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Arduino Quick Start

2. Devices & Examples

5. Extensions

6. Applications

Stamp-AddOn Cam3660 Arduino Tutorial

1. Preparation

Compilation Requirements

  • M5Stack board manager version >= 3.3.8
  • Board option = M5StampS3Bat

2. Example Program

This example configures the OV3660 for VGA (640 x 480) resolution and JPEG output. Stamp-S3Bat reads JPEG images directly from the camera, then provides an MJPEG live stream and JPEG still-image capture through an HTTP server.

This example supports two Wi-Fi operating modes: AP and STA. Change the value of CAMERA_USE_AP_MODE to select the mode: use 1 for AP mode or 0 for STA mode.

#define CAMERA_USE_AP_MODE 1

AP Mode

Stamp-S3Bat creates a Wi-Fi access point named Stamp-AddOn Cam3660 with the password 12345678. After connecting a computer or mobile device to this access point, use the default IP address 192.168.4.1 to access the camera.

  • Open http://192.168.4.1/ or http://192.168.4.1/stream to view the MJPEG live stream.
  • Open http://192.168.4.1/capture to capture a JPEG still image.

STA Mode

Stamp-S3Bat connects to an existing Wi-Fi network. Before use, update ssid and password in the STA configuration section. After the connection is established, the router assigns a local IP address to the device. Check the serial monitor for the assigned address. Replace <device IP> in the following URLs with the actual IP address shown in the serial monitor.

  • Open http://<device IP>/ or http://<device IP>/stream to view the MJPEG live stream.
  • Open http://<device IP>/capture to capture a JPEG still image.
cpp
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#include <WiFi.h>
#include <WebServer.h>
#include "esp_camera.h"

#define CAMERA_USE_AP_MODE 1

#if CAMERA_USE_AP_MODE
const char *ssid     = "Stamp-AddOn Cam3660";
const char *password = "12345678";
#else
const char *ssid     = "ssid";
const char *password = "password";
#endif

WebServer server(80);

#define PWDN_GPIO_NUM  39
#define RESET_GPIO_NUM 41
#define XCLK_GPIO_NUM  46
#define SIOD_GPIO_NUM  48
#define SIOC_GPIO_NUM  47

#define Y9_GPIO_NUM 40
#define Y8_GPIO_NUM 38
#define Y7_GPIO_NUM 12
#define Y6_GPIO_NUM 14
#define Y5_GPIO_NUM 15
#define Y4_GPIO_NUM 16
#define Y3_GPIO_NUM 18
#define Y2_GPIO_NUM 21

#define VSYNC_GPIO_NUM 42
#define HREF_GPIO_NUM  17
#define PCLK_GPIO_NUM  13

static camera_config_t camera_config = {
    .pin_pwdn     = PWDN_GPIO_NUM,
    .pin_reset    = RESET_GPIO_NUM,
    .pin_xclk     = XCLK_GPIO_NUM,
    .pin_sscb_sda = SIOD_GPIO_NUM,
    .pin_sscb_scl = SIOC_GPIO_NUM,
    .pin_d7       = Y9_GPIO_NUM,
    .pin_d6       = Y8_GPIO_NUM,
    .pin_d5       = Y7_GPIO_NUM,
    .pin_d4       = Y6_GPIO_NUM,
    .pin_d3       = Y5_GPIO_NUM,
    .pin_d2       = Y4_GPIO_NUM,
    .pin_d1       = Y3_GPIO_NUM,
    .pin_d0       = Y2_GPIO_NUM,

    .pin_vsync = VSYNC_GPIO_NUM,
    .pin_href  = HREF_GPIO_NUM,
    .pin_pclk  = PCLK_GPIO_NUM,

    .xclk_freq_hz = 20000000,
    .ledc_timer   = LEDC_TIMER_0,
    .ledc_channel = LEDC_CHANNEL_0,

    .pixel_format = PIXFORMAT_JPEG,
    .frame_size   = FRAMESIZE_VGA,
    // .frame_size    = FRAMESIZE_QXGA,
    .jpeg_quality  = 12,
    .fb_count      = 2,
    .fb_location   = CAMERA_FB_IN_PSRAM,
    .grab_mode     = CAMERA_GRAB_WHEN_EMPTY,
    .sccb_i2c_port = -1,
};

static constexpr char STREAM_BOUNDARY[] = "123456789000000000000987654321";

static bool writeAll(WiFiClient &client, const uint8_t *data, size_t length)
{
    while (length > 0 && client.connected()) {
        const size_t written = client.write(data, length);
        if (written == 0) {
            return false;
        }
        data += written;
        length -= written;
        yield();
    }
    return length == 0;
}

static bool cameraBegin()
{
    // Keep the sensor powered up and reset it before initializing the camera driver.
    pinMode(PWDN_GPIO_NUM, OUTPUT);
    digitalWrite(PWDN_GPIO_NUM, LOW);

    pinMode(RESET_GPIO_NUM, OUTPUT);
    digitalWrite(RESET_GPIO_NUM, LOW);
    delay(20);
    digitalWrite(RESET_GPIO_NUM, HIGH);
    delay(100);

    esp_err_t err = esp_camera_init(&camera_config);
    if (err != ESP_OK) {
        Serial.printf("Camera Init Fail: 0x%x\r\n", err);
        return false;
    }

    sensor_t *sensor = esp_camera_sensor_get();
    if (!sensor) {
        Serial.println("Camera sensor get failed");
        return false;
    }

    if (sensor->id.PID != OV3660_PID) {
        Serial.printf("Unexpected camera PID: 0x%04x\r\n", sensor->id.PID);
        esp_camera_deinit();
        return false;
    }

    // Correct the OV3660 default orientation and color characteristics.
    sensor->set_vflip(sensor, 0);
    sensor->set_hmirror(sensor, 1);
    sensor->set_brightness(sensor, 1);
    sensor->set_saturation(sensor, -2);
    sensor->set_sharpness(sensor, 1);

    Serial.println("Camera Init Success");
    return true;
}

static void handleCapture()
{
    WiFiClient client = server.client();
    camera_fb_t *fb   = esp_camera_fb_get();

    if (!fb) {
        server.send(503, "text/plain", "Camera capture failed\n");
        return;
    }

    client.println("HTTP/1.1 200 OK");
    client.println("Content-Type: image/jpeg");
    client.printf("Content-Length: %u\r\n", static_cast<unsigned int>(fb->len));
    client.println("Content-Disposition: inline; filename=capture.jpg");
    client.println("Cache-Control: no-store, no-cache, must-revalidate");
    client.println("Pragma: no-cache");
    client.println("Access-Control-Allow-Origin: *");
    client.println("Connection: close");
    client.println();

    writeAll(client, fb->buf, fb->len);
    esp_camera_fb_return(fb);
    client.stop();
}

static void handleStream()
{
    WiFiClient client   = server.client();
    int64_t lastFrameUs = esp_timer_get_time();

    client.println("HTTP/1.1 200 OK");
    client.printf("Content-Type: multipart/x-mixed-replace; boundary=%s\r\n", STREAM_BOUNDARY);
    client.println("Cache-Control: no-store, no-cache, must-revalidate");
    client.println("Pragma: no-cache");
    client.println("Access-Control-Allow-Origin: *");
    client.println("Connection: close");
    client.println();

    while (client.connected()) {
        camera_fb_t *fb = esp_camera_fb_get();
        if (!fb) {
            Serial.println("Camera capture failed");
            delay(30);
            continue;
        }

        // OV3660 outputs JPEG directly, so the frame buffer can be sent without conversion.
        client.printf("--%s\r\n", STREAM_BOUNDARY);
        client.printf("Content-Type: image/jpeg\r\n");
        client.printf("Content-Length: %u\r\n\r\n", (unsigned int)fb->len);
        const bool sent = writeAll(client, fb->buf, fb->len);

        const size_t frameSize = fb->len;

        esp_camera_fb_return(fb);

        if (!sent || client.print("\r\n") == 0) {
            break;
        }

        const int64_t nowUs       = esp_timer_get_time();
        const int64_t frameTimeMs = (nowUs - lastFrameUs) / 1000;
        lastFrameUs               = nowUs;
        const float fps           = frameTimeMs > 0 ? 1000.0f / frameTimeMs : 0.0f;
        Serial.printf("MJPG: %uKB %lldms (%.1ffps)\r\n", static_cast<unsigned int>(frameSize / 1024), frameTimeMs, fps);
        yield();
    }

    client.stop();
}

static IPAddress startWiFi()
{
#if CAMERA_USE_AP_MODE
    WiFi.mode(WIFI_AP);
    if (!WiFi.softAP(ssid, password)) {
        Serial.println("WiFi AP start failed");
        return IPAddress();
    }

    const IPAddress ip = WiFi.softAPIP();
    Serial.printf("WiFi AP: %s\r\n", ssid);
    Serial.printf("IP address: %s\r\n", ip.toString().c_str());
    return ip;
#else
    WiFi.mode(WIFI_STA);
    WiFi.setSleep(false);
    WiFi.begin(ssid, password);

    Serial.print("Connecting to WiFi");
    while (WiFi.status() != WL_CONNECTED) {
        delay(500);
        Serial.print(".");
    }

    Serial.println();
    const IPAddress ip = WiFi.localIP();
    Serial.printf("IP address: %s\r\n", ip.toString().c_str());
    return ip;
#endif
}

void setup()
{
    Serial.begin(115200);
    delay(1000);

    if (!cameraBegin()) {
        while (true) {
            delay(1000);
        }
    }

    const IPAddress ip = startWiFi();
    if (ip == IPAddress()) {
        while (true) {
            delay(1000);
        }
    }

    server.on("/", HTTP_GET, handleStream);
    server.on("/stream", HTTP_GET, handleStream);
    server.on("/capture", HTTP_GET, handleCapture);
    server.onNotFound([]() { server.send(404, "text/plain", "Not found\n"); });
    server.begin();

    Serial.println("Camera HTTP server started");
    Serial.printf("Stream:  http://%s/stream\r\n", ip.toString().c_str());
    Serial.printf("Capture: http://%s/capture\r\n", ip.toString().c_str());
}

void loop()
{
    server.handleClient();
    delay(1);
}

3. Compile and Upload

  • In Arduino IDE, select the M5StampS3Bat board and the port corresponding to the device.
  • Click the compile and upload button in the upper-left corner of Arduino IDE. Wait for the program to compile and upload to the device.

4. Running Result

After the program starts, connect a computer or mobile device to the Stamp-AddOn Cam3660 Wi-Fi access point using the password 12345678. Open http://192.168.4.1/stream in a browser to view the live stream, or open http://192.168.4.1/capture to capture a still image. The serial monitor displays the device IP address, access URLs, frame size, transmission time, and frame rate.

Serial output example:

Camera Init Success
WiFi AP: Stamp-AddOn Cam3660
IP address: 192.168.4.1
Camera HTTP server started
Stream:  http://192.168.4.1/stream
Capture: http://192.168.4.1/capture
JPG: 14KB 156ms (6.4fps)
MJPG: 13KB 63ms (15.9fps)
MJPG: 13KB 33ms (30.3fps)
MJPG: 12KB 60ms (16.7fps)
MJPG: 14KB 53ms (18.9fps)
MJPG: 13KB 199ms (5.0fps)
MJPG: 13KB 34ms (29.4fps)
MJPG: 13KB 65ms (15.4fps)
MJPG: 12KB 59ms (16.9fps)
MJPG: 14KB 38ms (26.3fps)
MJPG: 13KB 61ms (16.4fps)
MJPG: 14KB 39ms (25.6fps)
MJPG: 14KB 60ms (16.7fps)
MJPG: 14KB 71ms (14.1fps)

Browser access example:

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