Automotive wiring harness is an essential component in modern-day vehicles. It is a system of wires, connectors, and terminals that transmit electrical signals and power to various parts of the vehicle. The wiring harness connects the different electrical components of the car, such as the engine, lights, sensors, and communication systems, ensuring that they work seamlessly.
The wiring harness is designed to withstand extreme conditions, such as high temperatures, vibrations, and moisture. It is made of high-quality materials that are resistant to wear and tear, and it is tested rigorously to ensure that it meets the required safety and performance standards.
The automotive wiring harness is a complex system that requires specialized knowledge and skills to design, manufacture, and install. It is usually customized to fit the specific requirements of a vehicle, and it is essential to ensure that it is installed correctly to avoid any electrical malfunctions or safety hazards.
In conclusion, the automotive wiring harness is a critical component of modern vehicles that ensures the efficient and safe operation of the electrical systems. It is a testament to the advancements in technology and engineering that have made our cars more reliable, efficient, and comfortable.
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Product |
Main Wire Harness for Low-Speed Vehicle |
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Specification |
Custom Cable & Wire Harness / OEM,ODM |
|
Processing technology |
Crimping, Molding, Forming, Assembly, Anti-static process |
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Connector Option |
(H12402PS-2) Flashboard Terminal Phosphor Bronze Tin-Plated Applicable Wire Diameter 14~18# JCTC P/N 21811T2P-2E; |
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Connector brand |
TE, Molex, Amphenol, LEMO, JST, etc (or other equivalent). |
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Cable |
ISO 13485, ISO14001, ISO9001, IATF 16949(Applying), UL, IPC620, IMDS, ROHS |
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R&D |
Provide complete engineering and design services |
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Certification |
ISO9001, UL, ROHS, IATF 16949(Applying) |
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QC |
Passed ISO 9001:2015 quality control system. All the products are 100% test before delivery. UL factory certificate of compliance. |
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MOQ |
50-200/Trail Order in sample way,no MOQ restrictions |
Low Speed Vehicles (LSVs) used in communities, industrial facilities, resorts, campuses, airports, and logistics environments must meet strict safety, electrical stability, and regulatory compliance requirements. Our custom wire harness for low speed vehicles is CE-certified, ensuring your LSV products comply with international safety standards while delivering long-term durability and consistent performance.
Low Speed Vehicles typically operate in public roads, mixed-traffic zones, and high-duty cycles, where electrical safety is essential.
CE certification ensures that the harness:
Meets EU electrical safety and EMC requirements
Reduces fire and malfunction risk during long-term operation
Ensures stable voltage delivery for all vehicle systems
Helps OEMs enter regulated markets without compliance obstacles
This gives buyers confidence during audits, reduces after-sales risk, and speeds up market approvals.
Our harnesses comply with CE requirements covering:
Electrical insulation performance
Fire-retardant and flame-resistant material standards
EMC and signal interference control
Environmental reliability (humidity, vibration, temperature)
Suitable for electric and hybrid LSV platforms.
LSVs operate in diverse outdoor environments. Our harnesses are engineered with:
UV-resistant & weatherproof insulation
Waterproof and dustproof protective tubing
Corrosion-resistant terminals and connectors
High-flexibility materials for continuous vibration areas
This ensures reliable performance even in rain, dust, heat, and long-hour operation.
Our CE-certified harnesses support the entire vehicle electrical architecture:
Power distribution harness
Battery and BMS wiring
Lighting & signaling circuits
Controller & motor wiring
Dashboard and instrumentation wiring
Brake sensor and accelerator harness
Charging system wiring
Accessories: GPS, USB ports, alarms, AC/DC converters
Ensures the vehicle operates safely and follows regulatory requirements.
We provide full engineering support from concept to production:
Analysis of customer drawings or samples
Route optimization to extend harness lifespan
Selection of certified components & connectors
2D/3D CAD design support
Rapid prototyping with engineering feedback loop
Optimization for manufacturability and installation
This guarantees the harness is fully matched to the LSV chassis, improving both performance and ease of installation.
We follow a structured harness assembly workflow:
Cutting, stripping, and crimping with automated equipment
Manual and semi-automated assembly on customized harness boards
Application of protective sleeves, shrink tubes, spiral wraps
Insertion of pre-crimped terminals into connector housings
Labeling for fast installation and maintenance
Suitable for small–medium volume production, ideal for LSV OEMs.
To ensure CE-level safety consistency, every harness undergoes:
Electrical continuity & insulation testing
High-voltage dielectric strength tests
Pull-force & crimp integrity verification
Heat, humidity & vibration simulation
Visual inspection for routing & termination accuracy
Full batch traceability from raw material to shipment
You receive clear testing documentation and compliance support for audits.
Our CE-certified harnesses are widely used for:
Community and neighborhood electric vehicles (NEV / LSV)
Resort and hotel shuttle vehicles
Industrial logistics carts
Airport ground service vehicles
Utility and maintenance LSVs
Campus and park shuttles
Golf-based LSV platforms
Whether for new vehicle development or replacement harness manufacturing, we provide scalable solutions.
CE-certified materials and manufacturing compliance
15+ years of specialized wire harness engineering
Strong OEM/ODM capability for custom LSV platforms
Complete electrical system integration experience
Fast sampling, stable delivery, and high consistency
Robust outdoor-grade materials and long lifespan design
Looking for a reliable CE certified wire harness for Low Speed Vehicles?
Contact Uniwell for engineering consultation, quotation, or prototype evaluation