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Y1735V0092TT0L
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Y1735V0092TT0L Description
Y1735V0092TT0L Description
The Y1735V0092TT0L from VPG Foil Resistors is a high-precision 4-resistor network designed for voltage divider applications with TCR-matched performance. Packaged in a through-hole, axial configuration, this device features an ultra-tight ±0.01% tolerance and an exceptional ±0.2ppm/°C temperature coefficient, ensuring stability in demanding environments. With resistance values of 1kΩ and 7.812kΩ, it delivers ±0.01% resistor matching ratio and ±0.1ppm/°C ratio drift, making it ideal for precision analog circuits. The 50mW power rating per element and 9.53mm x 5.08mm (0.375" x 0.200") footprint balance compactness with performance.
Y1735V0092TT0L Features
- Ultra-Precision: ±0.01% tolerance and ±0.2ppm/°C TCR for unmatched accuracy.
- TCR-Matched Network: Ensures minimal drift (±0.1ppm/°C) in divider ratios over temperature.
- Robust Construction: Through-hole mounting with a 0.385" (9.78mm) height for mechanical stability.
- Low Noise & High Stability: Foil resistor technology minimizes parasitic effects and long-term drift.
- Wide Applications: Suitable for medical, aerospace, and test/measurement systems where precision is critical.
- Non-MSRL: Moisture-insensitive (MSL: Not Applicable), reducing handling constraints.
Y1735V0092TT0L Applications
- Precision Voltage Dividers: High-accuracy reference circuits in DAC/ADC systems.
- Instrumentation Amplifiers: Stable gain-setting networks for sensor signal conditioning.
- Calibration Equipment: Used in metrology labs for drift-critical standards.
- Aerospace & Defense: Reliable performance in avionics and radar systems.
- Medical Devices: Patient monitoring and diagnostic equipment requiring low error margins.
Conclusion of Y1735V0092TT0L
The Y1735V0092TT0L stands out in the 300145Z series for its exceptional precision, TCR matching, and ratio stability, surpassing conventional thin-film or thick-film networks. Its through-hole design ensures durability, while the foil resistor technology guarantees low noise and long-term reliability. Ideal for mission-critical applications, this resistor network is a top choice for engineers prioritizing accuracy, stability, and repeatability in high-end electronic systems.



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