MF-R_15
AI

The **MF-R015** is a specific model of **Resettable Fuse** (also known as a Polymer Positive Temperature Coefficient device or **PPTC**), manufactured primarily by Bourns.
These components are used for overcurrent protection. Unlike traditional fuses that blow and must be replaced, PPTCs "trip" by increasing their resistance significantly when current exceeds a limit and reset once the fault is removed and the power is cycled.
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### 1. Key Technical Specifications
The "015" in the part number typically refers to the **Hold Current ($I_{hold}$)**, which is 0.15 Amperes (150mA).
| Parameter | Value | Description |
| :--- | :--- | :--- |
| **Hold Current ($I_{hold}$)** | 0.15 A | The maximum current the device will carry without tripping. |
| **Trip Current ($I_{trip}$)** | 0.30 A | The minimum current at which the device will switch to high resistance. |
| **Max Voltage ($V_{max}$)** | 60 V | The maximum voltage the device can withstand without damage. |
| **Max Current ($I_{max}$)** | 40 A | The maximum fault current the device can safely handle. |
| **Typical Power ($P_d$)** | 0.3 W | Power dissipated when the device is in the tripped state. |
| **Form Factor** | Radial Lead | Through-hole mounting (looks like a small disc capacitor). |
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### 2. How It Functions
The MF-R015 works based on a composite of semi-conductive particles (carbon black) embedded in a non-conductive polymer.
1. **Normal State:** The polymer is in a crystalline state; carbon particles form dense chains, allowing current to flow with low resistance.
2. **Overcurrent State:** If current exceeds the limit ($I_{trip}$), $I^2R$ heating occurs. The polymer expands and becomes amorphous.
3. **Tripped State:** The expansion breaks the carbon chains. Resistance spikes (often by several orders of magnitude), effectively "opening" the circuit.
4. **Resetting:** Once the fault is cleared and the device cools down, the polymer shrinks, the carbon chains reconnect, and the fuse returns to a low-resistance state.
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### 3. Application Use Cases
Because the MF-R015 has a low hold current (150mA), it is commonly found in:
* **USB Port Protection:** Protecting peripherals from drawing too much power.
* **Sensor Protection:** Safeguarding delicate industrial or automotive sensors.
* **Security Systems:** Overload protection for low-voltage alarm circuits.
* **Medical Equipment:** Portable devices requiring non-replaceable protection.
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### 4. Comparison: PTC vs. Standard Fuse
| Feature | Standard Glass Fuse | MF-R015 (PTC) |
| :--- | :--- | :--- |
| **Reusability** | One-time use | Resettable |
| **Response Time** | Very Fast | Slower (Thermal based) |
| **Resistance** | Negligible | Moderate (increases with heat) |
| **Maintenance** | Requires replacement | Maintenance-free |
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What is the difference between I-hold and I-trip in PPTC devices?
- ⤷ How does ambient temperature affect the performance of an MF-R015 fuse?
- ⤷ Are there surface-mount alternatives to the radial MF-R series?