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Makerfabs MaTouch ESP32-S3 2,8" kamera a dotykový displej: 3MP fotografie na SD kartu

Makerfabs MaTouch ESP32-S3 2,8" kamera a dotykový displej: 3MP fotografie na SD kartu

Živý hľadáčik, 3-megapixelové fotografie, ukladané na SD kartu so skutočnou časovou pečiatkou

Funkčná aplikácia fotoaparátu: živý hľadáčik s približne 25 snímkami za sekundu, tri dotykové tlačidlá a fotografie ukladané na microSD kartu s označením správneho dátumu a času z hodín napájaných batériou na doske.

Camera and Touchscreen running on the MaTouch AI ESP32-S3 board Fotoaparát a dotykový displej bežiace na doske MaTouch AI ESP32-S3

Tri tlačidlá

  • SNAP – okamžitá fotografia v rozlíšení hľadáčika. Rýchle a vždy funguje.

  • 3 MP – skutočná fotografia 2048×1536. Obrazovka stmavne na približne dve sekundy; to je reštart ovládača fotoaparátu, čo je vysvetlené nižšie.

  • FLIP – zrkadlí obraz, keď nasmerujete objektív od seba.

Prečo obrazovka stmavne pri fotografii 3 MP

Formát pixelov fotoaparátu je pevne stanovený pri spustení ovládača. Rozlíšenie môžete zmeniť za behu, ale nemôžete prepnúť z RGB565 (čo potrebuje obrazovka) na JPEG (čo potrebuje súbor) bez reštartu ovládača. Takže cesta s vysokým rozlíšením volá esp_camera_deinit(), reštartuje v JPEG režime pri plnom rozlíšení, nasníma fotografiu a potom obnoví hľadáčik. Pauza je úprimná, nie je to chyba.

Časové pečiatky bez internetu

Fotografie sa ukladajú ako /IMG_260730_143052.jpg – rok, mesiac, deň, hodina, minúta, sekunda. To pochádza z hodín reálneho času PCF8563T, ktoré sú udržiavané v chode batériou, takže čas prežije aj odpojenie napájania. Ak hodiny stratili napájanie, skica ich nastaví z momentu kompilácie skice.

Oprava príkladu od výrobcu

Vlastný príklad fotoaparátu od predajcu definuje SD kartu na pinoch 2, 42 a 41. Tieto čísla pinov sú skopírované z inej dosky – na tejto sú to piny mikrofónu. SD karta je v skutočnosti na SPI zbernici displeja s vlastným chip selectom na IO47, čo používa aj tento kód. Toto je dôležité, ak chcete mať fotoaparát a mikrofóny funkčné v tej istej skici.

Zdieľanie jednej SPI zbernice

Displej a SD karta sú na rovnakých troch vodičoch, takže obe musia ísť cez rovnaký SPI ovládač. Táto skica používa Arduino_HWSPI so štandardným objektom SPI presne z tohto dôvodu. Používanie iného ovládača pre každé zariadenie je klasickou príčinou zamrznutia displeja v momente pripojenia SD karty.

O doske MaTouch AI ESP32-S3 2.8"

Každý projekt na tejto stránke beží na MaTouch AI ESP32-S3 2.8" TFT ST7789V od Makerfabs. Je to all-in-one doska: farebný dotykový displej, 3 megapixelový fotoaparát, dva mikrofóny a skutočný zosilňovač reproduktora, všetko poháňané ESP32-S3 s 8 MB PSRAM. Táto kombinácia umožňuje tieto AI projekty na jednej doske bez čohokoľvek ďalšieho.

8 MB PSRAM je dôležitejších než ktorékoľvek iné číslo tu. To umožňuje doske držať snímku z fotoaparátu, niekoľko sekúnd nahratého zvuku alebo base64-encoded fotografiu v pamäti súčasne – nič z toho sa nezmestí do bežnej RAM ESP32.

Dokumentácia výrobcu: wiki stránka Makerfabs.

Kľúčové špecifikácie

  • Procesor: ESP32-S3, dvojjadrový 240 MHz, WiFi 2.4 GHz + Bluetooth 5.0

  • Pamäť: 16 MB flash, 8 MB PSRAM (vyžadované takmer každým projektom tu)

  • Displej: 2.8" IPS, 320×240, ovládač ST7789V, SPI

  • Dotykové ovládanie: GT911 kapacitné, sleduje 5 prstov naraz

  • Fotoaparát: OV3660, 3 megapixely, až 2048×1536

  • Mikrofóny: dva INMP441 I2S digitálne mikrofóny (skutočný stereo pár)

  • Reproduktor: MAX98357A trieda-D zosilňovač, 3.2 W do 4 Ω

  • Úložisko: slot na microSD kartu (SPI režim)

  • Napájanie: USB-C, JST konektor batérie, nabíjačka TP4056, vypínač

  • Tiež na doske: WS2812B RGB LED, PCF8563T hodiny reálneho času napájané batériou a MAX17048 merač stavu batérie, ktorý nie je uvedený v oficiálnych špecifikáciách

Dva USB-C porty nie sú rovnaké. Reproduktor dosky zdieľa svoje signálové piny (IO19 a IO20) s natívnym USB portom, pretože tieto piny sú pevne zapojené USB dátové linky ESP32-S3. Vždy nahrávajte a napájajte cez CH340K USB-C port (ten vedľa tlačidla RESET) a nastavte USB CDC On Boot na Disabled. Použitie nesprávneho portu spôsobí problémy so zvukom alebo zlyhanie nahrávania.

Nastavenia Arduino IDE

Tieto nastavenia sú dôležité. Väčšina problémov, ktoré ľudia hlásia s touto doskou, je spôsobená jedným z týchto nastavení, a resetujú sa pri zmene verzie jadra, takže ich skontrolujte znova po akejkoľvek zmene.

Nastavenie

Hodnota

Doska

ESP32S3 Dev Module

Verzia jadra ESP32

2.0.17

PSRAM

OPI PSRAM

Veľkosť flash

16MB (128Mb)

Schéma oddielov

16M Flash (3MB APP/9.9MB FATFS)

USB CDC On Boot

Disabled

Rýchlosť nahrávania

921600

Vymazať všetku flash pred nahrávaním

Disabled

Port

CH340K USB-C port

Použite ESP32 core 2.0.17, nie 3.x. Espressif odstránil modely detekcie tváre priamo v zariadení v core 3, takže projekty s tvárou sa tam neskompilujú. Pinned 2.0.17 zabezpečuje, že každý projekt na tejto stránke funguje s jednou konfiguráciou. V Boards Manager, rozbaľovacia ponuka verzií vám umožňuje prepínať kedykoľvek chcete.

Použite GFX Library for Arduino verziu 1.5.6, nie 1.6.x. Verzie 1.6 sú vytvorené pre ESP32 core 3 a môžu zavesiť pri štarte na core 2.0.17. Ak obrazovka zostane čierna po nahraní, toto je prvá vec, ktorú treba skontrolovať.

Požadované knižnice

Nainštalujte ich cez Tools → Manage Libraries v Arduino IDE. Čísla verzií sú dôležité - použite tie, ktoré sú uvedené.

Knižnica

Verzia

Autor

GFX Library for Arduino

1.5.6

moononournation

bb_captouch

1.3.1

Larry Bank

Riešenie problémov

Príznak

Príčina a oprava

Obrazovka zostáva čierna

Nesprávna verzia GFX knižnice (použite 1.5.6) alebo nesprávne nastavenia dosky.

PSRAM alloc failed alebo chyba kamery 0xffffffff

Tools → PSRAM nie je nastavené na OPI PSRAM.

Nič sa nenahrá / žiadny COM port

Nesprávny USB-C port, alebo ovládač CH340 nie je nainštalovaný.

Kamera zlyhá a nikdy sa nezotaví

Resetovací riadok kamery je pripojený k tlačidlu RESET na doske, takže softvér ju nemôže reštartovať. Stlačte RESET. Ak stále zlyháva, znova pripojte plochý kábel kamery.

Stiahnite si kód

Kompletný Arduino sketch pre tento projekt, spolu s pins.h a všetkým ostatným, čo potrebuje, je na stiahnutie zadarmo.

Stiahnuť 02_Camera_Touch

Rozbaľte ho, otvorte súbor .ino v Arduino IDE, skontrolujte nastavenia vyššie a nahrajte cez CH340K USB-C port.

Kde kúpiť túto dosku

Tieto odkazy sú affiliate odkazy. Nestojí vás to nič navyše a pomáhajú podporovať bezplatný kód a návody na tejto stránke - ďakujeme.

882-Arduin code for MaTouch AI ESP32S3 2.8in AI Camera: Camera and touch
Language: C++
/*
 * ===========================================================================
 *  02_Camera_Touch  —  MaTouch AI ESP32-S3 2.8" TFT ST7789V
 * ===========================================================================
 *
 *  ---------------------------------------------------------------------------
----------
 *  ROBOJAX.COM  -  MaTouch AI ESP32-S3 2.8" project series
 *
 *    WATCH THE VIDEO
 *        https://youtu.be/6AL3g3tC_Hk
 *
 *    WRITTEN TUTORIALS - every project, with photos and full explanation
 *        Camera and touchscreen.... https://robojax.com/RTJ849
 *        Offline face recognition.. https://robojax.com/RTJ850
 *        AI voice assistant........ https://robojax.com/RTJ851
 *        AI vision................. https://robojax.com/RTJ852
 *
 *    GET THE BOARD - SAVE $5 with coupon code:  Robojax_Makerfab
 *        https://www.makerfabs.com/matouch-ai-esp32s3-2-8-tft-st7789v.html
 *        (enter the code at checkout)
 *
 *  All of this code is free. If it helped you, a subscribe on YouTube is
 *  the best way to support more of it.
 *  

 *  Watching the video first will save you time - it shows the Arduino IDE
 *  settings and the library versions being set up step by step.
 *  ---------------------------------------------------------------------------
 *
 *  Live camera viewfinder with a touch interface, saving real photos to the
 *  microSD card, each one stamped with the true date and time from the board's
 *  battery-backed RTC.
 *
 *  Three buttons down the right hand side:
 *
 *      SNAP    quick save. Converts the frame already on screen to JPEG.
 *              Instant, 240x240, always works.
 *
 *      3 MP    the real thing. Tears the camera down, brings it back up at
 *              2048x1536 JPEG, takes the shot, and restores the viewfinder.
 *              Takes a couple of seconds. This is the OV3660's full
 *              3 megapixels, not an upscale.
 *
 *      MIRROR  flips the image, for when you turn the board around to point
 *              the lens at someone else.
 *
 *  Photos land on the SD card as  /IMG_260729_143052.jpg
 *
 *  No WiFi, no API keys, no internet.
 *
 *  ---------------------------------------------------------------------------
 *  WHY THE 3 MP BUTTON HAS TO WORK SO HARD
 *  A camera's pixel format is fixed when the driver starts. You can change the
 *  resolution on the fly, but you cannot switch RGB565 (what the screen wants)
 *  to JPEG (what the SD card wants) without restarting the driver. So the
 *  hi-res path deinitialises and reinitialises. That is normal, and it is why
 *  the screen goes black for a moment.
 *
 *  ---------------------------------------------------------------------------
 *  BOARD SETTINGS - see pins.h. In short: ESP32S3 Dev Module, core 2.0.17,
 *  OPI PSRAM, 16MB flash, 16M partition scheme, upload via the CH340K port.
 *
 *  LIBRARIES
 *      GFX Library for Arduino   v1.5.6
 *      bb_captouch               v1.3.1
 *
 *  ---------------------------------------------------------------------------
 *  FUNCTIONS IN THIS SKETCH
 *      rtcRead() / rtcWrite(...)   read/set the PCF8563 battery-backed clock
 *      rtcSeedFromBuildTime()      set the clock from compile time if it lost power
 *      getTouch(&x,&y)       read the touch panel, mapped to screen coordinates
 *      inBox(...)            hit-test a touch against a button rectangle
 *      camStart(...)         start the camera in a given format/size
 *      camStartPreview()     start the 240x240 RGB565 live-view camera
 *      makeFilename(...)     /IMG_YYMMDD_HHMMSS.jpg from the RTC time
 *      writeToSD(...)        save a buffer to the SD card
 *      snapQuick()           SNAP button: re-encode the preview frame to JPEG
 *      snapHiRes()           3MP button: restart camera in JPEG mode, full res
 *      drawButton(...) / drawButtons() / drawStatus()   the touch UI
 *      setup() / loop()      boot / viewfinder + edge-detected button taps
 *
 *  Robojax.com
 * ===========================================================================
 */

#include <Arduino_GFX_Library.h>
#include <bb_captouch.h>
#include <Wire.h>
#include <SPI.h>
#include <SD.h>
#include "esp_camera.h"
#include "img_converters.h"      // frame2jpg()
#include "pins.h"

/* The TFT and SD share pins 13/12/48, so both must go through the SAME SPI
 * peripheral: Arduino_HWSPI wraps the standard SPI object the SD library
 * uses. (Arduino_ESP32SPI would grab a different peripheral, and the display
 * goes dark the moment the SD card claims the pins.) */
Arduino_HWSPI *bus = new Arduino_HWSPI(
    TFT_DC, TFT_CS, TFT_SCLK, TFT_MOSI, TFT_MISO, &SPI, true /* shared bus */);
Arduino_GFX *gfx = new Arduino_ST7789(bus, TFT_RES, 1, true);

BBCapTouch bbct;

/* --- layout: 240x240 viewfinder on the left, 80px button column on the right */
#define VIEW_W    240
#define BTN_X     242
#define BTN_W      78

#define BTN_SNAP_Y    2
#define BTN_HIRES_Y  62
#define BTN_MIRROR_Y 122
#define BTN_H        56
#define STATUS_Y    186

bool ok_sd     = false;
bool ok_rtc    = false;
bool mirrored  = true;      // the lens is upside down relative to the screen
int  shot_count = 0;
char status[48] = "ready";

/* --- the RTC time structure ------------------------------------------------
 * Defined up here, before any function, with explicit prototypes below.
 * WHY: the Arduino IDE auto-generates function prototypes and can insert them
 * ABOVE this struct - a function returning RtcTime then fails to compile with
 * "RtcTime does not name a type". Writing the prototypes ourselves stops the
 * IDE generating its own, so the order stays correct.
 * ------------------------------------------------------------------------- */
struct RtcTime {
  int year, mon, day, hour, min, sec;
  bool valid;
};

// explicit prototypes - do not remove (see comment above)
RtcTime rtcRead();
void    rtcWrite(int year, int mon, int day, int hour, int min, int sec);
void    rtcSeedFromBuildTime();
bool    getTouch(uint16_t *x, uint16_t *y);
bool    camStart(pixformat_t fmt, framesize_t size, int fb_count, int quality);
bool    camStartPreview();
void    makeFilename(char *out, size_t n);
bool    writeToSD(const char *path, const uint8_t *data, size_t len);
void    snapQuick();
void    snapHiRes();
void    drawButton(int y, const char *label, uint16_t colour);
void    drawButtons();
void    drawStatus();


/* ===========================================================================
 *  RTC  —  PCF8563T
 * =========================================================================== */
static inline uint8_t bcd2dec(uint8_t b) { return (uint8_t)((b >> 4) * 10 + (b & 0x0F)); }
static inline uint8_t dec2bcd(uint8_t d) { return (uint8_t)(((d / 10) << 4) | (d % 10)); }

RtcTime rtcRead() {
  RtcTime t = {2026, 1, 1, 0, 0, 0, false};
  Wire.beginTransmission(ADDR_PCF8563);
  Wire.write(0x02);
  if (Wire.endTransmission(false) != 0) return t;
  if (Wire.requestFrom((int)ADDR_PCF8563, 7) != 7) return t;

  uint8_t r[7];
  for (uint8_t i = 0; i < 7; i++) r[i] = Wire.read();

  t.valid = !(r[0] & 0x80);          // bit 7 = Voltage Low: time is unreliable
  t.sec  = bcd2dec(r[0] & 0x7F);
  t.min  = bcd2dec(r[1] & 0x7F);
  t.hour = bcd2dec(r[2] & 0x3F);
  t.day  = bcd2dec(r[3] & 0x3F);
  t.mon  = bcd2dec(r[5] & 0x1F);
  t.year = bcd2dec(r[6]) + 2000;
  return t;
}

void rtcWrite(int year, int mon, int day, int hour, int min, int sec) {
  Wire.beginTransmission(ADDR_PCF8563);
  Wire.write(0x02);
  Wire.write(dec2bcd(sec));          // writing clears the Voltage Low flag
  Wire.write(dec2bcd(min));
  Wire.write(dec2bcd(hour));
  Wire.write(dec2bcd(day));
  Wire.write(0x00);                  // weekday - we do not use it
  Wire.write(dec2bcd(mon));          // century bit left at 0 => 20xx
  Wire.write(dec2bcd(year % 100));
  Wire.endTransmission();
}

/* If the RTC has lost power, seed it from the moment this sketch was compiled.
 * Close enough for photo timestamps, and it means the clock is never blank. */
void rtcSeedFromBuildTime() {
  const char *mon_names = "JanFebMarAprMayJunJulAugSepOctNovDec";
  char mon_str[4] = {0};
  int day, year, hour, min, sec;

  sscanf(__DATE__, "%3s %d %d", mon_str, &day, &year);
  sscanf(__TIME__, "%d:%d:%d", &hour, &min, &sec);

  int mon = 1;
  for (int i = 0; i < 12; i++)
    if (strncmp(mon_str, mon_names + i * 3, 3) == 0) { mon = i + 1; break; }

  rtcWrite(year, mon, day, hour, min, sec);
  Serial.printf("RTC seeded from build time: %04d-%02d-%02d %02d:%02d:%02d\n",
                year, mon, day, hour, min, sec);
}


/* ===========================================================================
 *  Touch
 * =========================================================================== */
bool getTouch(uint16_t *x, uint16_t *y) {
  TOUCHINFO ti;
  if (!bbct.getSamples(&ti)) return false;
  if (ti.count < 1) return false;
  *x = ti.y[0];
  *y = (ti.x[0] > 240) ? 0 : (240 - ti.x[0]);
  return true;
}

static inline bool inBox(uint16_t x, uint16_t y, int bx, int by, int bw, int bh) {
  return (x >= bx && x < bx + bw && y >= by && y < by + bh);
}


/* ===========================================================================
 *  Camera
 * =========================================================================== */
bool camStart(pixformat_t fmt, framesize_t size, int fb_count, int quality) {
  camera_config_t c;
  c.ledc_channel = LEDC_CHANNEL_0;
  c.ledc_timer   = LEDC_TIMER_0;
  c.pin_d0 = CAM_PIN_D0;  c.pin_d1 = CAM_PIN_D1;
  c.pin_d2 = CAM_PIN_D2;  c.pin_d3 = CAM_PIN_D3;
  c.pin_d4 = CAM_PIN_D4;  c.pin_d5 = CAM_PIN_D5;
  c.pin_d6 = CAM_PIN_D6;  c.pin_d7 = CAM_PIN_D7;
  c.pin_xclk     = CAM_PIN_XCLK;
  c.pin_pclk     = CAM_PIN_PCLK;
  c.pin_vsync    = CAM_PIN_VSYNC;
  c.pin_href     = CAM_PIN_HREF;
  /* Share the I2C bus Wire already drives (touch/RTC live there too) instead
   * of letting the camera install a second driver on the same pins - that
   * kills touch and the RTC. Wire.begin() must run before this function. */
  c.pin_sccb_sda = -1;
  c.pin_sccb_scl = -1;
  c.sccb_i2c_port = 0;               // Wire = I2C port 0
  c.pin_pwdn     = CAM_PIN_PWDN;
  c.pin_reset    = CAM_PIN_RESET;
  c.xclk_freq_hz = 20000000;
  c.frame_size   = size;
  c.pixel_format = fmt;
  c.grab_mode    = CAMERA_GRAB_WHEN_EMPTY;
  c.fb_location  = CAMERA_FB_IN_PSRAM;
  c.jpeg_quality = quality;
  c.fb_count     = fb_count;

  esp_err_t err = esp_camera_init(&c);
  if (err != ESP_OK) {
    Serial.printf("esp_camera_init failed: 0x%x\n", err);
    return false;
  }

  sensor_t *s = esp_camera_sensor_get();
  if (s) {
    s->set_hmirror(s, mirrored ? 1 : 0);
    s->set_vflip(s,   mirrored ? 1 : 0);
    s->set_brightness(s, 1);
    s->set_saturation(s, 0);
  }
  return true;
}

bool camStartPreview() {
  if (camStart(PIXFORMAT_RGB565, FRAMESIZE_240X240, 2, 12)) return true;
  /* Retry with ONE frame buffer. The camera's DMA buffer must live in
   * internal RAM, and if something else grabbed it first this is the
   * difference between working and "cam_dma_config failed". */
  Serial.println("camera: retrying with a single frame buffer (low DMA RAM)");
  return camStart(PIXFORMAT_RGB565, FRAMESIZE_240X240, 1, 12);
}


/* ===========================================================================
 *  Saving
 * =========================================================================== */
void makeFilename(char *out, size_t n) {
  RtcTime t = rtcRead();
  snprintf(out, n, "/IMG_%02d%02d%02d_%02d%02d%02d.jpg",
           t.year % 100, t.mon, t.day, t.hour, t.min, t.sec);
}

bool writeToSD(const char *path, const uint8_t *data, size_t len) {
  if (!ok_sd) { snprintf(status, sizeof(status), "no SD card"); return false; }

  File f = SD.open(path, FILE_WRITE);
  if (!f) { snprintf(status, sizeof(status), "SD open failed"); return false; }

  size_t written = f.write(data, len);
  f.close();

  if (written != len) { snprintf(status, sizeof(status), "SD write short"); return false; }
  Serial.printf("Saved %s  (%u bytes)\n", path, (unsigned)len);
  return true;
}

/* Quick save: re-encode the RGB565 frame already in hand. */
void snapQuick() {
  snprintf(status, sizeof(status), "saving...");
  drawStatus();

  camera_fb_t *fb = esp_camera_fb_get();
  if (!fb) { snprintf(status, sizeof(status), "no frame"); return; }

  uint8_t *jpg = NULL;
  size_t   jpg_len = 0;
  bool ok = frame2jpg(fb, 90, &jpg, &jpg_len);
  esp_camera_fb_return(fb);

  if (!ok || !jpg) { snprintf(status, sizeof(status), "jpeg encode failed"); return; }

  char path[32];
  makeFilename(path, sizeof(path));
  if (writeToSD(path, jpg, jpg_len)) {
    shot_count++;
    snprintf(status, sizeof(status), "%s %uKB", path + 1, (unsigned)(jpg_len / 1024));
  }
  free(jpg);
}

/* Full resolution: restart the driver in JPEG mode at 2048x1536. */
void snapHiRes() {
  snprintf(status, sizeof(status), "3MP: restarting cam");
  drawStatus();
  gfx->fillRect(0, 0, VIEW_W, 240, BLACK);
  gfx->setTextColor(YELLOW);
  gfx->setCursor(60, 110);
  gfx->print("capturing 3 MP...");

  esp_camera_deinit();
  delay(120);

  if (!camStart(PIXFORMAT_JPEG, FRAMESIZE_QXGA, 1, 10)) {
    snprintf(status, sizeof(status), "3MP init failed");
    delay(120);
    if (!camStartPreview()) snprintf(status, sizeof(status), "CAM DEAD - press RESET");
    return;
  }

  // Throw away the first few frames so exposure and white balance settle,
  // otherwise the hi-res shot comes out darker than the viewfinder.
  for (int i = 0; i < 3; i++) {
    camera_fb_t *w = esp_camera_fb_get();
    if (w) esp_camera_fb_return(w);
    delay(120);
  }

  camera_fb_t *fb = esp_camera_fb_get();
  if (fb && fb->len > 0) {
    char path[32];
    makeFilename(path, sizeof(path));
    if (writeToSD(path, fb->buf, fb->len)) {
      shot_count++;
      snprintf(status, sizeof(status), "3MP %ux%u %uKB",
               fb->width, fb->height, (unsigned)(fb->len / 1024));
    }
  } else {
    snprintf(status, sizeof(status), "3MP capture failed");
  }
  if (fb) esp_camera_fb_return(fb);

  // Back to the viewfinder
  esp_camera_deinit();
  delay(120);
  if (!camStartPreview()) {
    snprintf(status, sizeof(status), "CAM DEAD - press RESET");
    gfx->fillRect(0, 0, VIEW_W, 240, RED);
  }
  drawButtons();
}


/* ===========================================================================
 *  UI
 * =========================================================================== */
void drawButton(int y, const char *label, uint16_t colour) {
  gfx->fillRoundRect(BTN_X, y, BTN_W, BTN_H, 6, colour);
  gfx->drawRoundRect(BTN_X, y, BTN_W, BTN_H, 6, WHITE);
  gfx->setTextSize(2);
  gfx->setTextColor(WHITE);
  int len = strlen(label);
  gfx->setCursor(BTN_X + (BTN_W - len * 12) / 2, y + (BTN_H - 16) / 2);
  gfx->print(label);
  gfx->setTextSize(1);
}

void drawButtons() {
  drawButton(BTN_SNAP_Y,   "SNAP",  gfx->color565(0, 90, 160));
  drawButton(BTN_HIRES_Y,  "3 MP",  gfx->color565(140, 70, 0));
  drawButton(BTN_MIRROR_Y, "FLIP",  gfx->color565(80, 80, 90));
}

void drawStatus() {
  gfx->fillRect(BTN_X, STATUS_Y, BTN_W, 240 - STATUS_Y, BLACK);
  gfx->setTextColor(CYAN);
  gfx->setTextSize(1);

  gfx->setCursor(BTN_X + 2, STATUS_Y + 2);
  gfx->printf("shots:%d", shot_count);

  RtcTime t = rtcRead();
  gfx->setCursor(BTN_X + 2, STATUS_Y + 14);
  gfx->setTextColor(ok_rtc ? GREEN : RED);
  gfx->printf("%02d:%02d:%02d", t.hour, t.min, t.sec);

  // Status text wraps across the narrow column, 13 characters at a time
  gfx->setTextColor(YELLOW);
  int row = 0;
  for (size_t i = 0; i < strlen(status) && row < 3; i += 13, row++) {
    char chunk[14] = {0};
    strncpy(chunk, status + i, 13);
    gfx->setCursor(BTN_X + 2, STATUS_Y + 26 + row * 10);
    gfx->print(chunk);
  }
}


/* ===========================================================================
 *  SETUP
 * =========================================================================== */
void setup() {
  Serial.begin(115200);
  delay(400);
  Serial.println("\n=== 02 Camera + Touch  |  Robojax.com ===");

  pinMode(TFT_BLK, OUTPUT);
  digitalWrite(TFT_BLK, LOW);
  pinMode(SD_CS, OUTPUT);
  digitalWrite(SD_CS, HIGH);

  // one shared SPI bus for TFT + SD, started before either device
  SPI.begin(TFT_SCLK, TFT_MISO, TFT_MOSI);

  gfx->begin();
  gfx->fillScreen(BLACK);
  gfx->setTextSize(1);
  digitalWrite(TFT_BLK, HIGH);

  gfx->setTextColor(CYAN);
  gfx->setCursor(4, 4);
  gfx->print("MaTouch AI - camera demo (Robojax.com)");

  // Touch. Pulses IO18, which is also the LCD reset - harmless at this point.
  bbct.init(TOUCH_SDA, TOUCH_SCL, TOUCH_RST, TOUCH_INT);
  delay(50);

  // RTC on the shared I2C bus (must be up before the camera - shared SCCB)
  Wire.begin(I2C_SDA, I2C_SCL, 100000);
  delay(20);
  RtcTime t = rtcRead();
  ok_rtc = (t.year >= 2020);
  if (ok_rtc && !t.valid) {
    Serial.println("RTC lost power - seeding from build time");
    rtcSeedFromBuildTime();
  }
  gfx->setCursor(4, 16);
  gfx->setTextColor(ok_rtc ? GREEN : RED);
  gfx->print(ok_rtc ? "RTC ok" : "RTC not found");

  /* ---- CAMERA BEFORE SD. This order matters. ----
   * The camera's DMA buffer must come from internal (not PSRAM) memory, and
   * mounting the SD card first can take enough of it that the camera driver
   * fails with "cam_dma_config failed / 0xffffffff". Camera first, SD second,
   * and both fit. (On ESP32 core 3.x the allocation is looser and the old
   * order happened to work - which is why this only appeared on 2.0.17.) */
  gfx->setCursor(4, 28);
  gfx->setTextColor(YELLOW);
  gfx->print("starting camera...");
  Serial.printf("free internal RAM before camera: %u bytes\n",
                (unsigned)heap_caps_get_free_size(MALLOC_CAP_INTERNAL));

  if (!camStartPreview()) {
    gfx->fillScreen(RED);
    gfx->setTextColor(WHITE);
    gfx->setTextSize(2);
    gfx->setCursor(20, 90);
    gfx->print("CAMERA FAILED");
    gfx->setTextSize(1);
    gfx->setCursor(20, 120);
    gfx->print("0xffffffff / cam_dma_config = out of DMA memory:");
    gfx->setCursor(20, 132);
    gfx->print("  check Tools > PSRAM = OPI PSRAM, then press RESET.");
    gfx->setCursor(20, 150);
    gfx->print("Any other error = reseat the camera FPC cable.");
    gfx->setCursor(20, 162);
    gfx->print("The camera reset line is tied to board RESET, so it");
    gfx->setCursor(20, 174);
    gfx->print("cannot be restarted from software - use the button.");
    while (1) delay(1000);
  }

  // SD card LAST. Same three wires as the display, its own chip select on IO47.
  const uint32_t speeds[] = {40000000, 20000000, 10000000, 4000000};
  for (uint8_t i = 0; i < 4 && !ok_sd; i++)
    if (SD.begin(SD_CS, SPI, speeds[i])) ok_sd = true;
  digitalWrite(SD_CS, HIGH);

  gfx->setCursor(4, 40);
  gfx->setTextColor(ok_sd ? GREEN : RED);
  gfx->print(ok_sd ? "SD ok" : "SD FAILED - photos will not save");
  Serial.println(ok_sd ? "SD ok" : "SD failed");

  delay(600);
  gfx->fillScreen(BLACK);
  drawButtons();
  drawStatus();
  Serial.println("Running. SNAP = quick, 3 MP = full resolution, FLIP = mirror.");
}


/* ===========================================================================
 *  LOOP
 * =========================================================================== */
void loop() {
  static uint32_t last_status = 0;

  /* touch edge detection: a button fires exactly once per physical tap.
   * touch_down latches on the first touched frame and only releases after
   * several consecutive untouched frames (the GT911 occasionally skips a
   * sample mid-press, which must not count as a release). */
  static bool    touch_down = false;
  static uint8_t release_count = 0;

  /* FPS: averaged over half a second and redrawn only then - redrawing it
   * every frame just makes it flicker unreadably. */
  static uint32_t fps_window_start = 0;
  static uint16_t fps_frames = 0;

  // --- viewfinder ---
  camera_fb_t *fb = esp_camera_fb_get();
  if (fb) {
    gfx->draw16bitBeRGBBitmap(0, 0, (uint16_t *)fb->buf, fb->width, fb->height);
    esp_camera_fb_return(fb);
    fps_frames++;
  }

  // --- touch: act only on the moment the finger first lands ---
  uint16_t x, y;
  if (getTouch(&x, &y)) {
    release_count = 0;
    if (!touch_down) {                       // new tap, not a held finger
      touch_down = true;
      if (inBox(x, y, BTN_X, BTN_SNAP_Y, BTN_W, BTN_H)) {
        snapQuick();
        drawStatus();
      } else if (inBox(x, y, BTN_X, BTN_HIRES_Y, BTN_W, BTN_H)) {
        snapHiRes();
        drawStatus();
      } else if (inBox(x, y, BTN_X, BTN_MIRROR_Y, BTN_W, BTN_H)) {
        mirrored = !mirrored;
        sensor_t *s = esp_camera_sensor_get();
        if (s) { s->set_hmirror(s, mirrored ? 1 : 0); s->set_vflip(s, mirrored ? 1 : 0); }
        snprintf(status, sizeof(status), mirrored ? "mirrored" : "normal");
        drawStatus();
      }
    }
  } else if (touch_down) {
    // require ~4 consecutive empty reads (~130ms) before declaring release
    if (++release_count >= 4) { touch_down = false; release_count = 0; }
  }

  // --- FPS, averaged, top left corner of the viewfinder ---
  uint32_t now = millis();
  if (now - fps_window_start >= 500) {
    float fps = fps_frames * 1000.0f / (now - fps_window_start);
    fps_window_start = now;
    fps_frames = 0;
    gfx->fillRect(2, 2, 56, 10, BLACK);
    gfx->setTextColor(GREEN);
    gfx->setTextSize(1);
    gfx->setCursor(4, 3);
    gfx->printf("FPS %.1f", fps);
  }

  if (now - last_status > 1000) { last_status = now; drawStatus(); }
}

Files📁

Required File (.h)

  • secrets.h
    file for Makerfabs MaTouch AI ESP32S3 2.8" TFT Camera module
    secrets.h 0.01 MB

Other Files

  • pins.h
    pins file for MaTouch AI ESP32S3 2.8" camera LCD touch screen.
    pins.h 0.01 MB

Schematic

  • MaTouch_AI 2.8“ MaTouch AI ESP32S3 2.8" TFT ST7789V schematic
    The latest MaTouch AI board integrate I2S voice input/I2S speaker/ 3 million camera OV3660/ 320*240 resolution display, with ESP32S3 strong processor& Wifi ability, to make this board a good tool/platform for AI development with ESP32.
    MaTouch_AI 2.8“ SPI TFT ST7789V V1.1.PDF 0.15 MB