Electronic Components Datasheet Search
  English  ▼
ALLDATASHEET.COM

X  

  • MF-RHT

  • AI
    The **MF-RHT series** refers to a specific line of **High-Temperature Polymer Positive Temperature Coefficient (PPTC)** resettable fuses, primarily manufactured by Bourns. These components are designed to protect electronic circuits from overcurrent and overtemperature conditions. --- ### 1. Fundamental Characteristics Unlike standard fuses that blow and must be replaced, MF-RHT parts are **resettable**. When a fault occurs, the device increases its resistance significantly, limiting the current. Once the fault is removed and the power is cycled, the device cools down and returns to a low-resistance state. | Feature | Description | | :--- | :--- | | **Material** | Conductive polymer matrix. | | **Operating Temp** | Enhanced for high-temperature environments (up to 125°C). | | **Form Factor** | Radial Leaded (Through-hole). | | **Primary Function** | Overcurrent and short-circuit protection. | --- ### 2. Key Technical Specifications The MF-RHT series is distinct due to its ability to operate in harsh thermal environments where standard PPTCs would "trip" prematurely. * **$I_{hold}$ (Hold Current):** The maximum current the device can carry without tripping (ranging from ~0.5A to 13.0A depending on the model). * **$I_{trip}$ (Trip Current):** The minimum current at which the device will switch to a high-resistance state (usually 2x the $I_{hold}$). * **$V_{max}$ (Maximum Voltage):** The maximum voltage the device can withstand (typically 16V to 32V for this series). * **$T_{max}$ (Ambient Temperature):** Rated for up to **125°C**, making them ideal for automotive under-the-hood applications. --- ### 3. How it Works (The PTC Effect) The internal structure consists of a polymer containing carbon black particles. 1. **Normal State:** The carbon chains are intact, allowing electricity to flow with very low resistance. 2. **Fault State:** High current or high ambient heat causes the polymer to expand. 3. **Tripped State:** The expansion breaks the carbon chains, the resistance spikes (acting like an open switch), and the current drops to a trickle. 4. **Reset:** Once the heat source is removed, the polymer contracts, reconnecting the carbon chains. --- ### 4. Typical Applications The MF-RHT series is specifically engineered for environments where reliability at high temperatures is non-negotiable: * **Automotive:** Electronic Control Units (ECUs), motor protection, and lighting. * **Industrial:** Power supplies and motors operating in hot enclosures. * **Telecom:** Protection for base stations and external equipment. --- ### 5. Comparison: MF-RHT vs. Standard PPTC | Specification | Standard PPTC (e.g., MF-R) | MF-RHT Series | | :--- | :--- | :--- | | **Max Operating Temp** | 85°C | 125°C | | **Thermal Derating** | Sharp drop in $I_{hold}$ as temp rises | Stable $I_{hold}$ at higher temperatures | | **Common Use Case** | Consumer Electronics | Automotive/Industrial |
    ✨ Follow-up Questions
    • What is the difference between I-hold and I-trip in PPTC devices?
    • How do I calculate the thermal derating for an MF-RHT fuse in a 100°C environment?
    • Can MF-RHT fuses be used in AC voltage applications?