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Guideform Specification: DECS-250N Siemens RG3 Retrofit (PDF)
This guideform specification defines the requirements, control functions, protection features, communications, monitoring capabilities, power system stabilizer options, and performance characteristics of the DECS-250N retrofit solution for replacing Siemens RG3 voltage regulators on brushless synchronous generators.
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Guideform Specification: DECS-250N Siemens RG3 Retrofit (DOC)
This guideform specification defines the requirements, control functions, protection features, communications, monitoring capabilities, power system stabilizer options, and performance characteristics of the DECS-250N retrofit solution for replacing Siemens RG3 voltage regulators on brushless synchronous generators.
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Guideform Specification: DECS-250N Brush AVR Retrofit (PDF)
This guideform specification defines the requirements, control functions, protection features, communications, monitoring capabilities, excitation limiters, and performance characteristics of the DECS-250N retrofit solution for replacing Brush A30, MAVR, or MicroAVR voltage regulators on brushless synchronous generators.
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Guideform Specification: DECS-250N Brush AVR Retrofit (DOC)
This guideform specification defines the requirements, control functions, protection features, communications, monitoring capabilities, excitation limiters, and performance characteristics of the DECS-250N retrofit solution for replacing Brush A30, MAVR, or MicroAVR voltage regulators on brushless synchronous generators.
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Application Note: EX-RG3
This application note explains how the DECS-250N serves as a modern replacement for obsolete Siemens RG3 voltage regulators. It highlights the benefits of digital excitation control, including improved performance, negative field forcing, and power system stabilizer functionality for large generator applications.
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Versatility and Reliability Set the DGC-2020HD Apart
This case study highlights the use of DGC-2020HD controllers at a university power generation facility, demonstrating how the system provided flexible synchronization, load sharing, monitoring, and control of multiple generator systems connected to the utility grid.
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One of Basler’s First SSE’s Still Carrying the Load of a 2MW Generator
This case study highlights the long-term reliability of one of Basler’s early Static Excitation Systems (SSE), demonstrating how the system has continued supporting a 2 MW generator for decades while providing dependable excitation control and voltage regulation.
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Creating an Alternative Generation Source that Maximizes Efficiency and Redundancy
This case study highlights how DGC-2020HD controllers were used to create a reliable alternative power generation source for an oil field services operation, demonstrating successful generator integration, load management, remote monitoring, and power system control to maximize efficiency and redundancy.