Difference between revisions of "Matrix - LED"
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The module has three 2.54 mm spacing pins: V(supply voltage),G(ground) and S(signal) which is connected to a triode to turn the LED on or off. You can write high or low, or PWN signals(3.3V or 5V) to S. When you write high to S the LED will turn on and become brightest. When you write low to S the LED will turn off. If you write PWM signals to S the LED's brightness will vary depending on the PWM's signal variances. | The module has three 2.54 mm spacing pins: V(supply voltage),G(ground) and S(signal) which is connected to a triode to turn the LED on or off. You can write high or low, or PWN signals(3.3V or 5V) to S. When you write high to S the LED will turn on and become brightest. When you write low to S the LED will turn off. If you write PWM signals to S the LED's brightness will vary depending on the PWM's signal variances. | ||
+ | ==硬件连接== | ||
+ | ===连接NanoPi M1=== | ||
+ | 参考下图连接模块:<br> | ||
+ | [[File:Matrix-LED_nanopi_m1.jpg|frameless|600px|Matrix-LED_nanopi_m1]] | ||
+ | |||
+ | 连接说明: | ||
+ | {| class="wikitable" | ||
+ | |- | ||
+ | |Matrix-LED || NanoPi M1 | ||
+ | |- | ||
+ | |S || Pin7 | ||
+ | |- | ||
+ | |V || Pin4 | ||
+ | |- | ||
+ | |G || Pin6 | ||
+ | |} | ||
+ | |||
+ | ===连接NanoPi 2=== | ||
+ | 参考下图连接模块:<br> | ||
+ | [[File:Matrix-LED_nanopi_2.jpg|frameless|600px|Matrix-LED_nanopi_2]] | ||
+ | |||
+ | 连接说明: | ||
+ | {| class="wikitable" | ||
+ | |- | ||
+ | |Matrix-LED || NanoPi 2 | ||
+ | |- | ||
+ | |S || Pin7 | ||
+ | |- | ||
+ | |V || Pin4 | ||
+ | |- | ||
+ | |G || Pin6 | ||
+ | |} | ||
+ | |||
+ | ===连接NanoPi M2 / NanoPi 2 Fire=== | ||
+ | NanoPi M2和NanoPi 2 Fire的40 Pin引脚定义是一模一样的,所以它们操作Matrix配件的步骤是一样的,这里仅以NanoPi M2为例。<br> | ||
+ | 参考下图连接模块:<br> | ||
+ | [[File:Matrix-LED_nanopi_m2.jpg|frameless|600px|Matrix-LED_nanopi_m2]] | ||
+ | |||
+ | 连接说明: | ||
+ | {| class="wikitable" | ||
+ | |- | ||
+ | |Matrix-LED || NanoPi M2 | ||
+ | |- | ||
+ | |S || Pin7 | ||
+ | |- | ||
+ | |V || Pin4 | ||
+ | |- | ||
+ | |G || Pin6 | ||
+ | |} | ||
+ | |||
+ | ===连接NanoPC-T2=== | ||
+ | 参考下图连接模块:<br> | ||
+ | [[File:Matrix-LED_NanoPC-T2.jpg|frameless|600px|Matrix-LED_NanoPC-T2]] | ||
+ | |||
+ | 连接说明: | ||
+ | {| class="wikitable" | ||
+ | |- | ||
+ | |Matrix-LED || NanoPC-T2 | ||
+ | |- | ||
+ | |S || Pin15 | ||
+ | |- | ||
+ | |V || Pin29 | ||
+ | |- | ||
+ | |G || Pin30 | ||
+ | |} | ||
+ | |||
+ | ==编译运行测试程序== | ||
+ | 启动开发板并运行Debian系统,进入系统后克隆Matrix代码仓库: | ||
+ | <syntaxhighlight lang="bash"> | ||
+ | $ apt-get update && apt-get install git | ||
+ | $ git clone https://github.com/friendlyarm/matrix.git | ||
+ | </syntaxhighlight> | ||
+ | 克隆完成后会得到一个名为matrix的目录。 | ||
+ | |||
+ | 编译并安装Matrix: | ||
+ | <syntaxhighlight lang="bash"> | ||
+ | $ cd matrix | ||
+ | $ make && make install | ||
+ | </syntaxhighlight> | ||
+ | |||
+ | 运行测试程序: | ||
+ | <syntaxhighlight lang="bash"> | ||
+ | $ matrix-gpio_out | ||
+ | </syntaxhighlight> | ||
+ | 注意:此模块并不支持热插拔,启动系统前需要确保硬件连接正确。<br> | ||
+ | 运行效果如下:<br> | ||
+ | <syntaxhighlight lang="bash"> | ||
+ | 1: gpio status change | ||
+ | 2: gpio status change | ||
+ | 3: gpio status change | ||
+ | 4: gpio status change | ||
+ | 5: gpio status change | ||
+ | </syntaxhighlight> | ||
+ | 可以看到LED在不停地闪烁。 | ||
+ | |||
+ | ==代码说明== | ||
+ | 所有的开发板都共用一套Matrix代码,本模块的测试示例代码为matrix-gpio_out,内容如下: | ||
+ | <syntaxhighlight lang="c"> | ||
+ | int main(int argc, char ** argv) | ||
+ | { | ||
+ | int pin = GPIO_PIN(7); | ||
+ | int i, value, board; | ||
+ | int ret = -1; | ||
+ | |||
+ | if ((board = boardInit()) < 0) { | ||
+ | printf("Fail to init board\n"); | ||
+ | return -1; | ||
+ | } | ||
+ | if (board == BOARD_NANOPI_T2) | ||
+ | pin = GPIO_PIN(15); | ||
+ | |||
+ | if (argc == 2) | ||
+ | pin = GPIO_PIN(atoi(argv[1])); | ||
+ | if ((ret = exportGPIOPin(pin)) == -1) { | ||
+ | printf("exportGPIOPin(%d) failed\n", pin); | ||
+ | } | ||
+ | if ((ret = setGPIODirection(pin, GPIO_OUT)) == -1) { | ||
+ | printf("setGPIODirection(%d) failed\n", pin); | ||
+ | } | ||
+ | for (i = 0; i < STATUS_CHANGE_TIMES; i++) { | ||
+ | if (i % 2) { | ||
+ | value = GPIO_HIGH; | ||
+ | } else { | ||
+ | value = GPIO_LOW; | ||
+ | } | ||
+ | if ((ret = setGPIOValue(pin, value)) > 0) { | ||
+ | printf("%d: GPIO_PIN(%d) value is %d\n", i+1, pin, value); | ||
+ | } else { | ||
+ | printf("setGPIOValue(%d) failed\n", pin); | ||
+ | } | ||
+ | sleep(1); | ||
+ | } | ||
+ | unexportGPIOPin(pin); | ||
+ | return 0; | ||
+ | } | ||
+ | </syntaxhighlight> | ||
+ | API说明参考维基:[[Matrix API reference manual/zh|Matrix API reference manual]] <br> | ||
+ | <!--- | ||
==Download Matrix Source Code== | ==Download Matrix Source Code== | ||
All the matrix modules' code samples are open source. They are maintained on GitHub - https://github.com/friendlyarm/matrix.git <br> | All the matrix modules' code samples are open source. They are maintained on GitHub - https://github.com/friendlyarm/matrix.git <br> | ||
Line 305: | Line 443: | ||
==Connect to Arduino== | ==Connect to Arduino== | ||
+ | ---> | ||
==Resources== | ==Resources== |
Revision as of 14:08, 21 June 2016
Contents
1 Introduction
The Matrix-LED is an LED module with three 2.54 mm spacing pins: V(supply voltage),G(ground) and S(signal) which is connected to a triode to turn the LED on or off. You can write high or low, or PWN signals(3.3V or 5V) to S. When you write high to S the LED will turn on and become brightest. When you write low to S the LED will turn off. If you write PWM signals to S the LED's brightness will vary depending on the PWM's signal variances.
2 Features
- GPIO/PWM interface, 3.3/5V, PWM brightness control
- Small, easy to be used in various situations
- 2.54 mm spacing pin
- PCB Dimension(mm): 8 x 24
- Pin Description:
Pin | Description |
S | GPIO |
V | Supply Voltage 5V |
G | Ground |
3 Basic Device Operation
The module has three 2.54 mm spacing pins: V(supply voltage),G(ground) and S(signal) which is connected to a triode to turn the LED on or off. You can write high or low, or PWN signals(3.3V or 5V) to S. When you write high to S the LED will turn on and become brightest. When you write low to S the LED will turn off. If you write PWM signals to S the LED's brightness will vary depending on the PWM's signal variances.
4 硬件连接
4.1 连接NanoPi M1
连接说明:
Matrix-LED | NanoPi M1 |
S | Pin7 |
V | Pin4 |
G | Pin6 |
4.2 连接NanoPi 2
连接说明:
Matrix-LED | NanoPi 2 |
S | Pin7 |
V | Pin4 |
G | Pin6 |
4.3 连接NanoPi M2 / NanoPi 2 Fire
NanoPi M2和NanoPi 2 Fire的40 Pin引脚定义是一模一样的,所以它们操作Matrix配件的步骤是一样的,这里仅以NanoPi M2为例。
参考下图连接模块:
连接说明:
Matrix-LED | NanoPi M2 |
S | Pin7 |
V | Pin4 |
G | Pin6 |
4.4 连接NanoPC-T2
参考下图连接模块:
Matrix-LED_NanoPC-T2
连接说明:
Matrix-LED | NanoPC-T2 |
S | Pin15 |
V | Pin29 |
G | Pin30 |
5 编译运行测试程序
启动开发板并运行Debian系统,进入系统后克隆Matrix代码仓库:
$ apt-get update && apt-get install git $ git clone https://github.com/friendlyarm/matrix.git
克隆完成后会得到一个名为matrix的目录。
编译并安装Matrix:
$ cd matrix $ make && make install
运行测试程序:
$ matrix-gpio_out
注意:此模块并不支持热插拔,启动系统前需要确保硬件连接正确。
运行效果如下:
1: gpio status change 2: gpio status change 3: gpio status change 4: gpio status change 5: gpio status change
可以看到LED在不停地闪烁。
6 代码说明
所有的开发板都共用一套Matrix代码,本模块的测试示例代码为matrix-gpio_out,内容如下:
int main(int argc, char ** argv) { int pin = GPIO_PIN(7); int i, value, board; int ret = -1; if ((board = boardInit()) < 0) { printf("Fail to init board\n"); return -1; } if (board == BOARD_NANOPI_T2) pin = GPIO_PIN(15); if (argc == 2) pin = GPIO_PIN(atoi(argv[1])); if ((ret = exportGPIOPin(pin)) == -1) { printf("exportGPIOPin(%d) failed\n", pin); } if ((ret = setGPIODirection(pin, GPIO_OUT)) == -1) { printf("setGPIODirection(%d) failed\n", pin); } for (i = 0; i < STATUS_CHANGE_TIMES; i++) { if (i % 2) { value = GPIO_HIGH; } else { value = GPIO_LOW; } if ((ret = setGPIOValue(pin, value)) > 0) { printf("%d: GPIO_PIN(%d) value is %d\n", i+1, pin, value); } else { printf("setGPIOValue(%d) failed\n", pin); } sleep(1); } unexportGPIOPin(pin); return 0; }
API说明参考维基:Matrix API reference manual
7 Resources
8 Update Log
8.1 Feb-18-2016
- Added the description for "NanoPi 2 branch" in Section 4
- Added Section 5: Connect to NanoPi 2