047001.5DRSNP
Product Category: Electronic Component
Basic Information Overview: - Category: Passive Electronic Component - Use: Signal Filtering and Conditioning - Characteristics: High Frequency Response, Low Insertion Loss - Package: Surface Mount Device (SMD) - Essence: Ceramic Dielectric with Metal Electrodes - Packaging/Quantity: Reel Packaging, 3000 pieces per reel
Specifications: - Rated Voltage: 50V - Capacitance: 1.5pF - Tolerance: ±0.25pF - Temperature Coefficient: NP0
Detailed Pin Configuration: - This component is a surface mount device and does not have traditional pin configurations. It is mounted directly onto the PCB.
Functional Features: - Excellent high-frequency characteristics - Stable capacitance over temperature changes - Low parasitic effects
Advantages: - Precise and stable capacitance value - Suitable for high-frequency applications - Compact size for space-constrained designs
Disadvantages: - Sensitive to mechanical stress - Limited voltage handling capability
Working Principles: 047001.5DRSNP operates based on the principle of utilizing the dielectric properties of ceramic material to store electrical energy in the form of a capacitor. The metal electrodes sandwiching the ceramic dielectric allow for the storage and release of charge, enabling its use in signal filtering and conditioning applications.
Detailed Application Field Plans: This component finds extensive use in RF and microwave circuitry, especially in communication systems, radar systems, and high-frequency test equipment. Its stable capacitance and low insertion loss make it suitable for critical signal conditioning tasks in these applications.
Detailed and Complete Alternative Models: - 047002.2DRSNP: 2.2pF Capacitance, ±0.25pF Tolerance, 50V Rated Voltage - 047003.0DRSNP: 3.0pF Capacitance, ±0.25pF Tolerance, 50V Rated Voltage - 047005.0DRSNP: 5.0pF Capacitance, ±0.25pF Tolerance, 50V Rated Voltage
This completes the entry for 047001.5DRSNP, covering its product category, basic information overview, specifications, detailed pin configuration, functional features, advantages and disadvantages, working principles, detailed application field plans, and alternative models.
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