TE Connectivity NEOHM SMA-Q 127 Ω, 0204 Thin Film Surface Mount Fixed Resistor 1 % Surface 0.4 W - SMA-Q0204FTDX127R

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Subtotal (1 reel of 3000 units)*

PHP4,983.00

(exc. VAT)

PHP5,580.00

(inc. VAT)

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Units
Per Unit
Per Reel*
3000 - 12000PHP1.661PHP4,983.00
15000 +PHP1.628PHP4,884.00

*price indicative

RS Stock No.:
590-040
Mfr. Part No.:
SMA-Q0204FTDX127R
Manufacturer:
TE Connectivity
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Brand

TE Connectivity

Resistance

127Ω

Product Type

Surface Mount Fixed Resistor

Technology

Thin Film

Resistor Type

Metal Film Precision

Package/Case

0204

Tolerance

1 %

Packaging

Tape & Reel

Power Rating

0.4W

Temperature Coefficient

±50 ppm/°C

Mount Type

Surface

Automotive Standard

AEC-Q200

Series

NEOHM SMA-Q

Minimum Operating Temperature

-55°C

Maximum Operating Temperature

155°C

Standards/Approvals

IEC 60115-1, JIS-C-5201-1, MIL-STD-202, RoHS, UL-94

Length

3.50mm

COO (Country of Origin):
TW
The TE Connectivity Metal film precision MELF resistor is engineered for high performance in demanding applications. This component excels with its surface mount design, ensuring ease of installation and reliability. With AEC-Q200 qualification, it is an optimal choice for automotive and industrial environments where stability and accuracy are paramount. Enhanced moisture protection technology ensures dependable operation even in humid conditions, while its low temperature coefficient of resistance (TCR) ensures precise performance across a wide operating temperature range. The It is designed to meet RoHS compliance, making it an environmentally considerate option without compromising on quality.

Thin film technology offers superior performance

High power rating to support robust applications

Moisture sensitivity level of MSL1 ensures reliable usage

SMD enabled structure simplifies automated assembly

Lead Free design meets stringent environmental standards

Tight tolerance guarantees exceptional accuracy in applications

Suitable for a variety of applications including automotive and telecommunication

Ceramic rod construction enhances thermal stability

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