MMU01020C3600FB300 >
MMU01020C3600FB300
Vishay Beyschlag/Draloric/BC Components
MMU 0102-50 1% BL 360R
6491 Pcs New Original In Stock
360 Ohms ±1% 0.3W Chip Resistor MELF, 0102 Anti-Sulfur, Automotive AEC-Q200, Pulse Withstanding Thin Film
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MMU01020C3600FB300 Vishay Beyschlag/Draloric/BC Components
5.0 / 5.0 - (223 Ratings)

MMU01020C3600FB300

Product Overview

10467031

DiGi Electronics Part Number

MMU01020C3600FB300-DG
MMU01020C3600FB300

Description

MMU 0102-50 1% BL 360R

Inventory

6491 Pcs New Original In Stock
360 Ohms ±1% 0.3W Chip Resistor MELF, 0102 Anti-Sulfur, Automotive AEC-Q200, Pulse Withstanding Thin Film
Quantity
Minimum 1

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In Stock (All prices are in USD)
  • QTY Target Price Total Price
  • 1 0.0415 0.0415
  • 200 0.0160 3.2000
  • 500 0.0155 7.7500
  • 1000 0.0152 15.2000
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MMU01020C3600FB300 Technical Specifications

Category Chip Resistor - Surface Mount

Manufacturer Vishay BC Components

Packaging Tape & Reel (TR)

Series MMU - Professional

Product Status Active

Resistance 360 Ohms

Tolerance ±1%

Power (Watts) 0.3W

Composition Thin Film

Features Anti-Sulfur, Automotive AEC-Q200, Pulse Withstanding

Temperature Coefficient ±50ppm/°C

Operating Temperature -55°C ~ 155°C

Package / Case MELF, 0102

Supplier Device Package 0102

Ratings AEC-Q200

Size / Dimension 0.055" Dia x 0.142" L (1.40mm x 3.60mm)

Height - Seated (Max) -

Number of Terminations 2

Failure Rate -

Datasheet & Documents

Environmental & Export Classification

RoHS Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) 1 (Unlimited)
REACH Status REACH Unaffected
ECCN EAR99
HTSUS 8533.21.0040

Additional Information

Other Names
749-MMU01020C3600FB300TR
749-MMU01020C3600FB300CT
749-MMU01020C3600FB300DKR
Standard Package
3,000

Reviews

5.0/5.0-(Show up to 5 Ratings)
夢***者
грудня 02, 2025
5.0
迪捷電子的物流服務非常專業,速度快而且準確無誤。
陽***你
грудня 02, 2025
5.0
迪吉電子的價格非常親民,讓我可以輕鬆享受高品質的電子產品,太棒了!
Drea***tcher
грудня 02, 2025
5.0
Their support engineers are proactive in offering preventative maintenance advice.
Blissf***orizon
грудня 02, 2025
5.0
Very satisfied with the high-quality standards maintained throughout.
Mis***ides
грудня 02, 2025
5.0
Shipping is remarkably reliable, which keeps my inventory flowing without interruptions.
Frost***rning
грудня 02, 2025
5.0
The transparency in pricing and product quality is what makes this shopping experience so reliable.
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Frequently Asked Questions (FAQ)

Can the MMU01020C3600FB300 replace a standard 0102 thin-film resistor in a high-sulfur environment automotive application without risk of premature failure?

Yes, the MMU01020C3600FB300 is specifically designed with anti-sulfur protection, making it suitable for harsh automotive environments where sulfur contamination (e.g., near exhaust systems or industrial zones) can corrode standard thin-film resistors. Unlike generic 0102 resistors such as the Yageo RC0102FR-07360RL, which lack sulfur resistance, the MMU01020C3600FB300 uses a specialized electrode construction that prevents sulfidation, ensuring long-term reliability and meeting AEC-Q200 qualification standards for automotive use.

What are the risks of using the MMU01020C3600FB300 in high-pulse or surge-prone circuits, and how does its pulse-withstanding capability compare to similar-sized thick-film alternatives?

The MMU01020C3600FB300 offers superior pulse-withstanding performance compared to typical thick-film 0102 resistors like the Panasonic ERJ-1GEJ361U due to its thin-film construction and optimized geometry. While thick-film resistors often degrade under repetitive voltage spikes, the MMU01020C3600FB300 is engineered to handle transient overloads common in automotive ignition or relay circuits. However, designers should still verify pulse energy levels against Vishay’s pulse load curves—exceeding these limits may cause localized heating or resistance drift, even with the enhanced robustness.

Is the MMU01020C3600FB300 a viable drop-in replacement for a discontinued 360Ω 0102 resistor in an existing PCB layout, and what layout or thermal considerations should be reviewed?

The MMU01020C3600FB300 is a direct physical and electrical replacement for most standard 0102 MELF resistors due to its identical 1.40mm x 3.60mm footprint and 2-terminal design. However, because it’s rated for 0.3W and operates up to 155°C, ensure adequate PCB copper area for heat dissipation—especially if the original design used a lower-power part. Also, confirm solder profile compatibility; while MSL 1 allows unlimited floor life, excessive reflow temperatures could affect long-term stability. Always validate thermal performance under actual operating conditions.

How does the temperature coefficient and long-term stability of the MMU01020C3600FB300 impact precision analog circuits, and should it be preferred over other AEC-Q200 thin-film resistors?

With a tight ±50ppm/°C temperature coefficient and automotive-grade thin-film construction, the MMU01020C3600FB300 delivers excellent stability in precision applications like current sensing or signal conditioning across its full -55°C to 155°C range. Compared to broader-tolerance or less stable AEC-Q200 parts such as the TE Connectivity CR0102F360R, this resistor minimizes drift over temperature cycles, reducing calibration needs. For high-reliability systems (e.g., ADAS or battery management), this level of predictability justifies the slight cost premium over general-purpose alternatives.

What reliability risks should be considered when designing with the MMU01020C3600FB300 in under-hood automotive applications, despite its AEC-Q200 rating?

While the MMU01020C3600FB300 meets AEC-Q200 requirements, real-world under-hood conditions—such as thermal cycling, vibration, and humidity—can still induce mechanical stress at solder joints due to CTE mismatch. To mitigate failure risks, use conformal coating to protect against moisture ingress and ensure proper pad design with adequate solder fillets. Additionally, avoid placing the component near high-heat sources (e.g., exhaust manifolds) unless thermal modeling confirms junction temperatures remain within limits. Regular HALT (Highly Accelerated Life Testing) validation is recommended for mission-critical systems.

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