


Vishay / Dale
CRA06P08368R0JTA
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CRA06P08368R0JTA Description
CRA06P08368R0JTA Description
The CRA06P08368R0JTA from Vishay Dale is a high-performance, surface-mount resistor network designed for precision applications. This 4-resistor array features a compact 1206 (3216 Metric) concave package with long-side terminals, offering a resistance value of 68Ω per element with a ±5% tolerance. Its ±200ppm/°C temperature coefficient ensures stable performance across varying thermal conditions, while the 62.5mW power rating per element provides reliable operation in low-power circuits. The device is ROHS3 compliant and rated MSL 1 (Unlimited), making it suitable for environmentally conscious and high-volume manufacturing processes.
CRA06P08368R0JTA Features
- Compact Design: Measures 0.126" x 0.063" (3.20mm x 1.60mm) with a low profile of 0.028" (0.70mm), ideal for space-constrained PCB layouts.
- Isolated Circuit Configuration: Ensures minimal crosstalk between resistors, enhancing signal integrity.
- Concave Long-Side Terminals: Improves solder joint reliability and mechanical stability.
- Wide Operating Range: Suitable for industrial and consumer electronics with a ±200ppm/°C TCR.
- Tape & Reel Packaging: Facilitates automated assembly, reducing production time and costs.
CRA06P08368R0JTA Applications
This resistor array excels in applications requiring precision and space efficiency, such as:
- Voltage Division Circuits: Used in sensor interfaces and ADC reference networks.
- Pull-Up/Pull-Down Networks: Ideal for digital logic circuits in microcontrollers and FPGAs.
- Signal Conditioning: Enhances signal integrity in communication modules and audio equipment.
- Consumer Electronics: Commonly found in smartphones, tablets, and wearables due to its compact footprint.
Conclusion of CRA06P08368R0JTA
The CRA06P08368R0JTA combines Vishay Dale's reliability with advanced packaging technology, delivering a robust solution for modern electronics. Its isolated design, low thermal drift, and compatibility with automated assembly make it a preferred choice for engineers seeking efficiency and performance. While marked as obsolete, it remains a viable option for legacy designs or applications where its specific attributes are critical. For new designs, consulting Vishay Dale for alternative recommendations is advised.



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