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CRA04S08320K0JTD
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CRA04S08320K0JTD Description
CRA04S08320K0JTD Description
The CRA04S08320K0JTD from Vishay Dale is a high-density, surface-mount resistor network designed for precision applications in compact electronic assemblies. Part of the CRA04 series, this 4-resistor array features isolated 20kΩ resistors with a ±5% tolerance and a low ±200ppm/°C temperature coefficient, ensuring stable performance across varying environmental conditions. Encased in an 0804 convex long-side terminal package (2.00mm x 1.00mm x 0.55mm), it offers space-saving advantages while delivering 62.5mW power dissipation per element. Compliant with ROHS3 and rated MSL 1 (Unlimited), it is suitable for automated reel-to-reel assembly processes.
CRA04S08320K0JTD Features
- Compact Footprint: 0804 package (2.00mm x 1.00mm) with a low 0.55mm profile, ideal for high-density PCBs.
- Precision Performance: ±5% tolerance and ±200ppm/°C TCR ensure reliable signal conditioning.
- Isolated Circuit Design: Independent resistors reduce crosstalk, enhancing signal integrity.
- Robust Construction: Convex terminal geometry improves mechanical stability during soldering.
- Industry Compliance: EAR99, ROHS3, and HTSUS 8533.21.0020 certified for global compatibility.
CRA04S08320K0JTD Applications
This resistor array excels in applications requiring miniaturization and consistent resistance values, such as:
- Voltage Dividers: Precision attenuation in sensor interfaces or ADC circuits.
- Pull-Up/Pull-Down Networks: Signal stabilization in digital logic (e.g., I2C, SPI).
- Medical Electronics: Compact patient monitoring devices where space and reliability are critical.
- Automotive Control Modules: Engine management systems demanding vibration-resistant components.
Conclusion of CRA04S08320K0JTD
The CRA04S08320K0JTD combines Vishay Dale’s expertise in passive components with a design optimized for modern SMT workflows. Its isolated resistors, tight tolerance, and ultra-thin profile make it a superior choice over bulkier discrete resistors or less stable networks. While marked obsolete, remaining stock is valuable for legacy designs or applications where its proven performance outweighs migration to newer alternatives. Engineers should evaluate lifecycle status but can leverage its reliability in precision analog and mixed-signal circuits.



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