Reed Relays

Image Part Number Description / PDF Quantity Rfq
HE722A1200

HE722A1200

Wickmann / Littelfuse

RELAY REED DPST 500MA 12V

1646

8L01-12-111

8L01-12-111

Coto Technology

RELAY REED SPST 500MA 12V

0

8L41-12-101

8L41-12-101

Coto Technology

RELAY REED SPDT 250MA 12V

266

9092-05-10

9092-05-10

Coto Technology

RELAY REED DPST 500MA 5V

4617

HE12-1B83

HE12-1B83

Standex Electronics

RELAY REED SPST 3A 12V

0

3570-1411-051

3570-1411-051

Comus International

RELAY REED SIP SPST .5A 5V

0

JWD-171-10

JWD-171-10

TE Connectivity Potter & Brumfield Relays

RELAY REED SPST 500MA 24V

2496

DAT72410-HR

DAT72410-HR

Sensata Technologies – Cynergy3

RELAY REED SPST-NO 2A 24V

0

DIP05-2A72-21D

DIP05-2A72-21D

Standex Electronics

RELAY REED DPST 1A 5V

118

JWD-171-24

JWD-171-24

TE Connectivity Potter & Brumfield Relays

RELAY REED DPST 500MA 24V

0

BT24-2A66

BT24-2A66

Standex Electronics

RELAY REED DPST 500MA 24V

0

9006-12-01

9006-12-01

Coto Technology

RELAY REED SPST 500MA 12V

0

7142-12-1011

7142-12-1011

Coto Technology

RELAY REED DPDT 250MA 12V

0

2373-05-000

2373-05-000

Coto Technology

RELAY REED 3PST 500MA 5V

353

HE721C2450

HE721C2450

Wickmann / Littelfuse

RELAY REED SPDT 250MA 24V

0

7101-24-1000

7101-24-1000

Coto Technology

RELAY REED SPST 500MA 24V

169

9011-05-11

9011-05-11

Coto Technology

RELAY REED SPST 250MA 5V

1376

JWD-172-1

JWD-172-1

TE Connectivity Potter & Brumfield Relays

RELAY REED SPDT 500MA 5V

0

7302-05-1000

7302-05-1000

Coto Technology

RELAY REED DPST 500MA 5V

0

2274-12-021

2274-12-021

Coto Technology

RELAY REED SPST 500MA 12V

233

Reed Relays

1. Overview

Reed Relays are electromechanical switches comprising a pair of magnetic contacts (reeds) sealed in a glass tube. When a magnetic field generated by a coil actuates the reeds, they flex to make or break an electrical connection. Their hermetic sealing ensures contamination resistance, making them critical in precision applications like automation, telecommunications, and medical devices.

2. Major Types and Functional Classification

TypeFunction FeaturesApplication Examples
SPST (Single Pole Single Throw)Simple on/off switching with one contact pairBasic circuit control in consumer electronics
SPDT (Single Pole Double Throw)Three-terminal switch for circuit redirectionSignal routing in test equipment
DPDT (Double Pole Double Throw)Dual independent circuits with synchronized switchingMotor reversal circuits in industrial machinery
High-Frequency Reed RelaysOptimized for RF/microwave signal integrity5G base station switching modules
High-Power Reed RelaysRated for >10A currents with arc suppressionAutomotive battery management systems

3. Structure and Components

A typical Reed Relay consists of:

  • Glass Enclosure: Hermetic seal with inert gas (N2 or dry air)
  • Contact Blades: Ferromagnetic Ni-Fe alloy with Au or Rh plating
  • Coil Assembly: Copper wire wound on ferrite core for magnetic efficiency
  • Termination Leads: Axial or SMD configurations for PCB mounting

4. Key Technical Specifications

ParameterTypical RangeImportance
Coil Voltage3V-48V DCDetermines actuation power consumption
Contact Current1A-15ADefines load capacity for circuit design
Operate Time0.1ms-5msCritical for high-speed automation
Insulation Resistance>1012 Ensures signal integrity in medical devices
Life Cycle107-109 operationsAffects maintenance intervals in industrial systems

5. Application Fields

Major industries include:

  • Industrial Automation: PLCs, CNC machine controllers
  • Telecommunications: Optical cross-connect systems, RF test equipment
  • Medical Devices: MRI scanner circuitry, lab-on-chip analyzers
  • Automotive: EV charging station contactors, ADAS relay modules
  • Aerospace: Avionics signal switching in flight control systems

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
TE ConnectivityKILOVAC EV2001500VDC isolation for EV charging
Omron ElectronicsG6K-2P-Y-DC5Ultra-compact DPDT with 200mW coil
Fujitsu ComponentFBR12W-K-C10GHz RF performance for 5G testers
Hamlin by TEHE721-NDMedical-grade isolation for patient monitors

7. Selection Guidelines

Key considerations:

  • Load Type: Resistive vs. inductive loads require different contact materials
  • Switching Speed: Prioritize operate time <1ms for data acquisition systems
  • Environmental Factors: Select IP67-rated models for automotive under-hood applications
  • Mounting: Use SMD relays for automated PCB assembly
  • Cost vs. Longevity: High-endurance models may reduce lifetime maintenance costs

8. Industry Trends

Emerging developments:

  • Miniaturization: 0402 package reed relays for wearable medical devices
  • Integration: Smart relays with built-in coil suppression circuits
  • Material Innovation: Graphene-coated contacts for 10x lifespan improvement
  • Wireless Control: BLE-enabled reed relay modules for IoT applications
  • High-Temperature Performance: Relays operational up to 150 C for EV powertrains

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