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LQM21PN2R2MC0D from MURATA

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LQM21PN2R2MC0D

Manufacturer: MURATA

Chip Inductors (Chip Coils) for DC-DC Converter Monolithic Type LQM21P Series

Partnumber Manufacturer Quantity Availability
LQM21PN2R2MC0D MURATA 5527 In Stock

Description and Introduction

Chip Inductors (Chip Coils) for DC-DC Converter Monolithic Type LQM21P Series The **LQM21PN2R2MC0D** is a multilayer ceramic inductor manufactured by **Murata**. Below are its key specifications, descriptions, and features:  

### **Specifications:**  
- **Inductance:** 2.2 µH (±20%)  
- **Tolerance:** ±20%  
- **DC Resistance (DCR):** 0.15 Ω (max)  
- **Rated Current:** 1.0 A (based on self-temperature rise)  
- **Saturation Current:** 1.1 A (typ)  
- **Operating Temperature Range:** -40°C to +125°C  
- **Frequency:** Suitable for high-frequency applications  
- **Package Size:** 0806 (2.0 mm × 1.6 mm)  
- **Height:** 0.8 mm  

### **Descriptions:**  
- **Type:** Multilayer chip inductor  
- **Material:** Ferrite-based construction  
- **Applications:** Power supply circuits, DC-DC converters, noise suppression, RF circuits  

### **Features:**  
- **High Reliability:** Stable performance under varying conditions  
- **Compact Size:** Small footprint for space-constrained designs  
- **Low DC Resistance:** Reduces power loss  
- **High Current Handling:** Suitable for power applications  
- **RoHS Compliant:** Environmentally friendly  

For detailed datasheets and additional specifications, refer to **Murata’s official documentation**.

Application Scenarios & Design Considerations

Chip Inductors (Chip Coils) for DC-DC Converter Monolithic Type LQM21P Series # Technical Document: LQM21PN2R2MC0D Inductor

 Manufacturer:  MURATA  
 Component Type:  Multilayer Chip Inductor (Ferrite-based, Shielded)  
 Primary Value:  2.2 µH

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## 1. Application Scenarios

### Typical Use Cases
The LQM21PN2R2MC0D is a 2.2 µH, high-current, shielded multilayer chip inductor designed for noise suppression and power conditioning in compact electronic circuits. Its primary function is to provide impedance at specific frequencies, typically used for:

*    Power Line Filtering:  Placed on DC power rails (e.g., 3.3V, 5V, 12V) to attenuate high-frequency switching noise from DC-DC converters, preventing it from propagating to sensitive load circuits.
*    DC-DC Converter Energy Storage:  Serving as the main energy storage element in buck, boost, and buck-boost converter topologies, where its inductance value and current rating are critical for regulator stability and efficiency.
*    RF Impedance Matching:  In low-power RF front-end modules (e.g., Bluetooth, Wi-Fi, IoT devices) for impedance matching networks, helping to maximize power transfer between stages.
*    Signal Line Choking:  Isolating high-frequency digital noise (e.g., from a high-speed clock or data line) from analog sections like ADCs, DACs, or sensor inputs.

### Industry Applications
This component is prevalent in space-constrained, high-reliability applications:
*    Consumer Electronics:  Smartphones, tablets, wearables, and digital cameras for power management IC (PMIC) filtering and RF module support.
*    Telecommunications:  Network switches, routers, and base station modules where stable, low-noise power is essential for high-speed data processing.
*    Automotive Electronics:  Infotainment systems, ADAS (Advanced Driver-Assistance Systems) sensors, and body control modules, benefiting from its robust construction and stable temperature performance.
*    Industrial Control & IoT:  PLCs, gateways, and sensor nodes requiring reliable operation in environments with electrical noise and temperature variations.

### Practical Advantages and Limitations

 Advantages: 
*    Shielded Construction:  The ferrite magnetic shield significantly reduces electromagnetic interference (EMI) by containing the magnetic flux, minimizing crosstalk with nearby components and simplifying PCB layout.
*    High Current Rating:  Designed to handle relatively high saturation current (Isat) and thermal current (Irms), making it suitable for power path applications.
*    Compact Size:  The 0805 footprint (2.0 x 1.25 mm) saves valuable PCB real estate in miniaturized designs.
*    Excellent Frequency Characteristics:  Maintains stable inductance over a broad frequency range with a high Self-Resonant Frequency (SRF), ensuring effectiveness as a choke within its target bandwidth.
*    High Reliability:  Utilizes robust materials and construction suitable for automated reflow soldering and resistant to mechanical stress.

 Limitations: 
*    Limited Q Factor:  Compared to unshielded or wire-wound inductors in the same size, its quality factor (Q) at very high frequencies may be lower, making it less ideal for ultra-high-performance resonant circuits.
*    Saturation Behavior:  Like all ferrite-based inductors, its inductance drops non-linearly as the current approaches the saturation current (Isat). Designers must derate the operating current to maintain expected performance.
*    Tolerance:  Standard inductance tolerance (typically ±20%) may be insufficient for precision timing or filter circuits without additional calibration or tighter binning.
*    Temperature Dependence:  Inductance value can shift with temperature, which must be accounted for in designs operating over a wide thermal range.

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## 2. Design Considerations

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