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Power Inductors ,3015(3.0*3.0mm) ,500nH ,±30% ,2.6A ,0.03R ,Chip SMD - ESRN35SR50NT
ELLON-ESRN
ELLON
Wire Wound Chip Inductors ,4012(4.0*4.0mm) ,4.3uH ,±30% ,1A ,0.14R,Chip SMD - ESRN41S4R3NT
ELLON-ESRN
ELLON
Wire Wound Chip Inductors ,4012(4.0*4.0mm) ,4.7uH ,±30% ,1.05A ,0.125R,Chip SMD - ESRN41S4R7NT
ELLON-ESRN
ELLON
Wire Wound Chip Inductors ,4012(4.0*4.0mm) ,5.6uH ,±30% ,1A ,0.14R,Chip SMD - ESRN41S5R6NT
ELLON-ESRN
ELLON
Power Inductors ,3012(3.0*3.0mm) ,2.2UH ,±30% ,1.55A ,0.075R ,Chip SMD - ESRN32S2R2NT
ELLON-ESRN
ELLON
Power Inductors ,3012(3.0*3.0mm) ,2.7UH ,±30% ,1.48A ,0.085R ,Chip SMD - ESRN32S2R7NT
ELLON-ESRN
ELLON
Power Inductors ,3012(3.0*3.0mm) ,4.7UH ,±20% ,1.24A ,0.12R ,Chip SMD - ESRN32S4R7MT
ELLON-ESRN
ELLON
Power Inductors ,3012(3.0*3.0mm) ,220nH ,±30% ,3A ,0.017R ,Chip SMD - ESRN32SR22NT
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ELLON
Power Inductors ,3015(3.0*3.0mm) ,1.5UH ,±30% ,1.7A ,0.05R ,Chip SMD - ESRN35S1R5NT
ELLON-ESRN
ELLON
Power Inductors ,3015(3.0*3.0mm) ,4.7UH ,±20% ,1.09A ,0.125R,Chip SMD - ESRN35S4R7MT
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ELLON
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Notice of Price Increase for Fenghua Inductors, Ceramic Capacitors, Varistors, and Chip Resistors
Due to the surge in upstream raw material costs, not only have our expenses climbed, but as a longstanding electronic component manufacturer, Fenghua cannot withstand the continuous increase in costs and has had to raise prices. The price increases for certain products (inductors, varistors, ceramic capacitors, and thick-film resistors) are detailed in the letter below:
Introduction to SUNLORD high-frequency inductors?
Inside a lightweight smartphone, a high-frequency inductor the size of a grain of rice is ensuring clear and stable transmission of 5G signals, backed by over 20 years of material and precision manufacturing processes.
What are the advantages of Sunlord inductors?
Shenzhen Sunlord Electronics Co., Ltd. was established in 2000. Starting from the initial laminated chip inductor products, it has now grown into an absolute leader in the domestic inductor industry. The advantages of Shunluo inductors are not only reflected in their market size, but also rooted in their profound technological accumulation, continuous product innovation, and strict control over quality.
What are the materials of surface mount inductors?
As a key component in circuits, the performance of surface mount inductors largely depends on the materials used. Different materials determine the differences in frequency response, current carrying capacity, and stability of inductors. The following will introduce several mainstream surface mount inductor materials and their characteristics.
What are the brands of inductors?
In the field of electronic components, inductance is one of the crucial passive components, widely used in power management, signal processing, electromagnetic compatibility and other scenarios. There are numerous excellent inductor brands in the market, providing engineers and procurement personnel with a wide range of choices.
What are the main functions of inductors?
Inductance, as a fundamental component in circuits, has diverse and crucial functions. It stores energy through a magnetic field, directly affecting current changes, thereby supporting the stable operation of electronic devices. The following will provide a detailed introduction to the main functions of inductors to help readers fully understand their application value.
Detailed introduction to the classification of inductors
Inductance, as an important passive component in circuits, can be classified into various types according to different standards. This article will mainly classify and explain inductors based on three dimensions: materials, installation methods, and functions, in order to help readers systematically understand their characteristics and applications.
What are the types of inductors?
The types of inductors are an important part of the classification of electronic components. Inductance, as a passive component, has various types and characteristics. Understanding these types of inductors is crucial for circuit design and applications.
What are the series of Maijie micro inductors?
According to the search results, the inductor product line of Maijie Microelectronics (Maijie Technology) covers multiple technical directions and application scenarios, and its series division is mainly based on dimensions such as process structure, material characteristics, application fields, and performance parameters. The following is a comprehensive classification and characteristic analysis of its inductor series:
Detailed explanation of categories and applications of Maijie micro inductors
According to the search results, the inductor product line of Maijie Microelectronics (Maijie Technology) covers multiple technical directions and application scenarios, mainly divided into the following categories:
Classification and characteristics of main materials for inductors
Inductance, as a core component in electronic circuits, is closely related to its performance and material selection. According to the search results, the manufacturing materials of inductors can be divided into the following categories, covering key parts such as magnetic cores, coils, insulation, and packaging:
What are the characteristics of inductors of different categories?
Inductance, as a core component in circuits, has various classification methods. Different categories of inductors have significant differences in structure, materials, application scenarios, and performance characteristics. Starting from the classification dimension, combined with technical characteristics and application scenarios, the characteristics of various types of inductors are systematically sorted out.
Classification of Inductors and Analysis of Application Scenarios
Inductance, as a storage component for electromagnetic energy, can be classified from different dimensions. The following is an original classification system that combines physical characteristics and application scenarios to systematically sort out the types of inductors:
What are the brands of surface mount inductors? What are the advantages?
The main brands of surface mount inductors include Shunluo Sunlord, Weishi Vishay, etc. Each brand has its own product advantages and market positioning. The following will provide a detailed introduction.
Introduction to Maijie Micro Power Inductors
As a leading electronic component manufacturer in China, Maijie Microelectronics (stock code: 300319) is known for its high performance, miniaturization, and high reliability in power inductor products, which are widely used in fields such as communication, consumer electronics, new energy, and automotive electronics. The following is a detailed introduction to the core technology, product series, and market advantages of its power inductor:
microgate automotive products AMPIT3015 series winding inductors introduction
Maget Technology is specialized in the development and production of electronic components, automotive products AMPIT3015 series winding inductors is a part of its many product lines. This series of inductors is mainly used in the field of automotive electronics, with excellent electrical performance and quality assurance, to meet the needs of automotive electronic equipment for high-performance inductors.
Do we need to lay copper foil underneath the inductor for DC-DC power supply?
Inductors have alternating current, and laying copper at the bottom of the inductor will generate eddy currents on the ground plane. The eddy current effect will affect the inductance of the power inductor, and eddy currents will also increase system losses. At the same time, the noise generated by alternating current will increase the noise on the ground plane, which will affect the stability of other signals. From the perspective of EMC, laying copper on the bottom of the inductor and a complete ground surface is beneficial for EMI design; The current production process of inductors has been upgraded, and shielded inductors are used. There are very few leaked magnetic induction lines, which have little impact on the inductance of the inductors and are also beneficial for heat dissipation.
The working principle of inductors and their applications in the electronic field
An inductor is an electronic component that can store and release magnetic energy. An inductor is made by winding wires, usually made of copper wire. When a wire is energized, a magnetic field is generated, causing the magnetic field around the wire to increase.
Elements of power inductor selection
How to select power inductors, explain from the selection elements of power inductors. The selection of power inductors requires consideration of factors such as inductance value, inductance material, current capacity, frequency characteristics, as well as size and weight. Reasonable selection of power inductors can improve the performance and stability of electronic devices. When selecting a circuit, it is necessary to fully understand its requirements and conduct a comprehensive evaluation based on the actual situation.
What are the application fields of power inductors
What are the application areas of power inductors? The main application fields of power inductors include: power systems, electronic equipment, communication systems, automotive electronics, medical equipment, industrial automation, renewable energy, and so on. Buy an inductor and choose the inductor Shanghuanian Mall.
What is an inductor
What is an inductor? An inductor is an electronic component used to measure and control inductance. Inductance refers to the property that the magnetic field generated by current passing through a conductor coil is proportional to the magnitude and direction of the current. Inductors can affect the current and voltage in a circuit by changing the size and direction of the inductance.
3920 0.003R(3m Ohm) 5W Metal Shunt Chip Resistor
The 3920 0.003R(3m Ohm) 5W metal shunt chip resistor (model ESR39F5WR003F02G), featuring low temperature coefficient, high precision, and excellent surge withstand capability, has become a core component in fields such as power supply management, motor drives, and battery protection. This article comprehensively analyzes the unique advantages of this resistor from aspects of material, electrical performance, reliability, and environmental compliance.
In-Depth Analysis of the 3920 0.005R(5m Ohm) 3W High-Precision Metal Shunt Chip Resistor
Today, we provide a comprehensive introduction to a high-performance product: the 3920 0.005R(5m Ohm) 3W 1% ESR39F3WR005K02G Metal Shunt Chip Resistor. Featuring a large 3920 package, an ultra-low resistance of 0.005R (5 milliohms), a rated power of 3W, and a tight tolerance of 1%, combined with a Karma special alloy element and multiple environmental certifications, this resistor is an ideal choice for demanding current-sensing applications.
Comprehensive Introduction to 3920 0.0015R(1.5m Ohm) 7W Metal Shunt Chip Resistor
Today, we will introduce in detail an excellent current sensing resistor – the model ESR39F7W1M50K02G 3920 0.0015R(1.5m Ohm) 7W metal shunt chip resistor. With its ultra‑low resistance, high power rating, and outstanding surge‑withstanding capability, this product has become the first choice for many engineers designing high‑performance circuits.
In-depth Introduction of 3920 0.003R(3m Ohm) 5W 1% ESR39F5WR003K02G Metal Shunt Chip Resistor
The 3920 0.003R(3m Ohm) 5W metal shunt chip resistor, model ESR39F5WR003K02G, is a professional-grade component designed precisely to meet such demands. Manufactured with premium Karma alloy, it features low temperature coefficient (low TCR), high accuracy, strong surge withstand capability, and fully complies with RoHS, REACH, and lead-free environmental standards. It is an ideal choice for power management, motor drives, battery protection, and many other fields. This article elaborates on the technical parameters, material advantages, environmental compliance, and typical applications of the 3920 0.003R(3m Ohm) 5W.
Comprehensive Introduction of 3920 0.0005R(0.5m Ohm) 9W High-Precision Metal Shunt Chip Resistor
This article details a premium product designed for high‑power, high‑precision current sampling – the 3920 0.0005R(0.5m Ohm) 9W 1% ESR39D9W0M50M02G Metal Shunt Chip Resistor. With its ultra‑low resistance, high power rating, excellent temperature coefficient, and environmental compliance, this model has become an ideal choice for engineers developing high‑current detection circuits.
3920 0.0007R(0.7m Ohm) 8W 1% ESR39F8W0M70M02G Metal Shunt Chip Resistor
Addressing this need, the 3920 0.0007R(0.7m Ohm) 8W metal shunt chip resistor (model ESR39F8W0M70M02G), with its superior materials and electrical performance, stands out as an ideal choice for engineers designing high-reliability current sensing solutions. This article provides a comprehensive introduction to the 3920 0.0007R(0.7m Ohm) 8W resistor, covering product parameters, material advantages, key features, environmental compliance, and application scenarios.
In-depth Analysis of 3920 0.00025R(2.5m Ohm) 12W High-Precision, Surge-Tolerant Manganin Shunt Chip Resistor
The 3920 0.00025R(2.5m Ohm) 12W metal shunt chip resistor stands out as an ideal choice for demanding applications thanks to its outstanding electrical characteristics and material technology. The full part number ESR39F12W0M25M02G defines the package, resistance value, power rating, and tolerance, while the core parameter combination 3920 0.00025R(2.5m Ohm) 12W embodies a perfect balance of ultra-low resistance, high power handling capability, and minimal temperature drift. The following sections provide a detailed introduction from the perspectives of product parameters, material advantages, environmental compliance, and typical applications.
Comprehensive Introduction to 3920 0.0005R(0.0005 Ohm) 9W 1% ESR39F9W0M50M02G Metal Shunt Chip Resistor
This article focuses on an outstanding metal shunt chip resistor – model ESR39F9W0M50M02G, specifically the 3920 0.0005R(0.0005 Ohm) 9W product. Adopting the standard 3920 package size, with an ultra-low resistance value of 0.0005 ohms, a power rating of 9 watts, and a tolerance of 1%, the 3920 0.0005R(0.0005 Ohm) 9W represents a leading level in current shunt resistor technology. The following sections will provide a detailed analysis of this 3920 0.0005R(0.0005 Ohm) 9W resistor from multiple perspectives, including product parameters, core materials, key features, application scenarios, and environmental compliance.
Introduction to 3920 0.0004R(0.0004 Ohm) 9W High-Precision Manganin Shunt Chip Resistor
The 3920 0.0004R(0.0004 Ohm) 9W metal alloy shunt chip resistor stands out as an ideal choice for high-power current sensing applications, thanks to its outstanding performance parameters and stringent environmental compliance. This article provides a comprehensive analysis of this resistor’s technical characteristics, material advantages, and application scenarios, helping you understand why the 3920 0.0004R(0.0004 Ohm) 9W stands above other shunt solutions.
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