Resistors-Chassis Mount

Image Part Number Description / PDF Quantity Rfq
FVTS05R2E5R000JE

FVTS05R2E5R000JE

Vishay / Huntington Electric, Inc.

RES CHAS MNT 5 OHM 5% 5W

0

HS10 1R F

HS10 1R F

Ohmite

RES CHAS MNT 1 OHM 1% 10W

0

EWT50JB20K0

EWT50JB20K0

Stackpole Electronics, Inc.

RES CHAS MNT 20K OHM 5% 50W

0

RER65F7000RC02

RER65F7000RC02

Vishay / Dale

RES CHAS MNT 700 OHM 1% 10W

0

HS150 500R J

HS150 500R J

Ohmite

RES CHAS MNT 500 OHM 5% 150W

0

HS25 330R F

HS25 330R F

Ohmite

RES CHAS MNT 330 OHM 1% 25W

0

RER65F1821RCSL

RER65F1821RCSL

Vishay / Dale

RES CHAS MNT 1.82K OHM 1% 10W

0

810F400E

810F400E

Ohmite

RES CHAS MNT 400 OHM 1% 10W

0

TGHGCR0050DE

TGHGCR0050DE

Ohmite

100W SOT227 0.0050 OHM 0.5%

35

RER55F36R5RC02

RER55F36R5RC02

Vishay / Dale

RES CHAS MNT 36.5 OHM 1% 30W

0

RER60F1001RC02

RER60F1001RC02

Vishay / Dale

RES CHAS MNT 1K OHM 1% 5W

15

RER65F8R06RCSL

RER65F8R06RCSL

Vishay / Dale

RES CHAS MNT 8.06 OHM 1% 10W

0

TA1K0PH100RKE

TA1K0PH100RKE

Ohmite

RES CHAS MNT 100 OHM 10% 1000W

30

RER65F4021RCSL

RER65F4021RCSL

Vishay / Dale

RES CHAS MNT 4.02K OHM 1% 10W

0

HS250 4K7 F

HS250 4K7 F

Ohmite

RES CHAS MNT 4.7K OHM 1% 250W

10

FVTS10R1E50R00JE

FVTS10R1E50R00JE

Vishay / Huntington Electric, Inc.

RES CHAS MNT 50 OHM 5% 12W

0

TE1000B100RJ

TE1000B100RJ

TE Connectivity AMP Connectors

RES CHAS MNT 100 OHM 5% 1000W

80

RER55F34R4PC02

RER55F34R4PC02

Vishay / Dale

RES CHAS MNT 34.4 OHM 1% 30W

0

RH05020R00FE02

RH05020R00FE02

Vishay / Dale

RES CHAS MNT 20 OHM 1% 50W

0

AHA10BFB-12R

AHA10BFB-12R

Yageo

RES CHAS MNT 12 OHM 1% 100W

0

Resistors-Chassis Mount

1. Overview

Chassis Mount Resistors are specialized electronic components designed for direct mounting onto equipment chassis or heat sinks. They provide critical functions including current limiting, voltage division, and energy dissipation in high-power applications. Their importance in modern technology lies in enabling thermal management stability and electrical performance in industrial, automotive, and power electronics systems.

2. Major Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Wirewound Chassis MountHigh precision, pulse stability, 10-100W power ratingIndustrial motor drives, test equipment
Film Type Chassis MountLow noise, fast response, 5-50W ratingCommunication infrastructure, medical devices
Ceramic Composite MountHigh-temperature resistance, 50-300W ratingEV charging systems, renewable energy inverters

3. Structure and Composition

Typical construction includes:

  • Aluminum alloy heat-dissipating housing (surface-anodized for insulation)
  • High-purity ceramic substrate with resistive element (NiCr or TaN)
  • Multi-layer silicone coating for vibration resistance
  • Brass/copper alloy mounting terminals (anti-corrosion plated)

Thermal interface materials (TIM) ensure efficient heat transfer to chassis.

4. Key Technical Specifications

ParameterImportanceTypical Range
Rated PowerDetermines thermal handling capacity5-500W
Resistance RangeAffects current regulation precision0.1 -100k
ToleranceImpacts circuit accuracy 0.5% to 5%
Temperature CoefficientStability over operating temperature50-200ppm/ C
Dielectric StrengthSafety insulation performance1.5-5kV

5. Application Fields

Primary industries include:

  • Industrial automation (variable frequency drives, PLCs)
  • Renewable energy (solar inverters, wind turbine converters)
  • Transportation (EV on-board chargers, railway traction systems)
  • Telecommunications (base station power amplifiers, data center PSUs)

Case Study: 300W ceramic composite resistors in EV fast chargers enable 15-minute battery charging cycles.

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Vishay Precision GroupCPW-100100W wirewound, 0.1% tolerance
Ohmite Manufacturing270 series500W ceramic housing, IP65 rated
Panasonic ElectronicERJ-P11Thin-film technology, 100ppm/ C stability

7. Selection Guidelines

Key considerations:

  • Calculate required power derating (70% of max rating recommended)
  • Match resistance value with system voltage/current requirements
  • Evaluate thermal interface compatibility with chassis
  • Consider environmental factors (humidity, vibration, ambient temperature)
  • Budget allocation: High-reliability models may cost 2-3 standard versions

8. Industry Trends Analysis

Current development trends include:

  • Nano-ceramic materials enabling 40% smaller form factors
  • Integrated temperature sensing resistors for smart power systems
  • Graphene-enhanced thermal coatings improving heat dissipation by 25%
  • Automotive-grade models supporting 150 C operating temperatures
  • Industry 4.0 compatibility with IoT-enabled resistance monitoring

Market projections indicate 8.7% CAGR through 2030 driven by EV and 5G infrastructure demands.

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