The MMA02040C5600FB30 is a thin film resistor from Vishay. It is a precision resistor designed for various applications requiring high stability and accuracy. These resistors are known for their excellent performance characteristics and reliability.
Applications:
- Precision Measurement Instruments: Use in equipment like multimeters and oscilloscopes.
- Medical Devices: Resistors for accurate signal processing in medical equipment.
- Audio Equipment: High-quality resistors for audio signal paths.
- Industrial Control Systems: Resistors for feedback and control loops.
Features:
- Thin Film Technology: Provides excellent stability and precision.
- Tight Tolerance: Offers high accuracy in resistance value.
- Low Temperature Coefficient: Minimizes resistance changes with temperature variations.
- Small Size: Compact design for space-constrained applications.
- RoHS Compliant: Environmentally friendly construction.
Benefits:
- High Accuracy: Tight tolerance ensures accurate circuit performance.
- Stable Performance: Low temperature coefficient minimizes resistance drift over temperature.
- Reliable Operation: Robust design ensures long-term stability.
- Reduced Size and Weight: Small size allows for compact circuit designs.
Additional Details:
The MMA02040C5600FB30 has a resistance value of 560 Ohms. It typically features a tolerance of 1% and a temperature coefficient of 50 ppm/°C. The resistor is designed for surface mount applications and is available in a standard 0204 case size. The power rating for this resistor is commonly around 0.25W. The thin film construction allows for precise control of the resistance value and provides excellent long-term stability. These resistors are often used in applications where precision and stability are critical, such as in calibration circuits, instrumentation amplifiers, and voltage dividers.
This thin film resistor is well-suited for precision applications requiring high stability and accuracy. Its performance characteristics and small size make it a suitable choice for various electronic circuits.