WR06X10R0FTL >
WR06X10R0FTL
Walsin Technology Corporation
RES 10 OHM 1% 1/10W 0603
370874 Pcs New Original In Stock
10 Ohms ±1% 0.1W, 1/10W Chip Resistor 0603 (1608 Metric) Thick Film
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WR06X10R0FTL Walsin Technology Corporation
5.0 / 5.0 - (176 Ratings)

WR06X10R0FTL

Product Overview

9493962

DiGi Electronics Part Number

WR06X10R0FTL-DG
WR06X10R0FTL

Description

RES 10 OHM 1% 1/10W 0603

Inventory

370874 Pcs New Original In Stock
10 Ohms ±1% 0.1W, 1/10W Chip Resistor 0603 (1608 Metric) Thick Film
Quantity
Minimum 1

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In Stock (All prices are in USD)
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WR06X10R0FTL Technical Specifications

Category Chip Resistor - Surface Mount

Manufacturer Walsin Technology

Packaging Cut Tape (CT) & Digi-Reel®

Series WR

Product Status Active

Resistance 10 Ohms

Tolerance ±1%

Power (Watts) 0.1W, 1/10W

Composition Thick Film

Features -

Temperature Coefficient -200/ +400ppm/°C

Operating Temperature -55°C ~ 155°C

Package / Case 0603 (1608 Metric)

Supplier Device Package 0603

Ratings -

Size / Dimension 0.063" L x 0.031" W (1.60mm x 0.80mm)

Height - Seated (Max) 0.024" (0.60mm)

Number of Terminations 2

Failure Rate -

Datasheet & Documents

HTML Datasheet

WR06X10R0FTL-DG

Environmental & Export Classification

RoHS Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) 1 (Unlimited)
REACH Status REACH Unaffected
ECCN EAR99
HTSUS 8533.21.0030

Additional Information

Other Names
1292-WR06X10R0FTLTR
1292-WR06X10R0FTLCT
1292-WR06X10R0FTLDKR
Standard Package
5,000

Reviews

5.0/5.0-(Show up to 5 Ratings)
鳴***潮
de desembre 02, 2025
5.0
物流追跡のおかげで、配送状況を逐一把握できて安心です。
Dre***ave
de desembre 02, 2025
5.0
Reliable shipping times ensure that our production line remains uninterrupted.
Sere***ipple
de desembre 02, 2025
5.0
I am very impressed with the durability and professionalism of DiGi Electronics' packaging; it truly protects their products.
Radi***Glow
de desembre 02, 2025
5.0
I've had their products for a long time, and they continue to perform reliably without any extra cost.
Blis***lPath
de desembre 02, 2025
5.0
The team’s dedication to quality assurance is evident in every product delivered.
Hope***Heart
de desembre 02, 2025
5.0
Prompt delivery! My order arrived within just a few days, and the packaging was secure yet environmentally friendly.
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Frequently Asked Questions (FAQ)

What are the key reliability risks when using the WR06X10R0FTL in high-humidity or thermal cycling environments, and how can I mitigate them in my PCB design?

The WR06X10R0FTL, while rated for -55°C to 155°C and MSL 1 (unlimited floor life), is a thick-film resistor susceptible to moisture-induced degradation and thermal stress cracking under repeated thermal cycling. In high-humidity applications, ionic contamination or electrochemical migration can accelerate resistance drift over time. To mitigate this, ensure proper conformal coating (e.g., acrylic or silicone-based), maintain adequate creepage distances (>0.5mm), and avoid placing the WR06X10R0FTL near high-heat zones that could induce localized thermal gradients. For mission-critical designs, consider derating power to ≤70% of the 0.1W rating and validate long-term stability with environmental stress testing.

Can I replace the WR06X10R0FTL with a Vishay CRCW060310R0FKEA or Yageo RC0603FR-0710RL without redesigning my layout or risking performance issues?

While the Vishay CRCW060310R0FKEA and Yageo RC0603FR-0710RL share the same 0603 footprint, 10Ω ±1%, and 0.1W rating, subtle differences in temperature coefficient (Vishay: ±100ppm/°C, Yageo: ±200ppm/°C) and construction may affect performance in precision or high-temperature applications. The WR06X10R0FTL has a wider TC range (-200 to +400ppm/°C), making it less stable than Vishay’s option but potentially more cost-effective. If your circuit relies on tight resistance stability (e.g., feedback networks or current sensing), prefer the Vishay part. For general-purpose use, the Yageo is a drop-in replacement, but verify solder joint integrity due to potential differences in termination plating and reflow behavior.

How does the power derating curve of the WR06X10R0FTL affect its long-term reliability in a 24/7 industrial control system operating at 85°C ambient?

The WR06X10R0FTL is rated for 0.1W at 70°C, with linear derating above that temperature. At 85°C ambient, the allowable power dissipation drops to approximately 0.06W—meaning continuous operation near 0.1W will significantly reduce lifespan and increase resistance drift. In a 24/7 industrial system, this thermal stress accelerates thick-film material aging. To ensure reliability, limit actual power dissipation to ≤0.05W (50% derating from nominal) and improve thermal management via copper pour under the resistor or adjacent thermal vias. Monitor board-level hotspots with IR imaging during prototyping to validate thermal assumptions.

Is the WR06X10R0FTL suitable for use in a current-sense application on a 5V rail drawing 500mA, and what layout precautions should I take to minimize measurement error?

Using the WR06X10R0FTL (10Ω, 0.1W) in a 5V, 500mA current-sense path would dissipate P = I²R = (0.5)² × 10 = 2.5W—far exceeding its 0.1W rating and causing immediate failure. This resistor is unsuitable for direct high-current sensing. Instead, use a milliohm-range shunt (e.g., 10mΩ) with a precision amplifier. If you're repurposing the WR06X10R0FTL for low-side sensing at much lower currents (e.g., <10mA), ensure Kelvin (4-wire) connections to avoid trace resistance errors, place it close to the load, and isolate it from ground planes that could shunt thermal energy unevenly. Always verify voltage drop accuracy under load with a calibrated DMM.

What failure modes should I anticipate if the WR06X10R0FTL is subjected to repeated inrush currents in a relay driver circuit, and how can I protect it?

In relay driver circuits, inductive kickback and repeated inrush currents can cause localized overheating or electromigration in the WR06X10R0FTL’s thick-film element, leading to resistance drift or open-circuit failure—even if average power is within 0.1W. The 0603 package has limited thermal mass, making it vulnerable to transient overloads. To protect the WR06X10R0FTL, add a flyback diode across the relay coil, use a series NTC thermistor to limit inrush, or replace it with a pulse-resistant resistor like the Panasonic ERJ-3BW series. If retention is necessary, parallel multiple WR06X10R0FTL units (with derating) or select a higher-power 0805 equivalent to improve surge handling.

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