Modular Connectors - Jacks

Image Part Number Description / PDF Quantity Rfq
1085260000

1085260000

Weidmuller

CONN MOD JACK 8P8C SHIELDED

10

1433900000

1433900000

Weidmuller

RJ45 PCB SOCKET

450

1072900000

1072900000

Weidmuller

CONN MOD JACK 10P0C SHIELDED

10

8946950000

8946950000

Weidmuller

CONN MOD JACK 8P8C SHIELDED

8

1963460000

1963460000

Weidmuller

CONN MOD JACK 8P8C SHIELDED

6

1433810000

1433810000

Weidmuller

IE-PCB-RJ45-THR-C3-180

80120

8952950000

8952950000

Weidmuller

IE-XR-RJ45/RJ45-2

44

8946940000

8946940000

Weidmuller

CONN MOD JACK 8P8C SHIELDED

2080

1433920000

1433920000

Weidmuller

IE-PCB-RJ45-THR-C6-180

36

1012320000

1012320000

Weidmuller

CONN MOD JACK 8P8C SHIELDED

0

1018810000

1018810000

Weidmuller

CONN MOD JACK 8P8C SHIELDED

12

1018820000

1018820000

Weidmuller

CONN MOD JACK 8P8C SHIELDED

0

8808360000

8808360000

Weidmuller

CONN MOD JACK 8P8C SHIELDED

20315

2726010000

2726010000

Weidmuller

SINGLE PAIR ETHERNET PCB PLUG-IN

0

1433910000

1433910000

Weidmuller

IE-PCB-RJ45-THR-C6-90

33

1018830000

1018830000

Weidmuller

CONN MOD JACK 8P8C SHIELDED

910

8946920000

8946920000

Weidmuller

IE-TO-RJ45-C

2440

8808440000

8808440000

Weidmuller

CONN MOD JACK 8P8C SHIELDED

0

1963500000

1963500000

Weidmuller

CONN MOD JACK 8P8C SHIELDED

0

1963700000

1963700000

Weidmuller

CONN MOD JACK 8P8C SHIELDED

0

Modular Connectors - Jacks

1. Overview

Modular connectors-jacks are standardized electro-mechanical interfaces used for connecting cables in telecommunications, data networks, and electronic systems. Their hot-swappable design and standardized dimensions enable rapid deployment and maintenance. These connectors maintain signal integrity while providing mechanical strain relief, playing critical roles in network infrastructure, consumer electronics, and industrial equipment.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
RJ116-position 2-conductor design, voice-grade transmissionResidential telephone lines
RJ458-position 8-conductor, supports up to 10GBASE-T EthernetLAN switches/routers
USB Type-ARectangular interface with 4-24 pins, supports USB 3.2 Gen2Computer peripherals
HDMI19-pin configuration, transmits uncompressed video/audioHome theaters/monitors
Fiber LCDuplex optical interface, supports 100Gbps+ transmissionData center backbone

3. Structure and Components

Typical construction includes: - Insulating housing (high-temp thermoplastic) - Conductive contacts (phosphor bronze with gold plating) - Latch retention mechanism - Wire termination points (IDC or solder) - EMI shielding layer The modular design allows tool-less installation while maintaining mechanical stability through polarization keys and retention clips.

4. Key Technical Specifications

ParameterTypical ValuesImportance
Insertion Loss<0.5dB @100MHzSignal quality preservation
Durability750-2000 mating cyclesLong-term reliability
Contact Resistance10-30m Power transmission efficiency
Insulation Resistance>500M Electrical safety
Operating Temp-40 C to +85 CEnvironmental adaptability

5. Application Fields

  • Telecom: PBX systems, DSL modems
  • IT Infrastructure: Server racks, PoE devices
  • Consumer Electronics: Smart TVs, gaming consoles
  • Industrial: PLC controllers, SCADA systems
  • Automotive: Telematics control units

6. Leading Manufacturers and Products

ManufacturerKey Products
TE ConnectivityCategory 8 RJ45 modules
AmphenolMilitary-spec circular connectors
MolexOptical LC duplex adapters
DelphiAutomotive-grade sealed jacks

7. Selection Guidelines

Key considerations: - Transmission speed requirements (e.g., Cat6a vs Cat8) - Environmental factors (temperature/humidity/vibration) - Mating cycle expectations - Shielding requirements (FTP vs UTP) - Backward compatibility needs - Cost vs performance trade-offs

8. Industry Trends

Development directions include: - 400Gbps+ optical interfaces - 0.8mm pitch miniaturization - Smart connectors with built-in sensors - PoE++ (90W+) capability integration - Bio-based polymer materials adoption The global market is projected to grow at 6.2% CAGR through 2030 driven by 5G and IoT deployments.

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