TE Connectivity NEOHM SMA-Q 422Ω, 0204 (1005M) Thin Film SMD Resistor 1% 0.4W

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Subtotal (1 reel of 3000 units)*

£69.00

(exc. VAT)

£84.00

(inc. VAT)

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Units
Per unit
Per Reel*
3000 - 12000£0.023£69.00
15000 +£0.023£69.00

*price indicative

RS Stock No.:
590-347
Mfr. Part No.:
SMA-Q0204FTDX422R
Brand:
TE Connectivity
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Brand

TE Connectivity

Resistance

422Ω

Technology

Thin Film

Package/Case

0204 (1005M)

Tolerance

1%

Power Rating

0.4W

Temperature Coefficient

±50ppm/°C

Automotive Standard

AEC-Q200 Compliant

Series

NEOHM SMA-Q

Minimum Operating Temperature

-55°C

Maximum Operating Temperature

+155°C

COO (Country of Origin):
TW
The TE Connectivity Metal film precision MELF resistor is designed to provide exceptional performance in demanding applications. With AEC-Q200 qualification, it assures reliability and stability across a wide range of environments. The robust design features a surface mount device (SMD) structure, alongside improved moisture protection. This resistor not only adheres to lead-free and RoHS compliance standards but also showcases a remarkable power rating of 0.4W. Its extensive resistance range accommodates various needs, ensuring versatility in automotive, industrial, telecommunications, and medical equipment applications. This resistor offers extremely low temperature coefficient ratings, making it ideal for precision applications. The seamless integration of advanced thin film technology allows for superior stability and accuracy.

AEC Q200 qualified for enhanced reliability in critical applications
Designed for optimal performance in automotive and industrial environments
Integrated moisture resistant coating to combat humidity effects
Lead free and RoHS compliant, aligning with modern environmental standards
Extremely low temperature coefficient, ensuring accurate performance over temperature variations
Suitable for telecommunication and medical devices, providing precise measurements
Streamlined SMD structure for easy integration into modern PCB designs
Wide resistance range enhancing flexibility in application scenarios

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