MLZ2012M4R7HT000
AI

The **MLZ2012M4R7HT000** is a high-performance multilayer ferrite inductor manufactured by **TDK Corporation**. It is specifically designed for decoupling and power supply circuits in devices where space is limited but high reliability is required.
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### 1. Technical Specifications
The following table highlights the primary electrical and physical characteristics:
| Parameter | Value |
| :--- | :--- |
| **Inductance** | 4.7 µH |
| **Tolerance** | ±20% |
| **DC Resistance (Max)** | 0.47 Ω |
| **Rated Current (Isat/Itemp)** | 350 mA |
| **Self-Resonant Frequency** | 45 MHz |
| **Operating Temperature** | -55°C to +125°C |
| **Case Size (EIA/Metric)** | 0805 / 2012 |
| **Dimensions (L x W x H)** | 2.00mm x 1.25mm x 1.25mm |
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### 2. Key Features and Technologies
* **Multilayer Structure:** Unlike wire-wound inductors, this part uses a multilayer ferrite process. This results in a compact, magnetically shielded design that minimizes EMI (Electromagnetic Interference).
* **MLZ Series Optimization:** The "MLZ" series is specifically optimized for **low DC resistance** compared to standard signal-line inductors, making it suitable for power lines.
* **High Temperature Stability:** The "HT" designation often indicates high-temperature tolerance, allowing it to perform reliably in automotive or industrial environments up to 125°C.
* **Magnetic Shielding:** The closed magnetic circuit prevents crosstalk between components, allowing for high-density mounting on PCBs.
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### 3. Application Areas
This component is typically found in:
1. **Smartphones and Tablets:** Used in the power management units (PMU) for decoupling noise.
2. **Digital Cameras:** Filtering power lines for image sensors to reduce visual noise.
3. **Automotive Infotainment:** Providing stable power to communication modules.
4. **IoT Devices:** Due to its small 0805 footprint, it is ideal for compact wireless modules.
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### 4. Part Number Breakdown
* **MLZ:** Series Name (Multilayer Inductor for Power Lines)
* **2012:** Dimensions (2.0mm x 1.25mm)
* **M:** Product Internal Code
* **4R7:** Inductance Value (4.7 µH)
* **H:** Characteristic Type (High-frequency/High-current)
* **T000:** Packaging/Internal TDK code
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What are the main differences between the MLZ series and the MLP series from TDK?
- ⤷ How does the DC bias characteristic affect the 4.7uH inductance in a real circuit?
- ⤷ Is this inductor suitable for high-speed switching DC-DC converters?