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GE IS210AEAAH3BKE Application Control Layer Module
Manufacturer:General Electric
Part Number:IS210AEAAH3BKE
Product Type:Application Control Layer Module
Series:GE Speedtronic Mark V
Stock:IN STOCK
Repair:3-7 Day
Rush Repair:24-48 Hrs.
Warranty:3 Years
Dimensions:22.86 x 16.54 x 3.15 inches
Weight:22.05 pounds
Product Description
The GE IS210AEAAH3BKE is an Operator Interface Board (OIB) for the GE Mark VIe wind turbine control system. It plays a crucial role in turbine control by providing operators with essential information and control capabilities. Designed for ruggedness and reliability, this OIB withstands the harsh conditions typical of wind turbine environments.
Key Features
- 10.4 inch color touchscreen display: Offers a clear and interactive visual interface.
- Intuitive graphical user interface: Enhances ease of use for operators.
- Real-time monitoring of turbine performance: Provides immediate insights into turbine status.
- Alarms and event management: Notifies operators of critical events.
- Remote control and troubleshooting capabilities: Facilitates off-site management and problem-solving.
Technical Specifications
- Display: 10.4 inch color touchscreen
- Resolution: 800 x 600 pixels
- Processor: Intel Atom E6600
- Memory: 1 GB RAM
- Storage: 4 GB solid state drive
- Operating System: Windows Embedded Standard 7
- Interfaces: Ethernet, USB, RS-232
- Dimensions: 22.86 x 16.54 x 3.15 inches
- Weight: 22.05 pounds
Applications
The GE IS210AEAAH3BKE is suitable for various wind turbine applications, including:
- Utility-scale wind farms: Optimizes large-scale turbine operations.
- Commercial wind projects: Enhances control and monitoring for commercial installations.
- Residential wind turbines: Provides essential functionality for home-based turbines.
Benefits
The GE IS210AEAAH3BKE offers several advantages to wind turbine operators:
- Improved operator situational awareness: Enhances understanding of turbine performance.
- Reduced downtime: Minimizes operational interruptions.
- Increased turbine efficiency: Boosts overall turbine performance.
- Extended turbine lifespan: Contributes to longer operational life.
GE IS210AEAAH3BKE Application Control Layer Module
Manufacturer:General Electric
Part Number:IS210AEAAH3BKE
Product Type:Application Control Layer Module
Series:GE Speedtronic Mark V
Stock:IN STOCK
Repair:3-7 Day
Rush Repair:24-48 Hrs.
Warranty:3 Years
Dimensions:22.86 x 16.54 x 3.15 inches
Weight:22.05 pounds
Product Description
The GE IS210AEAAH3BKE is an Operator Interface Board (OIB) for the GE Mark VIe wind turbine control system. It plays a crucial role in turbine control by providing operators with essential information and control capabilities. Designed for ruggedness and reliability, this OIB withstands the harsh conditions typical of wind turbine environments.
Key Features
- 10.4 inch color touchscreen display: Offers a clear and interactive visual interface.
- Intuitive graphical user interface: Enhances ease of use for operators.
- Real-time monitoring of turbine performance: Provides immediate insights into turbine status.
- Alarms and event management: Notifies operators of critical events.
- Remote control and troubleshooting capabilities: Facilitates off-site management and problem-solving.
Technical Specifications
- Display: 10.4 inch color touchscreen
- Resolution: 800 x 600 pixels
- Processor: Intel Atom E6600
- Memory: 1 GB RAM
- Storage: 4 GB solid state drive
- Operating System: Windows Embedded Standard 7
- Interfaces: Ethernet, USB, RS-232
- Dimensions: 22.86 x 16.54 x 3.15 inches
- Weight: 22.05 pounds
Applications
The GE IS210AEAAH3BKE is suitable for various wind turbine applications, including:
- Utility-scale wind farms: Optimizes large-scale turbine operations.
- Commercial wind projects: Enhances control and monitoring for commercial installations.
- Residential wind turbines: Provides essential functionality for home-based turbines.
Benefits
The GE IS210AEAAH3BKE offers several advantages to wind turbine operators:
- Improved operator situational awareness: Enhances understanding of turbine performance.
- Reduced downtime: Minimizes operational interruptions.
- Increased turbine efficiency: Boosts overall turbine performance.
- Extended turbine lifespan: Contributes to longer operational life.
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