BMP180 Temperature da Barometric Pressure Sensor don Arduino
Na'urar BMP180 na'urar ce mai yawan aiki wacce ke auna zafin jiki da matsin iska, wanda ya sa ta dace da aikace-aikace daban-daban kamar kula da yanayi da auna tsayi. A cikin wannan koyawa, za mu haɗa na'urar BMP180 zuwa Arduino, mu karanta bayanan zafin jiki da matsin iska, kuma mu nuna sakamakon. A ƙarshen wannan aikin, za ka iya samun ingantattun karatun zafin jiki a Celsius da Fahrenheit, da kuma ƙimar matsin iska a millibars da inches na mercury.

Don fayyace ra'ayoyin da matakan coding, ina ƙarfafa ka ka kalli bidiyon da ke da alaƙa don cikakkun bayanai (a cikin bidiyo a 00:00).
Bayanin Kayan Aiki
BMP180 na'urar dijital ce da ke sadarwa ta hanyar I2C, wanda ke ba ta damar yin mu'amala cikin sauƙi da microcontrollers kamar Arduino. Tana da fil ɗin guda huɗu: Vn (wutar lantarki), GND (ƙasa), SDA (layin bayanai), da SCL (layin agogo). Na'urar tana aiki a cikin kewayon wutar lantarki na 1.8 zuwa 3.6 volts, amma ana iya kunna ta da wutar 5V mai sarrafawa ta amfani da mai sarrafa wutar lantarki.
Ikon wannan na'urar na auna matsin iska ya sa ta dace da aikace-aikace waɗanda ke buƙatar ƙididdige tsayi da kula da yanayi. BMP180 kuma ta ƙunshi na'urar auna zafin jiki da aka gina a ciki, wanda ke da mahimmanci don samun ingantattun karatun matsin iska. Ta hanyar auna zafin jiki da farko, na'urar na iya rama bambance-bambancen zafin jiki waɗanda ke shafar karatun matsin iska.
Cikakkun Bayanai na Datasheet
| Mai ƙera | Bosch |
|---|---|
| Lambar sashi | BMP180 |
| Wutar Logic/IO | 1.8 - 3.6 V |
| Wutar samarwa | 1.8 - 5.0 V |
| Fitowar wutar (typ.) | 5 μA |
| Ƙarfin wutar (max.) | 1 mA |
| Jagorar mitar PWM | N/A |
| Ƙofofin shigar da logic | N/A |
| Rage wutar / RDS(on) / saturation | N/A |
| Iyakokin zafin jiki | -40 zuwa 85 °C |
| Kunshin | 3.6 x 3.8 mm |
| Bayanan kula / bambance-bambance | Ƙarancin amfani da wutar lantarki |
- Tabbatar da matakan wutar lantarki masu dacewa don guje wa lalata na'urar.
- Yi amfani da resistors na pull-up akan layukan I2C idan ya cancanta.
- Tsayar da na'urar a cikin yanayin zafin jiki mai karko don ingantattun karatu.
- Daidaita tsayi bisa ga takamaiman wurin ka don ingantaccen sakamako.
- Kula da wutar lantarki don tabbatar da cewa ta kasance cikin iyakokin da aka ƙayyade.
Umarnin Haɗin Waya

Don haɗa na'urar BMP180 zuwa Arduino, fara da haɗa fil ɗin Vn na BMP180 zuwa fil ɗin 5V akan Arduino. Na gaba, haɗa fil ɗin GND zuwa ƙasan Arduino. Don sadarwar I2C, haɗa fil ɗin SDA zuwa fil ɗin analog A4 na Arduino da fil ɗin SCL zuwa A5. Tabbatar cewa haɗin ka suna da ƙarfi don hana matsalolin sadarwa.
Idan kana amfani da wani nau'in Arduino daban, ka sani cewa fil ɗin I2C na iya bambanta. Misali, akan Mega2560, fil ɗin SDA da SCL sune 20 da 21, bi da bi. Koyaushe ka sake duba taswirar fil ɗin don takamaiman allo ɗinka don tabbatar da ingantaccen aiki.
Misalan Code & Bayani
#include
#include
SFE_BMP180 pressure;
#define ALTITUDE 90.0 // Tsayin Hedkwatar Robojax
A cikin code, muna farawa da haɗa ɗakunan karatu masu mahimmanci: SFE_BMP180.h don na'urar da Wire.h don sadarwar I2C. Mun ƙirƙiri misali na abin BMP180 mai suna pressure kuma mun ayyana tsayin da za a ɗauki karatun mu ta amfani da ma'aunin ALTITUDE.
void setup() {
Serial.begin(9600);
if (pressure.begin()) Serial.println("BMP180 init success");
else { Serial.println("BMP180 init fail\n\n"); while(1); }
}
Aikin setup yana fara sadarwar serial a 9600 baud kuma yana ƙoƙarin kunna na'urar BMP180. Idan ƙaddamarwa ta gaza, shirin yana shiga madauki marar iyaka don dakatar da ƙarin aiki, yana nuna matsalar haɗin waya.
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);
}
}
}
A cikin aikin loop, mun fara ƙaddamar da karatun zafin jiki ta hanyar kiran startTemperature(). Idan ya yi nasara, muna jira aikin auna ya ƙare kuma mu dawo da zafin jiki tare da getTemperature(T), inda T ke adana ƙimar zafin jiki. Ana buga zafin jiki zuwa serial monitor.
Zanga-zanga / Abin da za ka Yi Tsammani
Lokacin da aka kunna kuma aka haɗa shi da kyau, BMP180 zai ci gaba da karantawa da nuna bayanan zafin jiki da matsin iska kowane daƙiƙa biyar. Ya kamata ka ga ƙimar zafin jiki a duka Celsius da Fahrenheit, da kuma ƙimar matsin iska na cikakke da na dangi. Idan na'urar tana aiki da kyau, za ka sami karatu ba tare da kurakurai ba. Ka lura da haɗarin da ke tattare da matakan wutar lantarki marasa dacewa ko haɗin waya marasa ƙarfi, waɗanda zasu iya haifar da gazawar samun bayanai.
/*
*
* 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.
}
Albarkatun da kuma shafukan da za a duba
-
WajeProduct details from the manufacturerbosch-sensortec.com
-
WajeSparkFun BMP180 librarygithub.com
Fayiloli📁
Littattafan Arduino (zip)
-
BMP180 Arduino library
robojax-BMP180-Library.zip0.02 MB
Takardar bayanai (pdf)
-
Bosch BMP180 Datasheet
https://ae-bst.resource.bosch.com/media/_tech/media/datasheets/BST-BMP180-DS000.pdf0.64 MB