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Part No.100-331M
MfrAPI
Size233 Kbytes
Pages1 page
DescriptionMicro i Ribbon-Lead Inductors
Datasheet SummaryAI
1. Overall Structure & Purpose

️· Series of Components: The data presents information for a series of inductor components. The structure strongly suggests they are incremental variations on a base design (increasing in size/performance).
️· Key Specs Shown: The key specifications shown include:
- Inductance Value (increasing from 0.21 to 0.45 as shown in the second data set)
- Tolerance (% deviation from the nominal inductance)
- Operating Temperature
- Physical Dimensions (implied, but not directly stated.)
- Current Rating
- Military Specs (MS21367)
- Physical parameters: A, B, C, D, E, F, G

2. Detailed Breakdown of Data (Organized by Sections):

️· Header Information:
- Military Specification: MS21367 - This is a key reference, indicating these inductors are built to a specific military standard.
- Physical Parameters (A, B, C, D, E, F, G) These are dimensioning parameters, likely in inches/millimeters. They describe the size of the inductor. The values vary for different versions in the series.
- Core Material: Iron (LT10K)
️· Inductance Values & Tolerance: This is the core of the data sheet.
- The 'value' is increasing from .21 to .45.
- The Tolerance is described by +/- 20%.
️· Current Rating: The current rating varies. It shows 175, 200, and 250 amp current ratings depending on the section
️· Operating Temperature: -55°C to +105°C

3. Patterns and Inferences

️· Incremental Series: The data suggests that these are variations on a base component. Each data table increments inductance values, often along with changes in tolerance, current rating.
️· Physical Size and Inductance: There's a relationship between the physical size and inductance value. As the inductance increases, the physical dimensions likely increase, as suggested by the A, B, C, D, E, F, G parameters.
️· Design Trade-offs: There's a design trade-off between inductance, current rating, and physical size. Increasing inductance might require larger physical dimensions and could impact current handling capability.
️· Multiple Sections This seems to be different tables, but all pertaining to the same general product.
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  • Datasheet Details
    Part No.100-331M
    ManufacturerAPI
    Size233 Kbytes
    Pages1 page
    DescriptionMicro i Ribbon-Lead Inductors
    Datasheet Summary AI Expand summary
    1. Overall Structure & Purpose

    ️· Series of Components: The data presents information for a series of inductor components. The structure strongly suggests they are incremental variations on a base design (increasing in size/performance).
    ️· Key Specs Shown: The key specifications shown include:
    - Inductance Value (increasing from 0.21 to 0.45 as shown in the second data set)
    - Tolerance (% deviation from the nominal inductance)
    - Operating Temperature
    - Physical Dimensions (implied, but not directly stated.)
    - Current Rating
    - Military Specs (MS21367)
    - Physical parameters: A, B, C, D, E, F, G

    2. Detailed Breakdown of Data (Organized by Sections):

    ️· Header Information:
    - Military Specification: MS21367 - This is a key reference, indicating these inductors are built to a specific military standard.
    - Physical Parameters (A, B, C, D, E, F, G) These are dimensioning parameters, likely in inches/millimeters. They describe the size of the inductor. The values vary for different versions in the series.
    - Core Material: Iron (LT10K)
    ️· Inductance Values & Tolerance: This is the core of the data sheet.
    - The 'value' is increasing from .21 to .45.
    - The Tolerance is described by +/- 20%.
    ️· Current Rating: The current rating varies. It shows 175, 200, and 250 amp current ratings depending on the section
    ️· Operating Temperature: -55°C to +105°C

    3. Patterns and Inferences

    ️· Incremental Series: The data suggests that these are variations on a base component. Each data table increments inductance values, often along with changes in tolerance, current rating.
    ️· Physical Size and Inductance: There's a relationship between the physical size and inductance value. As the inductance increases, the physical dimensions likely increase, as suggested by the A, B, C, D, E, F, G parameters.
    ️· Design Trade-offs: There's a design trade-off between inductance, current rating, and physical size. Increasing inductance might require larger physical dimensions and could impact current handling capability.
    ️· Multiple Sections This seems to be different tables, but all pertaining to the same general product.