Topic: pwm-driver Goto Github
Some thing interesting about pwm-driver
Some thing interesting about pwm-driver
pwm-driver,Adafruit PWM Servo Driver Library
Organization: adafruit
pwm-driver,Pulse width modulation (PWM) via direct memory transfer (DMA) on the Raspberry PI
User: besp9510
pwm-driver,PWM actuator library.
Organization: bolderflight
pwm-driver,Driver for the NXP Semiconductors PCA9685 16-channel 12-bit PWM I2C-bus LED Controller
User: cdcme
pwm-driver,Control of the LED-Warrior18 via different platforms
User: codemercs-com
pwm-driver,This is the release repository for Cool Control, a highly customizable fan controlling software for Windows.
User: coolcontrol-org
Home Page: https://coolcontrol.org/
pwm-driver,The goal of this project is to advance the wireless charging capabilities at Oregon Tech by charging lower power devices to high power such as Electric Vehicles. Our project involves designing a working wireless power transfer prototype that meets the desired specifications and can be utilized by students for research purposes at Oregon Tech.
User: craigsanchez47
pwm-driver,Camera's gimbal stabilizer for BeagleBone using PWM signals
User: dpm76
pwm-driver,Implementation of Kalmusβ guidance method for robot navigation
Organization: dyk-team
Home Page: https://dykplus.wordpress.com/
pwm-driver,Arduino library that allows DC motors to gradually reach their new power level, within allowed PWM ranges
User: elijas
pwm-driver,Arduino eFlexPwm for Teensy 4.x
User: epsilonrt
Home Page: https://epsilonrt.github.io/eFlexPwm/
pwm-driver,Arduino Library for the MAX7313 Port Expander
Organization: eta-systems
pwm-driver,L298 H-Bridge motor driver using an ATtiny85 .
User: gitmodu
pwm-driver,Simple C++ to control PWM motors from devices such as the Raspberry Pi using a GPIO interface.
User: gtaeberhard
pwm-driver,ROS wrapper for the control of PWM motors and servos.
User: gtaeberhard
pwm-driver,A variable frequency three phase PWM generation code for an AVR ATMEGA328P/-PU microcontroller
User: hannahvsawiuk
pwm-driver,Motor driver for Atmega32 controlling the direction and the speed using PWM
User: hossam-elbahrawy
pwm-driver,24-Hour LED Controller for Raspberry Pi. Aimed at Aquarium Use.
User: kaiede
pwm-driver,This library enables you to use Hardware-based PWM channels on Arduino AVR ATtiny-based boards (ATtiny3217, etc.), using megaTinyCore, to create and output PWM to pins. Using the same functions as other FastPWM libraries to enable you to port PWM code easily between platforms
User: khoih-prog
pwm-driver,This library enables you to use Hardware-based PWM channels on AVR-based boards, such as Nano, UNO, Mega, Leonardo, 32u4, etc., to create and output PWM. Using the same functions as other FastPWM libraries to enable you to port PWM code easily between platforms.
User: khoih-prog
pwm-driver,This library enables you to use ISR-based PWM channels on AVR-based boards, such as Mega-2560, UNO,Nano, Leonardo, etc., to create and output PWM any GPIO pin. It now supports 16 ISR-based PWM channels, while consuming only 1 Hardware Timer. PWM channel interval can be very long (ulong microsecs / millisecs). The most important feature is they're ISR-based PWM channels, supporting lower PWM frequencies with suitable accuracy. Their executions are not blocked by bad-behaving functions or tasks. This important feature is absolutely necessary for mission-critical tasks. These ISR-based PWMs, still work even if other software functions are blocking. Moreover, they are much more precise (certainly depending on clock frequency accuracy) than other software-based PWM using millis() or micros(). That's necessary if you need to control devices requiring high precision
User: khoih-prog
pwm-driver,This library enables you to use Hardware-based PWM channels on Generic boards to use PWM to control continuous Stepper Motor. The most important feature is they're purely hardware-based PWM channels, supporting very high PWM frequencies. Therefore, their executions are not blocked by bad-behaving functions or tasks
User: khoih-prog
pwm-driver,This library, a wrapper around ESP32 ledc library, enables you to use Hardware-based PWM channels on ESP32, ESP32_S2, ESP32_S3 or ESP32_C3-based boards to create and output PWM to pins. Using similar functions as some other FastPWM libraries, it enables you to port PWM code easily between platforms.
User: khoih-prog
pwm-driver,This library enables you to use Interrupt from Hardware Timers on an ESP32, ESP32_S2 or ESP32_C3-based board to create and output PWM to pins. It now supports 16 ISR-based synchronized PWM channels, while consuming only 1 Hardware Timer. PWM interval can be very long (uint32_t millisecs). The most important feature is they're ISR-based PWM channels. Therefore, their executions are not blocked by bad-behaving functions or tasks. This important feature is absolutely necessary for mission-critical tasks. These hardware PWM channels, using interrupt, still work even if other functions are blocking. Moreover, they are much more precise (certainly depending on clock frequency accuracy) than other software timers using millis() or micros(). That's necessary if you need to measure some data requiring better accuracy.
User: khoih-prog
pwm-driver,This library enables you to use Interrupt from Hardware Timers on an ESP8266-based board to create and output PWM to pins. It now supports 16 ISR-based synchronized PWM channels, while consuming only 1 Hardware Timer. PWM interval can be very long (uint32_t millisecs). The most important feature is they're ISR-based PWM channels. Therefore, their executions are not blocked by bad-behaving functions or tasks. This important feature is absolutely necessary for mission-critical tasks. These hardware PWM channels, using interrupt, still work even if other functions are blocking. Moreover, they are much more precise (certainly depending on clock frequency accuracy) than other software timers using millis() or micros(). That's necessary if you need to measure some data requiring better accuracy
User: khoih-prog
pwm-driver,This library enables you to use Hardware Timers on RP2040-based RP2040 board to create and output PWM to pins. These PWM channels, using RP2040 Hardware-PWM channels, still work even if other functions are blocking. Moreover, they are much more precise (certainly depending on clock frequency accuracy) than other software ISR-based PWM, using millis(), micros() or Timer Interrupt. This important feature is absolutely necessary for mission-critical tasks. You can start, stop, change and restore the settings of any PWM channel on-the-fly
User: khoih-prog
pwm-driver,This library enables you to use ISR-based PWM channels on RP2040-based boards, such as Nano_RP2040_Connect, RASPBERRY_PI_PICO, with Arduino-mbed (mbed_nano or mbed_rp2040) core to create and output PWM any GPIO pin. The most important feature is they're ISR-based PWM channels, supporting lower PWM frequencies with suitable accuracy. Their executions are not blocked by bad-behaving functions or tasks. This important feature is absolutely necessary for mission-critical tasks. These ISR-based PWMs, still work even if other software functions are blocking. Moreover, they are much more precise (certainly depending on clock frequency accuracy) than other software-based PWM using millis() or micros(). That's necessary if you need to control devices requiring high precision
User: khoih-prog
pwm-driver,This library enables you to use Hardware-based PWM channels on megaAVR-based boards, such as UNO WiFi Rev2, AVR_Nano_Every, etc., to create and output PWM. Using the same functions as other FastPWM libraries to enable you to port PWM code easily between platforms.
User: khoih-prog
pwm-driver,This library enables you to use Hardware Timers on nRF52840-based Nano_33_BLE or Nano_33_BLE_Sense board to create and output PWM to pins. These PWM channels, using nRF52840 Hardware Timers, still work even if other functions are blocking. Moreover, they are much more precise (certainly depending on clock frequency accuracy) than other software ir ISR-based PWM, using millis(), micros() or Timer Interrupt. This important feature is absolutely necessary for mission-critical tasks. You can start, stop, change and restore the settings of any PWM channel on-the-fly.
User: khoih-prog
pwm-driver,This library enables you to use Hardware-based PWM channels on nRF52-based boards to create and output PWM to pins. Using the same functions as other FastPWM libraries to enable you to port PWM code easily between platforms.
User: khoih-prog
pwm-driver,This library enables you to use Hardware Timers on an STM32H7-based Portenta_H7 board to create and output PWM to pins. These PWM channels, using Portenta_H7 Hardware Timers, still work even if other functions are blocking. Moreover, they are much more precise (certainly depending on clock frequency accuracy) than other software or ISR-based PWM, using millis(), micros() or Timer Interrupt. This important feature is absolutely necessary for mission-critical tasks. You can start, stop, change and restore the settings of any PWM channel on-the-fly.
User: khoih-prog
pwm-driver,This library enables you to use Hardware-based PWM channels on RP2040-based boards, such as Nano_RP2040_Connect, RASPBERRY_PI_PICO, with either Arduino-mbed (mbed_nano or mbed_rp2040) or arduino-pico core to create and output PWM any GPIO pin. The most important feature is they're purely hardware-based PWM channels, supporting very high PWM frequencies. Therefore, their executions are not blocked by bad-behaving functions or tasks. This important feature is absolutely necessary for mission-critical tasks. These hardware-based PWMs, still work even if other software functions are blocking. Moreover, they are much more precise (certainly depending on clock frequency accuracy) than other software-based PWM using ISR, millis() or micros(). That's necessary if you need to control devices requiring high precision. New efficient setPWM_manual function to facilitate waveform creation using PWM
User: khoih-prog
pwm-driver,This library enables you to use ISR-based PWM channels on RP2040-based boards, such as ADAFRUIT_FEATHER_RP2040, RASPBERRY_PI_PICO, with arduino-pico core to create and output PWM any GPIO pin. The most important feature is they're ISR-based PWM channels, supporting lower PWM frequencies with suitable accuracy. Their executions are not blocked by bad-behaving functions or tasks. This important feature is absolutely necessary for mission-critical tasks. These ISR-based PWMs, still work even if other software functions are blocking. Moreover, they are much more precise (certainly depending on clock frequency accuracy) than other software-based PWM using millis() or micros(). That's necessary if you need to control devices requiring high precision
User: khoih-prog
pwm-driver,This library enables you to use Hardware-based PWM channels on SAMD21/SAMD51-based boards to create and output PWM to pins. Using the same functions as other FastPWM libraries to enable you to port PWM code easily between platforms.
User: khoih-prog
pwm-driver,This library enables you to use Hardware Timers on SAMD21/SAMD51 boards to create and output PWM to pins. These PWM channels, using SAMD21/SAMD51 Hardware Timers, still work even if other functions are blocking. Moreover, they are much more precise (certainly depending on clock frequency accuracy) than other software timers using millis() or micros(). That's mandatory if you need to measure some data requiring better accuracy. It now supports 16 ISR-based Timers, while consuming only 1 Hardware Timer. Timers interval is very long (ulong millisecs). The most important feature is they're ISR-based Timers. Therefore, their executions are not blocked by bad-behaving functions or tasks. This important feature is absolutely necessary for mission-critical tasks. Max PWM frequency is limited at 1000Hz
User: khoih-prog
pwm-driver,This wrapper library enables you to use Hardware-based PWM on STM32F/L/H/G/WB/MP1 boards to create and output PWM to pins. The most important feature is they're purely hardware-based PWM channels. Therefore, their executions are very precise and not blocked by bad-behaving functions or tasks. This important feature is absolutely necessary for mission-critical tasks. These hardware PWM channels still work even if other functions are blocking. Moreover, they are much more precise (certainly depending on clock frequency accuracy) than other ISR-based or software-based PWM using millis() or micros(). That's necessary if you need to measure some data requiring very high frequency and much better accuracy. PWM feature can now be used.
User: khoih-prog
pwm-driver,This library enables you to use Hardware Timers on STM32F/L/H/G/WB/MP1 boards to create and output PWM to pins. The most important feature is they're purely hardware-based PWM channels. Therefore, their executions are not blocked by bad-behaving functions or tasks. This important feature is absolutely necessary for mission-critical tasks. These hardware timers, using interrupt, still work even if other functions are blocking. Moreover, they are much more precise (certainly depending on clock frequency accuracy) than other software timers using millis() or micros(). That's necessary if you need to measure some data requiring better accuracy. PWM feature can now be used. Max PWM frequency is limited at 1000Hz
User: khoih-prog
pwm-driver,This library enables you to use ISR-based PWM channels on Teensy boards, such as Teensy 2.x, Teensy LC, Teensy 3.x, Teensy 4.x, Teensy MicroMod, etc., to create and output PWM any GPIO pin. It now supports 16 ISR-based PWM channels, while consuming only 1 Hardware Timer. PWM channel interval can be very long (ulong microsecs / millisecs). The most important feature is they're ISR-based PWM channels, supporting lower PWM frequencies with suitable accuracy. Their executions are not blocked by bad-behaving functions or tasks. This important feature is absolutely necessary for mission-critical tasks. These ISR-based PWMs, still work even if other software functions are blocking. Moreover, they are much more precise (certainly depending on clock frequency accuracy) than other software-based PWM using millis() or micros(). That's necessary if you need to control devices requiring high precision
User: khoih-prog
pwm-driver,This repository contains the PCA9685 C++ package dedicated for ROS2.
User: kimsniper
pwm-driver,Zynq ZedBoard SoC Lecture Final Project, degree adjustable ultrasonic sensor application
User: mcagriaksoy
pwm-driver,RC Dual Motor Driver firmware for STM8 MCUs
User: neoxic
pwm-driver,A small collection of ESP8266 and ESP32 projects.
User: pstoaks
pwm-driver,Arduino library for PCA9635 I2C 8 bit PWM LED driver - 16 channel.
User: robtillaart
pwm-driver,C-library with implementation of the Space-Vector PWM generation technique
User: rubinsteina13
Home Page: https://www.switchcraft.org/learning/2017/3/15/space-vector-pwm-intro
pwm-driver,A Pca9685 golang library.
User: sromerotech
pwm-driver,The FastPWM Library for Atmega processors
Organization: uahev
pwm-driver,HIGH SCHOOL PROJECT - Simple Arduino library that allows you to communicate in J1850-PWM mode.
User: vittorioexp
pwm-driver,
User: yorenschriever
pwm-driver,1D shimming coil design and optimisation algorithm
User: yujie-zhao
Home Page: http://yujiephysics.uk
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