Single Conductor Cables (Hook-Up Wire)

Image Part Number Description / PDF Quantity Rfq
WH24-07-25

WH24-07-25

NTE Electronics, Inc.

WIRE-300VHU 24GA VIO STND

15

WH20-05-25

WH20-05-25

NTE Electronics, Inc.

WIRE-300VHU 20GA GRN STND

34

WA16-08-30

WA16-08-30

NTE Electronics, Inc.

WIRE-16GS GRAY-STRANDED

2

WH24-08-25

WH24-08-25

NTE Electronics, Inc.

WIRE-300VHU 24GA GRY STND

11

WH16-03-1000

WH16-03-1000

NTE Electronics, Inc.

WIRE-300V 16GA OR STND

1

WHS20-03-1000

WHS20-03-1000

NTE Electronics, Inc.

WIRE-300V 20GA OR SOLID

1

WH20-06-25

WH20-06-25

NTE Electronics, Inc.

WIRE-300VHU 20GA BLU STND

60

WH612-00-25

WH612-00-25

NTE Electronics, Inc.

WIRE-600VHU 12GA BLK STND

2

WA08-03-10

WA08-03-10

NTE Electronics, Inc.

AUTO-8 GA ORANGE STRANDED

3

WH18-04-1000

WH18-04-1000

NTE Electronics, Inc.

WIRE 300VHU 18GA YEL STND

2

WH616-05-25

WH616-05-25

NTE Electronics, Inc.

WIRE-600VHU 16GA GRN STND

11

WHS22-08-1000

WHS22-08-1000

NTE Electronics, Inc.

WIRE-300VHU 22AWG GRY SLD

3

WH18-07-100

WH18-07-100

NTE Electronics, Inc.

WIRE-300VHU 18GA VIO STND

16

WA08-01-100

WA08-01-100

NTE Electronics, Inc.

AUTO-8 GA BROWN STRANDED

1

WA14-03-100

WA14-03-100

NTE Electronics, Inc.

AUTO-14GA ORANGE-STRANDED

3

WH16-00-25

WH16-00-25

NTE Electronics, Inc.

WIRE-300VHU 16GA BLK STND

20

WH26-00-25

WH26-00-25

NTE Electronics, Inc.

WIRE-300VHU 26GA BLK STND

55

WH22-06-25

WH22-06-25

NTE Electronics, Inc.

WIRE-300VHU 22GA BLU STND

48

WH612-02-500

WH612-02-500

NTE Electronics, Inc.

WIRE-600V 12GA RED STND

1

WA16-01-100

WA16-01-100

NTE Electronics, Inc.

WIRE-16GA BRN-STRANDED

2

Single Conductor Cables (Hook-Up Wire)

1. Overview

Single conductor cables, also known as hook-up wires, are insulated electrical conductors used for low-current signal and power transmission in electronic devices. They serve as fundamental components for internal wiring in PCBs, appliances, and control systems. Their importance lies in enabling reliable electrical connections while maintaining space efficiency and design flexibility in modern electronics.

2. Main Types and Functional Classification

Type Functional Characteristics Application Examples
PVC-Insulated Wire Cost-effective, flexible, 105 C temperature rating Consumer electronics, HVAC systems
Silicone Rubber Insulated Wire High flexibility (-55 C to 200 C), excellent thermal resistance Industrial ovens, medical devices
PTFE/Teflon Insulated Wire Chemical resistance, 200 C operational stability Aerospace sensors, chemical processing equipment
High-Temperature Wire Special polymer jackets for 150-300 C environments Automotive engine compartments, lighting ballasts
Shielded Hook-Up Wire Braided/aluminum foil shielding for EMI protection Telecommunications equipment, measurement instruments

3. Structure and Composition

Typical construction includes:

  • Conductor: Annealed copper (most common), aluminum, or tinned copper (stranded or solid)
  • Insulation: Thermoplastic (PVC, polyethylene), thermoset (silicone rubber), or fluoropolymer materials
  • Shielding: Optional braided copper/aluminum foil layer for EMI protection
  • Jacket: Abrasion-resistant outer layer (PVC, polyurethane) in specific variants

Stranded conductors (e.g., 7/30, 19/34 stranding) optimize flexibility while maintaining conductivity.

4. Key Technical Specifications

Parameter Description Importance
Conductor Gauge (AWG/mm ) Defines current-carrying capacity (e.g., 30 AWG to 10 AWG) Determines power transmission capability
Insulation Thickness 0.1-0.8 mm depending on voltage rating Ensures dielectric strength and safety
Temperature Range -65 C to 300 C operational limits Dictates environmental suitability
Voltage Rating 30V to 1000V depending on insulation material Safety and insulation performance indicator
Bending Life 500-50,000 flex cycles (MIL-W-5088L standard) Crucial for dynamic applications
Shielding Effectiveness 60-100 dB coverage (100 kHz-1 GHz) EMI/RFI interference reduction metric

5. Application Fields

  • Consumer Electronics: PCB interconnects in smartphones, printers, and home appliances
  • Automotive: Sensor wiring, ABS system connections, battery management systems
  • Medical: ECG machine internal wiring, diagnostic equipment signal transmission
  • Industrial: PLC cabinet wiring, robotics joint connections
  • Aerospace: Avionics harnesses, flight control system terminations

6. Leading Manufacturers and Products

Manufacturer Representative Product Key Features
Alpha Wire (Alpha Technologies) EZ-Hook 1385 Series 105 C PVC insulation, UL 1015/CSA Type TEW certification
Lapp Group UNITRONIC LiYY Oil-resistant PVC jacket, 300/500V rating
Panduit Corp. Panfluor 200 Series PTFE-insulated, meets FAA 25.853 flammability requirements
TE Connectivity Raychem Hook-Up Wire Heat-shrinkable insulation, aerospace qualified
Sumitomo Electric Industries AeroElite Series Lightweight composite insulation for aircraft wiring

7. Selection Recommendations

Key considerations:

  • Operating temperature range vs material thermal stability
  • Voltage/current requirements vs conductor cross-section
  • Mechanical stress environment (flexing, vibration)
  • Regulatory certifications (UL, CSA, MIL-SPEC)
  • Chemical exposure resistance (oil, coolant, cleaning agents)
  • EMI sensitivity requiring shielded variants

Example: Automotive engine control units typically require 150 C-rated silicone-insulated wires with vibration-resistant stranded conductors.

8. Industry Trend Analysis

Current development trends include:

  • Miniaturization: 32 AWG+ ultra-fine wires for wearable electronics
  • Material innovation: Halogen-free flame-retardant compounds
  • High-speed capability: Controlled impedance designs for data transmission
  • Automated manufacturing: Laser-marking and precision stripping compatibility
  • Sustainability focus: Recyclable insulation materials and lead-free production

The global hook-up wire market is projected to grow at 5.2% CAGR through 2027, driven by EV and IoT device demand according to MarketsandMarkets research.

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