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Y1747V0561BA9W
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Y1747V0561BA9W Description
Y1747V0561BA9W Description
The Y1747V0561BA9W from VPG Foil Resistors is a high-precision 4-resistor network housed in an 8-SOIC surface-mount package. Designed for demanding applications, it offers ±0.1% tolerance and an ultra-low ±0.2ppm/°C temperature coefficient, ensuring exceptional stability across varying environmental conditions. The network features isolated resistors with values of 3.2kΩ and 10kΩ, providing flexibility in circuit design. Its compact dimensions (5.00mm x 3.99mm x 1.86mm) make it ideal for space-constrained PCB layouts while maintaining 100mW power handling per element.
Y1747V0561BA9W Features
- Precision Matching: ±0.05% resistor matching ratio and ±1ppm/°C ratio drift for unmatched accuracy in differential circuits.
- Robust Construction: ROHS3-compliant and MSL1-rated, suitable for lead-free soldering and unlimited shelf life.
- Stability: ±0.2ppm/°C TCR minimizes resistance shifts over temperature, critical for instrumentation and metrology.
- Versatile Resistance Values: Dual-resistance options (3.2kΩ/10kΩ) enable precise voltage division and signal conditioning.
- Reliable Packaging: Supplied in tray packaging for automated assembly processes.
Y1747V0561BA9W Applications
This resistor array excels in high-accuracy analog systems, including:
- Precision voltage dividers in data acquisition systems.
- Reference circuits for ADCs/DACs in medical and test equipment.
- Current sensing networks in industrial control systems.
- Feedback networks for ultra-stable amplifiers and oscillators.
Its low drift and tight tolerance make it indispensable in aerospace, automotive, and telecom applications where long-term reliability is paramount.
Conclusion of Y1747V0561BA9W
The Y1747V0561BA9W sets a benchmark for precision resistor networks, combining VPG Foil's expertise with cutting-edge performance. Its low TCR, tight matching, and compact form factor address the needs of high-end electronics, outperforming standard thick-film arrays. Ideal for engineers prioritizing accuracy, stability, and miniaturization, this model is a top choice for mission-critical designs.



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