Time Delay Relays

Image Part Number Description / PDF Quantity Rfq
PM4HS-H-24V

PM4HS-H-24V

Panasonic

RELAY TIME DELAY 500HRS 5A 250V

14

S1DXM-A4C60M-AC120V

S1DXM-A4C60M-AC120V

Panasonic

RELAY TIMER ANALOG 4PDT 0-60MIN

0

LT4HWT-AC240V

LT4HWT-AC240V

Panasonic

DIGITAL TIMER IP66 0.01S-9999H

0

PMH-30H-AC120V

PMH-30H-AC120V

Panasonic

RELAY TIME DELAY 30HRS ANALOG

0

PMH-M-30M-AC24V

PMH-M-30M-AC24V

Panasonic

RELAY TIME DELAY

0

PMH-30M-DC12V

PMH-30M-DC12V

Panasonic

RELAY TIME DELAY 30MIN ANALOG

0

LT4HWT-AC24V

LT4HWT-AC24V

Panasonic

DIGITAL TIMER IP66 0.01S-9999H

0

S1DXM-A2C30M-AC220V

S1DXM-A2C30M-AC220V

Panasonic

RELAY TIME DELAY 30MIN 7A 250V

0

LT4HLT8-AC240V

LT4HLT8-AC240V

Panasonic

DIGITAL TIMER IP66 0.001S-999.9H

0

PMH-30M-AC220V

PMH-30M-AC220V

Panasonic

RELAY TIME DELAY 30M ANALOG

0

PMH-10H-AC24V

PMH-10H-AC24V

Panasonic

RELAY TIME DELAY 10HR ANALOG

0

PMH-30H-DC12V

PMH-30H-DC12V

Panasonic

RELAY TIME DELAY 30HR ANALOG

0

PMH-30H-AC240V

PMH-30H-AC240V

Panasonic

RELAY TIME DELAY 2 FORM C

0

PMH-30H-DC24V

PMH-30H-DC24V

Panasonic

RELAY TIME DELAY 30HR ANALOG

0

S1DXM-A4C60M-AC220V

S1DXM-A4C60M-AC220V

Panasonic

RELAY TIME DELAY 60MIN 5A 250V

0

S1DXMA2C30MAC240V

S1DXMA2C30MAC240V

Panasonic

RELAY TIME DELAY 30MIN 7A 250V

7

S1DXMM4C10HAC120V

S1DXMM4C10HAC120V

Panasonic

RELAY TIME DELAY 10HRS 5A 250V

0

S1DXM-A4C10M-DC24V

S1DXM-A4C10M-DC24V

Panasonic

RELAY TIMER ANALOG 4PDT 0-10MIN

0

PM4HF8-S-AC240VW

PM4HF8-S-AC240VW

Panasonic

RELAY TIME DELAY DIN48 1-10SEC

2

S1DXM-A2C10H-AC120V

S1DXM-A2C10H-AC120V

Panasonic

RELAY TIMER ANALOG DPDT 0-10HOUR

0

Time Delay Relays

1. Overview

Time Delay Relays (TDRs) are control devices that execute switching operations after a predetermined time interval. They integrate timing functions into electrical systems to manage sequence operations, protect equipment, and optimize process efficiency. Modern industrial automation relies on TDRs for precise control in applications ranging from motor startups to complex manufacturing processes.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
On-Delay RelayDelays contact closure after power applicationMotor soft start, conveyor belt synchronization
Off-Delay RelayDelays contact opening after power removalFan cooling systems, oven shutdown sequences
Interval TimerControls fixed-duration outputsValve actuation, injection molding cycles
Repeat Cycle TimerAlternates between on/off statesConveyor indexing, periodic lubrication systems

3. Structure and Components

Typical TDR construction includes:

  • Enclosure: Flame-retardant polymer housing (IP20-IP67 ratings)
  • Electromagnetic System: Coil assembly with laminated iron core
  • Contact Mechanism: Silver alloy contacts (NO/NC configurations)
  • Timing Circuit: Analog RC circuits or digital microcontrollers
  • User Interface: Dial/potentiometer or digital display for setting adjustment

4. Key Technical Specifications

ParameterTypical RangeImportance
Timing Range0.1s-999hDetermines application flexibility
Accuracy 1% to 10msCritical for precision processes
Power Supply12-240V AC/DCMatches system voltage requirements
Contact Rating5-30A resistiveEnsures load compatibility
Ambient Temp. Range-20 C to +70 COperational reliability factor

5. Application Areas

Primary industries include:

  • Manufacturing: Press machine sequence control
  • Energy: Transformer cooling systems
  • Building Automation: HVAC fan delay control
  • Process Industry: Pump alternation systems
  • Transportation: Railway signal timing

Typical equipment integration: CNC machines, packaging lines, water treatment systems.

6. Leading Manufacturers and Products

ManufacturerKey Product SeriesDistinguishing Features
Siemens3RP25/3RP15 seriesDIN rail mounting, LED status display
OmronH3CR-A/-M modelsMulti-voltage capability, compact design
Schneider ElectricTesys T-ModTime seriesModbus communication, 12 timing functions
AutomationDirectDL-TDR seriesProgrammable via USB interface

7. Selection Recommendations

Key considerations:

  • Timing function type (ON/OFF delay, interval, etc.)
  • Environmental conditions (temperature, vibration)
  • Electrical requirements (voltage/frequency compatibility)
  • Mounting method (DIN rail, panel mount, socket mounting)
  • Agency approvals (CE, UL, CSA standards)

Case Study: A bottling plant successfully implemented Omron H3CR-M timers for conveyor synchronization, achieving 15% throughput improvement.

8. Industry Trends

Emerging developments include:

  • Integration with Industrial IoT (remote monitoring via Ethernet/IP)
  • Adoption of solid-state relay technology (SSR) for higher switching speeds
  • Energy-efficient designs meeting Ecodesign Directive 2019/1782
  • AI-enhanced predictive timing adjustment in smart manufacturing
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