AI

The **47LM-141B-R** is a specific model of an **Electromagnetic Buzzer** (specifically a magnetic transducer). These components are widely used in consumer electronics, automotive alerts, and industrial equipment to provide audible feedback.
---
### 1. Key Technical Specifications
The following table summarizes the typical electronic characteristics of the 47LM-141B-R series:
| Parameter | Specification |
| :--- | :--- |
| **Type** | Magnetic Transducer (External Drive) |
| **Rated Voltage** | 1.5V to 5.0V (Model dependent) |
| **Operating Voltage** | 1.0V ~ 7.0V |
| **Rated Current** | Max 40mA ~ 80mA |
| **Sound Pressure Level (SPL)** | Min 85dB (at 10cm) |
| **Resonant Frequency** | 2,400Hz to 2,700Hz |
| **Coil Resistance** | 42Ω ± 5Ω (Standard) |
| **Operating Temperature** | -30°C to +70°C |
---
### 2. Physical Construction
The part is designed for PCB (Printed Circuit Board) mounting. Key physical features include:
* **Housing:** High-temperature plastic (usually PBT or PPS) capable of withstanding wave soldering.
* **Terminals:** Through-hole pins (R suffix often denotes Radial or specific Pin spacing).
* **Dimensions:** Typically circular with a diameter of ~12mm and a height of ~9.5mm.
* **Sound Port:** Top-opening hole for sound emission.
---
### 3. Operating Principle
Unlike a "piezo" buzzer which uses ceramic expansion, the **47LM-141B-R** is an electromagnetic device:
1. **Electromagnetism:** An internal coil is wrapped around a core.
2. **Vibration:** When an oscillating current (square wave) is applied, it creates a fluctuating magnetic field.
3. **Diaphragm:** A metal disk (diaphragm) is attracted and released by the magnetic field, vibrating at the input frequency to create sound waves.
---
### 4. Implementation Circuitry
Because this is a **transducer** (not an indicator), it does not have an internal oscillating circuit. You must provide a square wave at the resonant frequency to make it sound.
```cpp
// Example Arduino-style pseudo-code to drive the part
void setup() {
pinMode(BUZZER_PIN, OUTPUT);
}
void loop() {
// Generate a 2400Hz square wave
tone(BUZZER_PIN, 2400);
delay(500);
noTone(BUZZER_PIN);
delay(500);
}
```
---
### 5. Common Applications
* **Appliances:** Microwave "beeps," washing machine cycle alerts.
* **Computing:** Motherboard POST codes (BIOS beeps).
* **Medical:** Heart rate monitors or alarm indicators.
* **Handheld Devices:** POS terminals and barcode scanners.
- ⤷
What is the difference between an 'indicator' and a 'transducer' buzzer?
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