The RU73X2A1K0LTDF is a thick film chip resistor manufactured by TE Connectivity. This resistor is designed for general-purpose applications and offers stable performance over a wide range of operating conditions.
Applications:
- General Purpose Circuitry
- Current Limiting
- Voltage Division
- Pull-up/Pull-down Resistors
- Feedback Resistors
- Automotive Electronics
- Industrial Equipment
Features:
- 1 kΩ Resistance
- ±0.01% Tolerance
- Thick Film Construction
- Surface Mount Device (SMD)
- Temperature Coefficient of Resistance (TCR): ±25 ppm/°C
- High Stability
- RoHS Compliant
Benefits:
- High Precision: The ±0.01% tolerance ensures accurate resistance values in critical circuits.
- Excellent Stability: The thick film construction and low TCR provide stable performance over temperature variations.
- Compact Size: The SMD package allows for high-density mounting on PCBs.
- RoHS Compliant: Meets environmental regulations for hazardous substances.
- Reliable Performance: TE Connectivity is a reputable manufacturer known for producing high-quality electronic components.
Additional Details:
The RU73X2A1K0LTDF resistor is designed for reflow soldering and is available in standard tape and reel packaging for automated assembly. The operating temperature range is typically -55°C to +155°C. The resistor is constructed with a ceramic substrate and a thick film resistive element. The termination is typically made of nickel and tin plating to ensure good solderability and corrosion resistance. The power rating of the resistor depends on the package size; however, it's usually around 0.1W. This resistor offers a combination of high precision, stability, and reliability, making it suitable for demanding applications where accurate resistance values are required.
In summary, the RU73X2A1K0LTDF from TE Connectivity is a precise and stable thick film chip resistor designed for general-purpose applications. Its key features include high precision, excellent stability, and compact size, offering benefits such as accurate resistance values, reliable performance over temperature, and ease of assembly.