The SL1TTEF20MOHM is a precision thick film chip resistor manufactured by KOA Speer. As part of the SL series, it is designed for high stability and reliability in various electronic circuits. This resistor is commonly used where accurate resistance and dependable performance are crucial.
Applications:
- Precision Instrumentation: Used in measurement devices and calibration equipment where accurate resistance is essential.
- Medical Equipment: Employed in medical devices requiring stable and reliable components.
- Automotive Electronics: Integrated into automotive control systems that demand precision and stability.
- Industrial Automation: Used in control systems and sensors in industrial environments.
- Power Supplies: Provides precise voltage division and current limiting in power supply circuits.
Features:
- Thick Film Construction: Ensures high stability and long-term reliability.
- Tight Tolerance: Offers a very tight tolerance for accurate resistance values.
- Low Temperature Coefficient: Minimizes resistance drift over temperature variations.
- Surface Mount Design: Facilitates automated assembly and reduces manufacturing costs.
- RoHS Compliant: Meets environmental regulations for hazardous substances.
Benefits:
- High Stability: Maintains resistance value under various environmental conditions.
- Long Lifespan: Provides reliable performance over extended periods.
- Precise Resistance: Ensures accurate circuit performance.
- Cost-Effective: Offers a balance of performance and affordability.
- Easy Assembly: Simplifies the manufacturing process with surface mount technology.
Additional Details:
The SL1TTEF20MOHM has a resistance value of 20 Mega Ohms (20MΩ). The 'F' in the part number indicates a ±1% tolerance. The Temperature Coefficient of Resistance (TCR) is typically ±100 ppm/°C. It is designed for surface mount technology (SMT) and conforms to standard chip sizes like 1206. The power rating is usually around 0.25W. Refer to the official KOA Speer datasheet for exact specifications and recommended operating conditions.