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Gas Burner Controller LFL1.122
Gas Burner Controller LFL1.122

Gas Burner Controller LFL1.122

MOQ : 100-200 Pieces

Gas Burner Controller LFL1.122 Specification

  • Condition
  • New
  • Type
  • Gas Burner Controller
  • Usage
  • Industrial
  • Structure
  • Panel Mounted
  • Pressure
  • Medium
  • Style
  • Modular
  • Material
  • High Quality Plastic / Metal
  • Model
  • LFL1.122
  • Reset Mode
  • Manual / Automatic
  • Ignition Time
  • 3s, 5s
  • Application
  • Automatic control and supervision of gas burners
  • Ambient Temperature
  • -20°C to +60°C
  • Enclosure Protection
  • IP40
  • Supply Voltage
  • 220V AC, 50/60 Hz
  • Mounting Type
  • Plug-in Socket
  • Flame Detection
  • UV / Ionization Electrode
  • Switching Capacity
  • 10A @ 250VAC (resistive)
  • Safety Time
  • 1s to 5s (depending on configuration)
 

Gas Burner Controller LFL1.122 Trade Information

  • Minimum Order Quantity
  • 100-200 Pieces
  • Payment Terms
  • Cash in Advance (CID), Cheque, Cash Advance (CA)
  • Supply Ability
  • 100 Pieces Per Day
  • Delivery Time
  • 7 Days
  • Sample Policy
  • Contact us for information regarding our sample policy
  • Main Export Market(s)
  • Middle East, Asia
  • Main Domestic Market
  • All India
 

About Gas Burner Controller LFL1.122

Gas Burner Controller LFL1.122

Model No - LFL1.122

Specifications :-

  • 230V~
  • 50-60 Hz
  •  3.5 VA
  •  ts max 2s

Technical Specification

Usage

Industrial

Model

LFL 1.122

Brand

Siemens

Condition

New

Automation Grade

Automatic

Color

Black



Advanced Gas Burner Safety and Supervision

The LFL1.122 controller ensures precise automatic control and safety for medium pressure industrial gas burners. Its flame detection technology using either UV or ionization electrodes provides dependable monitoring, helping prevent hazardous conditions. The device is engineered for consistent operation in temperatures between -20C and +60C.


Flexible Integration and User-Friendly Operation

Easily install the controller with its plug-in socket design and panel mounting structure. The modular build and simple reset optionsmanual or automaticenable quick adaptation to different burner requirements, minimizing downtime while promoting operational efficiency.

FAQs of Gas Burner Controller LFL1.122:


Q: How is the LFL1.122 Gas Burner Controller installed in industrial setups?

A: The controller is designed for panel mounting and uses a plug-in socket, simplifying installation. This allows for secure integration into existing burner systems without extensive rewiring, making it suitable for new or retrofit industrial projects.

Q: What flame detection methods does the LFL1.122 support?

A: The LFL1.122 supports both UV sensor and ionization electrode flame detection. This provides reliable and flexible monitoring capability, accommodating various burner designs and safety requirements.

Q: When should the manual or automatic reset mode be used?

A: Manual reset mode is typically used for heightened safety, requiring operator intervention after a fault. Automatic reset is beneficial when operational continuity is essential, as it allows the system to attempt recovery without manual input, depending on the risk assessment of the application.

Q: Where can the LFL1.122 be deployed for optimal benefit?

A: This controller is ideal for use in medium-pressure industrial environments where automatic control and supervision of gas burners are required. Its IP40 enclosure ensures protection in indoor installations, such as factories, process plants, and industrial heating systems.

Q: What is the process for configuring ignition and safety times?

A: Ignition time (3s or 5s) and safety time (1s to 5s) are configurable based on system requirements. Refer to the product manual or consult with a qualified technician to adjust these parameters for optimal burner performance and safety compliance.

Q: How does using the LFL1.122 benefit industrial gas burner systems?

A: The controller enhances operational safety through dependable flame supervision and configurable timings, ensuring faults are detected promptly. Its robust switching capacity and adaptability contribute to reduced downtime, increased reliability, and simplified maintenance.

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