2c_jason (verified account) - Let's build a captive ball linear motor loop from scratch! #education #stem #engineering #diy #kit
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@i2c_jason
Let’s build a captive ball linear motor loop from scratch! #education #stem #engineering #diy #kit
#Linearmotor Reel by @kitchen.__.gallery - Understanding Ohm's Law: LED Current vs. Resistance

How Resistors Control LED Brightness

Prototyping an LED Test Board with DIP Switches

In this vi
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@kitchen.__.gallery
Understanding Ohm’s Law: LED Current vs. Resistance How Resistors Control LED Brightness Prototyping an LED Test Board with DIP Switches In this video, we explore the fundamental relationship between voltage, current, and resistance (I = \frac{V}{R}). By using a series of resistors ranging from 330\Omega to 22k\Omega, you can see a clear visual representation of how increasing resistance decreases the current flowing through the LED, making it appear dimmer. DIP Switch: Used to toggle different resistor paths. Resistors: Varying values to demonstrate current limiting. LEDs: Providing visual feedback of the power output. PCB: Custom marked with Ohm's Law formulas for quick reference. #Electronics #Engineering #OhmsLaw #STEM #DIYElectronics #Arduino #CircuitDesign #ElectricalEngineering #Physics #Learning
#Linearmotor Reel by @eeeoutreach - Ever wondered how semiconductors power modern technology? 👩‍💻
How materials are engineered at the nanometre scale?
Or how tiny devices control every
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EE
@eeeoutreach
Ever wondered how semiconductors power modern technology? 👩‍💻 How materials are engineered at the nanometre scale? Or how tiny devices control everything from smartphones to advanced medical equipment?📱 In this series, we break down what each EEE specialisation is really about, this time, Micro & Nanoelectronics! If you are curious about how technology works at the smallest scales, and how microscopic changes create massive impact, this might just be your spec 👀 More specialisations coming soon, stay tuned😼
#Linearmotor Reel by @digital_evaluation_board - Electrical engineering students ⚡️

What if you could prototype your circuits whenever you want… wherever you are?

I'm Dr. Warren Gall, creator of th
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@digital_evaluation_board
Electrical engineering students ⚡️ What if you could prototype your circuits whenever you want… wherever you are? I’m Dr. Warren Gall, creator of the Digital Evaluation Board (DEB). This project was born during the pandemic when students couldn’t access physical labs. But here’s what we realized… The need for a portable lab didn’t go away. Inside the DEB, you get: • A full prototyping platform • Your own circuit board with breadboard area • Built-in basic digital logic gates • Instruction manual to get started fast • Handy schematic reference cards • Everything you need to start building immediately Dorm room Kitchen table Library Park bench No lab access required. No waiting for equipment. No depending on campus resources. Whether your school has limited lab time — or no lab at all — this gives you the power to build, test, and experiment on your schedule. And here’s the exciting part 👇 We’ve officially launched on Amazon. If you want your own portable lab in a box, comment DEB below and we’ll send you the Amazon link. ⚡️
#Linearmotor Reel by @automobilebasicideas - How do N-type semiconductor materials pass charge in LED lamps?#NTypeSemiconductor #LEDWorking #ElectronFlow #ChargeCarriers #FreeElectrons Semiconduc
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@automobilebasicideas
How do N-type semiconductor materials pass charge in LED lamps?#NTypeSemiconductor #LEDWorking #ElectronFlow #ChargeCarriers #FreeElectrons SemiconductorPhysics PNJunction LEDTechnology ElectronicsBasics CurrentFlow SolidStatePhysics DiodeWorking ElectronMobility DopingProcess SiliconSemiconductor ElectricalEngineering
#Linearmotor Reel by @getnlab - For Valentine's Day, I built a circuit that blinks LEDs in the shape of a heart, synced to my actual heartbeat. Every blink = one heartbeat 🔴

This i
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@getnlab
For Valentine’s Day, I built a circuit that blinks LEDs in the shape of a heart, synced to my actual heartbeat. Every blink = one heartbeat 🔴 This is electronics meets biology, and honestly it might be the most romantic thing I’ve ever built. 🔗 Want to build your own? Visit getnlab.com to learn more about the circuit kit, and follow along for more custom circuit builds.
#Linearmotor Reel by @i2c_jason (verified account) - Let's get this incredibly tiny linear actuator running and bank it up into our portfolio of $150/hr skills. In 3 minutes! #electronics #engineering #s
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I2
@i2c_jason
Let’s get this incredibly tiny linear actuator running and bank it up into our portfolio of $150/hr skills. In 3 minutes! #electronics #engineering #stem #education #project
#Linearmotor Reel by @maya_crazy_abc - Fun with Electronics 😎 NAND, NOR & AND Gates Semiconductor Ic Project #semiconductor #experiment #electronics #techprojects #logicgates
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MA
@maya_crazy_abc
Fun with Electronics 😎 NAND, NOR & AND Gates Semiconductor Ic Project #semiconductor #experiment #electronics #techprojects #logicgates
#Linearmotor Reel by @hackmakemod - This little circuit solves a common problem in battery powered projects… how do you power something on with a button, but let the microcontroller shut
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@hackmakemod
This little circuit solves a common problem in battery powered projects… how do you power something on with a button, but let the microcontroller shut itself off later? The button wakes the system up. Once the microcontroller boots, it latches its own power on using an opto-isolator and a transistor. After a period of inactivity, the firmware releases the latch and the circuit cuts power completely. The opto-isolator keeps the control side electrically isolated, which means the device draws essentially zero current when it’s off. Simple parts… clever behavior… and a really useful trick for battery powered builds. #electronics #circuitdesign #embedded #microcontroller #lowpowerdesign batteryprojects hardwaredesign makercommunity electronicsengineering engineeringlife
#Linearmotor Reel by @klesbkpuofficial - 🔬 Unlocking Diodes: N-Type vs P-Type Magic! 🔋

Ever wondered how a diode acts like a one-way traffic cop for electricity? It all starts with N-type
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@klesbkpuofficial
🔬 Unlocking Diodes: N-Type vs P-Type Magic! 🔋 Ever wondered how a diode acts like a one-way traffic cop for electricity? It all starts with N-type (extra electrons, negative charge) and P-type (extra holes, positive charge) semiconductors. Perfect for rectifiers, LEDs & more! What's your favorite diode application? 👇 #Diodes #Semiconductors #ElectronicsBasics #NTypePDiode #PhysicsExplained TechEducation EngineeringTips STEM LearnElectronics CircuitDesign

✨ Guia de Descoberta #Linearmotor

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