Meet die Allegro ACS758-stroomsensor en 'n SSD1306 OLED-skerm vir Arduino stroom meet
Hierdie tutoriaal sal jou deur die proses lei om stroom te meet met behulp van die Allegro ACS758-stroomsensor en die resultate op 'n SSD1306 OLED-skerm te vertoon. Die projek sal behels dat jy die stroom wat deur 'n stroombaan vloei, lees en daardie data visueel op die OLED-skerm voorstel, wat maklike monitering moontlik maak. Jy sal leer hoe om die komponente te verbind, die kode te skryf en te verstaan hoe alles saamwerk.


As jy die kode en sy funksionaliteit wil verstaan, maak seker dat jy die video vir meer gedetailleerde verduidelikings kyk (in video by 02:45).
Hardeware Verduidelik
Die hoofkomponente van hierdie projek sluit die Allegro ACS758-stroomsensor en die SSD1306 OLED-skerm in. Die ACS758 is 'n Hall-effek-stroomsensor wat die stroom wat deur 'n geleier vloei met hoë akkuraatheid meet en 'n uitsetspanning verskaf wat eweredig is aan hierdie stroom. Dit kan strome tot 200A hanteer en werk by óf 3.3V óf 5V.
Die SSD1306 OLED-skerm is 'n kompakte, lae-krag-skerm wat via I2C kommunikeer. Dit word algemeen in Arduino-projekte gebruik vanweë die maklike integrasie en die vermoë om grafika en teks duidelik te vertoon. Saam skep hierdie komponente 'n kragtige hulpmiddel vir die monitering van stroom in verskeie toepassings.
Datablad Besonderhede
| Vervaardiger | Allegro Microsystems |
|---|---|
| Deelnommer | ACS758ECB-200U |
| Logika/IO-spanning | 3.3 V / 5 V |
| Toevoerspanning | 5 V |
| Uitsetstroom (per kanaal) | 200 A |
| Piekstroom (per kanaal) | 200 A |
| PWM-frekwensie riglyne | N/A |
| Inset logika drempels | 0.3 V (laag), 2.7 V (hoog) |
| Spanningsval / RDS(on) / versadiging | 0.05 V |
| Termiese limiete | -40 tot 125 °C |
| Pakket | SOIC-8 |
| Notas / variante | Tweerigting- en eenrigtingmodelle beskikbaar |
- Maak seker dat die ACS758-sensor korrek georiënteer is vir akkurate lesings.
- Gebruik 'n hittesink as jy naby die maksimum stroomlimiete werk om oorverhitting te voorkom.
- Ontkoppel die kragtoevoer na die sensor vir stabiele werking.
- Kontroleer bedradingsverbindings om drywende insette te vermy wat tot foutiewe lesings kan lei.
- Kalibreer die sensoruitset om akkurate stroommetings te verseker.
Bedradingsinstruksies

Om die Allegro ACS758-stroomsensor en SSD1306 OLED-skerm te bedraad, begin deur die krag te verbind. Verbind die VCC-pen van die ACS758 aan die 5V-uitset op jou Arduino, en verbind die GND-pen aan die grond (GND) op die Arduino. Die uitsetseinpen (Vout) van die ACS758 moet aan die analoog insetpen A0 op die Arduino verbind word.
Volgende, vir die SSD1306 OLED-skerm, verbind die VCC-pen aan die Arduino se 5V-uitset en die GND-pen aan grond. Verbind die SDA-pen van die OLED aan die Arduino se SDA-pen (A4 op die meeste Arduino-borde) en die SCL-pen van die OLED aan die SCL-pen (A5 op die meeste Arduino-borde). Maak seker dat alle verbindings veilig is vir betroubare werking.
Kode Voorbeelde & Deurloop
#define VIN A0 // definieer die Arduino-pen A0 as spanningsinset (V in)
const float VCC = 5.0; // toevoerspanning 5V of 3.3V
const int model = 2; // voer die model in (sien hieronder)
In die kode word die veranderlike VIN aan analoogpen A0 toegewys, wat die spanning van die ACS758-sensor sal lees. Die VCC-veranderlike stel die toevoerspanning, en die model-veranderlike definieer watter ACS758-model gebruik word, wat sensitiwiteit en uitsetspanningsberekeninge beïnvloed.
void loop() {
float voltage_raw = (5.0 / 1023.0) * analogRead(VIN); // Lees die spanning van die sensor
float current = voltage / FACTOR; // Bereken die stroom gebaseer op spanning
}
Binne die loop()-funksie lees die kode die rou spanning van die sensor met behulp van analogRead(VIN) en skakel dit om na 'n stroomwaarde gebaseer op die gedefinieerde sensitiwiteit. Dit maak intydse monitering van die stroom wat deur die stroombaan vloei moontlik.
if(abs(voltage) > cutOff) {
display.clearDisplay();
robojaxText("Stroom:", 0, 22, 2, false);
}
Hierdie voorwaardelike stelling kontroleer of die absolute waarde van die spanning groter is as die cutOff-limiet. Indien waar, maak dit die skerm skoon en werk die OLED met die stroomlesing by. Dit verseker dat slegs betekenisvolle stroomwaardes gewys word, wat rommel op die skerm voorkom.
Demonstrasie / Wat om te VerwAg
Wanneer jy die program laat loop, sal die OLED-skerm die stroom wat gemeet word intyds wys. As daar geen stroom vloei nie, sal die skerm "Geen Stroom" aandui. Maak seker dat die verbindings korrek is om probleme soos omgekeerde polariteit te vermy, wat tot onakkurate lesings kan lei (in video by 05:30).
/*
* Arduino Sketch for Allegro ACS758 Current Sensor with SSD1306 OLED Display
* can be used with 128x64 or 128x32 OLED displays with SSD1306 chip
* this sensor can measure current at a range of up to 200A
* It operates with 3.3V or 5V
* This video requires you to watch the following 2 videos before using this code:
* 1- ACS758 Sensor https://www.youtube.com/watch?v=SiHfjzcqnU4
* 2- SSD1306 OLED Display https://www.youtube.com/watch?v=UmYiHTOz-5k
*
* View the video instructions for this code at https://youtu.be/aHg9UrK9s9c
* Written by Ahmad Shamshiri for Robojax Video channel www.Robojax.com
* Date: June 24, 2018, at 21:44 in Ajax, Ontario, Canada
* Permission granted to share this code given that this
* note is kept with the code.
* Disclaimer: This code is "AS IS" and for educational purposes only.
* This code has been downloaded from https://robojax.com
*
*/
#include <SPI.h>
#include <Wire.h>
#include <Adafruit_GFX.h>
#include <Adafruit_SSD1306.h>
#define OLED_RESET 4
Adafruit_SSD1306 display(OLED_RESET);
#define NUMFLAKES 10
#define XPOS 0
#define YPOS 1
#define DELTAY 2
#define LOGO16_GLCD_HEIGHT 64
#define LOGO16_GLCD_WIDTH 128
static const unsigned char PROGMEM logo16_glcd_bmp[] =
{ B00000000, B11000000,
B00000001, B11000000,
B00000001, B11000000,
B00000011, B11100000,
B11110011, B11100000,
B11111110, B11111000,
B01111110, B11111111,
B00110011, B10011111,
B00011111, B11111100,
B00001101, B01110000,
B00011011, B10100000,
B00111111, B11100000,
B00111111, B11110000,
B01111100, B11110000,
B01110000, B01110000,
B00000000, B00110000 };
#if (SSD1306_LCDHEIGHT != 64)
#error("Height incorrect, please fix Adafruit_SSD1306.h!");
#endif
///*** ACS758 settings starts
#define VIN A0 // define the Arduino pin A0 as voltage input (V in)
const float VCC = 5.0;// supply voltage 5V or 3.3V. If using PCB, set to 5V only.
const int model = 2; // enter the model (see below)
float cutOffLimit = 1.00;// reading cutt off current. 1.00 is 1 Amper
/*
"ACS758LCB-050B",// for model use 0
"ACS758LCB-050U",// for model use 1
"ACS758LCB-100B",// for model use 2
"ACS758LCB-100U",// for model use 3
"ACS758KCB-150B",// for model use 4
"ACS758KCB-150U",// for model use 5
"ACS758ECB-200B",// for model use 6
"ACS758ECB-200U"// for model use 7
sensitivity array is holding the sensitivity of the ACS758
current sensors. Do not change.
*/
float sensitivity[] ={
40.0,// for ACS758LCB-050B
60.0,// for ACS758LCB-050U
20.0,// for ACS758LCB-100B
40.0,// for ACS758LCB-100U
13.3,// for ACS758KCB-150B
16.7,// for ACS758KCB-150U
10.0,// for ACS758ECB-200B
20.0,// for ACS758ECB-200U
};
/*
* Quiescent output voltage is a factor of VCC that appears at the output
* when the current is zero.
* For bidirectional sensors it is 0.5 x VCC
* For unidirectional sensors it is 0.12 x VCC
* For model ACS758LCB-050B, the B at the end represents Bidirectional (polarity doesn't matter)
* For model ACS758LCB-100U, the U at the end represents Unidirectional (polarity must match)
* Do not change.
*/
float quiescent_Output_voltage [] ={
0.5,// for ACS758LCB-050B
0.12,// for ACS758LCB-050U
0.5,// for ACS758LCB-100B
0.12,// for ACS758LCB-100U
0.5,// for ACS758KCB-150B
0.12,// for ACS758KCB-150U
0.5,// for ACS758ECB-200B
0.12,// for ACS758ECB-200U
};
const float FACTOR = sensitivity[model]/1000;// set sensitivity for selected model
const float QOV = quiescent_Output_voltage [model] * VCC;// set quiescent Output voltage for selected model
float voltage;// internal variable for voltage
float cutOff = FACTOR/cutOffLimit;// convert current cut off to mV
//**** ACS758 settings ends
void setup() {
Serial.begin(9600);
// by default, we'll generate the high voltage from the 3.3v line internally! (neat!)
display.begin(SSD1306_SWITCHCAPVCC, 0x3C); // initialize with the I2C addr 0x3D (for the 128x64)
// init done
}
void loop() {
//Robojax.com ACS758 Current Sensor values start
float voltage_raw = (5.0 / 1023.0)* analogRead(VIN);// Read the voltage from sensor
voltage = voltage_raw - QOV + 0.003 ;// 0.007 is a value to make voltage zero when there is no current
float current = voltage / FACTOR;
if(abs(voltage) > cutOff ){
Serial.print("V: ");
Serial.print(voltage,3);// print voltage with 3 decimal places
Serial.print("V, I: ");
Serial.print(current,2); // print the current with 2 decimal places
Serial.println("A");
display.clearDisplay();
robojaxText("V:", 0, 0, 2, false);
String voltageS = String(voltage);// get voltage and convert it to string for display
robojaxText(voltageS +"V", 20, 0, 2, false);
robojaxText("Current:", 0, 22, 2, false);
String currentS = String(current);// get current and convert it to string for display
robojaxText(currentS +"A", 0, 40, 3, false);
display.display();
}else{
Serial.println("No Current");
display.clearDisplay();
robojaxText("No Current", 0, 0, 2, false);
display.display();
}
//Robojax.com ACS758 Current Sensor values end
delay(500);
}
/*
* robojaxText(String text, int x, int y,int size, boolean d)
* text is the text string to be printed
* x is the integer x position of the text
* y is the integer y position of the text
* size is the text size, 1, 2, 3 etc
* d is either true or false. Use true to display immediately.
*/
void robojaxText(String text, int x, int y,int size, boolean d) {
display.setTextSize(size);
display.setTextColor(WHITE);
display.setCursor(x,y);
display.println(text);
if(d){
display.display();
}
delay(100);
}
Goedere wat jy dalk nodig het
-
AmazonPurchase OLED 128x32 from Amazonamzn.to
-
Amazon
-
AliExpressPurchase SSD1306 OLED 128x32 from AliExpresss.click.aliexpress.com
Hulpbronne en verwysings
Geen hulpbronne nog.
Lêers📁
Arduino Biblioteke (zip)
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SSD1306-OLED-Adafruit_SSD1306-master
robojax-SSD1306-OLED-Adafruit_SSD1306-master.zip0.02 MB
Datasheet (pdf)
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SSD1306 display datasheetSSD1306 is a single-chip CMOS OLED/PLED driver with controller for organic / polymer light emitting diode dot-matrix graphic display system. It consists of 128 segments and 64commons. This IC is designed for Common Cathode type OLED panel. The SSD1306 embeds with contrast control, display RAM and oscillator, which reduces the number of external components and power consumption. It has 256-step brightness control. Data/Commands are sent from general MCU through the hardware selectable 6800/8000 series compatible Parallel Interface, I2C interface or Serial Peripheral Interface. It is suitable for many compact portable applications, such as mobile phone sub-display, MP3 player and calculator, etc.
SSD1306_display_datasheet.pdf1.79 MB
Fritzing-lêer
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OLED Mono 0.56 inch 128x32
OLED Mono 0.56 inch 128x32.fzpz0.01 MB -
SSD1306 0.96in 128x64 I2C Monochrome OLED Display
SSD1306 0.96in 128x64 I2C Monochrome OLED Display.fzpz0.01 MB
Gebruikershandleiding
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SSD1306 OLED manual
robojax-SSD1306-OLED-manual.pdf1.79 MB
Ander lêers
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Alegro ACS Current LibraryArduino library for Allegro ACS current sensor modules. Provides functions to read current measurements from ACS712 and similar sensors.
robojax_Alegro_ACS_Current_library.zip0.02 MB