HTS-0B-R
AI

The **HTS-0B-R** is an electronic component primarily classified as a **Humidity and Temperature Sensor**. It is frequently used in consumer electronics, HVAC systems, and weather monitoring devices due to its compact size and reliability.
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### 1. Key Technical Specifications
The HTS-0B-R is typically a resistive or capacitive-based sensor designed for surface mounting (SMD). Below are the general technical parameters:
| Parameter | Specification |
| :--- | :--- |
| **Part Number** | HTS-0B-R |
| **Function** | Relative Humidity (RH) & Temperature Sensing |
| **Operating Voltage** | 1.5V to 5.5V (Standard range) |
| **RH Range** | 0% to 100% RH |
| **Accuracy (Humidity)** | ±3% to ±5% (typical) |
| **Accuracy (Temp)** | ±0.5°C to ±1.0°C |
| **Package Type** | Surface Mount (SMD) |
| **Interface** | Usually Analog (Resistive) or I2C (Digital variant) |
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### 2. Functional Description
The device operates by detecting changes in the electrical properties of a polymer layer within the sensor.
- **Humidity Sensing:** As moisture in the air increases, the dielectric constant or resistance of the internal polymer changes. The internal circuitry converts this change into a measurable electrical signal.
- **Temperature Sensing:** It usually incorporates an integrated Thermistor (NTC/PTC) or a CMOS temperature sensor to provide ambient thermal readings.
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### 3. Pin Configuration & Application
While specific pinouts can vary by manufacturer (such as **HOKURIKU** or **SENSIRION** style footprints), a standard 4-pin configuration is common:
1. **VDD:** Power Supply Input.
2. **GND:** Ground.
3. **SCL/Data:** Communication line.
4. **SDA/Analog Out:** Signal output.
#### Common Applications:
- **Smart Home:** Dehumidifiers, air purifiers, and thermostats.
- **Automotive:** Cabin climate control and windshield defogging.
- **Industrial:** Storage monitoring and drying equipment.
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### 4. Implementation Example (Basic Logic)
If the sensor is used in a microcontroller environment (like Arduino or ESP32), the logic follows this structure:
```cpp
// Pseudo-code for reading HTS sensor
#include
void setup() {
Serial.begin(9600);
Wire.begin(); // Initialize I2C communication
}
void loop() {
float humidity = readHTS_Humidity();
float temperature = readHTS_Temp();
Serial.print("Humidity: ");
Serial.print(humidity);
Serial.println("%");
delay(2000); // Sampling rate
}
```
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- ⤷
What are the specific soldering requirements for the HTS-0B-R SMD package?
- ⤷ How does the HTS-0B-R compare to the DHT22 in terms of accuracy?
- ⤷ Which manufacturers currently produce the HTS-0B-R model?