Heavy Duty Connectors - Inserts, Modules

Image Part Number Description / PDF Quantity Rfq
1605255

1605255

Phoenix Contact

INSERT MALE 24POS+1GND CLAMP

0

1407738

1407738

Phoenix Contact

HC-B 24-I-PT-M-48

47

1584923

1584923

Phoenix Contact

INSERT FEMALE 16POS+1GND CRIMP

0

1584981

1584981

Phoenix Contact

INSERT FEMALE 24POS+1GND CRIMP

0

1423825

1423825

Phoenix Contact

I/O MODULES HC-B16-I-TPT-M-32

0

1419896

1419896

Phoenix Contact

I/O MODULES

0

1648474

1648474

Phoenix Contact

INSERT FEMALE 24POS TERM BLOCK

0

1584101

1584101

Phoenix Contact

INSERT FEMALE 72POS+1GND CRIMP

0

1648024

1648024

Phoenix Contact

INSERT MALE 6POS+1GND TERM BLOCK

0

1648096

1648096

Phoenix Contact

INSERT MALE 16POS TERMINAL BLOCK

0

1418626

1418626

Phoenix Contact

INSERT MALE 12POS CRIMP

0

1676996

1676996

Phoenix Contact

INSERT MALE 10POS CRIMP

0

1417307

1417307

Phoenix Contact

MODULE D-SUB FEMALE 2POS SCREW

20

1406533

1406533

Phoenix Contact

HC-HS06-I-UT-F 7-12

3

1584350

1584350

Phoenix Contact

INSERT MALE 8POS+1GND CRIMP

0

1636321

1636321

Phoenix Contact

INSERT FEMALE 8+24POS+1GND CRIMP

0

1648090

1648090

Phoenix Contact

INSERT FMALE 16P+1GND TERM BLOCK

3

1884775

1884775

Phoenix Contact

INSERT W/O CONTACTS 65POS CRIMP

6

1414360

1414360

Phoenix Contact

MODULE MALE 2POS CRIMP

0

1423019

1423019

Phoenix Contact

CONTACT INSERT, SIZE: B16, NUMBE

37

Heavy Duty Connectors - Inserts, Modules

1. Overview

Heavy duty connectors inserts and modules are specialized electromechanical components designed to establish robust electrical connections in demanding environments. These systems provide modular solutions for power transmission, signal routing, and data communication in industrial and infrastructure applications. Their importance lies in enabling reliable connectivity in harsh conditions involving high currents, extreme temperatures, vibration, and contamination.

2. Major Types & Functional Classification

TypeFunctional FeaturesApplication Examples
Modular Insert SystemsCustomizable contact arrangements, hot-swappable designIndustrial control cabinets, automated machinery
High-Power ModulesRated for >100A currents, integrated cooling channelsElectric vehicle charging stations, factory automation
Signal Transmission InsertsShielded contacts for <10Gbps data ratesSmart grid monitoring systems, robotics
Hybrid Power-Signal ModulesCombined power and fiber optic transmissionWind turbine pitch control, mining equipment

3. Structural Composition

Typical construction includes:

  • Durable thermoplastic or metal housing (IP65-IP69K rating)
  • Copper alloy contact elements with gold/silver plating
  • Integrated locking mechanisms (screw, bayonet, or push-pull)
  • Modular frame supporting mixed contact types
  • Environmental seals (EPDM or silicone rubber)

4. Key Technical Specifications

ParameterImportance
Current Rating (10-2000A)Determines power transmission capacity
Voltage Range (24V-10kV)Defines insulation requirements
Contact Resistance (<1m )Impacts energy efficiency and heat generation
Operating Temperature (-40 C to +125 C)Dictates environmental suitability
Mating Cycles (500-10,000)Determines service life and reliability

5. Application Fields

Primary industries include:

  • Industrial Automation: PLC systems, CNC machines
  • Energy: Wind turbines, solar inverters
  • Transportation: Rail traction systems, e-mobility charging
  • Heavy Machinery: Excavators, mining equipment
  • Marine: Offshore platform systems, shipboard power

6. Leading Manufacturers & Products

ManufacturerRepresentative Product
TE ConnectivityDEUTSCH HC Series High-Current Connectors
Amphenol IndustrialMAXdur Hybrid Power/Sig nal Modules
Phoenix ContactHeavycon Modular Insert Systems
Weidm llerHA-Modular Hybrid Connection Technology

7. Selection Guidelines

Key considerations:

  1. Calculate maximum current/voltage requirements with safety margins
  2. Assess environmental factors (temperature, vibration, chemicals)
  3. Verify IP rating for ingress protection
  4. Evaluate mating cycle requirements
  5. Check industry-specific certifications (UL, CSA, IEC standards)
  6. Consider modular expandability for future upgrades

8. Industry Trends

Current development trends include:

  • Miniaturization while maintaining high current capacity
  • Integration of smart sensing capabilities
  • Adoption of fiber-optic hybrid transmission
  • Increased use of corrosion-resistant composite materials
  • Development of quick-connect systems for reduced downtime

Market growth is driven by electrification in industrial sectors and the rise of renewable energy systems, with a projected CAGR of 6.2% through 2028 (Source: MarketsandMarkets).

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