Soil Moisture Sensors
LILYGO T-Higrow BME280 Wifi Bluetooth-Unsoldered (Without Humidity Photometric Electrolyte Sensor)
- Working current:150 mA
- Sleep current: 220 uA
- Working temperature range:-40℃ ~ +85℃
- Power Supply Input:USB 5V/1A
- Charging current:500mA
- Battery Input:3.7-4.2V
- Battery:3.7V lithium battery
SKU: Not Found
Brand: LILYGO
Out of stock
₹1665.00
Free Delivery Expected:
Thursday, May 28 - Saturday, May 30
Order within the next 16 hrs to get it by this date.
- 100% Secure Checkout
- 7-Day Easy Returns
- Authentic & Quality Checked
- 24/7 Priority Support
Product Description
This is a LILYGO T-Higrow BME280 Wifi Bluetooth-Unsoldered (Without Humidity Photometric Electrolyte Sensor). The capacitive soil moisture sensor differs from most of the resistive sensors on the market, using the capacitive sensing principle to detect soil moisture. It avoids the problem that the resistance sensor is easy to corrode and greatly prolongs its working life. It can be used with t-higrow to test the temperature and humidity of flowerpot soil and environment, as well as the water temperature of fish tanks when raising fish. Of course, it can also test other temperatures as long as you want.
Features:
- It is easy to carry anywhere.
- It can easily detect the temperature and humidity of flowerpot soil and the environment.
Package Includes:
1 x LILYGO T-Higrow BME280 Wifi Bluetooth-Unsoldered (Without Humidity Photometric Electrolyte Sensor)
Technical Specifications
| Battery Input | 3.7-4.2V |
|---|---|
| Battery required | 3.7V lithium battery |
| Charging current(mA) | 500 |
| Communication Distance(m) | 300m |
| Frequency (GHz) | 2.4GHz~2.5GHz |
| Item Type | Sensor Module |
| Length (mm) | 155 |
| Model | Wifi Bluetooth Sensor Module |
| Operating Temperature (°C) | -40~85℃ |
| Power Supply Input | USB 5V/1A |
| Shipping Dimensions | 16 × 7 × 1 cm |
| Shipping Weight | 0.03 kg |
| Sleep Current (uA) | 220 uA |
| Transmit Power (dBm) | 22 |
| Weight (g) | 20 |
| Width (mm) | 36 |
| Working Current (mA) | 150 mA |


