


Stackpole Electronics, Inc.
RAVF168DJT47R0
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RAVF168DJT47R0 Description
RAVF168DJT47R0 Description
The RAVF168DJT47R0 from Stackpole Electronics, Inc. is a high-performance 8-resistor array designed for precision surface-mount applications. Encased in a compact 1506 (Convex, Long Side Terminals) package measuring 4.00mm x 1.60mm (0.157" x 0.063"), this device offers a 47Ω resistance per element with a ±5% tolerance and a ±200ppm/°C temperature coefficient. Its isolated circuit configuration ensures independent resistor functionality, making it ideal for applications requiring signal isolation or individual resistor tuning. With a 62.5mW power rating per element and RoHS3/REACH compliance, it meets stringent environmental and performance standards.
RAVF168DJT47R0 Features
- 8 isolated resistors in a single 16-pin package, reducing PCB footprint and assembly complexity.
- Ultra-low profile (0.50mm height) for space-constrained designs.
- Wide operating range with a ±200ppm/°C TCR, ensuring stability across temperature variations.
- 62.5mW power dissipation per resistor, suitable for moderate-power applications.
- Tape & Reel (TR) packaging for automated assembly efficiency.
- MSL 1 (Unlimited) moisture sensitivity, eliminating baking requirements before use.
RAVF168DJT47R0 Applications
This resistor array excels in:
- Signal conditioning in IoT sensors and communication modules.
- Pull-up/pull-down networks in microcontroller and FPGA circuits.
- Voltage division in precision analog systems.
- Impedance matching for high-frequency PCBs.
- Industrial automation where reliability and compactness are critical.
Conclusion of RAVF168DJT47R0
The RAVF168DJT47R0 combines miniaturization, performance, and reliability, making it a superior choice for modern electronics. Its isolated resistors, robust power handling, and compliance with environmental standards position it as a versatile solution for both consumer and industrial applications. Engineers benefit from its ease of integration and consistent performance, reducing design complexity and BOM costs.



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