Accessories

Image Part Number Description / PDF Quantity Rfq
6128P-8 1-2E

6128P-8 1-2E

Ohmite

MOUNTING BRACKET 3 RESISTOR

0

2128

2128

Ohmite

ADJUSTABLE LUG FOR DIVIDOHM

0

6129P-8 1-2E

6129P-8 1-2E

Ohmite

MOUNTING BRACKET 4 RESISTOR

0

5906

5906

Ohmite

MOUNTING CLIPS D8212-5

0

5908

5908

Ohmite

MOUNTING CLIPS D8212-9

0

6110-8 1-2

6110-8 1-2

Ohmite

MOUNTING HDWR BRACKET SLOTTED

11

6101-4

6101-4

Ohmite

MOUNTING HDWR BRACKET SLOTTED

2

6001E

6001E

Ohmite

WASHER CENTERING 100W RESISTOR

1176

6110-10 1-2

6110-10 1-2

Ohmite

MOUNTING HDWR BRACKET SLOTTED

25

6127P-8 1-2E

6127P-8 1-2E

Ohmite

MOUNTING BRACKET 2 RESISTOR

73

9S-10

9S-10

Ohmite

MOUNTING BRACKET 25/50/75W

402

6112A-EN-170E

6112A-EN-170E

Ohmite

MOUNTING HARDWARE FOR 160W

10

2134

2134

Ohmite

ADJUSTABLE LUG FOR DIVIDOHM

0

6110A-EN-170E

6110A-EN-170E

Ohmite

MOUNTING HARDWARE FOR 160W

3

2135

2135

Ohmite

ADJUSTABLE LUG FOR DIVIDOHM

0

6012

6012

Ohmite

WASHER, MICA D85847 BAG OF 100

0

2127

2127

Ohmite

ADJUSTABLE LUG FOR DIVIDOHM

0

18E-100

18E-100

Ohmite

BRACKET MOUNTING FOR 225W RES

2678

9E-100

9E-100

Ohmite

BRACKET MOUNTING VP25K SERIES

4714

6110-10 1-2E

6110-10 1-2E

Ohmite

MOUNTING HDWR BRACKET SLOTTED

125

Accessories

1. Overview

Resistors Accessories refer to supplementary components designed to enhance the functionality, durability, and integration of resistors in electronic systems. These accessories include mounting brackets, protective casings, thermal management solutions, and connection interfaces. Their importance lies in optimizing resistor performance in harsh environments, ensuring mechanical stability, and facilitating efficient heat dissipation, critical for maintaining circuit reliability in modern electronics.

2. Major Types & Function Classification

TypeFunctional FeaturesApplication Examples
Mounting BracketsSecure mechanical fixation, vibration resistanceIndustrial control panels, automotive ECUs
Thermal Management CoversHeat dissipation fins, flame-retardant materialsHigh-power audio amplifiers, motor drives
Protective EnclosuresIP67-rated sealing, EMI shieldingOutdoor telecom equipment, medical devices
Connection TerminalsSolderable/press-fit interfaces, corrosion resistancePower supply units, battery management systems

3. Structure & Composition

Typical resistor accessories feature modular designs with standardized interfaces. Mounting brackets use CNC-machined aluminum alloys with anodized coatings for corrosion protection. Thermal covers integrate aluminum fins with thermally conductive silicone pads. Protective enclosures employ polycarbonate materials with integrated gaskets. Connection terminals utilize phosphor bronze alloys with gold-plated contact surfaces for low resistance.

4. Key Technical Specifications

ParameterTypical RangeSignificance
Thermal Conductivity1-200 W/m KHeat dissipation efficiency
Operating Temperature-55 C to +155 CEnvironmental stability
Dielectric Strength500V-5kVElectrical isolation
Vibration Resistance10-50GMechanical reliability
IP RatingIP00-IP68Environmental protection

5. Application Fields

Primary industries include:

  • Automotive: Engine control modules, battery management systems
  • Telecommunications: 5G base stations, optical network terminals
  • Renewable Energy: Solar inverters, wind turbine controllers
  • Industrial Automation: PLC systems, motor drives
  • Consumer Electronics: Smartphones, wearable devices

6. Leading Manufacturers & Products

ManufacturerKey Products
TE ConnectivityDeutsch DRC thermal management covers
MolexMicro-Fit 3D connection terminals
YageoPt series precision resistor enclosures
VishayDale HT series mounting brackets

7. Selection Guidelines

Key considerations include: 1) Mechanical compatibility with resistor dimensions, 2) Thermal requirements matching power dissipation, 3) Environmental protection level (IP rating), 4) Material compatibility with PCB soldering processes, 5) Cost-performance balance for production volume.

8. Industry Trends

Current development trends show: 1) Miniaturization through advanced material engineering (e.g., graphene-enhanced composites), 2) Integration of smart sensors in thermal management systems, 3) Adoption of eco-friendly materials meeting RoHS standards, 4) Development of modular designs for rapid assembly in automated production lines, 5) Increased focus on high-reliability solutions for EV and 5G infrastructure applications.

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