LQW15AN15NG00D is a high-performance Chip Inductor from the LQW15AN_00 series launched by MURATA, tailor-made for high-frequency precision circuit scenarios.
LQW15AN15NG00D is a high-performance Chip Inductor from the LQW15AN_00 series launched by MURATA, tailor-made for high-frequency precision circuit scenarios. With a precise inductance value of 15nH and a high-accuracy Grade G tolerance (±2%), it is equipped with a minimum Q value of 30, a maximum DC resistance of only 0.16Ω, and a rated current of 460mA. The product maintains stable operation within an extreme wide temperature range of -55℃~+125℃, with a self-resonant frequency as high as 5.0GHz. It is perfectly suitable for fields requiring strict high-frequency performance and reliability such as 5G communication, consumer electronics, and industrial control, serving as a core component solution balancing energy efficiency and stability.
Key Features
High-Frequency & High-Precision Performance: 15nH inductance with ±2% (Grade G) tolerance and a self-resonant frequency of 5.0GHz ensure the accuracy and integrity of signal transmission in high-frequency circuits.
Wide Temperature Stable Operation: Both operating and storage temperature ranges cover -55℃~+125℃, withstanding complex environments such as high-low temperature cycles and humidity-heat, adapting to outdoor and extreme working conditions.
Low Loss & High Energy Efficiency: Maximum DC resistance of only 0.16Ω and a minimum Q value of 30 effectively reduce circuit energy consumption and improve device battery life and operational efficiency.
Strong Mechanical Reliability: Passes shear, bending, and vibration tests with an electrode soldering coverage rate of ≥90%. It exhibits excellent resistance to mechanical and thermal shocks, avoiding damage or performance degradation after installation.
Automation-Ready Design: Features 8mm wide standard paper tape packaging, adapting to automated SMT processes. The packaging specification of 10,000 pieces per reel meets mass production needs, improving production efficiency.
Technical Specifications
Parameter Name
Specific Value
Product Model
LQW15AN15NG00D
Inductance
15nH
Inductance Tolerance
G:±2%
Minimum Q Value (Q min.)
30
Maximum DC Resistance
0.16Ω
Rated Current
460mA
Minimum Self Resonant Frequency
5.0GHz
Operating Temperature Range
-55℃ ~ +125℃
Storage Temperature Range
-55℃ ~ +125℃
Product Dimensions (L×W×H, mm)
1.0±0.1 × 0.6±0.1 × 0.5±0.1
Typical Unit Mass
0.0008g
Soldering Method
Reflow Soldering
Typical Applications
5G Communication Equipment: Suitable for 5G routers, base station auxiliary modules, RF filters, and other devices. The high self-resonant frequency of 5.0GHz perfectly matches 5G high-frequency signal transmission needs, and the low-loss characteristic ensures the stability and transmission rate of communication signals. The wide temperature design adapts to the outdoor installation environment of base stations.
Consumer Electronics: Compatible with RF circuits and power management modules in smartphones, tablets, and laptops. The precise 15nH inductance and ±2% tolerance ensure consistent circuit parameters, and the 0.16Ω low DC resistance reduces device energy consumption, helping to improve battery life. The compact size adapts to the narrow space inside devices.
Industrial Control Modules: Used in industrial sensors, PLC controllers, and signal processing units of automated production lines. The product passes rigorous mechanical and environmental tests, resisting vibration and temperature fluctuations in industrial scenarios. The high Q value characteristic ensures the accurate transmission of control signals, improving the operational stability of industrial equipment.
Automotive Electronics Systems: Applicable to non-core safety electronic devices such as in-vehicle navigation, in-vehicle entertainment equipment, and tire pressure monitoring modules. The wide temperature range of -55℃~+125℃ adapts to temperature changes in the automotive cockpit and body, and the strong impact resistance prevents product damage caused by road bumps, ensuring long-term stable operation of equipment.
Medical Auxiliary Equipment: Usable in circuit modules of non-invasive medical monitoring devices (e.g., heart rate monitors, oximeters). The high-precision and low-loss characteristics ensure the accuracy of monitoring data, complying with RoHS environmental standards. Rigorous reliability tests meet the high safety requirements of medical equipment for components.
Why Choose LQW15AN15NG00D ?
MURATA Original Quality Assurance: As a world-leading electronic component manufacturer, MURATA has mature production processes and strict quality control systems. The product is RoHS certified, ensuring more reliable quality and consistency.
Industry-Leading High-Frequency Performance: The high self-resonant frequency of 5.0GHz combined with a minimum Q value of 30 results in lower signal transmission loss and stronger stability in high-frequency circuits, outperforming ordinary chip inductors of the same specification.
Balanced High Precision & Low Resistance: ±2% high-precision tolerance ensures uniform parameters of mass-produced components, reducing error compensation costs in circuit design. The 0.16Ω low DC resistance effectively reduces circuit energy consumption, adapting to the design needs of low-power devices.
Strong Adaptability to Extreme Environments: The wide operating temperature range covers -55℃~+125℃, passing multiple rigorous tests such as humidity-heat, temperature cycling, and vibration. It can adapt to multi-scenario use without additional protection.
Efficient Production & Installation: Standardized 8mm tape packaging adapts to automated SMT processes. The packaging specification of 10,000 pieces per reel meets large-scale production needs, improving production efficiency and reducing labor costs.
SUNTOP COMPANY INTRODUCTION
Founded in 2000, Suntop is one of the leading global distributors of electronic components, dedica ted to providing comprehensive procurement and supply chain services to the global electronics manufacturing industry. Our services include distribution, spot trading, PPV cost-saving projects, and inventory management. We not only offer high-quality products but also strive to assist our clients in achieving optimal solutions with minimal time and cost. As a trusted partner for numerous OEMs, ODMs, CEMs, and EMS companies worldwide, our professional team manages millions of component records from thousands of trading partners across dozens of countries daily through our company database. We maintain close business relationships with major factories and distributors in North America, Europe, and Asia to ensure that our clients stay ahead in a highly competitive market.
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1. What is the self-resonant frequency of LQW15AN15NG00D? Which high-frequency applications is it suitable for? >
The product has a minimum self-resonant frequency of 5.0GHz, with excellent high-frequency performance. It is particularly suitable for high-frequency circuit scenarios such as 5G communication modules, RF filters, and high-frequency signal amplifiers, ensuring the integrity and low loss of signal transmission.
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2. What is the inductance tolerance accuracy of the product? How does it help circuit design? >
The inductance tolerance is Grade G ±2%. The high-precision characteristic ensures consistent parameters of mass-produced components, reducing error compensation costs in circuit design and improving overall equipment operational stability—especially suitable for high-frequency precision circuits.
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3. What are the rated current and maximum DC resistance of LQW15AN15NG00D? Can it meet low-power requirements? >
The rated current is 460mA, and the maximum DC resistance is only 0.16Ω. The low-resistance characteristic effectively reduces circuit energy consumption, fully meeting the design needs of low-power products such as smartphones and portable devices, helping to improve device battery life.
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4. What is the operating temperature range of the product? Can it be used in outdoor extreme environments? >
The operating temperature range is -55℃~+125℃, withstanding high-temperature exposure, severe cold, and drastic temperature changes. It can be directly applied to extreme environment scenarios such as outdoor communication equipment and industrial outdoor equipment, with industry-leading environmental adaptability.
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