Circular Connectors - Housings

Image Part Number Description / PDF Quantity Rfq
CA3100E22-23PYBF80F0

CA3100E22-23PYBF80F0

VEAM

CONN RCPT HSNG MALE 8POS PNL MNT

0

PV76L14-19SW L/C

PV76L14-19SW L/C

VEAM

PV76L14-19SW L/C

1

APD-2CS51-S

APD-2CS51-S

VEAM

CONN RCPT HSG FMALE 51POS PNL MT

0

CA3106E20-16SB15F0F42

CA3106E20-16SB15F0F42

VEAM

CB 9C 7#16 2#12 SKT PLUG

0

TN6S14-0012P1B

TN6S14-0012P1B

VEAM

CONN PLUG HSG MALE 12POS INLINE

0

KPSE01J16-26SF0

KPSE01J16-26SF0

VEAM

CONN RCPT HSG FMALE 26POS INLINE

0

CA02COME22-19SBF80F0

CA02COME22-19SBF80F0

VEAM

CAC 14C 14#16 SKT RECP BOX

0

CA3102E24-11PYBF80F0

CA3102E24-11PYBF80F0

VEAM

CANCA3102E24-11PYBF80F0

39

KPSE00E16-26SF0

KPSE00E16-26SF0

VEAM

CANMS3120E16-26SF0

196

CA3106E10SL-3SB02F0

CA3106E10SL-3SB02F0

VEAM

CONN PLUG HSG FMALE 3POS INLINE

0

CA3106E16S-1SBF80F0

CA3106E16S-1SBF80F0

VEAM

CB 7C 7#16S SKT PLUG

0

CA3102E12SA10SF80F0

CA3102E12SA10SF80F0

VEAM

CONN RCPT HSNG FMALE 4POS PNL MT

43

CIR06F-28-21S-F80-T12-VO

CIR06F-28-21S-F80-T12-VO

VEAM

CONN PLUG HSG FMALE 37POS INLINE

70

KPTC6E20-41P-C-DN

KPTC6E20-41P-C-DN

VEAM

CONN PLUG HSNG MALE 41POS INLINE

0

KPSE00E22-55PYF0

KPSE00E22-55PYF0

VEAM

CONNECTOR

0

KJA0T25W37SNL

KJA0T25W37SNL

VEAM

CONN RCPT HSG FMALE 37POS PNL MT

0

KPTC2E12-10P-C-EX

KPTC2E12-10P-C-EX

VEAM

CONN RCPT HSNG MALE 10POS PNL MT

0

CA3100E18-10PBF80F0

CA3100E18-10PBF80F0

VEAM

CB 4C 4#12 PIN RECP WALL

0

KPSE01E24-61PYF0

KPSE01E24-61PYF0

VEAM

CONN RCPT HSNG MALE 61POS INLINE

0

CA08COM-E14S-1S-B-F42-F0

CA08COM-E14S-1S-B-F42-F0

VEAM

CONN PLUG HSNG FMALE 3POS R/A

0

Circular Connectors - Housings

1. Overview

Circular connectors housings are electromechanical devices designed to protect and organize electrical contacts in circular configurations. They serve as mechanical support structures while providing environmental protection, electrical insulation, and strain relief. These housings are critical components in maintaining signal integrity and power transmission across diverse applications, from industrial automation to aerospace systems.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Metal HousingsHigh durability, EMI/RFI shielding, vibration resistanceMilitary equipment, aerospace systems
Plastic HousingsLightweight, corrosion-resistant, cost-effectiveConsumer electronics, medical devices
Hybrid HousingsCombination of metal/plastic for optimized performanceAutomotive sensors, industrial machinery
High-Density HousingsMiniaturized contact arrangements with advanced insulationTelecom equipment, data centers

3. Structure and Components

Typical circular connector housings consist of: - Shell Body: Cylindrical main structure (metal/plastic) with mounting threads - Contact Cavities: Precision-machined compartments for terminal placement - Sealing System: Integrated gaskets/O-rings for IP65+ protection - Polarization Key: Mechanical feature preventing misalignment - Retention System: Threaded coupling or bayonet mechanisms - Cable Entry: Strain relief provisions with gland seals

4. Key Technical Specifications

ParameterImportance
Current Rating (A)Determines power transmission capacity
Voltage Withstand (V)Ensures dielectric strength
Operating Temperature (-40 C to +125 C)Defines environmental tolerance
Vibration Resistance (10-2000Hz)Crucial for harsh environments
IP Rating (IP67/IP68)Specifies ingress protection level
Contact Retention ForcePrevents accidental disconnection

5. Application Fields

  • Industrial Automation: Robotics, PLC systems
  • Medical Equipment: MRI machines, patient monitoring systems
  • Aerospace: Avionics, flight control systems
  • Telecommunications: 5G base stations, fiber optic equipment
  • Energy: Wind turbines, solar inverters

6. Leading Manufacturers and Products

ManufacturerRepresentative Product
TE ConnectivityDEUTSCH DT series metal housings
AmphenolHermetic circular connector enclosures
MolexT1 Mini sealed automotive housings
Phoenix ContactHeavy-duty QUICKON connectors

7. Selection Guidelines

Key considerations include: - Environmental factors (temperature, moisture, chemicals) - Mechanical requirements (vibration, shock, mating cycles) - Electrical parameters (current/voltage requirements) - Material compatibility (corrosion resistance needs) - Space constraints and mounting options - Cost vs. performance trade-offs Example: For underwater robotics applications, prioritize IP68-rated plastic housings with corrosion-resistant coatings and pressure sealing.

8. Industry Trends

Current development trends include: - Miniaturization for IoT device integration - Advanced polymer composites for weight reduction - Integrated smart sensors in connector housings - Enhanced EMI shielding for 5G applications - Sustainability focus on recyclable materials - Additive manufacturing enabling complex geometries

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