


Vishay / Dale
CRA04S08327K0JTD
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CRA04S08327K0JTD Description
CRA04S08327K0JTD Description
The CRA04S08327K0JTD from Vishay Dale is a 4-resistor array designed for surface-mount applications, offering a compact 0804 package (2.00mm x 1.00mm) with convex, long-side terminals. This obsolete but still relevant component features 27kΩ resistance per element with a ±5% tolerance and a ±200ppm/°C temperature coefficient, ensuring stable performance across varying environmental conditions. The isolated circuit type allows for flexible configurations, while the 62.5mW power rating per element balances efficiency and thermal management. Compliant with ROHS3 and rated MSL 1 (Unlimited), it is suitable for long-term storage and lead-free assembly processes.
CRA04S08327K0JTD Features
- Compact 0804 footprint: Ideal for space-constrained PCB designs.
- High-density integration: Four isolated 27kΩ resistors in a single package reduce component count.
- Stable performance: ±200ppm/°C temperature coefficient ensures reliability in fluctuating temperatures.
- Surface-mount compatibility: Convex terminal design enhances solder joint integrity.
- ROHS3 compliance: Meets environmental standards for modern electronics.
- Low-profile (0.55mm height): Fits slimline applications like wearables and IoT devices.
CRA04S08327K0JTD Applications
This resistor array excels in precision analog circuits, voltage division networks, and signal conditioning due to its tight tolerance and isolation. It is particularly suited for:
- Consumer electronics: Audio equipment, display drivers.
- Industrial controls: Sensor interfaces, feedback loops.
- Automotive systems: ECU signal processing (non-safety-critical).
- Medical devices: Portable diagnostic tools where space efficiency is critical.
Conclusion of CRA04S08327K0JTD
While marked obsolete, the CRA04S08327K0JTD remains a robust choice for designs requiring high-density, stable resistance networks. Its compact size, isolation, and RoHS compliance make it a versatile solution for legacy or niche applications. Engineers should verify alternative availability but can leverage its proven performance in precision circuits where minimal footprint and reliability are paramount.



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