TAIYO YUDEN LFLK2125R12K-T
TAIYO YUDEN LFLK2125R12K-T
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TAIYO YUDEN LFLK2125R12K-T

Manufacturer No:

LFLK2125R12K-T

Manufacturer:

TAIYO YUDEN

Utmel No:

2438-LFLK2125R12K-T

Package:

-

ECAD Model:

Description:

YTULF LK 2125 R12K-T - Tape and Reel (Alt: LFLK2125R12K-T)

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Currently, our products are shipped through DHL, FedEx, SF, and UPS.

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Once the goods are shipped, estimated delivery time depends on the shipping methods you chose:

FedEx International, 5-7 business days.

The following are some common countries' logistic time.transport
  • Prepare productStep1:Prepare product
  • Vacuum packagingStep2:Vacuum packaging
  • Anti-static bagStep3:Anti-static bag
  • Individual packageStep4:Individual package
  • Packaging boxStep5:Packaging box
  • Barcode shipping labelStep6:Barcode shipping label
LFLK2125R12K-T information

Specifications
TAIYO YUDEN LFLK2125R12K-T technical specifications, attributes, parameters and parts with similar specifications to TAIYO YUDEN LFLK2125R12K-T.
  • Type
    Parameter
  • Surface Mount

    having leads that are designed to be soldered on the side of a circuit board that the body of the component is mounted on.

    YES
  • Terminal Shape

    Terminal Shape in electronic components refers to the physical design of the connection points on the component that allow for electrical connections to be made. These terminals can come in various shapes such as pins, leads, pads, or terminals with specific configurations like surface mount or through-hole. The terminal shape is important as it determines how the component can be mounted on a circuit board or connected to other components. Different terminal shapes are used based on the specific requirements of the electronic circuit design and manufacturing process.

    WRAPAROUND
  • Mounting Feature

    a process by which the operating system makes files and directories on a storage device (such as hard drive, CD-ROM, or network share) available for users to access via the computer's file system.

    SURFACE MOUNT
  • Dielectric Material

    a substance that is a poor conductor of electricity, but an efficient supporter of electrostatic field s.

    CERAMIC
  • Shape/Size Description

    Shape/Size Description in electronic components refers to the physical dimensions and geometric characteristics of a component. This includes parameters such as length, width, height, and overall form factor, which can affect how the component fits within a circuit board or electronic enclosure. Proper identification of Shape/Size Description is crucial for ensuring compatibility with other components and for optimizing space in design layouts.

    RECTANGULAR PACKAGE
  • Number of Terminals
    2
  • Core Material

    Core materials are produced in a variety of forms including end-grain balsa wood, PVC foam, urethane foam, non-woven core fabrics, and various types of honeycomb materials.

    FERRITE
  • Operating Temperature-Min
    -55
  • Operating Temperature-Max
    125
  • Package Shape
    RECTANGULAR PACKAGE
  • Manufacturer Series
    402
  • Package Description
    0805
  • DC Resistance
    0.2 Ω
  • Manufacturer Part Number
    LFLK2125R12K-T
  • Manufacturer
    TAIYO YUDEN
  • Part Life Cycle Code
    Active
  • Ihs Manufacturer
    TAIYO YUDEN CO LTD
  • Self Resonance Frequency
    220 MHz
  • Risk Rank
    5.33
  • Special Features
    MULTI LAYER
  • Tolerance

    In electronic components, "tolerance" refers to the acceptable deviation or variation from the specified or ideal value of a particular parameter, such as resistance, capacitance, or voltage. It indicates the range within which the actual value of the component can fluctuate while still being considered acceptable for use in a circuit. Tolerance is typically expressed as a percentage or a specific value and is important for ensuring the accuracy and reliability of electronic devices. Components with tighter tolerances are more precise but may also be more expensive. It is crucial to consider tolerance when selecting components to ensure proper functionality and performance of the circuit.

    10%
  • JESD-609 Code

    The "JESD-609 Code" in electronic components refers to a standardized marking code that indicates the lead-free solder composition and finish of electronic components for compliance with environmental regulations.

    e3
  • ECCN Code

    An ECCN (Export Control Classification Number) is an alphanumeric code used by the U.S. Bureau of Industry and Security to identify and categorize electronic components and other dual-use items that may require an export license based on their technical characteristics and potential for military use.

    EAR99
  • Temperature Coefficient

    The resistance-change factor per degree Celsius of temperature change is called the temperature coefficient of resistance. This factor is represented by the Greek lower-case letter “alpha” (α). A positive coefficient for a material means that its resistance increases with an increase in temperature.

    30ppm/Cel
  • Terminal Finish

    Terminal Finish refers to the surface treatment applied to the terminals or leads of electronic components to enhance their performance and longevity. It can improve solderability, corrosion resistance, and overall reliability of the connection in electronic assemblies. Common finishes include nickel, gold, and tin, each possessing distinct properties suitable for various applications. The choice of terminal finish can significantly impact the durability and effectiveness of electronic devices.

    MATTE TIN OVER NICKEL
  • HTS Code

    HTS (Harmonized Tariff Schedule) codes are product classification codes between 8-1 digits. The first six digits are an HS code, and the countries of import assign the subsequent digits to provide additional classification. U.S. HTS codes are 1 digits and are administered by the U.S. International Trade Commission.

    8504.50.80.00
  • Capacitance

    Capacitance is a fundamental electrical property of electronic components that describes their ability to store electrical energy in the form of an electric field. It is measured in farads (F) and represents the ratio of the amount of electric charge stored on a component to the voltage across it. Capacitors are passive components that exhibit capacitance and are commonly used in electronic circuits for various purposes such as filtering, energy storage, timing, and coupling. Capacitance plays a crucial role in determining the behavior and performance of electronic systems by influencing factors like signal propagation, frequency response, and power consumption.

    51pF
  • Packing Method

    The packing method in electronic components refers to the technique used to package and protect the component during shipping and handling. It encompasses various forms including tape and reel, tray, tube, or bulk packaging, each suited for different types of components and manufacturing processes. The choice of packing method can affect the ease of handling, storage, and the efficiency of assembly in automated processes. Additionally, it plays a crucial role in ensuring the reliability and integrity of the components until they are used in electronic devices.

    TR, 7 INCH
  • Number of Functions
    1
  • Reach Compliance Code

    Reach Compliance Code refers to a designation indicating that electronic components meet the requirements set by the Registration, Evaluation, Authorization, and Restriction of Chemicals (REACH) regulation in the European Union. It signifies that the manufacturer has assessed and managed the chemical substances within the components to ensure safety and environmental protection. This code is vital for compliance with regulations aimed at minimizing risks associated with hazardous substances in electronic products.

    unknown
  • Capacitor Type

    In electronic components, the parameter "Capacitor Type" refers to the classification of capacitors based on their construction and materials used. Capacitors are passive electronic components that store and release electrical energy. The type of capacitor determines its characteristics, such as capacitance value, voltage rating, temperature stability, and frequency response.There are various types of capacitors, including ceramic, electrolytic, tantalum, film, and variable capacitors. Each type has its own advantages and limitations, making them suitable for different applications. For example, ceramic capacitors are known for their stability and high frequency response, while electrolytic capacitors are commonly used for high capacitance values in power supply circuits.Understanding the capacitor type is crucial in selecting the right component for a specific circuit design to ensure optimal performance and reliability. It is essential to consider factors such as size, cost, temperature range, and voltage requirements when choosing the appropriate capacitor type for a particular application.

    CERAMIC CAPACITOR
  • Temperature Characteristics Code

    The "Temperature Characteristics Code" in electronic components refers to a code or designation that indicates how the component's electrical properties vary with changes in temperature. This code helps users understand how the component will perform under different temperature conditions. It typically consists of a series of letters or numbers that represent the component's temperature coefficient, which is a measure of how the component's electrical characteristics change with temperature. Understanding the temperature characteristics code is important for selecting components that will operate reliably in specific temperature environments and for ensuring the overall performance and stability of electronic circuits.

    C0G
  • Multilayer

    The parameter "Multilayer" in electronic components refers to the construction of the component using multiple layers of materials. This construction technique involves stacking several layers of conductive and insulating materials to create a compact and efficient component. Multilayer components are commonly used in various electronic devices to save space and improve performance. The layers are typically interconnected using vias or other methods to ensure proper functionality. Overall, the multilayer design allows for increased functionality and complexity in a smaller form factor, making it a popular choice in modern electronics.

    Yes
  • Size Code

    Size Code in electronic components refers to a standardized code or designation that indicates the physical dimensions of the component. This code helps in identifying the size and form factor of the component, making it easier for manufacturers, engineers, and designers to select and use the right components for their electronic circuits. The size code may include information such as the package type, lead spacing, and overall dimensions of the component. It is an important parameter to consider when designing circuit layouts and ensuring compatibility with other components on the circuit board.

    0402
  • Test Frequency

    a statistical procedure for assessing data that contain counts or the numbers of occurrences of various categories or classes.

    25 MHz
  • Inductor Application

    Inductor application refers to the various uses of inductors in electronic circuits. Inductors are passive components that store energy in a magnetic field when electrical current passes through them. They are commonly used for filtering, energy storage, and in oscillators. Inductors also play a crucial role in inductive coupling and in transforming voltage levels in power supplies and signal processing applications. Their ability to resist changes in current makes them essential for managing current flow and reducing noise in electronic systems.

    RF INDUCTOR
  • Terminal Placement

    Terminal Placement in electronic components refers to the physical location of the terminals or connection points on the component where external electrical connections are made. The placement of terminals is crucial for ensuring proper connectivity and functionality of the component within a circuit. It is important to consider factors such as spacing, orientation, and accessibility of terminals to facilitate easy installation and maintenance. Proper terminal placement also helps in reducing the risk of short circuits or other electrical issues. Overall, terminal placement plays a significant role in the design and usability of electronic components.

    DUAL ENDED
  • Positive Tolerance

    Positive tolerance in electronic components refers to the maximum deviation allowed above the specified value for a particular parameter. For example, if a resistor has a positive tolerance of 5%, it means that the actual resistance of the resistor can be up to 5% higher than the stated value. This tolerance is important because it accounts for variations in manufacturing processes and ensures that the component will still function within acceptable limits even if it is slightly outside the specified value. Designers and engineers must take into consideration the positive tolerance when selecting components to ensure the overall performance and reliability of the electronic system.

    1
  • Negative Tolerance

    Negative tolerance in electronic components refers to a specification that allows the actual value of the component to be lower than the specified nominal value. This means that the component may have a value that is slightly below the expected value, within a certain range specified by the negative tolerance. Negative tolerance is important to consider in electronic design and manufacturing to ensure that components will still function properly even if their values are slightly lower than expected. It helps to account for variations in manufacturing processes and ensure that components will meet the required specifications under all conditions.

    1
  • Quality Factor-Min (at L-nom)

    The Quality Factor-Min (at L-nom) is a parameter used to measure the quality of an electronic component, particularly in the context of inductors. It represents the minimum quality factor value of the component at its nominal inductance (L-nom). The quality factor, also known as Q factor, is a measure of the efficiency of an inductor in storing and releasing energy. A higher quality factor indicates lower energy losses and better performance. Therefore, the Quality Factor-Min (at L-nom) provides important information about the component's performance and efficiency under specific operating conditions.

    20
  • Inductor Type

    The parameter "Inductor Type" in electronic components refers to the specific design or construction of an inductor. Inductors are passive electronic components that store energy in a magnetic field when current flows through them. The type of inductor can vary based on factors such as the core material, winding configuration, and overall construction. Common types of inductors include air core, ferrite core, toroidal, and solenoid. Each type has its own characteristics and is chosen based on factors such as inductance value, current handling capability, and frequency response. Selecting the right inductor type is crucial for achieving desired performance in electronic circuits.

    GENERAL PURPOSE INDUCTOR
  • Case/Size Code

    The "Case/Size Code" parameter in electronic components refers to a standardized code that specifies the physical dimensions and package type of the component. This code helps in identifying the size and shape of the component, which is crucial for selecting the right component for a particular application and ensuring compatibility with the circuit board. The Case/Size Code typically consists of alphanumeric characters that represent specific dimensions and package styles, allowing engineers and manufacturers to easily reference and compare different components. Understanding the Case/Size Code is essential for proper component selection, placement, and soldering during the assembly process in electronic circuits.

    0805
  • Shielded

    The term "Shielded" in electronic components refers to a design feature that involves the use of a protective shield or barrier to prevent electromagnetic interference (EMI) or radio frequency interference (RFI) from affecting the performance of the component. This shielding is typically made of conductive materials such as metal and is placed around sensitive electronic components to block or absorb unwanted electromagnetic signals.The shielded design helps to maintain the integrity of the signals being processed by the electronic component and reduces the risk of external interference causing malfunctions or disruptions. Shielding can be found in various electronic components such as cables, connectors, and circuit boards to ensure reliable operation in environments where electromagnetic interference is present.Overall, the shielding of electronic components plays a crucial role in maintaining signal quality, reducing noise, and enhancing the overall performance and reliability of electronic devices in various applications.

    YES
  • Rated Current-Max

    Rated Current-Max in electronic components refers to the maximum current that the component can safely handle without being damaged or causing a malfunction. This parameter is crucial for determining the operational limits of the component and ensuring that it is used within its specified range. Exceeding the rated current-max can lead to overheating, component failure, or even pose a safety hazard. It is important to always refer to the component's datasheet or specifications to ensure that the rated current-max is not exceeded during operation.

    0.27 A
  • Inductance-Nom (L)

    Inductance-Nom (L) is a parameter used to describe the nominal inductance of an electronic component, typically an inductor. Inductance is a property of a component that represents its ability to store energy in a magnetic field when a current passes through it. The unit of inductance is the henry (H). The nominal inductance value indicates the expected or specified inductance of the component under normal operating conditions. It is an important parameter to consider when designing circuits that require specific inductance values for proper functionality.

    0.12 µH
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