Signal Relays, Up to 2 Amps

Image Part Number Description / PDF Quantity Rfq
TQ2SA-12V

TQ2SA-12V

Panasonic

RELAY TELECOM DPDT 2A 12VDC

0

G6A-274P-ST-US DC24

G6A-274P-ST-US DC24

Omron Electronics Components

RELAY GEN PURPOSE DPDT 2A 24VDC

0

AGQ21TS06X

AGQ21TS06X

Panasonic

RELAY GEN PURPOSE DPDT 2A 6VDC

0

G2RV-SR700-AP AC/DC48

G2RV-SR700-AP AC/DC48

Omron Automation & Safety Services

RELAY GEN PUR SPDT 50MA 48VAC/DC

3

TX2-L-24V

TX2-L-24V

Panasonic

RELAY TELECOM DPDT 2A 24VDC

0

TXS2SA-LT-12V

TXS2SA-LT-12V

Panasonic

RELAY GEN PURPOSE DPDT 1A 12VDC

58

TXS2SA-L-5V-X

TXS2SA-L-5V-X

Panasonic

RELAY GEN PURPOSE DPDT 1A 5VDC

0

AGQ21TA1H

AGQ21TA1H

Panasonic

RELAY GEN PURPOSE DPDT 2A 1.5VDC

0

V23101D 102B201

V23101D 102B201

TE Connectivity Potter & Brumfield Relays

RELAY GEN PURPOS SPDT 1.25A 3VDC

0

TXS2SA-LT-12V-Z

TXS2SA-LT-12V-Z

Panasonic

TXS RELAY 2 FORM C 12V

0

G6SK-2 DC6

G6SK-2 DC6

Omron Electronics Components

RELAY TELECOM DPDT 2A 6VDC

0

TQ2SA-L-3V-X

TQ2SA-L-3V-X

Panasonic

RELAY TELECOM DPDT 2A 3VDC

0

TXS2SA-1.5V-X

TXS2SA-1.5V-X

Panasonic

RELAY GEN PURPOSE DPDT 1A 1.5VDC

0

9-1393806-7

9-1393806-7

TE Connectivity Potter & Brumfield Relays

RELAY GEN PURPOSE DPDT 2A 32VDC

0

AGN260S24

AGN260S24

Panasonic

RELAY TELECOM DPDT 1A 24VDC

0

TXD2SA-3V-3

TXD2SA-3V-3

Panasonic

RELAY GEN PURPOSE DPDT 2A 3VDC

0

G6K-2F-Y-TR DC4.5

G6K-2F-Y-TR DC4.5

Omron Electronics Components

RELAY TELECOM DPDT 1A 4.5VDC

7215

EA2-5TNU

EA2-5TNU

KEMET

RELAY GEN PURPOSE DPDT 1A 5VDC

3371

DS2E-SL2-DC9V

DS2E-SL2-DC9V

Panasonic

RELAY GEN PURPOSE DPDT 2A 9VDC

500

AGQ200S09

AGQ200S09

Panasonic

RELAY TELECOM DPDT 2A 9VDC

0

Signal Relays, Up to 2 Amps

1. Overview

Signal relays with ratings up to 2 amps are electromechanical or solid-state switching devices designed to control low-power electrical circuits. These components enable signal transmission isolation, circuit amplification, or switching automation in modern electronic systems. Their compact size and precise control capabilities make them essential in automation, telecommunications, and precision instrumentation systems.

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Electromagnetic RelaysMechanical switching via electromagnetic coil, standard form factorIndustrial control panels, HVAC systems
Solid-State RelaysNo moving parts, zero-crossing switching, fast responseTemperature control systems, LED lighting
Reed RelaysHermetically sealed contacts, high-speed operationTelecom switching, test equipment
Time Delay RelaysProgrammable switching intervalsMachinery automation, motor starters
High-Frequency RelaysDesigned for RF/microwave signal pathsWireless infrastructure, radar systems

3. Structure and Components

Typical construction includes:

  • Coil assembly (copper winding on bobbin)
  • Contact system (fixed and movable contacts)
  • Insulation housing (flame-retardant polymer)
  • Magnetic circuit (iron core and yoke)
  • Terminal system (PCB pins or screw terminals)

Advanced models incorporate EMI suppression circuits and LED status indicators.

4. Key Technical Parameters

ParameterTypical ValueImportance
Rated Current1-2 A resistiveDetermines load capacity
Coil Voltage5-48 VDC nominalDictates control circuit design
Contact Resistance<50 m Impacts signal integrity
Insulation Resistance>100 M Safety isolation performance
Mechanical Life10-100 million operationsDurability indicator
Switching Speed5-15 ms (EMR), <1 ms (SSR)System response time

5. Application Fields

  • Industrial automation (PLCs, sensor interfaces)
  • Telecom infrastructure (signal routing switches)
  • Medical equipment (diagnostic device controls)
  • Smart home systems (HVAC thermostats)
  • Test & measurement (ATE machine interfaces)

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
OmronG5LE-14-DC55 mm spacing, 2 A rating
Phoenix ContactPSR-SCP-24UCPlug-in design, LED indicators
TE ConnectivityRTX-S-DC5VAutomotive qualified
Siemens3RT2025Modular mounting system

7. Selection Recommendations

Key considerations:

  • Load type (resistive/inductive)
  • Environmental conditions (temperature/humidity)
  • Required make/break cycles
  • Regulatory certifications (UL/CSA/IEC)
  • PCB footprint constraints

Example: For medical equipment, select RoHS-compliant reed relays with 1.5 A rating and reinforced insulation.

8. Industry Trends

Current developments include:

  • Transition to surface-mount solid-state alternatives
  • Integration with IoT-enabled monitoring systems
  • Nanocoating for harsh environment protection
  • Increased adoption of 1 Form C contacts
  • Miniaturization (sub-10 mm package development)

Market forecasts predict 5.2% CAGR through 2027 driven by industrial automation growth.

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