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Y1692V0219BB0L
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Y1692V0219BB0L Description
Y1692V0219BB0L Description
The Y1692V0219BB0L from VPG Foil Resistors is a high-precision 2-resistor network designed for voltage divider applications with TCR-matched performance. This through-hole component features 10kΩ and 100kΩ resistances with an ultra-tight ±0.1% tolerance and an exceptional ±0.2ppm/°C temperature coefficient, ensuring stability in demanding environments. Its ±0.005% resistor matching ratio and ±0.1ppm/°C ratio drift make it ideal for applications requiring minimal deviation over temperature fluctuations. The 300mW power rating per element and 14.61mm x 4.06mm (0.575" x 0.160") footprint balance performance with compactness.
Y1692V0219BB0L Features
- Ultra-Precision: ±0.1% tolerance and ±0.2ppm/°C TCR for unmatched accuracy.
- TCR-Matched Pair: Ensures consistent performance in voltage dividers.
- Low Ratio Drift: ±0.1ppm/°C minimizes errors in critical measurements.
- High Power Handling: 300mW per resistor for robust operation.
- Through-Hole Mounting: Reliable mechanical stability for industrial use.
- RoHS3 Compliant: Meets environmental standards.
- Non-MSIL (Moisture Insensitive): Suitable for harsh or variable humidity conditions.
Y1692V0219BB0L Applications
This resistor network excels in precision analog circuits, including:
- Reference voltage dividers in test/measurement equipment.
- Sensor signal conditioning for medical or aerospace systems.
- High-accuracy DAC/ADC circuits where ratio stability is critical.
- Calibration instruments requiring long-term drift immunity.
Its TCR-matched design outperforms standard resistor arrays in applications demanding minimal thermal-induced errors, such as bridge circuits or precision voltage scaling.
Conclusion of Y1692V0219BB0L
The Y1692V0219BB0L sets a benchmark for precision resistor networks, combining low drift, tight matching, and high power handling in a compact through-hole package. Its superior stability makes it indispensable for mission-critical electronics where performance cannot be compromised. Engineers designing high-reliability systems will benefit from its repeatable accuracy and robust construction, ensuring consistent operation across temperature and time.



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