Heavy Duty Connectors - Housings, Hoods, Bases

Image Part Number Description / PDF Quantity Rfq
09620030801

09620030801

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CONN BASE SIDE ENTRY SZ3A

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19370031252

19370031252

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CONN HAN 3M-ASGW-QB-M20

9

09200100540

09200100540

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CONN HOOD SIDE ENTRY SZ10A PG16

1

19430060297

19430060297

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HAN-ECO 6B SURFACE MOUNT HOUSING

4

09302100305

09302100305

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HAN 10B-HMC-AGG-LB

10

09300060293

09300060293

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CONN BASE SIDE ENTRY SZ6B PG29

1

19300100526

19300100526

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CONN HOOD SIDE ENTRY SZ10B M25

8

09300241301

09300241301

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HAN 24B-BASE PNL 2 LEVERS IP67

0

09628102301

09628102301

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10B EMC BULKHEAD HOUSING, DOUBLE

1

09370061441

09370061441

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CONN HOOD TOP ENTRY SZ6B PG16

9

19620400542

19620400542

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CONN HOOD SIDE ENTRY SZ16B M32

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19411060232

19411060232

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CONN BASE SIDE ENTRY SZ6B M32

15

19300161752

19300161752

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CONN HOOD CPLNG BOTTOM SZ16B M32

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19200160291

19200160291

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CONN BASE SIDE ENTRY SZ16A M25

4

09300160440

09300160440

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CONN HOOD TOP ENTRY SZ16B PG21

25

19300060296

19300060296

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CONN BASE SIDE ENTRY SZ6B M25

23

19463100445

19463100445

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HAN-ECO 10A HOOD TOP ENTRY M20 W

10

09628062301

09628062301

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6B EMC BULKHEAD HOUSING, SINGLE

1

19300160527

19300160527

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CONN HOOD SIDE ENTRY SZ16B M32

6

09300240540

09300240540

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CONN HOOD SIDE ENTRY SZ24B PG21

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Heavy Duty Connectors - Housings, Hoods, Bases

1. Overview

Heavy duty connectors' housings, hoods, and bases are critical mechanical components designed to protect electrical connections in harsh environments. These elements provide structural support, environmental sealing, and safety shielding for connectors used in industrial, transportation, and energy systems. Their importance has grown with advancements in automation, renewable energy systems, and electric vehicle infrastructure.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Metallic HousingsHigh mechanical strength, EMI shielding, corrosion resistanceIndustrial control cabinets
Polymer HousingsLightweight, chemical resistance, UV stabilitySolar power inverters
Modular BasesInterchangeable mounting patterns, tool-less assemblyFactory automation systems
Explosion-proof HoodsPressure containment, flame path controlPetrochemical plant equipment

3. Structure and Composition

Typical construction includes: - Outer shell (die-cast aluminum, stainless steel, or reinforced thermoplastics) - Sealing interfaces (EPDM rubber gaskets, silicone O-rings) - Mounting features (din-rail clips, threaded inserts) - Cable entry systems (PG/NPT threaded ports) - Safety interlocks (mechanical keying systems)

4. Key Technical Specifications

ParameterImportance
IP68/IP69K ratingProtection against dust and high-pressure water ingress
Vibration resistance (MIL-STD-202)Reliability in transportation applications
Operating temperature (-40 C to +125 C)Performance in extreme climates
Material flammability (UL94 V-0)Safety compliance in electrical systems
EMI shielding effectiveness (40-100dB)Signal integrity preservation

5. Application Areas

  • Energy: Wind turbine converters, substation equipment
  • Transportation: Locomotive control systems, EV charging stations
  • Manufacturing: Robotic welding cells, CNC machinery
  • Infrastructure: Smart grid devices, outdoor telecom enclosures

6. Leading Manufacturers and Products

ManufacturerRepresentative Product
TE ConnectivityDEUTSCH DT series metal housings
Amphenol IndustrialSSX explosion-proof connector bodies
MolexMICRO-CLIK modular base systems
Weidm llerOMNIMATE PCB mounting bases

7. Selection Recommendations

Key considerations: - Environmental factors (temperature, chemical exposure) - Mechanical load requirements (cable strain relief capacity) - Regulatory compliance (ATEX, IECEx for hazardous locations) - Service accessibility (quick-disconnect features) - Cost lifecycle analysis (maintenance frequency impact)

8. Industry Trends

Emerging developments include: - Integration of smart sensors in connector housings - Development of bio-based polymer materials - Standardization of hybrid power/data connector modules - Adoption of additive manufacturing for complex geometries - Increased demand for hydrogen fuel cell infrastructure compatibility

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