HAS-52-R/
AI

The **HAS-52-R** is a specific model within the **HAS Series** of open-loop current sensors manufactured by **LEM**. These devices are designed to measure DC, AC, and pulsed currents with galvanic isolation between the primary circuit (high power) and the secondary circuit (electronic measurement).
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### 1. Key Technical Specifications
The following table highlights the primary electronic characteristics of the HAS-52-R:
| Parameter | Value / Specification |
| :--- | :--- |
| **Primary Nominal Current ($I_{pn}$)** | 50 A |
| **Measuring Range ($I_{pm}$)** | ± 150 A (at $V_c$ = ± 15 V) |
| **Secondary Output Voltage** | ± 4 V (at $I_{pn}$) |
| **Supply Voltage ($V_c$)** | ± 15 V (± 5%) |
| **Accuracy** | ± 1% of $I_{pn}$ (at $+25^{\circ}C$) |
| **Frequency Bandwidth** | DC to 50 kHz (-3 dB) |
| **Response Time** | < 3 µs |
| **Isolation Voltage** | 3 kV |
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### 2. Electronic Components & Operating Principle
The HAS-52-R operates based on the **Hall Effect** principle using an open-loop architecture.
#### Internal Components:
* **Magnetic Core:** A high-permeability ring that concentrates the magnetic flux generated by the primary current.
* **Hall Effect Generator:** A semiconductor sensor placed in the air gap of the magnetic core. It produces a small voltage proportional to the magnetic flux.
* **Signal Conditioning Circuit:** An internal operational amplifier that scales the tiny Hall voltage into a usable 4V output signal.
#### Operational Logic:
1. **Current Input:** The primary wire passes through the center hole of the sensor.
2. **Flux Detection:** The magnetic field is concentrated in the core.
3. **Conversion:** The Hall sensor converts the field into a voltage.
4. **Output:** The secondary electronics output a voltage that is a linear representation of the primary current.
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### 3. Pin Configuration and Connection
The device typically features 4 pins for integration into a PCB:
| Pin Number | Function | Description |
| :---: | :--- | :--- |
| **1** | +Vc | Positive Supply (+15V) |
| **2** | -Vc | Negative Supply (-15V) |
| **3** | Output | Voltage signal proportional to current |
| **4** | 0V | Common Ground / Reference |
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### 4. Application Use Cases
Because the HAS-52-R provides galvanic isolation, it is commonly used in:
* **Variable Speed Drives:** Monitoring motor current.
* **Uninterruptible Power Supplies (UPS):** Managing battery charging and load.
* **Switched Mode Power Supplies (SMPS):** Current regulation.
* **Welding Machines:** Precision control of high-output currents.
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What is the difference between open-loop and closed-loop current sensors in the HAS series?
- ⤷ How do temperature fluctuations affect the accuracy of the HAS-52-R?
- ⤷ Can this sensor be powered by a single +15V supply instead of a dual supply?