W2CE-1A2-R2/N
AI

The **W2CE-1A2-R2/N** is a specific model within the **W2CE series** of high-power, chassis-mounted, wirewound resistors manufactured by **Widap**. These components are designed for industrial applications requiring high energy dissipation and durability.
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### 1. Technical Specifications Table
The following table highlights the core characteristics of this specific component:
| Feature | Specification |
| :--- | :--- |
| **Component Type** | Wirewound Power Resistor |
| **Housing Material** | Aluminum Cased / Anodized |
| **Mounting Style** | Chassis Mount (Heatsink required) |
| **Resistance Tolerance** | ±5% or ±10% (standard for R2 series) |
| **Protection Class** | IP00 to IP65 (depending on terminal housing) |
| **Cooling Method** | Natural Convection or Forced Air |
| **Standard Application** | Braking resistor, Load bank, Inverter systems |
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### 2. Breakdown of the Model Name (Nomenclature)
The part number can be decoded to understand its physical and electrical properties:
* **W2CE**: The series identifier (High-power aluminum-housed wirewound resistors).
* **1A2**: Indicates the specific frame size and physical dimensions of the resistor body.
* **R2**: Refers to the resistance value. In this context, **R2 usually represents 0.2 Ohms**.
* **/N**: Often indicates a specific terminal type (Nut/Bolt) or a standard non-inductive variant depending on the sub-revision.
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### 3. Key Electronic Components & Construction
The W2CE-1A2-R2/N is composed of several critical layers to handle high thermal loads:
1. **Resistive Element:** A high-grade alloy wire (typically Nickel-Chromium) wound around a ceramic core.
2. **Insulation:** The internal assembly is encapsulated in a high-thermal-conductivity cement or epoxy to ensure electrical isolation from the outer casing.
3. **Aluminum Casing:** The outer shell acts as a primary heat spreader. The fins on the casing increase surface area for better heat dissipation.
4. **Terminals:** Heavy-duty screw or bolt terminals designed to handle high current without melting or significant voltage drops.
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### 4. Common Use Cases
These resistors are not found in consumer electronics but rather in heavy industrial environments:
* **Dynamic Braking:** Used in Variable Frequency Drives (VFDs) to dissipate kinetic energy from a motor when it slows down.
* **Soft Start Circuits:** Limiting inrush current in large transformers or motors.
* **Dummy Loads:** Testing power supplies or generators by simulating a high-current load.
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- ⤷
What is the maximum wattage rating for the W2CE-1A2 frame size?
- ⤷ How does the resistance value change with temperature (Temperature Coefficient)?
- ⤷ Is a specific heatsink size recommended for this resistor?