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The LCXND5050XAT4R7MMG emerges as a game - changing electronic component, meticulously engineered to meet the exacting demands of contemporary electronic circuits. Whether it's optimizing power management, enhancing signal integrity, or enabling energy - efficient operations, the LCXND5050XAT4R7MMG stands at the forefront of innovation. This article provides an in - depth exploration of the LCXND5050XAT4R7MMG, covering its key features, technical specifications, performance advantages, and diverse applications.
Product Overview
Manufactured with state - of - the - art manufacturing processes and premium - grade materials, the LCXND5050XAT4R7MMG adheres to stringent quality control standards. Its design philosophy focuses on maximizing both electrical performance and physical durability, ensuring consistent operation and an extended lifespan even in the most challenging environments.
Key Technical Specifications
· Inductance Value: The "4R7" in the model LCXND5050XAT4R7MMG denotes an inductance of 4.7 microhenries (μH). This precisely calibrated value enables the inductor to store and release electrical energy with exceptional accuracy, making it an ideal choice for applications that demand stable power delivery, such as power - supply circuits in servers, laptops, and automotive electronics.
· Size and Dimensions: The "5050" in the model suggests that the LCXND5050XAT4R7MMG has a physical size of approximately 5.0mm x 5.0mm. This form factor strikes a balance between providing ample inductance and fitting into space - constrained PCB designs. Its robust yet compact size allows for easy integration, while ensuring reliable performance in high - density electronic assemblies.
· Current Rating: Engineered to handle high - current loads, the LCXND5050XAT4R7MMG features an impressive current - carrying capacity. This high - current rating ensures that the inductor can manage heavy electrical loads without overheating or saturation, even under continuous operation. It is particularly well - suited for applications like DC - DC converters, where efficient power transfer and stable operation are paramount.
· Quality Factor (Q - factor) and Equivalent Series Resistance (ESR): The LCXND5050XAT4R7MMG boasts a high Quality Factor (Q - factor) and a low Equivalent Series Resistance (ESR). A high Q - factor minimizes energy losses due to resistance, enhancing the inductor's efficiency in energy transfer. Meanwhile, the low ESR reduces power dissipation as heat, contributing to overall circuit efficiency. These characteristics make the LCXND5050XAT4R7MMG highly efficient in power - conversion processes, especially in applications where energy conservation and thermal management are critical.
Performance Advantages
· High - Efficiency Power Conversion: Thanks to its optimized design and low ESR, the LCXND5050XAT4R7MMG enables high - efficiency power conversion. It significantly reduces power losses during the energy transfer process, leading to improved energy utilization. This efficiency is crucial for applications such as battery - powered devices, where maximizing battery life and minimizing heat generation are essential.
· Exceptional Temperature Stability: The LCXND5050XAT4R7MMG exhibits outstanding temperature stability, allowing it to operate reliably across a wide temperature range. Whether in the high - temperature environment of automotive engines or the fluctuating temperatures of industrial settings, this inductor maintains its performance characteristics, ensuring consistent operation of the circuits it serves.
· Low Electromagnetic Interference (EMI): With its advanced design, the LCXND5050XAT4R7MMG generates minimal Electromagnetic Interference (EMI). This feature is highly beneficial for sensitive electronic circuits, such as those in communication devices and precision measurement equipment, as it reduces the risk of signal interference and enhances overall system reliability.
Applications
· Consumer Electronics: In the consumer electronics sector, the LCXND5050XAT4R7MMG plays a vital role in devices like smartphones, tablets, and gaming consoles. It is used in power - management circuits to regulate voltage, filter noise, and provide stable power to components such as processors, displays, and graphics cards. Its high - efficiency and compact size contribute to longer battery life and enhanced device performance.
· Automotive Electronics: The automotive industry benefits greatly from the LCXND5050XAT4R7MMG. It is integrated into various automotive systems, including engine control units (ECUs), battery - management systems, and in - car infotainment systems. Its high - current - handling capabilities and temperature stability make it a reliable choice for automotive applications, ensuring consistent performance under harsh operating conditions.
· Industrial Electronics: In industrial settings, the LCXND5050XAT4R7MMG is used in power supplies for industrial machinery, programmable logic controllers (PLCs), and industrial automation systems. Its durability, high - efficiency power conversion, and low EMI characteristics contribute to the smooth operation of these critical industrial components, reducing downtime and increasing productivity.
· Renewable Energy Systems: For renewable energy applications, such as solar inverters and wind turbine controllers, the LCXND5050XAT4R7MMG is essential for power conversion and energy storage. Its high - performance features enable efficient management of electrical energy, facilitating the integration of renewable energy sources into the grid and promoting sustainable energy solutions.
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Part Number | CB2012T100KR | LB3218T1R0M | BRL3225T1R0M | NRS4018T6R8MDGJ | BRC2012T4R7MD |
Manufacturer | Taiyo Yuden | Taiyo Yuden | Taiyo Yuden | Taiyo Yuden | Taiyo Yuden |
Series | LCXN | LCXN | LCXN | LCXN | LCXN |
Package/Case | Nonstandard | Nonstandard | Nonstandard | Nonstandard | Nonstandard |
Packaging | Tape & Reel (TR) | Tape & Reel (TR) | Tape & Reel (TR) | Tape & Reel (TR) | Tape & Reel (TR) |
Product Status | Active | Active | Active | Active | Active |
Type | Wirewound | Wirewound | Wirewound | Wirewound | Wirewound |
Material - Core | Ferrite | Ferrite | Ferrite | Ferrite | Ferrite |
Inductance | 4.7 µH | 4.7 µH | 4.7 µH | 4.7 µH | 4.7 µH |
Tolerance | ±20% | ±20% | ±20% | ±20% | ±20% |
Current Rating (Amps) | 2.6 A | 2.6 A | 2.6 A | 2.6 A | 2.6 A |
Current - Saturation (Isat) | 3.1A | 3.1A | 3.1A | 3.1A | 3.1A |
Shielding | Unshielded | Unshielded | Unshielded | Unshielded | Unshielded |
DC Resistance (DCR) | 35mOhm | 35mOhm | 35mOhm | 35mOhm | 35mOhm |
Q @ Freq | - | - | - | - | - |
Frequency - Self Resonant | 31MHz | 31MHz | 31MHz | 31MHz | 31MHz |
Ratings | AEC-Q200 | AEC-Q200 | AEC-Q200 | AEC-Q200 | AEC-Q200 |
Operating Temperature | -40°C ~ 125°C | -40°C ~ 125°C | -40°C ~ 125°C | -40°C ~ 125°C | -40°C ~ 125°C |
Inductance Frequency - Test | 100 kHz | 100 kHz | 100 kHz | 100 kHz | 100 kHz |
Features | - | - | - | - | - |
Mounting Type | Surface Mount | Surface Mount | Surface Mount | Surface Mount | Surface Mount |
Supplier Device Package | - | - | - | - | - |
Size / Dimension | 0.193" L x 0.193" W (4.90mm x 4.90mm) | 0.193" L x 0.193" W (4.90mm x 4.90mm) | 0.193" L x 0.193" W (4.90mm x 4.90mm) | 0.193" L x 0.193" W (4.90mm x 4.90mm) | 0.193" L x 0.193" W (4.90mm x 4.90mm) |
Height - Seated (Max) | 0.122" (3.10mm) | 0.122" (3.10mm) | 0.122" (3.10mm) | 0.122" (3.10mm) | 0.122" (3.10mm) |