#microcontrollerproject resultados da pesquisa

👀 Small spoiler: I created a social network based on the #ESP32 microcontroller.

0xDigitalFarms's tweet image. 👀 Small spoiler: I created a social network based on the #ESP32 microcontroller.

Not that expensive for the materials. Arduino microcontroller, 2-4 servos, joystick, piano wire, springs, all about $50. I already have an idea of how the mechanism for the eye works. Was planing something similar for a protogen (animated fins and ears)

Mortisdeum_lost's tweet image. Not that expensive for the materials.
Arduino microcontroller, 2-4 servos, joystick, piano wire, springs, all about $50.

I already have an idea of how the mechanism for the eye works.

Was planing something similar for a protogen (animated fins and ears)

Multiprotocol wireless microcontroller that also features motor control and touch interfaces cnx-software.com/2025/10/28/mic… @MicrochipTech PIC32-BZ6 is an Arm Cortex-M4F MCU with support for Bluetooth 6.0 LE, Thread and Matter (802.15.4 radio), and a range of interfaces such as…

cnxsoft's tweet image. Multiprotocol wireless microcontroller that also features motor control and touch interfaces
cnx-software.com/2025/10/28/mic…

@MicrochipTech PIC32-BZ6 is an Arm Cortex-M4F MCU with support for Bluetooth 6.0 LE, Thread and Matter (802.15.4 radio), and a range of interfaces such as…
cnxsoft's tweet image. Multiprotocol wireless microcontroller that also features motor control and touch interfaces
cnx-software.com/2025/10/28/mic…

@MicrochipTech PIC32-BZ6 is an Arm Cortex-M4F MCU with support for Bluetooth 6.0 LE, Thread and Matter (802.15.4 radio), and a range of interfaces such as…
cnxsoft's tweet image. Multiprotocol wireless microcontroller that also features motor control and touch interfaces
cnx-software.com/2025/10/28/mic…

@MicrochipTech PIC32-BZ6 is an Arm Cortex-M4F MCU with support for Bluetooth 6.0 LE, Thread and Matter (802.15.4 radio), and a range of interfaces such as…
cnxsoft's tweet image. Multiprotocol wireless microcontroller that also features motor control and touch interfaces
cnx-software.com/2025/10/28/mic…

@MicrochipTech PIC32-BZ6 is an Arm Cortex-M4F MCU with support for Bluetooth 6.0 LE, Thread and Matter (802.15.4 radio), and a range of interfaces such as…

Looks like I found the perfect free software to "design microchips" 🤪 My HBM4 on CPU stacking is becoming true 😋🔥

MacroWorld21's tweet image. Looks like I found the perfect free software to "design microchips" 🤪
My HBM4 on CPU stacking is becoming true 😋🔥

先週に引き続き、@jemlさんのマイクロビットの教材。 組み立て、実際にやってみました✨ 火のイラストの中央穴に水をかけ、水位センサーが反応するまでのタイムを競います。 水鉄砲なかったんで、スプレーの空き容器。センサーやマイクロビットに水がかからない様にラップで保護しました🌈

yamiky2015's tweet image. 先週に引き続き、@jemlさんのマイクロビットの教材。

組み立て、実際にやってみました✨

火のイラストの中央穴に水をかけ、水位センサーが反応するまでのタイムを競います。

水鉄砲なかったんで、スプレーの空き容器。センサーやマイクロビットに水がかからない様にラップで保護しました🌈
yamiky2015's tweet image. 先週に引き続き、@jemlさんのマイクロビットの教材。

組み立て、実際にやってみました✨

火のイラストの中央穴に水をかけ、水位センサーが反応するまでのタイムを競います。

水鉄砲なかったんで、スプレーの空き容器。センサーやマイクロビットに水がかからない様にラップで保護しました🌈

先週に引き続き、@jemlさんのマイクロビット教材の続きをやってみました🌈 配線とプログラミング プログラミングは、応用までやると、画像のような量になりました。合ってるかな?来週のお楽しみ✨ 配線や、工作部分の図が無いので、市販のマイクロビット本で慣れてからの方がいいかも知れません🐢

yamiky2015's tweet image. 先週に引き続き、@jemlさんのマイクロビット教材の続きをやってみました🌈

配線とプログラミング
プログラミングは、応用までやると、画像のような量になりました。合ってるかな?来週のお楽しみ✨

配線や、工作部分の図が無いので、市販のマイクロビット本で慣れてからの方がいいかも知れません🐢
yamiky2015's tweet image. 先週に引き続き、@jemlさんのマイクロビット教材の続きをやってみました🌈

配線とプログラミング
プログラミングは、応用までやると、画像のような量になりました。合ってるかな?来週のお楽しみ✨

配線や、工作部分の図が無いので、市販のマイクロビット本で慣れてからの方がいいかも知れません🐢


Built a small inventory web app to track my microcontrollers and sensors. I usually design in Figma, but this time went straight to code - with help from Codex CLI.


A tiny CPU simulator written in Python. (See how your code really runs)

GithubProjects's tweet image. A tiny CPU simulator written in Python. (See how your code really runs)

If you’re interested in learning about Machine Learning on Microcontrollers, check out this helpful TinyML book by @petewarden and @dansitu! 🐦 Learn more ↓ goo.gle/2V3h1O8

TensorFlow's tweet image. If you’re interested in learning about Machine Learning on Microcontrollers, check out this helpful TinyML book by @petewarden and @dansitu! 🐦

Learn more ↓ goo.gle/2V3h1O8

My biggest #PCB design gripe is LiPo charging 😡🔋- especially when prototyping w/ #microcontrollers. There just aren't any drop-in solutions that charge & power on the same pin, let alone a castellated one! So I designed ⚡️MiniMeter⚡️- a tiny charger & I2C battery meter! ⬇️

AlexLynd's tweet image. My biggest #PCB design gripe is LiPo charging 😡🔋- especially when prototyping w/ #microcontrollers. 

There just aren't any drop-in solutions that charge & power on the same pin, let alone a castellated one!

So I designed ⚡️MiniMeter⚡️- a tiny charger & I2C battery meter! ⬇️
AlexLynd's tweet image. My biggest #PCB design gripe is LiPo charging 😡🔋- especially when prototyping w/ #microcontrollers. 

There just aren't any drop-in solutions that charge & power on the same pin, let alone a castellated one!

So I designed ⚡️MiniMeter⚡️- a tiny charger & I2C battery meter! ⬇️
AlexLynd's tweet image. My biggest #PCB design gripe is LiPo charging 😡🔋- especially when prototyping w/ #microcontrollers. 

There just aren't any drop-in solutions that charge & power on the same pin, let alone a castellated one!

So I designed ⚡️MiniMeter⚡️- a tiny charger & I2C battery meter! ⬇️

ATtiny10 is the smallest microcontroller I have wrote firmware for.

RobertDaleSmith's tweet image. ATtiny10 is the smallest microcontroller I have wrote firmware for.
RobertDaleSmith's tweet image. ATtiny10 is the smallest microcontroller I have wrote firmware for.

Another snippet from this hardware 1-bit jazz/prog album I've been working on. This is a software emulated output of the microcontroller code: three pulse channels (top), one PWM sampler (bottom). Visuals generated by SidWizPlus. #1bit #chiptune #jazz #programming


One of them runs Python, the other runs baremetal C. Both microcontrollers run at 16 MHz. Both microcontrollers are given a simple task: toggle a LED. We will explore the topic "overhead" in a video soon!

thembeddevguy's tweet image. One of them runs Python, the other runs baremetal C.
Both microcontrollers run at 16 MHz.
Both microcontrollers are given a simple task: toggle a LED.
We will explore the topic "overhead" in a video soon!

Microchip PIC12C508A-JW (1999) 8-pin 8bit microcontroller with 512 words program memory and 25 bytes of RAM #Microchip

Siliconinsid's tweet image. Microchip PIC12C508A-JW (1999)
8-pin 8bit microcontroller with 512 words program memory and 25 bytes of RAM
#Microchip
Siliconinsid's tweet image. Microchip PIC12C508A-JW (1999)
8-pin 8bit microcontroller with 512 words program memory and 25 bytes of RAM
#Microchip

In 2018 I started experimenting with tiny PCB motors. Fast forward to this week & we’ve actually launched them as a product at microbots.io I’ve learned so much during this journey, and you can now watch the full story in my latest YouTube video! Hope you enjoy it ✌️


Hello everyone, I'm excited to share my recent project with you all. It is a home automation project that uses an ESP8266 microcontroller to remotely control lighting through a user-friendly smartphone app. This project was powered by an ESP8266 microcontroller.


A lot of people know about the Padauk ~$0.03 microcontrollers, but the newer ~$0.18 TI MSPM0C1104 is also pretty cool- and smaller than an 0402 resistor! Chip consolidation is just getting started. Small capable chips will replace hardware subcircuits with software

seveibar's tweet image. A lot of people know about the Padauk ~$0.03 microcontrollers, but the newer ~$0.18 TI MSPM0C1104 is also pretty cool- and smaller than an 0402 resistor!

Chip consolidation is just getting started. Small capable chips will replace hardware subcircuits with software
seveibar's tweet image. A lot of people know about the Padauk ~$0.03 microcontrollers, but the newer ~$0.18 TI MSPM0C1104 is also pretty cool- and smaller than an 0402 resistor!

Chip consolidation is just getting started. Small capable chips will replace hardware subcircuits with software
seveibar's tweet image. A lot of people know about the Padauk ~$0.03 microcontrollers, but the newer ~$0.18 TI MSPM0C1104 is also pretty cool- and smaller than an 0402 resistor!

Chip consolidation is just getting started. Small capable chips will replace hardware subcircuits with software
seveibar's tweet image. A lot of people know about the Padauk ~$0.03 microcontrollers, but the newer ~$0.18 TI MSPM0C1104 is also pretty cool- and smaller than an 0402 resistor!

Chip consolidation is just getting started. Small capable chips will replace hardware subcircuits with software

Here we go, sending out for fab. Finally managed to route it on 2 layers 🙂 The MCU is APM32E103ZE (120MHz Cortex-M3), W925G6KH-6L 32MB x 16 bit wide SDRAM, CH390 SPI Ethernet controller, 4 x 4MB SPI FLASH, Micro-SD, RS485 and CAN comms and some application specific analog stuff.

8bitgeek's tweet image. Here we go, sending out for fab. Finally managed to route it on 2 layers 🙂 The MCU is APM32E103ZE (120MHz Cortex-M3), W925G6KH-6L 32MB x 16 bit wide SDRAM, CH390 SPI Ethernet controller, 4 x 4MB SPI FLASH, Micro-SD, RS485 and CAN comms and some application specific analog stuff.
8bitgeek's tweet image. Here we go, sending out for fab. Finally managed to route it on 2 layers 🙂 The MCU is APM32E103ZE (120MHz Cortex-M3), W925G6KH-6L 32MB x 16 bit wide SDRAM, CH390 SPI Ethernet controller, 4 x 4MB SPI FLASH, Micro-SD, RS485 and CAN comms and some application specific analog stuff.

There we go. I got most of my net classes sorted. I usually end up going in and doing some touch up work after the auto-router work has completed, anyway.

8bitgeek's tweet image. There we go. I got most of my net classes sorted. I usually end up going in and doing some touch up work after the auto-router work has completed, anyway.


Check out this fascinating project on monitoring water tank vacuum and pressure using a PIC16F18313 microcontroller and an electromagnetic pressure sensor. 💧📊 #DIY #MicrocontrollerProject #WaterTankMonitoring #electronics #Embedded circuitcellar.com/research-desig…

embeddedpub's tweet image. Check out this fascinating project on monitoring water tank vacuum and pressure using a PIC16F18313 microcontroller and an electromagnetic pressure sensor. 💧📊 #DIY #MicrocontrollerProject #WaterTankMonitoring #electronics #Embedded

circuitcellar.com/research-desig…
embeddedpub's tweet image. Check out this fascinating project on monitoring water tank vacuum and pressure using a PIC16F18313 microcontroller and an electromagnetic pressure sensor. 💧📊 #DIY #MicrocontrollerProject #WaterTankMonitoring #electronics #Embedded

circuitcellar.com/research-desig…
embeddedpub's tweet image. Check out this fascinating project on monitoring water tank vacuum and pressure using a PIC16F18313 microcontroller and an electromagnetic pressure sensor. 💧📊 #DIY #MicrocontrollerProject #WaterTankMonitoring #electronics #Embedded

circuitcellar.com/research-desig…
embeddedpub's tweet image. Check out this fascinating project on monitoring water tank vacuum and pressure using a PIC16F18313 microcontroller and an electromagnetic pressure sensor. 💧📊 #DIY #MicrocontrollerProject #WaterTankMonitoring #electronics #Embedded

circuitcellar.com/research-desig…

#giveaway! This Wednesday, take your #microcontrollerproject one step further by using #GigaDevice #gd32vf103 #opensourcehardware. The #GD32VF is an #stm32f1 like part which uses a #riscv32 core instead of the #armcortex #computecore. The… 📸 instagram.com/p/CeQYPyZj-xV/

tamhanna's tweet image. #giveaway! This Wednesday, take your #microcontrollerproject one step further by using #GigaDevice #gd32vf103 #opensourcehardware. The #GD32VF is an #stm32f1 like part which uses a #riscv32 core instead of the #armcortex #computecore. The…

📸 instagram.com/p/CeQYPyZj-xV/

Nenhum resultado para "#microcontrollerproject"

#giveaway! This Wednesday, take your #microcontrollerproject one step further by using #GigaDevice #gd32vf103 #opensourcehardware. The #GD32VF is an #stm32f1 like part which uses a #riscv32 core instead of the #armcortex #computecore. The… 📸 instagram.com/p/CeQYPyZj-xV/

tamhanna's tweet image. #giveaway! This Wednesday, take your #microcontrollerproject one step further by using #GigaDevice #gd32vf103 #opensourcehardware. The #GD32VF is an #stm32f1 like part which uses a #riscv32 core instead of the #armcortex #computecore. The…

📸 instagram.com/p/CeQYPyZj-xV/

Check out this fascinating project on monitoring water tank vacuum and pressure using a PIC16F18313 microcontroller and an electromagnetic pressure sensor. 💧📊 #DIY #MicrocontrollerProject #WaterTankMonitoring #electronics #Embedded circuitcellar.com/research-desig…

embeddedpub's tweet image. Check out this fascinating project on monitoring water tank vacuum and pressure using a PIC16F18313 microcontroller and an electromagnetic pressure sensor. 💧📊 #DIY #MicrocontrollerProject #WaterTankMonitoring #electronics #Embedded

circuitcellar.com/research-desig…
embeddedpub's tweet image. Check out this fascinating project on monitoring water tank vacuum and pressure using a PIC16F18313 microcontroller and an electromagnetic pressure sensor. 💧📊 #DIY #MicrocontrollerProject #WaterTankMonitoring #electronics #Embedded

circuitcellar.com/research-desig…
embeddedpub's tweet image. Check out this fascinating project on monitoring water tank vacuum and pressure using a PIC16F18313 microcontroller and an electromagnetic pressure sensor. 💧📊 #DIY #MicrocontrollerProject #WaterTankMonitoring #electronics #Embedded

circuitcellar.com/research-desig…
embeddedpub's tweet image. Check out this fascinating project on monitoring water tank vacuum and pressure using a PIC16F18313 microcontroller and an electromagnetic pressure sensor. 💧📊 #DIY #MicrocontrollerProject #WaterTankMonitoring #electronics #Embedded

circuitcellar.com/research-desig…

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