
18b20数字温度传感器是常用的数字温度传感器,其输出的是数字信号,具有体积小,抗干扰能力强,精度高的特点。数字温度传感器接线方便, 封装后的可用于电缆沟测温,高炉水循环测温,锅炉测温,机房测温,农业大棚测温,洁净室测温,弹药库测温等各种非极限温度场合。耐磨耐碰,体积小,使用方便,封装形式多样,适用于各种狭小空间设备数字测温和控制领域。

| 引脚名称 | 描述 |
|---|---|
| G | GND(电源输入负极) |
| V | VCC(电源输入正极) |
| S | 数字信号引脚 |
供电电压:3.3V / 5V
连接方式:2.54mm排针
安装方式:双螺丝固定

首先找到Arduino库文件夹:

把库文件复制到Arduino IDE软件目录下的libraries文件夹中即可:

库文件:点击下载
示例程序(UNO开发板):点击下载
#include <OneWire.h>
#include <DallasTemperature.h>
OneWire oneWire_13(13);
DallasTemperature sensors_13(&oneWire_13);
DeviceAddress insideThermometer;
float ds18b20_13_getTemp(int w) {
sensors_13.requestTemperatures();
if(w==0) {
return sensors_13.getTempC(insideThermometer);
}
else {
return sensors_13.getTempF(insideThermometer);
}
}
void setup(){
Serial.begin(9600);
sensors_13.getAddress(insideThermometer, 0);
sensors_13.setResolution(insideThermometer, 9);
}
void loop(){
//DS18B20读取温度\nDS18B20连接在D6管脚,串口打印出温度值\n注:如果使用的DS18B20是散件,则需要在电源线和信号线之间并联一个5K左右的电阻
Serial.println(String("温度:") + String(ds18b20_13_getTemp(0)) + String("℃"));
Serial.println(String("温度:") + String(ds18b20_13_getTemp(1)) + String("℉"));
Serial.println("");
delay(1000);
}
示例程序(ESP32开发板—基于Python语言,不能用Arduino IDE上传代码):
from machine import Pin
import time
class OneWire:
def __init__(self, pin):
self.pin = pin
self.pin.init(Pin.OPEN_DRAIN, Pin.PULL_UP)
self.pin.value(1)
def reset(self):
self.pin.value(0)
time.sleep_us(480)
self.pin.value(1)
time.sleep_us(60)
present = not self.pin.value()
time.sleep_us(420)
return present
def writebit(self, value):
self.pin.value(0)
if value:
time.sleep_us(10)
self.pin.value(1)
time.sleep_us(55)
else:
time.sleep_us(65)
self.pin.value(1)
time.sleep_us(5)
def readbit(self):
self.pin.value(0)
time.sleep_us(2)
self.pin.value(1)
time.sleep_us(15)
value = self.pin.value()
time.sleep_us(45)
return value
def writebyte(self, value):
for i in range(8):
self.writebit((value >> i) & 1)
def readbyte(self):
value = 0
for i in range(8):
value |= self.readbit() << i
return value
def readinto(self, buf):
for i in range(len(buf)):
buf[i] = self.readbyte()
class DS18B20:
def __init__(self, onewire):
self.ow = onewire
self.buf = bytearray(9)
def convert_temp(self):
self.ow.reset()
self.ow.writebyte(0xCC)
self.ow.writebyte(0x44)
time.sleep_ms(750)
def read_temp(self):
self.ow.reset()
self.ow.writebyte(0xCC)
self.ow.writebyte(0xBE)
self.ow.readinto(self.buf)
temp = self.buf[0] | (self.buf[1] << 8)
if temp & 0x8000:
temp = -((temp ^ 0xffff) + 1)
return temp / 16
def ds18b20_get_temp(w=0):
sensor.convert_temp()
t = sensor.read_temp()
if w == 1:
t = t * 9 / 5 + 32
return t
ds_pin = Pin(12)
ow = OneWire(ds_pin)
sensor = DS18B20(ow)
while True:
print(ds18b20_get_temp(1))
示例程序(UNO开发板):点击下载

示例程序(ESP32开发板):点击下载

Arduino环境搭建
准备配件:
电路接线图:

Micropython环境搭建
准备配件:
电路接线图:
视频教程:点击查看

器件连接好线之后,将上述程序烧录到 U+程序卡之后,打开串口监视器,波特率设置为9600,可以看到串口打印当前环境温度。