
VPG Foil
Y0115V0001FT0L
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Y0115V0001FT0L Description
Y0115V0001FT0L Description
The Y0115V0001FT0L from VPG Foil Resistors is a high-precision 2-resistor network designed for voltage divider applications with TCR-matched performance. Part of the VFD244Z series, this through-hole component delivers exceptional stability with a ±0.2ppm/°C temperature coefficient and ±0.01% resistor matching ratio, ensuring minimal drift in critical circuits. Its 10kΩ resistance per element and 600mW power rating make it suitable for demanding environments, while the ±1% tolerance guarantees consistent performance. The ROHS3-compliant device is housed in a compact 8.90mm x 3.51mm radial package, ideal for space-constrained designs.
Y0115V0001FT0L Features
- Ultra-Low TCR: ±0.2ppm/°C ensures minimal resistance variation across temperature extremes.
- Precision Matching: ±0.01% ratio tolerance and ±0.1ppm/°C ratio drift for unmatched accuracy.
- Robust Power Handling: 600mW per resistor supports high-power applications.
- Stable Construction: Non-inductive foil technology reduces parasitic effects.
- Reliable Compliance: EAR99, ROHS3, and HTSUS 8533.21.0060 certified for global use.
- Through-Hole Mounting: 3-pin radial design simplifies PCB integration.
Y0115V0001FT0L Applications
This resistor network excels in precision analog circuits, including:
- Reference Voltage Dividers: For ADCs, DACs, and sensor interfaces requiring TCR-matched pairs.
- Medical Instrumentation: High-stability dividers in patient monitoring systems.
- Aerospace & Defense: Mission-critical systems demanding low drift over wide temperature ranges.
- Calibration Equipment: Lab-grade tools where ±0.01% matching is essential.
- Industrial Automation: Stable signal conditioning in harsh environments.
Conclusion of Y0115V0001FT0L
The Y0115V0001FT0L sets a benchmark for precision resistor networks with its sub-ppm TCR, tight ratio matching, and 600mW power handling. Its VPG Foil Resistors pedigree ensures reliability in applications where drift and accuracy are non-negotiable. Ideal for high-end instrumentation, aerospace, and medical electronics, this model outperforms standard thin-film networks in long-term stability and thermal performance. A top-tier choice for engineers prioritizing repeatability and minimal error accumulation in voltage division tasks.



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