TE Connectivity NEOHM SMA-Q 110 kΩ, 0102 Thin Film Surface Mount Fixed Resistor 1 % Surface 0.3 W - SMA-Q0102FTDL110K

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Subtotal (1 reel of 3000 units)*

£192.00

(exc. VAT)

£231.00

(inc. VAT)

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Units
Per unit
Per Reel*
3000 - 12000£0.064£192.00
15000 +£0.063£189.00

*price indicative

RS Stock No.:
590-543
Mfr. Part No.:
SMA-Q0102FTDL110K
Brand:
TE Connectivity
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Brand

TE Connectivity

Resistance

110kΩ

Product Type

Surface Mount Fixed Resistor

Resistor Type

Metal Film Precision

Technology

Thin Film

Package/Case

0102

Packaging

Tape & Reel

Tolerance

1 %

Power Rating

0.3W

Voltage

20V

Mount Type

Surface

Temperature Coefficient

±50 ppm/°C

Automotive Standard

AEC-Q200

Minimum Operating Temperature

-55°C

Series

NEOHM SMA-Q

Maximum Operating Temperature

155°C

Termination Style

Melf 0102

Length

2.2mm

Width

1.1mm

Standards/Approvals

RoHS

The TE Connectivity Metal film precision MELF resistor introduces a superior performance with AEC-Q200 qualification, ensuring reliability in automotive applications. Designed for high thermal stability and enhanced moisture resistance, this resistor is a remarkable option for those seeking precision in resistance values. It includes lead-free and RoHS compliant components that cater to various industrial requirements, providing a broad resistance range for versatile applications. Its exceptional thin film technology allows for tight tolerance specifications down to ±0.1%, making it ideal for precise measurement and testing equipment. With its SMD enabled structure, It seamlessly integrates into modern circuit designs, facilitating efficient assembly processes.

Thin film technology for superior resistance stability

AEC Q200 qualification ensures compatibility with automotive standards

Moisture resistant coating for enhanced durability

Low TCR characteristics for minimal resistance variation with temperature

SMD enabled design streamlines installation and enhances board density

Lead free construction in line with environmental regulations

Excellent thermal performance for consistent operation under various conditions

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