Multiple Conductor Cables

Image Part Number Description / PDF Quantity Rfq
30-01082

30-01082

Tensility International Corporation

CBL 8CON 26AWG SHLD WHT 153M

0

31-00051

31-00051

Tensility International Corporation

CBL COIL SHLD 4C 28AWG 1115MM

460

30-01160

30-01160

Tensility International Corporation

CBL 7CON 30AWG SHLD WHT BIO 153M

0

30-00505

30-00505

Tensility International Corporation

CABLE 5COND 28AWG WHT 1=153M

0

30-01067

30-01067

Tensility International Corporation

CBL 7CON 24AWG SHLD BLK 153M

8

30-01084

30-01084

Tensility International Corporation

CBL 8CON 28AWG SHLD WHT 153M

0

30-01536

30-01536

Tensility International Corporation

CBL 10COND 24AWG SHLD 153M MPPE

10

30-01175

30-01175

Tensility International Corporation

CBL 8CON 30AWG SHLD WHT BIO 153M

0

30-01178

30-01178

Tensility International Corporation

CBL 8CON 32AWG SHLD WHT BIO 153M

0

30-01444

30-01444

Tensility International Corporation

CBL 4COND 28AWG SHLD 153M MPPE

8

30-00446

30-00446

Tensility International Corporation

CBL 4CON 32AWG SHLD WHT 305M BIO

4

31-00108

31-00108

Tensility International Corporation

CBL COIL SHLD 8C 18AWG 1115MM

0

30-01302

30-01302

Tensility International Corporation

CBL 7CON 20AWG 153M WHT

0

30-00536

30-00536

Tensility International Corporation

CABLE 10COND 28AWG GRY 1=153M

0

31-00132

31-00132

Tensility International Corporation

CBL COIL SHLD 9C 22AWG 1115MM

0

30-00532

30-00532

Tensility International Corporation

CABLE 10COND 24AWG WHT 1=153M

0

30-01050

30-01050

Tensility International Corporation

CBL 6CON 18AWG SHLD WHT 153M

0

30-01130

30-01130

Tensility International Corporation

CBL 5CON 30AWG SHLD WHT BIO 153M

0

30-00523

30-00523

Tensility International Corporation

CABLE 8COND 28AWG WHT 1=153M

0

31-00127

31-00127

Tensility International Corporation

CBL COIL SHLD 9C 18AWG 2230MM

0

Multiple Conductor Cables

1. Overview

Multiple Conductor Cables (MCC) are composite cable structures containing two or more individually insulated conductors enclosed within a common jacket. These cables enable simultaneous transmission of power, data, and control signals in complex systems. Their modular design optimizes space utilization while maintaining signal integrity, making them essential in industrial automation, telecommunications, and energy distribution systems.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Control CablesLow capacitance, high flexibility, 300-1000V ratingPLC systems, factory automation
Power CablesLarge cross-section conductors, thermal-resistant insulationMachinery power supply, HVAC systems
Data Communication CablesTwisted pair configurations, 100 impedanceEthernet networks, fieldbus systems
Signal CablesShielded designs, noise suppressionSensor networks, instrumentation

3. Structure and Composition

Typical construction includes:

  • Conductors: Annealed copper or aluminum (solid/stranded), 0.14-10mm cross-section
  • Insulation: PVC, XLPE, or FEP materials with 300% elongation
  • Shielding: Aluminum-polyester foil (100% coverage) or braided copper (85% coverage)
  • Jacket: Flame-retardant PVC or LSZH compounds (0.8-3.0mm thickness)

Layered design prevents crosstalk between conductors while maintaining mechanical durability (20N/mm tensile strength).

4. Key Technical Parameters

ParameterTypical RangeSignificance
Conductor Count2-104 conductorsDetermines system integration density
Voltage Rating300V-2000VDefines operational safety margin
Temperature Range-40 C to +125 CEnvironmental adaptability
Shielding Effectiveness60-100dBEMI protection level
Bending Radius7.5 OD to 15 ODInstallation flexibility

5. Application Areas

Primary industries utilizing MCC:

  • Industrial Automation: Robotic arms, CNC machines
  • Transportation: Rail vehicle control systems
  • Energy: Wind turbine pitch control systems
  • Telecommunications: 5G base station interconnects

Case Study: Automotive production lines use 24-conductor control cables to synchronize robotic welding stations with <0.1ms latency.

6. Leading Manufacturers

ManufacturerKey ProductsSpecialization
LegrandOkonite Multi-ConductorBuilding automation solutions
Belden8760 DataTuffIndustrial Ethernet cables
Prysmian GroupFire resistant Ecos ZEnergy sector applications
Alpha Wire3279 UltraFlexHigh-flex robotics cables

7. Selection Guidelines

Key considerations:

  • Current carrying capacity vs. conductor size (I = 3.2 Amm for Cu)
  • Chemical resistance requirements (oil/grease exposure)
  • Signal transmission requirements (CAT5e/CAT6 data rate support)
  • Regulatory compliance (UL/CSA/IEC standards)
  • Mechanical stress factors (vibration, bending cycles)

Recommend conducting thermal cycling tests (-20 C to +85 C) for critical applications.

8. Industry Trends

Emerging developments include:

  • Hybrid cables integrating fiber optics and power conductors
  • Nano-coated conductors for 50% weight reduction
  • Smart cables with embedded temperature/sensor monitoring
  • Halogen-free materials meeting IEC 60754-1 standards
  • Miniaturization trend: 0.08mm micro-conductors in medical cables

Market forecasts indicate 6.2% CAGR through 2030 driven by Industry 4.0 adoption.

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