Phone

    00852-6915 1330

Automotive Connectors Basic and Performance Standards Overview

  • Contents

Introduction

Automotive connectors are a component that very common for electronic engineering technicians. Its function is very simple: it sets up a bridge of communication between the blocked or isolated circuits in the circuit, so that the current flows and the circuit realizes the predetermined function. The form and structure of automotive connectors are ever-changing. They are mainly composed of four basic structural components, namely: contacts, shells (depending on the types), insulators, and accessories.

Common Automotive Electrical Connections

Catalog

Introduction

Ⅰ Automotive Connectors

Ⅱ Basic Structure

Ⅲ Design Criteria

Ⅳ Automotive Connector Development Trends

Ⅴ Connector Selection

Ⅵ Performance Standard for Automotive Electrical Connectors

Ⅶ FAQ

Ⅰ Automotive Connectors

There are nearly 100 types of connectors used in general automobiles, and there are hundreds of connectors used in a single model. As people have higher and higher requirements for safety, environmental protection, comfort, and intelligence in automobiles, the application of automotive electronic products is increasing, which make the number of automotive connector applications increase.

automotive connectors type

Figure 1. Automotive Connector Type

Ⅱ Basic Structure

The four basic structural components of automotive connectors, it is these four basic structural components that enable automotive connectors to act as a bridge to make cars run stably.
First, the contact piece is the core part of the automobile connector to complete the electrical connection function. Generally, a contact pair is composed of a male contact piece and a female contact piece, because the electrical connection is completed by the insertion of two parts.
The male contact is a rigid part, and its shape is cylindrical (round pin), square column (square pin) or flat (insert). The male contacts are generally made of brass and phosphor bronze. The female contact piece is the jack, which is the key part of the contact pair. It relies on the elastic structure to elastically deform when it is inserted into the pin to generate elastic force to form close contact with the male contact piece to complete the connection. There are many types of jack structures, including cylindrical type (split slot, necking), tuning fork type, cantilever beam type (longitudinal slotting), folding type (longitudinal slotting), box type (square jack) and hyperboloid wire spring jacks, etc.
Second, the shell, is the outer cover of the automotive connector. It provides mechanical protection for the built-in insulating mounting plate and pins, and provides alignment when the plug and socket are inserted, thereby fixing the connector to the device.
Third, insulators, are also often referred to as automobile connector bases or inserts. Its function is to arrange the contacts according to the required position and spacing, and to ensure the insulation performance with the shell. Good insulation resistance, withstand voltage performance and ease of processing are the basic requirements for selecting insulating materials to be processed into insulators.
Fourth, accessories, are divided into the structural part and the installation part. Structural accessories such as retaining rings, positioning keys, positioning pins, guide pins, coupling rings, cable clamps, sealing rings, gaskets, etc. Mounting accessories such as screws, nuts, spring rings, etc. Most of the accessories have standard parts and general parts.

 

Ⅲ Design Criteria

With the rapid development of the automobile industry, various functional parts and various components on the automobile are constantly developing in the direction of intelligence, refinement and reliability. The structural design, appearance design and material of automobile connectors are also proposed. higher requirement. Automotive connectors must meet the USCAR-20 standard, which is the performance standard of automotive electrical connector systems. It is necessary to stipulate that the electrical connector contact surface of automotive connectors should always be reliable throughout the service cycle, including the following factors:
1) The material of the connector contacts is stable and reliable.
2) Positive force stability.
3) The voltage and current of the circuit are stable.
4) The temperature requirements are within the specified range, including the surrounding temperature and its own temperature rise.
5) Better robustness.
6) It must be the same as the connector used for high-speed and long-distance communication computers, and the automotive connector must be able to work reliably under harsh conditions.
7) Connector insertion force: below 20.5kg
8) Connector retention force: 2.5kg or more
9) Heat resistance: -40~120℃

automotive

Figure 2. Automotive Connectors

The "Miniaturization", "High Speed" and "Intelligence" of connector products are the trends of future development. The future technological innovation of the industry is mainly concentrated in the following directions:
1) Miniaturization Development
This technology is mainly developed for the miniaturization trend of connectors, and can be applied to micro-miniature connectors below 0.3mm, which belongs to the new varieties of MINI USB series products. It can be used for multi-contact expansion card slot connectors, which can meet and exceed the strict requirements of multi-contact surface mount technology butt joint coplanarity, with high accuracy and low cost.
2) Wireless Transmission
The high-frequency and high-speed wireless transmission of connector technology is mainly aimed at a variety of wireless device communication applications and has a wide range of applications.
3) Simulation Application Technology
It is based on a variety of disciplines and theories, using computer and its corresponding software such as AutoCAD, Pro/E program stress analysis software as tools, through the establishment of product models and corresponding boundary conditions, to its mechanical, electrical, high-frequency simulation analysis and confirmation of other performances, thereby reducing the cost of product development failure caused by factors such as material selection and unreasonable structure, improving the development success rate, and helping to provide support for the realization of complex system applications for products.
4) Connector Intelligence Technology
This technology is currently mainly used in DC series power connector products. Intelligent signal detection can be performed before power transmission to ensure that the positive and negative poles are turned on and the power is turned on after the plug is inserted in place. In the future, enterprises will need to develop similar intelligent technologies for other products because of the adverse consequences of arc damage and burn-in caused by conductive contact.
5) Precision connector technology
Precision connectors involve many aspects such as product design, process technology and quality control technology. The main technologies include the following aspects:
a. Precision mold processing technology: Adopt CAD, CAM and other technologies, introduce high-precision processing equipment in the industry, and use personnel production experience and advanced equipment and technical means to achieve high-precision high-quality mold products.
b. Precision stamping and injection molding technology: realize precise, efficient and stable all-round control and perfect surface quality of various stamping parts and injection molding parts to ensure product quality.
c. Automated assembly technology: Through the application of precision control technology, semi-automatic testing machine technology, etc., the problem of manual operation of precision products is overcome and the core competitiveness is improved.
6) Manufacturing Process Research
The competitiveness of products depends to a certain extent on the level of manufacturing technology. Continuously developing new manufacturing processes and improving existing production and processing technologies can greatly improve the manufacturing efficiency and quality assurance capabilities of products.
a. Fine manufacturing process: This process is mainly aimed at technologies such as small spacing and thin thickness. Some companies have carried out research on the process of connectors with a spacing of less than 0.4mm. This type of technology can ensure that the company reaches the advanced level of the international industry in the field of ultra-fine manufacturing.
b. Integrate development technology of light source signal and electromechanical structure. It can be applied to audio connectors placed in electronic components. By adding IC, LED and other electronic components to the audio connectors, which can also transmit analog signals and the function of digital signal. It breaks through the current design of audio connector conduction transmission in the form of mechanical contact.
c. Low temperature and low pressure molding process technology. The sealing and physical and chemical properties of the hot-melt material are used to achieve the functions of insulation and temperature resistance. After packaging, the wire protects the welding point from being pulled by external forces, and the packaging of the DC connector body and the wire has a insulation, temperature resistance, impact resistance and other functions ensure product quality and reliability, and will continue to be developed and applied in different products in the future.

automotive connectors

Figure 3. Automotive Connectors

Ⅴ Connector Selection

1) Electrical Factor
Current requirements: high current, low current, signal level; 
Steady state, cyclic, transient.
They determine the type of terminal/size of contact segment/plating (0.64mm to 8.0mm pin and male terminal).
Wire diameter/insulation requirements: voltage drop and/or corrosion resistance, which determine the center distance of the connector.
2) Location/Environment
Temperature: Engine compartment – sealed, ambient temperature >105℃; vibration, fluid compatibility, passenger compartment – unsealed, ambient temperature <85℃.
Sealing: Potential for high pressure jet/splash, potential for immersion, humidity; fluid type, sealed or not for device connectors.
3) Standard
Standards: Customer Standards
Institutional Standards
Domestic Standards
International Standards
Connector performance test requirements are included in system-level specifications. For GM, Ford and Chrysler are usually USCAR specifications, that is, engine-related applications have relatively high vibration requirements. Other OEMs generally have their own standards (similar to USCAR). What’s more, equipment-side suppliers are responsible for the performance of mating-side connectors.
4) Customer Preference
Preferred product strategy: Reduce cost of connector systems with different methods:
Ford: Design competition for door connectors.
Ford: Prefer terminal design/supplier (focus on contact interface).
General: Prefer the terminal design (focus on the hole position of the connector).
Chrysler: Strategies for favoring terminal/plastic Part suppliers.
5) Regional preference
North America: USCAR Drawing/Performance/Design Criteria —Tangless Terminals, TPA, CPA regulations. In many instances the harness supplier has a significant influence.
Europe: Design influence of contact contacts/development with major OEMs; preference for two-piece contacts, even if cost pressures and North American porting operations force OEMs to consider U.S technology, that is, accepting Tangled contacts. Long-term relationships between OEMs and suppliers.
Asia: Traditionally influenced by Toyota. Focus on assembly ability (ergonomics) that affects quality assurance; North America influences China to change the status, like low-cost solutions.
6) Physical factors
Size, number of circuits, mating position, wire harness docking or equipment connection, mechanical main features: levers, bolts; manual docking capability; multiple types of connectors for high input/output applications.
7) Assembly
Wire Harness: Insertion force of connector
Visual, audible and tactile operational feedback for users.

Terminals & Connectors

Figure 4. Terminals & Connectors

Ⅵ Performance Standard for Automotive Electrical Connectors

For a connector, the specification parameters such as the ambient temperature, current carrying capacity, protection level, anti-vibration level, etc. will be defined in its specifications at the beginning of research and development, because when the connector is selected according to different requirements. The following are three most widely used standards USCAR-2-6, QC/T1067-2017 and GMW3191-2012.
🔺QC/T-1067 Temperature Classification

Class

Ambient Operating Temperature

Typical Installation Position

A

-40~85℃

Passenger compartment (Not recommended)

B

-40~100℃

Passenger compartment

C

-40~125℃

On engine

D

-40~150℃

On engine (hot locations)

E

-40~175℃ and above

Negotiate

 

🔺QC/T-1067 Vibration Classification

Class

Typical Installation Position

V1

On elastic parts of the body but not to the engine

V2

On engine but not to heavily vibrating parts

V3

Components subject to serve vibration

V4

Components subject to extreme vibration

V5

On Wheel

 

🔺QC/T-1067 Sealing Classification

Class

Description

Typical Installation Position

S1

Unsealed

Passenger compartment or trunk

S2

Sealed

Exposed areas

S3

Sealed (with high pressure spray)

Exposed areas (with high pressure spray)

 

🔶GMW-3191 Temperature Class

Class

Ambient Operating Temperature

Typical Installation Position

1

-40~85℃

Passenger compartment or trunk

2

-40~100℃

Underhood, chassis

3

-40~125℃

On engine, transmission

4

-40~150℃

On engine (hot locations)

5

Per connector CTS

Per CTS

GTS=Component Technical Specification

 

🔶GMW-3191 Vibration Class

Class

Typical Installation Position

1

On body or chassis

2

On engine

3

On wheel, Unsprung Mass

4

Severe applications (e.g., ECU, Throttle Body, EGR)

5

Transmission (internal and external)

ECU=Engine Control Unit, EGR=Exhaust Gas Recirculation

 

🔶GMW-3191 Sealing Class

Class

Description

Typical Installation Position

1

Unsealed

Unsealed Passenger Compartment or trunk

2

Submersion Sealed

Underhood or exposed areas, including door

3

High Pressure Spray Protected

Exposed areas where high pressure spray is expected

 

🔻USCAR-2 Temperature Classification

Class

Ambient Operating Temperature

Typical Application

T1

-40~85℃

T1 is not recommended for new applications

T2

-40~100℃

Typical suitable for use in passenger component

T3

-40~125℃

Typical suitable for use in engine component

T4

-40~150℃

Needed for some on-engine applications near hot components

T5

-40~175℃

For use as needed

 

🔻USCAR-2 Vibration Classification

Class

Common Name

Typical Application

Other Requirements Met

V1

Chassis Profile

Components on sprung portions of vehiele not coupled to Engine

None

V2

Engine Profile

Components coupled to Engine with no severe vibration possible

Pass on V2 - pass also for V1

V3

Severe On-Engine

Components subject to serve vibration

Pass on V3 - pass also for V1 and V2

V4

Extreme Vibration

Used as needed to correlate to extreme vibration areas

Pass on V4 - pass also for V1 and V2 and V3

V5

Unsprung

Component Wheel-mounted components

None

 

🔻USCAR-2 Sealing Classification

Seal Class

Common Name

Typical Application

S1

Unsealed

S1 is suitable for use in passenger components or other dry areas on a vehicle such as the trunk

S2

Sealed

S2 (meets requirements of 5.9.7) is for exposed locations

S3

Sealed (with high pressure spray)

S3 is for exposed locations. It meets Sections 5.9.7 plus 5.6.7; S3 is applications when robustness to direct splash is needed


Regarding the vibration test, the main purpose is to check whether the performance of the connector system under the simulated actual vehicle vibration conditions meets the requirements. In the case of vibration or in shock, it will cause the coating wear of the terminal contact surface, the positive pressure attenuation, the failure of the mechanical system performance of the supporting plastic material, etc. Therefore, it is necessary to continuously monitor the contact resistance in the vibration experiment and ensure that it does not exceed 7Ω (or 1Ω) in the line for more than 1 microsecond. According to the definition and analysis of the connector using environment through the above different standards, it is necessary to understand that the use position, the temperature level, vibration level, and protection level should be considered to make the best choice.

 

Ⅶ FAQ

1. What are connectors in cars?
Connectors used in automotive applications enable everything from stereo systems to drivetrains. As these systems become more connected, more automated, and more energy-efficient, they require connectors that can deliver high-speed connectivity in rugged, lightweight, and easy-to-install designs.

2. How do I choose a car connector?
There are several criteria to consider when selecting electrical interconnect components, including:
Current rating (current density)
Connector size (circuit density)
Engagement force
Wire size
Configuration and circuit size
Operating voltage
Agency approvals
Price per circuit

3. What are the different types of automotive electrical connectors?
Automotive Terminals
Contacts
Crimp Wire Pins, Tabs & Ferrules
Foil Terminals
Interconnect Devices
Knife Disconnects
Magnet Wire Terminals
PCB Terminals

4. How many connectors does a car have?
Today, there are an average of 274 connectors in a vehicle.

5. Are all car stereo connectors the same?
All aftermarket car stereos can use the same car stereo wiring harness, but it all depends on what the owner of the vehicle wants to do for one main reason.

6. What is uscar standard?
SAE USCAR-2. May 1, 2004. PERFORMANCE STANDARD FOR AUTOMOTIVE ELECTRICAL CONNECTOR SYSTEMS. Procedures included within this specification are intended to cover performance testing at all phases of development, production, and field analysis of electrical terminals, connectors, and so on.

Kynix

Kynix was founded in 2008, specializing in the electronic components distribution business. We adhere to honesty and ethics as our business philosophy and have gradually established an excellent reputation and credibility in our international business. With the accurate quotation, excellent credit, reasonable price, reliable quality, fast delivery, and authentic service, we have won the praise of the majority of customers.

Join our mailing list!

Be the first to know about new products, special offers, and more.

Leave a Reply

We'd love to hear from you! Feel free to share your thoughts and comments below. Rest assured, your email address will remain private.

Name *
Email *
Captcha *
Rating:

Kynix

  • How to purchase

  • Order
  • Search & Inquiry
  • Shipping & Tracking
  • Payment Methods
  • Contact Us

  • Tel: 00852-6915 1330
  • Email: info@kynix.com
  • Follow Us

authentication

Kynix

© 2008-2026 kynix.com all rights reserved.