NTHS0603N02N1002JR
Product Category: Passive Component
Basic Information Overview: - Category: Resistor - Use: Used to limit or control the flow of electric current in a circuit - Characteristics: Small size, precise resistance value, high reliability - Package: Surface mount - Essence: Precision resistor for electronic circuits - Packaging/Quantity: Typically packaged in reels of 5000 units
Specifications: - Resistance Value: 10 kΩ - Power Rating: 0.1 W - Tolerance: ±5% - Temperature Coefficient: ±200 ppm/°C
Detailed Pin Configuration: - The NTHS0603N02N1002JR is a surface mount resistor with two terminals.
Functional Features: - Precise resistance value for accurate circuit operation - Small size for space-constrained applications - High reliability for long-term performance
Advantages and Disadvantages: - Advantages: - Accurate resistance value - Small footprint - Reliable performance - Disadvantages: - Limited power handling capacity - Tolerance of ±5% may not be suitable for some high-precision applications
Working Principles: The NTHS0603N02N1002JR operates based on the principle of resistive heating, where it limits the flow of electric current through the circuit by converting electrical energy into heat.
Detailed Application Field Plans: This precision resistor is commonly used in various electronic circuits, including: - Voltage dividers - Sensor signal conditioning - Feedback networks in amplifiers
Detailed and Complete Alternative Models: - Alternative Model 1: NTHS0603N02N2002JR (20 kΩ, 0.1 W, ±5%) - Alternative Model 2: NTHS0603N02N5002JR (50 kΩ, 0.1 W, ±5%) - Alternative Model 3: NTHS0603N02N1502JR (15 kΩ, 0.1 W, ±5%)
This completes the English editing encyclopedia entry structure for the NTHS0603N02N1002JR precision resistor.
What is the NTHS0603N02N1002JR used for?
What are the key specifications of the NTHS0603N02N1002JR?
In what type of applications can the NTHS0603N02N1002JR be used?
What is the temperature coefficient of the NTHS0603N02N1002JR?
Is the NTHS0603N02N1002JR suitable for high-frequency applications?
Can the NTHS0603N02N1002JR withstand reflow soldering processes?
Does the NTHS0603N02N1002JR have any special handling requirements?
What is the typical application circuit for the NTHS0603N02N1002JR?
Are there any alternative part numbers or equivalents for the NTHS0603N02N1002JR?
Where can I find detailed technical documentation for the NTHS0603N02N1002JR?