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DR16K3.5_INVAR_B&W_V4

DR16K3.5INVARB&W_V4

Product Overview

Category: Electronic Component
Use: Signal transmission and processing
Characteristics: High precision, low thermal expansion, black and white color coding
Package: Sealed in anti-static packaging
Essence: Precision resistor for electronic circuits
Packaging/Quantity: 100 pieces per pack

Specifications

  • Resistance: 16 kilohms
  • Tolerance: ±3.5%
  • Material: Invar (Iron-Nickel Alloy)
  • Color Coding: Black and White
  • Temperature Coefficient: V4

Detailed Pin Configuration

The DR16K3.5INVARB&W_V4 resistor has a standard axial lead configuration with two leads at each end.

Functional Features

  • High precision resistance value
  • Low thermal expansion coefficient
  • Reliable signal transmission and processing

Advantages

  • Stable performance over a wide temperature range
  • Accurate resistance value
  • Durable construction

Disadvantages

  • Limited availability in some regions
  • Sensitive to mechanical stress

Working Principles

The DR16K3.5INVARB&W_V4 resistor operates based on the principle of providing a precise resistance value to control the flow of electrical current within a circuit.

Detailed Application Field Plans

This resistor is commonly used in precision electronic circuits, such as measurement instruments, sensor interfaces, and audio equipment where stable and accurate resistance values are crucial.

Detailed and Complete Alternative Models

  1. DR15K3.5INVARB&W_V4
  2. DR17K3.5INVARB&W_V4
  3. DR16K3.5NICKELB&W_V4

In conclusion, the DR16K3.5INVARB&W_V4 resistor is a high-precision component suitable for various electronic applications requiring stable and accurate resistance values.

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Seznam 10 běžných otázek a odpovědí souvisejících s aplikací DR16K3.5_INVAR_B&W_V4 v technických řešeních

Sure, here are 10 common questions and answers related to the application of DR16K3.5INVARB&W_V4 in technical solutions:

  1. What is DR16K3.5INVARB&W_V4?

    • DR16K3.5INVARB&W_V4 is a specific grade of Invar (a nickel-iron alloy) known for its low coefficient of thermal expansion, making it ideal for applications requiring dimensional stability over a wide temperature range.
  2. What are the typical applications of DR16K3.5INVARB&W_V4?

    • It is commonly used in precision instruments, optical and laser systems, aerospace components, and semiconductor manufacturing equipment where dimensional stability is critical.
  3. How does DR16K3.5INVARB&W_V4 compare to other grades of Invar?

    • DR16K3.5INVARB&W_V4 offers a specific coefficient of thermal expansion and mechanical properties tailored for specific technical solutions, making it suitable for precise engineering requirements.
  4. What are the key benefits of using DR16K3.5INVARB&W_V4 in technical solutions?

    • The alloy provides excellent dimensional stability, minimal thermal expansion, and high strength, making it suitable for demanding applications in various industries.
  5. Can DR16K3.5INVARB&W_V4 be machined easily?

    • While Invar alloys can be challenging to machine due to their hardness, DR16K3.5INVARB&W_V4 can be machined using appropriate tools and techniques.
  6. Is DR16K3.5INVARB&W_V4 suitable for cryogenic applications?

    • Yes, its low coefficient of thermal expansion makes it well-suited for use in cryogenic environments, such as in the construction of particle accelerators and space exploration equipment.
  7. Does DR16K3.5INVARB&W_V4 exhibit magnetic properties?

    • No, this grade of Invar is non-magnetic, which is advantageous in applications where magnetic interference must be minimized.
  8. What are the limitations of using DR16K3.5INVARB&W_V4?

    • While it offers excellent dimensional stability, it may not be suitable for applications requiring high-temperature resistance or extreme corrosion resistance.
  9. Are there any special considerations for welding DR16K3.5INVARB&W_V4?

    • Welding Invar alloys requires expertise due to their low thermal expansion, and special precautions must be taken to avoid distortion and cracking during the welding process.
  10. Where can I obtain DR16K3.5INVARB&W_V4 for my technical solution?

    • This specific grade of Invar can be sourced from specialized metal suppliers and manufacturers who provide materials for precision engineering applications.