Jumper Wire

Image Part Number Description / PDF Quantity Rfq
321070026

321070026

Seeed

JUMPER WIRE F TO F SPLITTABLE

0

PRT-13870

PRT-13870

SparkFun

JUMPER M/M 4" 20AWG 30PCS

0

923351-R

923351-R

3M

JUMPER WIRE ASSORTMENT 35PCS

0

C000034

C000034

Genuino (Arduino)

10 JUMPER WIRE 100MM MALE-MALE

0

0795470007

0795470007

Woodhead - Molex

7 JUMPER CABLE 30/22 AWG GRY

0

C000065

C000065

Genuino (Arduino)

WIRE MALE/FEMALE 10 PCS

0

C000035

C000035

Genuino (Arduino)

10 JUMPER WIRE 100MM FEM-FEM

0

C000038

C000038

Genuino (Arduino)

10 JUMPER WIRE 200MM MALE-MALE

0

C000037

C000037

Genuino (Arduino)

10 JUMPER WIRE 150MM FEMALE

0

C000036

C000036

Genuino (Arduino)

10 JUMPER WIRE 150MM MALE

0

WK-5

WK-5

B&K Precision

JUMPER M/M VARIOUS 24AWG 80PCS

0

C000039

C000039

Genuino (Arduino)

10 JUMPER WIRE 200MM FEM-FEM

0

Jumper Wire

1. Overview

Jumper wires are conductive cables used to establish temporary or permanent electrical connections between components on breadboards, PCBs, or prototyping systems. They eliminate the need for soldering in prototype development, enabling rapid circuit assembly and testing. Their importance in modern electronics lies in accelerating R&D cycles, facilitating modular design, and supporting educational/training applications.

2. Main Types & Functional Classification

TypeFunctional FeaturesApplication Examples
Single-core JumperFixed-length, solid-conductor wire with male/female terminalsArduino prototyping, breadboard circuits
Multi-core RibbonFlexible flat cable with multiple parallel conductorsRaspberry Pi GPIO connections, data buses
Stackable JumperVertical connection design with dual male terminalsShield stacking in microcontroller systems
High-frequency CoaxialShielded construction for signal integrityRF circuit testing, oscilloscope probes
Adjustable LengthTelescopic design with variable length controlField diagnostics, repair work

3. Structure & Composition

Typical jumper wires consist of:

  • Conductor: 22-28 AWG copper core (solid/stranded)
  • Insulation: PVC/PTFE materials (0.6-1.2mm thickness)
  • Terminations: Gold-plated phosphor bronze contacts
  • Color Coding: Standard 9-color system for wire identification
Mechanical specifications include 2.54mm pitch spacing and 0.64mm terminal diameter compliance with IPC-2221 standards.

4. Key Technical Parameters

ParameterImportance
Wire Gauge (AWG)Determines current capacity (300mA-3A range)
Contact ResistanceImpacts signal integrity (<10m critical)
Dielectric StrengthSafety factor (100V-1kV insulation rating)
Temperature RangeOperational limits (-40 C to +105 C standard)
Insertion ForceDurability consideration (0.5-2.0N typical)

5. Application Fields

Primary usage sectors:

  • Electronics R&D: Circuit prototyping, component testing
  • Industrial Control: PLC connectivity, sensor interfacing
  • Telecom: Fiber optic patching, network equipment
  • Education: STEM training kits, laboratory setups
  • Automotive: ECU diagnostics, CAN bus simulation
Case study: Arduino Uno R3 breadboarding requires 40-pin male-to-male jumpers for sensor integration.

6. Leading Manufacturers

ManufacturerRepresentative ProductKey Features
DuPontFCP1 SeriesUL94-V0 insulation, 2000+ mating cycles
MolexPicoBlade 0.8mmSpace-saving 0.8mm pitch design
TE ConnectivityMini50 SeriesHigh-speed signal transmission capability
Seeed StudioGravity JumperMagnetic quick-connect system

7. Selection Guidelines

Key considerations:

  • Electrical Requirements: Current/voltage ratings vs application demands
  • Mechanical Compatibility: Pitch spacing and termination type matching
  • Environmental Factors: Temperature/humidity resistance needs
  • Signal Integrity: Shielding requirements for high-speed applications
  • Cost Efficiency: Batch purchasing vs specialized connector needs
Recommendation: Use 22AWG stranded wire for power circuits (>500mA) and 28AWG for signal lines.

8. Industry Trends

Emerging developments:

  • Micro-miniaturization: 0.4mm pitch jumpers for wearable devices
  • Smart Integration: Jumpers with embedded current sensing
  • Material Innovation: Graphene-coated conductors for EMI reduction
  • Automated Assembly: Robotic-friendly jumper designs
  • Eco-friendly: Halogen-free insulation materials compliance
Market projections indicate 7.2% CAGR growth through 2028, driven by IoT and 5G infrastructure.

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