Difference between revisions of "Colored LED"

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{{Language|Microduino-Color led}}
 
 
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[[file:ColoredLed.jpg|thumb|400px|right]]
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==Outline==
 
==Outline==
 
Microduino-Color LED is a colored LED light with an built-in IC control chip, which can be cascaded arbitrarily. With only one I/O port, you can control all the lights. Each light can be controlled separately.
 
Microduino-Color LED is a colored LED light with an built-in IC control chip, which can be cascaded arbitrarily. With only one I/O port, you can control all the lights. Each light can be controlled separately.
 
==Features==
 
==Features==
*The chip adopts 5050 package, including control circuit and RGB chip inside.  
+
*The chip adopts a 5050 package that includes a control circuit and RGB chip inside.  
*With single bus control, you only need one I/O port to receive data and decode
+
*With single bus control, you only need one I/O port to receive data and decode.
*With built-in IC control, serial cascading interface, it can have cascade control.
+
*Built-in IC control and serial cascading interface for cascade control.
*Each pixel's trichromatic color can achieve 256-level brightness control, completing full display of 16,777,216 colors and the scanning frequency is not less than 400Hz/s;  
+
*Each pixel's trichromatic color can achieve 256-levels of brightness, completing a full display of 16,777,216 colors and with a scanning frequency greater than 400Hz/s;  
*With built-in power-on and off reset circuits;
+
*Built-in power-on and off reset circuits;
 
*Ultra low power and ultra long life.
 
*Ultra low power and ultra long life.
==Specification==
 
* Electrical specification
 
**Operation voltage: 3.3V~5V
 
**Output device
 
*Tech parameter
 
**Adopt WS2812 integrated light source control;
 
**Each pixel's RGB can realize 256-level brightness display.
 
**When refresh rate is 30 frame/s, the cascade number is not less than 1,024 points.
 
**When the transmission distance of any two points is within three meters, there is no need to add any circuit.
 
*Size
 
**Size of LED:5mm*5mm,
 
**Size of the board:20mm*20mm
 
**1.27mm-pitch 4Pin interface connects with Sensorhub.
 
*Connection method
 
**System and LED(<big>IN</big>):System LED control needs to connect the signal of Sensorhub to the " big>IN</big>" base board of the LED.
 
**LED Cascade(<big>OUT</big>): The first LED's <big>OUT</big> connects to the next LED's  <big>IN</big>.
 
[[File: CoreUSB_Ble_steup11.jpg|600px|center]]
 
  
==Document==
+
==Materials==
[[File:ws2812.pdf]]
 
==Development==
 
===Equipment===
 
 
{|class="wikitable"
 
{|class="wikitable"
 
|-
 
|-
Line 42: Line 24:
 
|[[mCookie-Hub]]||1||Sensor pin board   
 
|[[mCookie-Hub]]||1||Sensor pin board   
 
|-
 
|-
|[[Microduino-Color led]]||1||Colored LED light  
+
|[[Microduino-Color LED]]||1||Colored LED light  
 
|}
 
|}
 
*Other Equipment  
 
*Other Equipment  
Line 49: Line 31:
 
[[File:color_led-module.jpg|center|600px]]
 
[[File:color_led-module.jpg|center|600px]]
  
===Preparation===
+
==Instructions==
 +
 
 
*Setup 1:Connect the '''IN''' port on the back of the Color LED with the D6 port of the Hub. (D6 is the LED control pin, which can be freely changed by users.)
 
*Setup 1:Connect the '''IN''' port on the back of the Color LED with the D6 port of the Hub. (D6 is the LED control pin, which can be freely changed by users.)
 
[[file:mCookie-strandtext-sensor.JPG|600px|center]]
 
[[file:mCookie-strandtext-sensor.JPG|600px|center]]
*Setup 2:Connec tthe CoreUSB, Hub and Color LED to the computer with a USB cable.   
+
*Setup 2:Connect the CoreUSB, Hub and Color LED to the computer with a USB cable.   
 
[[file:mCookie-strandtext-pc.JPG|600px|center]]
 
[[file:mCookie-strandtext-pc.JPG|600px|center]]
===Experiment One: Get the light lighten ===
+
 
 +
===Experiment One: Change LED Colors ===
 +
The LED will change color between red, green, and blue every 500ms. <br>
 +
 
 
*Open Arduino IDE and copy the following code into IDE.   
 
*Open Arduino IDE and copy the following code into IDE.   
 
<source lang="cpp">
 
<source lang="cpp">
Line 85: Line 71:
 
}
 
}
 
</source>
 
</source>
*Select the right board and COM port, compile and download directly. Please refer to: [[AVR Core: Getting Started]]
+
*Select the right board and COM port, compile and download directly.  
[[file:upload.JPG|thumb|800px|center]]
+
[[file:upload1.JPG|thumb|800px|center]]
 
*Compile
 
*Compile
 
**When compiling, it'll remind you to save the project. Users can save it to your folder and name it freely.  
 
**When compiling, it'll remind you to save the project. Users can save it to your folder and name it freely.  
 
*Download
 
*Download
 
**Download after compiling, you can see the finishing notice.  
 
**Download after compiling, you can see the finishing notice.  
 +
[[file:Picture1.png|thumb|600px|center]]
  
*Every 500ms switches a light, whose light is red, green and blue respectively in loop.
+
====Program Debugging====
 +
*"#define PIN 6": Defines D6 as the control pin the LED is connected to.
 +
*"#define PIN_NUM 2": Defines the max number of LEDs allowed in sequence.
 +
*"colorWipe(uint32_t c, uint8_t wait)" - Function Description: 
 +
**"uint32_t c": Defines the color of the light with the format " strip.Color(R, G, B)"
 +
***R:(0-255)
 +
***G:(0-255)
 +
***B:(0-255)
 +
**"uint8_t wait": Defines the duration time of each light in ms.
 +
**Example: colorWipe(strip.Color(255, 0, 0), 500); Displays red light for 500ms. 
 +
**Users can change the color of the LED by adjusting the RGB values.
  
===Program Debugging===
 
*“#define PIN 6”: Define D6 control LED pin, which can be transfered through the HUB.
 
*“#define PIN_NUM 2”: Define LED number allowed.
 
*“colorWipe(uint32_t c, uint8_t wait)”Function Description: 
 
**“uint32_t c”: Define the color of the light with the format " strip.Color(R, G, B)"
 
***R:(0-255)。
 
***G:(0-255)。
 
***B:(0-255)。
 
**“uint8_t wait”: Define light duration time of each light.
 
**Example: colorWipe(strip.Color(255, 0, 0), 500); Every 500ms switches to the next light displaying red. 
 
**Users can use the related tool to change color. [http://www.atool.org/colorpicker.php color]。
 
 
===Experiment Two: Breathing Light ===
 
===Experiment Two: Breathing Light ===
 
*Open Arduino IDE and copy the following code into IDE.  
 
*Open Arduino IDE and copy the following code into IDE.  
Line 150: Line 136:
 
</source>
 
</source>
 
*Choose the right board and COM port, compile and download.   
 
*Choose the right board and COM port, compile and download.   
[[file:upload.JPG|thumb|800px|center]]
+
[[file:upload3.JPG|thumb|800px|center]]
*In result, the red, green and blue lights "breath" in loop.   
+
*In result, the red, green and blue lights "breath" in loop.
 +
 
 +
====Program Debugging====
 +
*"rainbowCycle( int r, int g, int b, uint8_t wait)" - Function Description:
 +
**r:(0-255)
 +
**g:(0-255)
 +
**b:(0-255)
 +
**"uint8_t wait": Define breathing speed in ms. The smaller the value is, the faster the LED will "breathe".
 +
 
 +
==Specifications==
 +
* Electrical specifications
 +
**Operation voltage: 3.3V~5V
 +
**Output device
 +
*Tech parameter
 +
**Utilizes WS2812 integrated light source control;
 +
**Each pixel's RGB is capable of a 256-level brightness display.
 +
**When the refresh rate is 30 frame/s, the cascade number is at least 1,024 points.
 +
**When the transmission distance of any two points is within three meters, there is no need to add any circuitry.
 +
*Size
 +
**Size of LED: 5mm*5mm,
 +
**Size of the board: 20mm*20mm
 +
**1.27mm-pitch 4Pin interface connects to Sensorhub.
 +
*Connection method
 +
**System and LED (<big>IN</big>): The LED control needs to connect the Sensorhub to the "<big>IN</big>" base board of the LED.
 +
**LED Cascade (<big>OUT</big>): The first LED's <big>OUT</big> connects to the next LED's <big>IN</big>.
 +
[[File: CoreUSB_Ble_steup11.jpg|600px|center]]
 +
 
 +
Additional Specs:
 +
[[File:ws2812.pdf]]
 +
 
  
===Code Debugging===
+
==Applications==
*“rainbowCycle( int r, int g, int b, uint8_t wait)”Function Description:
 
**r:(0-255)。
 
**g:(0-255)。
 
**b:(0-255)。
 
**“uint8_t wait”: Define breathing speed. The smaller the value is, the faster the breath gets.
 
==Application==
 
 
*LED full-color character string, LED full-color module and LED guardrail tube.  
 
*LED full-color character string, LED full-color module and LED guardrail tube.  
 
*LED point light source, LED pixel screen and LED shaped screen.  
 
*LED point light source, LED pixel screen and LED shaped screen.  
 
|}
 
|}

Latest revision as of 06:33, 30 September 2016

ColoredLed.jpg

Outline

Microduino-Color LED is a colored LED light with an built-in IC control chip, which can be cascaded arbitrarily. With only one I/O port, you can control all the lights. Each light can be controlled separately.

Features

  • The chip adopts a 5050 package that includes a control circuit and RGB chip inside.
  • With single bus control, you only need one I/O port to receive data and decode.
  • Built-in IC control and serial cascading interface for cascade control.
  • Each pixel's trichromatic color can achieve 256-levels of brightness, completing a full display of 16,777,216 colors and with a scanning frequency greater than 400Hz/s;
  • Built-in power-on and off reset circuits;
  • Ultra low power and ultra long life.

Materials

Module Number Function
mCookie-CoreUSB 1 Core board
mCookie-Hub 1 Sensor pin board
Microduino-Color LED 1 Colored LED light
  • Other Equipment
    • One USB cable
    • One sensor cable
Color led-module.jpg

Instructions

  • Setup 1:Connect the IN port on the back of the Color LED with the D6 port of the Hub. (D6 is the LED control pin, which can be freely changed by users.)
MCookie-strandtext-sensor.JPG
  • Setup 2:Connect the CoreUSB, Hub and Color LED to the computer with a USB cable.
MCookie-strandtext-pc.JPG

Experiment One: Change LED Colors

The LED will change color between red, green, and blue every 500ms.

  • Open Arduino IDE and copy the following code into IDE.
#include <Adafruit_NeoPixel.h>

#define PIN 6   //led control pin   
#define PIN_NUM 2 //Light number allowed  

Adafruit_NeoPixel strip = Adafruit_NeoPixel(PIN_NUM, PIN, NEO_GRB + NEO_KHZ800);

void setup() {
  strip.begin();
  strip.show(); 
}

void loop() {
  colorWipe(strip.Color(255, 0, 0), 500); // The first light goes read and after 500ms, the second light will go red. 
  colorWipe(strip.Color(0, 255, 0), 500); // The first light goes read and after 500ms, the second light will go green.
  colorWipe(strip.Color(0, 0, 255), 500); // The first light goes read and after 500ms, the second light will go blue.
}

// Fill the dots one after the other with a color
void colorWipe(uint32_t c, uint8_t wait) {
  //Let each light turn to a specific color in loop. "C" indicates color; "wait" represents the time duration of each light . 
  for (uint16_t i = 0; i < strip.numPixels(); i++) {
    strip.setPixelColor(i, c);
    strip.show();
    delay(wait);
  }
}
  • Select the right board and COM port, compile and download directly.
Upload1.JPG
  • Compile
    • When compiling, it'll remind you to save the project. Users can save it to your folder and name it freely.
  • Download
    • Download after compiling, you can see the finishing notice.
Picture1.png

Program Debugging

  • "#define PIN 6": Defines D6 as the control pin the LED is connected to.
  • "#define PIN_NUM 2": Defines the max number of LEDs allowed in sequence.
  • "colorWipe(uint32_t c, uint8_t wait)" - Function Description:
    • "uint32_t c": Defines the color of the light with the format " strip.Color(R, G, B)"
      • R:(0-255)
      • G:(0-255)
      • B:(0-255)
    • "uint8_t wait": Defines the duration time of each light in ms.
    • Example: colorWipe(strip.Color(255, 0, 0), 500); Displays red light for 500ms.
    • Users can change the color of the LED by adjusting the RGB values.

Experiment Two: Breathing Light

  • Open Arduino IDE and copy the following code into IDE.
#include <Adafruit_NeoPixel.h>

#define PIN 6   //LED light control pin  
#define PIN_NUM 2 //LED light number allowed

#define val_max 255
#define val_min 0

Adafruit_NeoPixel strip = Adafruit_NeoPixel(PIN_NUM, PIN, NEO_GRB + NEO_KHZ800);

void setup() {
  strip.begin();
  strip.show();
}

void loop() {
  rainbowCycle( 255, 0, 0, 10);//Red breathing 
  rainbowCycle( 0, 255, 0, 10);//Green breathing   
  rainbowCycle( 0, 0, 255, 10);//Blue breathing  
}

void colorSet(uint32_t c) {
  for (uint16_t i = 0; i < strip.numPixels(); i++) {
    strip.setPixelColor(i, c);
  }
  strip.show();
}

void rainbowCycle( int r, int g, int b, uint8_t wait) {
  for (int val = 0; val < 255; val++)
  {
    colorSet(strip.Color(map(val, val_min, val_max, 0, r), map(val, val_min, val_max, 0, g), map(val, val_min, val_max, 0, b)));
    delay(wait);
  }
  for (int val = 255; val >= 0; val--)
  {
    colorSet(strip.Color(map(val, val_min, val_max, 0, r), map(val, val_min, val_max, 0, g), map(val, val_min, val_max, 0, b)));
    delay(wait);
  }
}
  • Choose the right board and COM port, compile and download.
Upload3.JPG
  • In result, the red, green and blue lights "breath" in loop.

Program Debugging

  • "rainbowCycle( int r, int g, int b, uint8_t wait)" - Function Description:
    • r:(0-255)
    • g:(0-255)
    • b:(0-255)
    • "uint8_t wait": Define breathing speed in ms. The smaller the value is, the faster the LED will "breathe".

Specifications

  • Electrical specifications
    • Operation voltage: 3.3V~5V
    • Output device
  • Tech parameter
    • Utilizes WS2812 integrated light source control;
    • Each pixel's RGB is capable of a 256-level brightness display.
    • When the refresh rate is 30 frame/s, the cascade number is at least 1,024 points.
    • When the transmission distance of any two points is within three meters, there is no need to add any circuitry.
  • Size
    • Size of LED: 5mm*5mm,
    • Size of the board: 20mm*20mm
    • 1.27mm-pitch 4Pin interface connects to Sensorhub.
  • Connection method
    • System and LED (IN): The LED control needs to connect the Sensorhub to the "IN" base board of the LED.
    • LED Cascade (OUT): The first LED's OUT connects to the next LED's IN.
CoreUSB Ble steup11.jpg

Additional Specs: File:Ws2812.pdf


Applications

  • LED full-color character string, LED full-color module and LED guardrail tube.
  • LED point light source, LED pixel screen and LED shaped screen.