TE Connectivity NEOHM SMA-Q 8.87 kΩ, 0204 Thin Film Surface Mount Fixed Resistor 0.1 % Surface 0.4 W - SMA-Q0204BTCX8K87

Subtotal (1 reel of 3000 units)*

PHP30,534.00

(exc. VAT)

PHP34,197.00

(inc. VAT)

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Units
Per Unit
Per Reel*
3000 +PHP10.178PHP30,534.00

*price indicative

RS Stock No.:
590-595
Mfr. Part No.:
SMA-Q0204BTCX8K87
Manufacturer:
TE Connectivity
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Brand

TE Connectivity

Product Type

Surface Mount Fixed Resistor

Resistance

8.87kΩ

Resistor Type

Metal Film

Technology

Thin Film

Package/Case

0204

Packaging

Tape & Reel

Tolerance

0.1 %

Power Rating

0.4W

Voltage

20 V

Mount Type

Surface

Temperature Coefficient

±25 ppm/°C

Automotive Standard

AEC-Q200

Series

NEOHM SMA-Q

Minimum Operating Temperature

-55°C

Maximum Operating Temperature

155°C

Length

3.50mm

Width

1.40 mm

Standards/Approvals

RoHS

COO (Country of Origin):
TW
The TE Connectivity Metal film precision MELF resistor represents the latest innovation with its advanced AEC-Q200 qualified. Designed for high reliability, this resistor boasts an SMD-enabled structure providing excellent stability across a variety of applications. It features low temperature coefficient ratings, resulting in minimal resistance change with temperature fluctuations. With a focus on environmental protection, the improved coating delivers superior resistance to humidity, ensuring consistent performance in challenging conditions. Available in multiple sizes, this lead-free and RoHS-compliant component meets the demands of automotive, telecommunications, and industrial usages. The It model provides a power rating of 0.4W and can operate effectively in a wide temperature range, making it an ideal choice for sensitive electronics.

AEC Q200 qualification ensures high reliability for critical applications

SMD enabled design facilitates easy integration into compact PCB layouts

Exceptional resistance to humidity extends the lifespan of the resistor

Lead free construction aligns with environmental regulations

Very tight tolerance supports precise circuit performance

Low TCR minimises drift in resistance over varying temperatures

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