Automotive Relays

Image Part Number Description / PDF Quantity Rfq
7-1414778-3

7-1414778-3

TE Connectivity Potter & Brumfield Relays

RELAY AUTO SPST-NO 260A 24V

79

2-1904058-7

2-1904058-7

TE Connectivity Potter & Brumfield Relays

RELAY AUTO SPST-NO 20A 12V

309

1-1414939-4

1-1414939-4

TE Connectivity Potter & Brumfield Relays

RELAY AUTO SPST-NO 260A 12V

0

V23134A1052C643

V23134A1052C643

TE Connectivity Potter & Brumfield Relays

RELAY AUTOMOTIVE SPDT 40A 12V

180

1393277-8

1393277-8

TE Connectivity Potter & Brumfield Relays

RELAY AUTOMOTIVE SPDT 45A 24V

0

2-1904058-5

2-1904058-5

TE Connectivity Potter & Brumfield Relays

RELAY AUTO SPST-NO 20A 12V

158

VF7-11F12

VF7-11F12

TE Connectivity Potter & Brumfield Relays

RELAY AUTOMOTIVE SPST 70A 12V

0

VFMA-15F41-S01

VFMA-15F41-S01

TE Connectivity Potter & Brumfield Relays

RELAY AUTOMOTIVE SPDT 12V

462

1-1414310-0

1-1414310-0

TE Connectivity Potter & Brumfield Relays

RELAY AUTOMOTIVE SPST 40A 12V

400

V23086C2001A403

V23086C2001A403

TE Connectivity Potter & Brumfield Relays

PCB 25A RELAYS

1174

1416010-1

1416010-1

TE Connectivity Potter & Brumfield Relays

1416010-1

633

1-1393304-1

1-1393304-1

TE Connectivity Potter & Brumfield Relays

RELAY AUTOMOTIVE SPST-NO 70A 24V

332

1-1414760-0

1-1414760-0

TE Connectivity Potter & Brumfield Relays

AUTOMOTIVE RELAYS

0

2-1904025-6

2-1904025-6

TE Connectivity Potter & Brumfield Relays

V23234A0004X055-EV-100

241

1393280-5

1393280-5

TE Connectivity Potter & Brumfield Relays

RELAY AUTO SPST-NO 30A 12V

0

V23074A1002A403

V23074A1002A403

TE Connectivity Potter & Brumfield Relays

RELAY AUTOMOTIVE SPDT 30A 24V

631

V23134J1052D642

V23134J1052D642

TE Connectivity Potter & Brumfield Relays

RELAY AUTOMOTIVE SPST-NO 70A 12V

456

2-1414939-2

2-1414939-2

TE Connectivity Potter & Brumfield Relays

RELAY AUTO SPST-NO 130A 12V

422

4-1414992-7

4-1414992-7

TE Connectivity Potter & Brumfield Relays

RELAY AUTOMOTIVE SPDT 40A 12V

0

1-1414122-0

1-1414122-0

TE Connectivity Potter & Brumfield Relays

V23136J1004X050

97

Automotive Relays

1. Overview

Automotive relays are electro-mechanical or solid-state devices designed to control electrical circuits in vehicles. They serve as switches that use low-power signals to manage high-current loads, ensuring safety, reliability, and automation in automotive systems. With the rise of electric vehicles (EVs) and advanced driver-assistance systems (ADAS), relays play a critical role in optimizing power distribution and system efficiency.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Electromagnetic RelayMechanical switching via electromagnetic coil, high current handlingEngine control units, lighting systems
Solid State Relay (SSR)No moving parts, fast switching, low noiseElectric vehicle battery management, ADAS sensors
Multi-pole RelayEnables simultaneous control of multiple circuitsClimate control systems, wiper motors
Power RelayDesigned for high-voltage/high-current loadsHybrid vehicle inverters, HVAC systems
PCB Mount RelayCompact design for printed circuit board integrationInfotainment systems, onboard chargers

3. Structure and Components

A typical automotive relay includes:

  • Coil: Electromagnetic component that generates magnetic field when energized
  • Contacts: Conductive terminals (normally open/closed) that open/close circuits
  • Spring: Returns contacts to default position when coil is de-energized
  • Enclosure: Flame-retardant plastic housing protecting internal components
  • Base: Mounting interface with terminals for wiring

4. Key Technical Specifications

ParameterDescriptionImportance
Rated VoltageMaximum operating voltage (12V/24V DC common)Determines system compatibility
Switching CurrentMaximum load current (10-100A range)Prevents overheating/short circuits
Coil PowerPower consumption (e.g., 0.36W-2.1W)Impacts energy efficiency
Contact MaterialTypically silver alloy or gold-platedAffects conductivity and lifespan
Operating LifeElectrical: 50,000-200,000 cyclesSystem durability indicator
Environmental Temp.Functional range: -40 C to +125 CEnsures reliability in extreme conditions
Insulation Resistance 100M at 500VDCPrevents leakage current
Actuation TimeTypical: 5-15msCritical for real-time control

5. Application Areas

Key industries and equipment:

  • Passenger Vehicles: Engine ECU, ABS systems, seat heaters
  • Commercial Vehicles: Truck trailer brake control, starter circuits
  • Electric Vehicles: Battery disconnect units, charging systems
  • Industrial Machinery: Vehicle production line automation
  • Marine/Aerospace: Boat engine controls, aircraft actuation systems

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
TE ConnectivityV23 SeriesHigh-vibration resistance, AEC-Q200 qualified
Omron AutomotiveG8L Series80A high-capacity power relay for EVs
Panasonic Electric WorksDSR-A-DC SeriesSSR with zero-crossing detection
Phoenix ContactPK-Z SeriesIndustrial-grade relay modules
Schneider ElectricLC1K SeriesCompact design for space-constrained applications

7. Selection Guidelines

Key considerations:

  1. Load Type: Resistive vs. inductive loads require different contact materials
  2. Current/Voltage: Ensure ratings exceed system requirements
  3. Environmental Factors: Temperature, humidity, and vibration resistance
  4. Mounting Type: PCB, plug-in, or panel mounting options
  5. Compliance: AEC-Q200, ISO 7637 standards for automotive applications
  6. Cost vs. Lifespan: Higher upfront cost may reduce long-term maintenance

Case Study: In EV battery management systems, solid-state relays with 500VDC ratings and IP67 protection are preferred for high-voltage isolation and safety.

8. Industry Trends

Emerging trends include:

  • Increased adoption of solid-state relays in EVs for improved reliability
  • Miniaturization for ADAS and autonomous driving systems
  • Smart relays with integrated diagnostic capabilities
  • Higher temperature tolerance for hybrid vehicle engine compartments
  • RoHS-compliant materials for environmental sustainability
The market is projected to grow at 6.8% CAGR through 2030, driven by electrification and autonomous vehicle technologies.

RFQ BOM Call Skype Email
Top