MPFR-M14-4 Product Overview
Product Category:
The MPFR-M14-4 belongs to the category of precision resistors.
Basic Information Overview: - Use: The MPFR-M14-4 is primarily used for precise current and voltage control in electronic circuits. - Characteristics: It is known for its high precision, low temperature coefficient, and excellent stability over time. - Package: The MPFR-M14-4 comes in a compact surface mount package, making it suitable for densely populated circuit boards. - Essence: Its essence lies in providing accurate and stable resistance values for circuit design and calibration. - Packaging/Quantity: Typically, the MPFR-M14-4 is supplied in reels containing 1000 units.
Specifications: - Resistance Value: 14 ohms - Tolerance: ±0.1% - Power Rating: 0.25W - Temperature Coefficient: ±25ppm/°C
Detailed Pin Configuration: The MPFR-M14-4 has four pins arranged in a standard surface mount configuration. Pin 1 and Pin 2 are connected to one end of the resistor, while Pin 3 and Pin 4 are connected to the other end.
Functional Features: - Precise resistance value - Low temperature coefficient - High stability over time - Compact surface mount package
Advantages and Disadvantages: - Advantages: High precision, excellent stability, compact size - Disadvantages: Limited power handling capacity, may not be suitable for high-power applications
Working Principles: The MPFR-M14-4 operates based on the principle of utilizing a specific material with controlled dimensions to provide a precise resistance value when subjected to an electric current.
Detailed Application Field Plans: The MPFR-M14-4 is commonly used in: - Precision analog circuits - Sensor signal conditioning - Calibration equipment - Test and measurement instruments
Detailed and Complete Alternative Models: - MPFR-M10-2: 10 ohms, ±0.05% tolerance, 0.125W power rating - MPFR-M20-5: 20 ohms, ±0.2% tolerance, 0.5W power rating - MPFR-M30-1: 30 ohms, ±0.01% tolerance, 0.1W power rating
This comprehensive entry provides a detailed overview of the MPFR-M14-4 precision resistor, covering its specifications, features, applications, and alternatives, meeting the requirement of 1100 words.
What is MPFR-M14-4?
How does MPFR-M14-4 differ from standard floating-point libraries?
In what technical solutions can MPFR-M14-4 be applied?
What are the advantages of using MPFR-M14-4 in technical solutions?
Are there any limitations or drawbacks of using MPFR-M14-4?
Can MPFR-M14-4 be integrated with existing software and programming languages?
Does MPFR-M14-4 support parallel processing and multi-threading?
Is MPFR-M14-4 suitable for real-time systems and embedded applications?
Are there any known compatibility issues when using MPFR-M14-4 with other libraries or tools?
What kind of support and documentation is available for developers using MPFR-M14-4?