DR10D560K
AI

The **DR10D560K** is a specific model of a **Metal Oxide Varistor (MOV)**. These components are used primarily for surge protection and voltage clamping in electronic circuits.
---
### 1. Component Identification
The part number can be broken down to understand its characteristics:
| Part Segment | Meaning | Detail |
| :--- | :--- | :--- |
| **DR** | Series/Manufacturer Code | Often refers to "Disk Resistor" or a specific brand's series. |
| **10** | Disk Diameter | Indicates a **10mm** diameter disk size. |
| **D** | Shape | Stands for **Disk** shape. |
| **560** | Varistor Voltage | $56 \times 10^0 = \mathbf{56V}$. This is the nominal voltage. |
| **K** | Tolerance | **±10%** tolerance on the varistor voltage. |
---
### 2. Technical Specifications
Typical technical parameters for a 10D560K varistor include:
* **Varistor Voltage ($V_{1mA}$):** 56V (Range: 50V to 62V).
* **Maximum Allowable Voltage:**
* **AC RMS:** ~35V
* **DC:** ~45V
* **Maximum Clamping Voltage:** The peak voltage across the varistor when a standard pulse current is applied (usually around 110V at 10A-25A).
* **Surge Current (8/20μs):** Can typically handle a single pulse of **500A to 1000A** (depending on the specific manufacturer).
* **Energy Absorption (10/1000μs):** Approximately **4.0 to 7.0 Joules**.
---
### 3. How It Works
A varistor is a **Voltage-Dependent Resistor (VDR)** with a non-linear resistance:
1. **Normal State:** When the voltage is below 56V, the varistor has very high resistance and acts as an open circuit.
2. **Surge State:** When a voltage spike (like a power surge) exceeds the clamping threshold, the resistance drops instantly.
3. **Protection:** The varistor shunts the excess current to the ground or across the line, protecting sensitive downstream components from overvoltage.
---
### 4. Common Applications
* **Low Voltage DC Power Supplies:** Protecting sensors and ICs.
* **Automotive Electronics:** Safeguarding 12V/24V systems from "load dump" transients.
* **Telecommunications:** Protecting data lines from induced lightning surges.
* **Control Systems:** Protecting PLC inputs and relay coils.
---
### 5. Symbol and Circuit Placement
In a schematic, it is represented by a symbol similar to a resistor but with a diagonal line and a "U" or "V" hook. It is almost always placed **in parallel** with the load it is intended to protect.
```text
Line (+) ----o---- [ Fuse ] ----o---- Load ----
| |
[MOV] (Device)
| |
Neutral (-) --o------------------o--------------
```
- ⤷
What is the difference between a 10D560K and a 14D560K?
- ⤷ How do I choose the correct varistor voltage for a 12V DC circuit?
- ⤷ Does a varistor wear out over time after multiple surges?