Power Relays, Over 2 Amps

Image Part Number Description / PDF Quantity Rfq
K10P-11D15-110

K10P-11D15-110

TE Connectivity Potter & Brumfield Relays

RELAY GEN PURPOSE DPDT 15A 110V

22

G6B-2014P-FD-US DC12

G6B-2014P-FD-US DC12

Omron Electronics Components

RELAY GEN PURPOSE DPST 5A 12V

0

G6C1114PUSP6CDC12

G6C1114PUSP6CDC12

Omron Electronics Components

RELAY GEN PURPOSE

0

2618260000

2618260000

Weidmuller

RELAY MODULE, 230 V UC 5

50

2618040000

2618040000

Weidmuller

RELAY MODULE, 12 V DC 20

6245

R10-E1Y4-V185

R10-E1Y4-V185

TE Connectivity Potter & Brumfield Relays

RELAY GEN PURPOSE 4PDT 3A 12V

139

R10-E2Y2-115V

R10-E2Y2-115V

TE Connectivity Potter & Brumfield Relays

RELAY GEN PURPOSE DPDT 3A 115V

0

LY3F-FD AC24

LY3F-FD AC24

Omron Automation & Safety Services

RELAY GEN PURPOSE 3PDT 10A 24V

0

ADJ64006

ADJ64006

Panasonic

ADJ(DJ) RELAY (SEALED, 2A, 2-COI

0

FCB-405-0620M

FCB-405-0620M

TE Connectivity Aerospace Defense and Marine

RELAY GEN PURPOSE 4PDT 5A 28V

14

HC1-HPL-AC100V-F

HC1-HPL-AC100V-F

Panasonic

RELAY GEN PURPOSE SPDT 10A 100V

0

G2RL-14 DC22

G2RL-14 DC22

Omron Electronics Components

RELAY GEN PURPOSE SPDT 12A 22V

0

G7J-2A2B-P DC24

G7J-2A2B-P DC24

Omron Automation & Safety Services

RELAY GEN PURPOSE 4PST 25A 24V

3

RLY1665

RLY1665

NTE Electronics, Inc.

RELAY-25AMP 4PDT 120VAC

8

R12-17D3-24

R12-17D3-24

NTE Electronics, Inc.

RELAY-5AMP-DC-24V

987

G2R-14-ASI DC5

G2R-14-ASI DC5

Omron Electronics Components

RELAY GEN PURPOSE SPDT 8A 5V

0

FC-325-7

FC-325-7

TE Connectivity Aerospace Defense and Marine

RELAY GEN PURPOSE 3PST 25A 28V

2

ALZ11F12

ALZ11F12

Panasonic

RELAY GEN PURPOSE SPDT 16A 12V

0

G6CU-1114P-US-DC24

G6CU-1114P-US-DC24

Omron Electronics Components

RELAY GEN PURPOSE SPST 10A 24V

0

G6CK1117PUSDC3

G6CK1117PUSDC3

Omron Electronics Components

RELAY GEN PURPOSE SPST 10A 3V

187

Power Relays, Over 2 Amps

1. Overview

Power relays with switching capabilities over 2 amps are electromechanical or solid-state devices designed to control high-current electrical circuits through low-power signals. These components play a critical role in modern automation systems, industrial machinery, and energy management solutions by enabling safe and reliable control of heavy loads. Their importance stems from their ability to isolate control circuits from high-power circuits, ensuring operational safety and system longevity in demanding applications.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Electromagnetic RelaysMechanical switching via magnetic coil activation, typical current range 2-20AIndustrial machinery control systems
Solid-State Relays (SSR)Semiconductor-based switching with zero-noise operation, 2-100A capacityTemperature control in manufacturing equipment
High-Power RelaysHeavy-duty contacts with reinforced insulation, 10-100A+ ratingsElectric vehicle charging stations
PCB Mount RelaysMiniaturized designs for printed circuit board integration, 2-15ASmart home automation systems
Panel Mount RelaysRail-mountable industrial grade units with visual contact indicatorsFactory automation control panels

3. Structure and Components

Standard power relays above 2A typically consist of: - Electromagnetic System: Copper coil wound around laminated iron core - Contact Assembly: Silver alloy contacts (AgSnO2 or AgCdO) with arc suppression - Magnetic Circuit: Optimized flux path design with magnetic shielding - Encapsulation: Flame-retardant thermoplastic housing (UL94 V-0 rated) - Terminals: Screw-type or quick-connect terminals (250V/16A rating minimum)

4. Key Technical Specifications

ParameterTypical RangeImportance
Rated Current2-100ADetermines load handling capability
Switching Voltage5-600V AC/DCDefines circuit compatibility
Coil Voltage3-250VAffects control circuit design
Contact MaterialAgSnO2, AgCdOImpacts wear resistance and contact resistance
Electrical Life10^5 - 10^6 operationsDictates maintenance intervals
Mounting TypePCB, Panel, DIN RailImpacts system integration
Operating Temp-40 C to +85 CDefines environmental tolerance

5. Application Fields

Key industries utilizing these relays include: - Industrial Automation: PLC-controlled assembly lines, CNC machines - Energy Systems: Smart grid relays, solar inverters - Transportation: EV battery management, railway signaling - Building Systems: HVAC control, emergency lighting - Consumer Electronics: High-power home appliances

Case Study: In automotive production lines, 30A power relays control robotic arm actuators, with solid-state variants managing precise welding current switching.

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
OmronMY2 AC-DC10A rating, LED status indicator, 5kV isolation
Schneider ElectricLC1D099-32A adjustable range, 660V withstand voltage
TE ConnectivityPotter & Brumfield80A high-power relays with silver contacts
Siemens3RT10Industrial SSRs with 0.1ms response time
Phoenix ContactPSR-SCPPlug-in power relays with diagnostic LEDs

7. Selection Recommendations

Key selection criteria: - Load Type: Resistive vs. inductive loads require different derating factors (inductive loads need 20-30% capacity margin) - Environmental Factors: Humidity, vibration, and temperature extremes affect reliability - Switching Frequency: High-cycle applications (>1000 ops/hr) require silver-palladium contacts - Agency Approvals: Check for UL, CSA, or IEC certifications - Installation Space: PCB size constraints vs. panel-mount accessibility

Recommendation: For 12V DC motor control in outdoor equipment, select a sealed 15A relay with IP67 rating and gold-plated contacts.

8. Industry Trends

Emerging developments include: - Miniaturization: 30% size reduction in 5A relays (2020-2023) - Smart Integration: Relays with embedded IoT communication modules - Energy Efficiency: Coil power consumption below 0.2W for 10A relays - Material Innovation: Cadmium-free contact materials (EU RoHS compliance) - Hybrid Solutions: Electromechanical relays with integrated solid-state pre-switching - Predictive Maintenance: Relays with built-in wear-out sensors and lifetime monitoring

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