


Stackpole Electronics, Inc.
RAVF164DJT120R
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RAVF164DJT120R Description
RAVF164DJT120R Description
The RAVF164DJT120R from Stackpole Electronics, Inc. is a high-performance 4-resistor array designed for precision surface-mount applications. Encased in a compact 1206 (3216 Metric) convex package with long-side terminals, this isolated network offers a 120Ω resistance per element with a ±5% tolerance and a ±200ppm/°C temperature coefficient. Its 100mW power rating per resistor ensures reliable operation in demanding circuits. The device adheres to ROHS3 and REACH compliance, is rated MSL 1 (Unlimited), and is supplied in Tape & Reel (TR) packaging for automated assembly efficiency.
RAVF164DJT120R Features
- Space-Saving Design: The 0.126" x 0.063" (3.20mm x 1.60mm) footprint and 0.024" (0.60mm) profile optimize PCB real estate.
- Robust Performance: Isolated circuit type minimizes crosstalk, while the 200ppm/°C TCR ensures stability across temperature fluctuations.
- High Reliability: Convex terminal geometry enhances solder joint integrity, and ROHS3 compliance meets environmental standards.
- Ease of Integration: 8-pin configuration simplifies layout, and Tape & Reel packaging streamlines high-volume production.
RAVF164DJT120R Applications
Ideal for precision analog/digital circuits, this resistor array excels in:
- Voltage dividers and pull-up/pull-down networks in microcontrollers and sensors.
- Signal conditioning for industrial automation and IoT devices.
- Impedance matching in communication systems (e.g., RF modules).
- Consumer electronics, including wearables and smart home devices, where compactness and reliability are critical.
Conclusion of RAVF164DJT120R
The RAVF164DJT120R combines miniaturization, stability, and manufacturability, making it a superior choice for modern electronics. Its isolated design, tight tolerance, and robust construction address challenges in high-density PCBs, while Stackpole’s quality assurance ensures long-term performance. Engineers seeking a balance of precision and efficiency in resistor networks will find this model indispensable for space-constrained, high-reliability applications.



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