Brand:GE Fanuc PLC Item No.:IS200ESELH3A Product Origin:USA Product Dimensions:330.2 x 101.6 mm Product Weight:0.35 kg Payment:T/T, Western Union, Credit Card Goods_stock:15 Shipping Port:Xiamen, China Lead Time:1-3 Days Condition:Brand New And Original Warranty:1 Year Certificate:COO
The GE IS200ESELH3A Exciter Selector Board provides precise routing and selection of excitation signals in industrial and power generation environments.
Its robust design, integration with GE IS200E systems, and diagnostic capabilities make it a critical component for ensuring reliable voltage regulation and system continuity.
Technical Specifications
Parameter
Description
Product Model
GE IS200ESELH3A
Module Type
Exciter Selector Board
Dimensions
330.2 × 101.6 mm
Weight
0.35 kg
System Compatibility
GE IS200E Exciter systems
Function
Routes and selects exciter signals for voltage regulation
Installation
Mounted in exciter control cabinet
Operating Environment
Power generation and industrial systems
Diagnostic Features
Exciter selection monitoring and fault reporting
Recommended Related Models
Model
Description
IS200EISBH1A
Exciter ISBus board
IS200EISPIC
ISBus interface board
IS200EFPIC
Field signal processing board
IS200ECFB
Control feedback board
IS200EPCB
Exciter control PCB module
IS200UPDCG1A
Power supply board for IS200 systems
IS200CSLAH4A
Expander card for I/O expansion
GE IS200E Cabinet
Exciter control cabinet assembly
IS200E Diagnostic Module
Monitoring and diagnostics unit
IS200E Communication Hub
ISBus communication controller
Popular Related Models
Model
Description
IS200ESELH3A
Exciter Selector Board
IS200EISBH1A
Exciter ISBus board
IS200EISPIC
ISBus interface board
IS200EFPIC
Field signal processing module
IS200ECFB
Control feedback board
IS200EPCB
Exciter PCB module
IS200UPDCG1A
Power supply board
IS200CSLAH4A
Expander card
IS200E Diagnostic Module
Monitoring unit
IS200E Communication Hub
Communication interface controller
Applications
The GE IS200ESELH3A Exciter Selector Board is designed to manage and route excitation signals in turbine generator control systems.
It is primarily used in power generation plants to optimize exciter selection, ensure voltage regulation, and provide redundancy in excitation pathways, enhancing overall system reliability.
Advantages
Optimized Excitation Routing: Enables precise selection of exciter sources for stable voltage output.
Seamless System Integration: Fully compatible with GE IS200E excitation systems.
High Reliability: Designed for industrial environments with electrical noise, temperature variations, and operational stress.
Redundancy Support: Facilitates multiple excitation paths to enhance system availability.
Diagnostic Monitoring: Tracks board operation and exciter selection status for proactive maintenance.
FAQs
1. What is the primary function of the IS200ESELH3A board?
It routes and selects exciter signals to ensure stable and reliable voltage regulation in turbine generators.
2. Can it manage multiple exciter sources simultaneously?
Yes, it supports the selection and switching between multiple exciter sources as required.
3. How does it integrate with GE IS200E systems?
The board plugs directly into the IS200E exciter system and communicates with other control modules.
4. Does it support redundancy for exciter pathways?
Yes, it provides backup selection paths to maintain operation in case of a primary exciter failure.
5. How does it ensure signal integrity?
It incorporates isolation and filtering to maintain clean and accurate excitation signal routing.
6. Can it provide diagnostic feedback?
Yes, it reports the status of exciter selection and any faults to the main control system.
7. Is it suitable for harsh industrial environments?
Yes, the board is built to operate reliably under electrical noise, vibration, and temperature fluctuations.
8. Does it require firmware or software configuration?
It operates in coordination with the GE IS200E system firmware for seamless integration.
9. How does it enhance system reliability?
By providing optimized exciter selection and redundant paths, it reduces the risk of voltage instability and downtime.
10. Can it be replaced without shutting down the generator?
Replacement procedures depend on plant safety protocols; some maintenance may allow controlled hot-swapping.