NTHS0805N01N6802JR
Product Overview
- Category: Passive Component
- Use: Resistor
- Characteristics: High precision, surface mount, thin film
- Package: 0805 package size
- Essence: Precision resistor for various electronic applications
- Packaging/Quantity: Typically available in reels of 5000 pieces
Specifications
- Resistance Value: 6.8 kΩ
- Tolerance: ±5%
- Power Rating: 125 mW
- Temperature Coefficient: ±100 ppm/°C
- Operating Temperature Range: -55°C to +155°C
Detailed Pin Configuration
The NTHS0805N01N6802JR is a surface mount resistor with two terminals, typically labeled as "1" and "2".
Functional Features
- High precision and stability
- Suitable for high-frequency applications
- Compact size for space-constrained designs
Advantages
- Excellent precision and accuracy
- Wide operating temperature range
- Reliable performance in various electronic circuits
Disadvantages
- Limited power handling capability compared to larger resistors
- Sensitive to mechanical stress due to its small size
Working Principles
The NTHS0805N01N6802JR operates based on the principle of converting electrical energy into heat, thereby controlling the flow of current within a circuit.
Detailed Application Field Plans
This precision resistor is commonly used in:
- Analog and digital signal processing circuits
- Sensor interface circuits
- Communication systems
- Test and measurement equipment
- Medical devices
Detailed and Complete Alternative Models
- Alternative Model 1: NTHS0805N01N4702JR (4.7 kΩ, ±5%, 125 mW)
- Alternative Model 2: NTHS0805N01N1002JR (10 kΩ, ±5%, 125 mW)
- Alternative Model 3: NTHS0805N01N2202JR (22 kΩ, ±5%, 125 mW)
Note: The alternative models listed above are similar in characteristics and package size.
This completes the English editing encyclopedia entry structure for the NTHS0805N01N6802JR, providing comprehensive information about its category, use, characteristics, specifications, pin configuration, functional features, advantages and disadvantages, working principles, application field plans, and alternative models.