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Sensọ BMP180 fun Iwọn otutu ati Titẹ Barometric fun Arduino

Sensọ BMP180 fun Iwọn otutu ati Titẹ Barometric fun Arduino

Sensor BMP180 jẹ ẹrọ ti o wapọ ti o ṣe iwọn otutu ati titẹ afẹfẹ, ti o jẹ ki o dara fun ọpọlọpọ awọn ohun elo bii abojuto oju-ọjọ ati iwọn giga. Ninu ẹkọ yii, a yoo so sensor BMP180 pọ si Arduino, ka data otutu ati titẹ, ati ṣe afihan awọn abajade. Ni ipari iṣẹ yii, iwọ yoo ni anfani lati gba awọn iwọn otutu deede ni Celsius ati Fahrenheit, bakanna bi awọn iye titẹ ni millibars ati inches ti makiuri.

Lati ṣe alaye awọn imọran ati awọn igbesẹ koodu, Mo ṣe iyanju fun ọ lati wo fidio ti o somọ fun awọn alaye alaye (ninu fidio ni 00:00).

Ohun elo Ti A Ṣe Alaye

BMP180 jẹ sensor oni-nọmba ti o ṣe ibaraẹnisọrọ nipasẹ I2C, eyiti o jẹ ki o ni irọrun lati ṣe ajọṣepọ pẹlu awọn microcontrollers bii Arduino. O ni awọn pinni mẹrin: Vn (ipese agbara), GND (ilẹ), SDA (ila data), ati SCL (ila aago). Sensor naa ṣiṣẹ laarin iwọn folti 1.8 si 3.6 volts, ṣugbọn o le ṣe agbara nipasẹ ipese 5V ti a ṣe ilana nipa lilo olutọju folti.

Agbara sensor yii lati wọn titẹ afẹfẹ jẹ ki o dara fun awọn ohun elo ti o nilo iṣiro giga ati abojuto oju-ọjọ. BMP180 tun pẹlu sensor otutu ti a ṣe sinu rẹ, eyiti o ṣe pataki fun gbigba awọn iwọn titẹ deede. Nipa wiwọn otutu ni akọkọ, sensor le ṣe isanpada fun awọn iyatọ otutu ti o ni ipa lori awọn iwọn titẹ.

Awọn Alaye Datasheet

OlupeseBosch
Nọmba apakanBMP180
Foliti Logic/IO1.8 - 3.6 V
Foliti ipese1.8 - 5.0 V
Iṣẹjade lọwọlọwọ (typ.)5 μA
Peak lọwọlọwọ (max.)1 mA
Itọsọna igbohunsafẹfẹ PWMN/A
Awọn ila-ẹnu ọna iṣakosoN/A
Idinku folti / RDS(on) / saturationN/A
Awọn opin igbona-40 si 85 °C
Package3.6 x 3.8 mm
Awọn akọsilẹ / awọn iyatọAgbara kekere lilo

  • Rii daju awọn ipele folti to dara lati yago fun ibajẹ sensor naa.
  • Lo awọn resistors fifa soke lori awọn ila I2C ti o ba jẹ pataki.
  • Pa sensor naa mọ ni agbegbe otutu iduroṣinṣin fun awọn iwọn deede.
  • Ṣe iwọn giga da lori ipo kan pato rẹ fun awọn abajade pipe.
  • Ṣe abojuto ipese agbara lati rii daju pe o wa laarin awọn opin ti a ṣalaye.

Awọn Ilana Wiwọ

Arduino wiring for BMP180 Temperature sensor

Lati fi sensor BMP180 pọ si Arduino rẹ, bẹrẹ nipa sisopọ pinni Vn ti BMP180 si pinni 5V lori Arduino. Nigbamii, so pinni GND pọ si ilẹ Arduino. Fun ibaraẹnisọrọ I2C, so pinni SDA pọ si pinni analog A4 ti Arduino ati pinni SCL si A5. Rii daju pe awọn asopọ rẹ ni aabo lati ṣe idiwọ awọn iṣoro ibaraẹnisọrọ.

Ti o ba nlo awoṣe Arduino ti o yatọ, mọ pe awọn pinni I2C le yatọ. Fun apẹẹrẹ, lori Mega2560, awọn pinni SDA ati SCL jẹ 20 ati 21, ni atele. Nigbagbogbo ṣayẹwo iyaworan pinni fun igbimọ kan pato rẹ lati rii daju iṣẹ to dara.

Awọn Apẹẹrẹ Koodu & Alaye

#include 
#include 

SFE_BMP180 pressure;
#define ALTITUDE 90.0 // Altitude of Robojax Headquarter

Ninu koodu naa, a bẹrẹ nipa fifi awọn ile-ikawe pataki pẹlu: SFE_BMP180.h fun sensor ati Wire.h fun ibaraẹnisọrọ I2C. A ṣẹda apẹẹrẹ ti ohun BMP180 ti a npè ni pressure ati ṣalaye giga ti awọn iwọn wa yoo waye nipa lilo iye ALTITUDE.

void setup() {
  Serial.begin(9600);
  if (pressure.begin()) Serial.println("BMP180 init success");
  else { Serial.println("BMP180 init fail\n\n"); while(1); }
}

Iṣẹ setup ṣe ipilẹṣẹ ibaraẹnisọrọ serial ni 9600 baud ati gbiyanju lati bẹrẹ sensor BMP180. Ti ipilẹṣẹ ba kuna, eto naa wọ ọna yiyipo ailopin lati da awọn iṣẹ siwaju duro, ti o nfihan iṣoro asopọ.

void loop() {
  char status;
  double T, P, p0, a;

  status = pressure.startTemperature();
  if (status != 0) {
    delay(status);
    status = pressure.getTemperature(T);
    if (status != 0) {
      Serial.print("temperature: "); Serial.print(T,2);
    }
  }
}

Ninu iṣẹ loop, a kọkọ bẹrẹ kika otutu nipa pipe startTemperature(). Ti o ba ṣaṣeyọri, a duro fun iwọn naa lati pari ati gba otutu pẹlu getTemperature(T), nibiti T ti tọju iye otutu. A tẹ otutu naa si iboju serial.

Ifihan / Ohun Ti O Ṣe Reti

Nigbati o ba ni agbara ati ti a so daradara, BMP180 yoo ka ati ṣe afihan data otutu ati titẹ ni gbogbo iṣẹju-aaya marun. O yẹ ki o ri awọn iye otutu ni mejeeji Celsius ati Fahrenheit, bakanna bi awọn iye titẹ pipe ati ibatan. Ti sensor ba ṣiṣẹ daradara, iwọ yoo gba awọn iwọn laisi awọn aṣiṣe. Mọ awọn ewu ti o pọju bii awọn ipele folti ti ko tọ tabi awọn asopọ alaimuṣinṣin, eyiti o le yori si ikuna ni gbigba data.

Aworan

BMP18_module-1
BMP18_module-1
BMP18_module-2
BMP18_module-2
BMP18_module-3
BMP18_module-3
Arduino wiring for BMP180 Temperature sensor
Arduino wiring for BMP180 Temperature sensor
112-BMP180 temperature and barometric pressure sensor for Arduino
Ede: C++
/*
 * 
 * Arduino Sketch for BMP180 Temperature and Barometric Pressure sensor for Arduino 
 * to display temperature and pressure and altitude (calculated from pressure)

 * 
 * 
 * updated by Ahmad Shamshiri on June 27, 2018 at 17:30 in Ajax, Ontario, Canada
 * for Robojax.com

 * This code has been explained in this video: https://youtu.be/76zxBjIK3WM
 * This code has been downloaded from Robojax.com
 */
/* SFE_BMP180 library example sketch

This sketch shows how to use the SFE_BMP180 library to read the
Bosch BMP180 barometric pressure sensor.
https://www.sparkfun.com/products/11824

Like most pressure sensors, the BMP180 measures absolute pressure.
This is the actual ambient pressure seen by the device, which will
vary with both altitude and weather.

Before taking a pressure reading you must take a temperature reading.
This is done with startTemperature() and getTemperature().
The result is in degrees C.

Once you have a temperature reading, you can take a pressure reading.
This is done with startPressure() and getPressure().
The result is in millibar (mb) aka hectopascals (hPa).

If you'll be monitoring weather patterns, you will probably want to
remove the effects of altitude. This will produce readings that can
be compared to the published pressure readings from other locations.
To do this, use the sealevel() function. You will need to provide
the known altitude at which the pressure was measured.

If you want to measure altitude, you will need to know the pressure
at a baseline altitude. This can be average sealevel pressure, or
a previous pressure reading at your altitude, in which case
subsequent altitude readings will be + or - the initial baseline.
This is done with the altitude() function.

Hardware connections:

- (GND) to GND
+ (VDD) to 3.3V

(WARNING: do not connect + to 5V or the sensor will be damaged!)

You will also need to connect the I2C pins (SCL and SDA) to your
Arduino. The pins are different on different Arduinos:

Any Arduino pins labeled:  SDA  SCL
Uno, Redboard, Pro:        A4   A5
Mega2560, Due:             20   21
Leonardo:                   2    3

Leave the IO (VDDIO) pin unconnected. This pin is for connecting
the BMP180 to systems with lower logic levels such as 1.8V

Have fun! - Your friends at SparkFun.

The SFE_BMP180 library uses floating-point equations developed by the
Weather Station Data Logger project: http://wmrx00.sourceforge.net/

Our example code uses the "beerware" license. You can do anything
you like with this code. No really, anything. If you find it useful,
buy me a beer someday.

V10 Mike Grusin, SparkFun Electronics 10/24/2013
V1.1.2 Updates for Arduino 1.6.4 5/2015
*/

// Your sketch must #include this library, and the Wire library.
// (Wire is a standard library included with Arduino.):

#include <SFE_BMP180.h>
#include <Wire.h>

// You will need to create an SFE_BMP180 object, here called "pressure":

SFE_BMP180 pressure;

#define ALTITUDE 90.0 // Altitude of Robojax Headquarter (Ajax, Ontario, Canada)

void setup()
{
  Serial.begin(9600);
  Serial.println("REBOOT");

  // Initialize the sensor (it is important to get calibration values stored on the device).

  if (pressure.begin())
    Serial.println("BMP180 init success");
  else
  {
    // Oops, something went wrong, this is usually a connection problem,
    // see the comments at the top of this sketch for the proper connections.

    Serial.println("BMP180 init fail\n\n");
    while(1); // Pause forever.
  }
}

void loop()
{
  char status;
  double T,P,p0,a;

  // Loop here getting pressure readings every 10 seconds.

  // If you want sea-level-compensated pressure, as used in weather reports,
  // you will need to know the altitude at which your measurements are taken.
  // We're using a constant called ALTITUDE in this sketch:
  
  Serial.println();
  Serial.print("provided altitude: ");
  Serial.print(ALTITUDE,0);
  Serial.print(" meters, ");
  Serial.print(ALTITUDE*3.28084,0);
  Serial.println(" feet");
  
  // If you want to measure altitude, and not pressure, you will instead need
  // to provide a known baseline pressure. This is shown at the end of the sketch.

  // You must first get a temperature measurement to perform a pressure reading.
  
  // Start a temperature measurement:
  // If request is successful, the number of ms to wait is returned.
  // If request is unsuccessful, 0 is returned.

  status = pressure.startTemperature();
  if (status != 0)
  {
    // Wait for the measurement to complete:
    delay(status);

    // Retrieve the completed temperature measurement:
    // Note that the measurement is stored in the variable T.
    // Function returns 1 if successful, 0 if failure.

    status = pressure.getTemperature(T);
    if (status != 0)
    {
      // Print out the measurement:
      Serial.print("temperature: ");
      Serial.print(T,2);
      Serial.print(" deg C, ");
      Serial.print((9.0/5.0)*T+32.0,2);
      Serial.println(" deg F");
      
      // Start a pressure measurement:
      // The parameter is the oversampling setting, from 0 to 3 (highest res, longest wait).
      // If request is successful, the number of ms to wait is returned.
      // If request is unsuccessful, 0 is returned.

      status = pressure.startPressure(3);
      if (status != 0)
      {
        // Wait for the measurement to complete:
        delay(status);

        // Retrieve the completed pressure measurement:
        // Note that the measurement is stored in the variable P.
        // Note also that the function requires the previous temperature measurement (T).
        // (If temperature is stable, you can do one temperature measurement for a number of pressure measurements.)
        // Function returns 1 if successful, 0 if failure.

        status = pressure.getPressure(P,T);
        if (status != 0)
        {
          // Print out the measurement:
          Serial.print("absolute pressure: ");
          Serial.print(P,2);
          Serial.print(" mb, ");
          Serial.print(P*0.0295333727,2);
          Serial.println(" inHg");

          // The pressure sensor returns abolute pressure, which varies with altitude.
          // To remove the effects of altitude, use the sealevel function and your current altitude.
          // This number is commonly used in weather reports.
          // Parameters: P = absolute pressure in mb, ALTITUDE = current altitude in m.
          // Result: p0 = sea-level compensated pressure in mb

          p0 = pressure.sealevel(P,ALTITUDE); // we're at 90 meters (Boulder, CO)
          Serial.print("relative (sea-level) pressure: ");
          Serial.print(p0,2);
          Serial.print(" mb, ");
          Serial.print(p0*0.0295333727,2);
          Serial.println(" inHg");

          // On the other hand, if you want to determine your altitude from the pressure reading,
          // use the altitude function along with a baseline pressure (sea-level or other).
          // Parameters: P = absolute pressure in mb, p0 = baseline pressure in mb.
          // Result: a = altitude in m.

          a = pressure.altitude(P,p0);
          Serial.print("computed altitude: ");
          Serial.print(a,0);
          Serial.print(" meters, ");
          Serial.print(a*3.28084,0);
          Serial.println(" feet");
        }
        else Serial.println("error retrieving pressure measurement\n");
      }
      else Serial.println("error starting pressure measurement\n");
    }
    else Serial.println("error retrieving temperature measurement\n");
  }
  else Serial.println("error starting temperature measurement\n");

  delay(5000);  // Pause for 5 seconds.
}

Orisun & itọkasi

Fáìlìs📁

Awọn ile-ikawe Arduino (zip)

Fọọmu data (pdf)

  • Bosch BMP180 Datasheet
    https://ae-bst.resource.bosch.com/media/_tech/media/datasheets/BST-BMP180-DS000.pdf 0.64 MB