The DS3800HXTA1E1E is a specialized variant of the High-Speed Counter/Accumulator board manufactured by General Electric (GE) for the Mark IV and Mark V Speedtronic turbine control systems. It belongs to the DS3800HXTA base series, with the extended suffix 1E1E indicating Revision E, a specific component population, and an E-type conformal coating. The X in the base model denotes a custom or prototype configuration, making this a non-standard board intended for specialized turbine applications or OEM-specific requirements. The matching E/E suffix indicates consistent revision and coating specifications across both designation fields.
This board conditions and counts pulse signals from magnetic speed pickups or proximity probes, delivering accurate rotational speed data essential for turbine startup sequencing, fuel control, synchronization, and over-speed protection logic.
The DS3800HXTA1C1C is a specialized variant of the High-Speed Counter/Accumulator board manufactured by General Electric (GE) for the Mark IV and Mark V Speedtronic turbine control systems. It belongs to the DS3800HXTA base series, with the extended suffix 1C1C indicating Revision C, a specific component population, and a C-type conformal coating. The X in the base model denotes a custom or prototype configuration, making this a non-standard board intended for specialized turbine applications or OEM-specific requirements. The matching C/C suffix indicates consistent revision and coating specifications across both designation fields.
This board conditions and counts pulse signals from magnetic speed pickups or proximity probes, delivering accurate rotational speed data essential for turbine startup sequencing, fuel control, synchronization, and over-speed protection logic.
The DS3800HXTA is a specialized High-Speed Counter/Accumulator board manufactured by General Electric (GE) for the Mark IV and Mark V Speedtronic turbine control systems. It features a distinct base designation (HXTA) that sets it apart from the HSC, HSD, HSG, HSH, HSP, HSQ, HUMA, HUMB, HUMC, HVDB, HVDC, HXCA, HXFC, HXLA, HXMA, HXOD, HXPA, HXPC, HXPD, HXRA, HXRB, and HXRC series. The X in the third position typically denotes a specialized, custom, or prototype variant in GE’s naming convention, while the A in the fourth position suggests a specific coating or component variant.
This board conditions and counts pulse signals from magnetic speed pickups or proximity probes, converting them into digital count values used for speed calculation, acceleration monitoring, and over-speed protection logic.
The DS3800HXRC1F1C is a specialized variant of the High-Speed Counter/Accumulator board manufactured by General Electric (GE) for the Mark IV and Mark V Speedtronic turbine control systems. It belongs to the DS3800HXRC base series, with the extended suffix 1F1C indicating Revision F, a specific component population, and a C-type conformal coating. The X in the base model denotes a custom or prototype configuration, making this a non-standard board intended for specialized turbine applications or OEM-specific requirements. The F revision represents a highly advanced iteration, and the C coating provides environmental protection.
This board conditions and counts pulse signals from magnetic speed pickups or proximity probes, delivering accurate rotational speed data essential for turbine startup sequencing, fuel control, synchronization, and over-speed protection logic.
The DS3800HXRC is a specialized High-Speed Counter/Accumulator board manufactured by General Electric (GE) for the Mark IV and Mark V Speedtronic turbine control systems. It features a distinct base designation (HXRC) that sets it apart from the HSC, HSD, HSG, HSH, HSP, HSQ, HUMA, HUMB, HUMC, HVDB, HVDC, HXCA, HXFC, HXLA, HXMA, HXOD, HXPA, HXPC, HXPD, HXRA, and HXRB series. The X in the third position typically denotes a specialized, custom, or prototype variant in GE’s naming convention, while the C in the fourth position suggests a specific coating or component variant.
This board conditions and counts pulse signals from magnetic speed pickups or proximity probes, converting them into digital count values used for speed calculation, acceleration monitoring, and over-speed protection logic.
The DS3800HXRB1D1D is a specialized variant of the High-Speed Counter/Accumulator board manufactured by General Electric (GE) for the Mark IV and Mark V Speedtronic turbine control systems. It belongs to the DS3800HXRB base series, with the extended suffix 1D1D indicating Revision D, a specific component population, and a D-type conformal coating. The X in the base model denotes a custom or prototype configuration, making this a non-standard board intended for specialized turbine applications or OEM-specific requirements. The matching D/D suffix indicates consistent revision and coating specifications across both designation fields, with Revision D representing a more advanced iteration than Revisions B and C.
This board conditions and counts pulse signals from magnetic speed pickups or proximity probes, delivering accurate rotational speed data essential for turbine startup sequencing, fuel control, synchronization, and over-speed protection logic.
The DS3800HXRB1C1B is a specialized variant of the High-Speed Counter/Accumulator board manufactured by General Electric (GE) for the Mark IV and Mark V Speedtronic turbine control systems. It belongs to the DS3800HXRB base series, with the extended suffix 1C1B indicating Revision C, a specific component population, and a B-type conformal coating. The X in the base model denotes a custom or prototype configuration, making this a non-standard board intended for specialized turbine applications or OEM-specific requirements. The C revision represents a refinement over Revision B, and the B coating provides enhanced environmental protection.
This board conditions and counts pulse signals from magnetic speed pickups or proximity probes, delivering accurate rotational speed data essential for turbine startup sequencing, fuel control, synchronization, and over-speed protection logic.
The DS3800HXRB1B1B is a specialized variant of the High-Speed Counter/Accumulator board manufactured by General Electric (GE) for the Mark IV and Mark V Speedtronic turbine control systems. It belongs to the DS3800HXRB base series, with the extended suffix 1B1B indicating Revision B, a specific component population, and a B-type conformal coating. The X in the base model denotes a custom or prototype configuration, making this a non-standard board intended for specialized turbine applications or OEM-specific requirements. The matching B/B suffix indicates consistent revision and coating specifications across both designation fields.
This board conditions and counts pulse signals from magnetic speed pickups or proximity probes, delivering accurate rotational speed data essential for turbine startup sequencing, fuel control, synchronization, and over-speed protection logic.
The DS3800HXRB is a specialized High-Speed Counter/Accumulator board manufactured by General Electric (GE) for the Mark IV and Mark V Speedtronic turbine control systems. It features a distinct base designation (HXRB) that sets it apart from the HSC, HSD, HSG, HSH, HSP, HSQ, HUMA, HUMB, HUMC, HVDB, HVDC, HXCA, HXFC, HXLA, HXMA, HXOD, HXPA, HXPC, HXPD, and HXRA series. The X in the third position typically denotes a specialized, custom, or prototype variant in GE’s naming convention, while the B in the fourth position suggests a specific coating or component variant.
This board conditions and counts pulse signals from magnetic speed pickups or proximity probes, converting them into digital count values used for speed calculation, acceleration monitoring, and over-speed protection logic.
The DS3800HXRA1F1F is a specialized variant of the High-Speed Counter/Accumulator board manufactured by General Electric (GE) for the Mark IV and Mark V Speedtronic turbine control systems. It belongs to the DS3800HXRA base series, with the extended suffix 1F1F indicating Revision F, a specific component population, and an F-type conformal coating. The X in the base model denotes a custom or prototype configuration, making this a non-standard board intended for specialized turbine applications or OEM-specific requirements. The matching F/F suffix indicates consistent revision and coating specifications across both designation fields.
This board conditions and counts pulse signals from magnetic speed pickups or proximity probes, delivering accurate rotational speed data essential for turbine startup sequencing, fuel control, synchronization, and over-speed protection logic.
The DS3800HXRA1E1E is a specialized variant of the High-Speed Counter/Accumulator board manufactured by General Electric (GE) for the Mark IV and Mark V Speedtronic turbine control systems. It belongs to the DS3800HXRA base series, with the extended suffix 1E1E indicating Revision E, a specific component population, and an E-type conformal coating. The X in the base model denotes a custom or prototype configuration, making this a non-standard board intended for specialized turbine applications or OEM-specific requirements. The matching E/E suffix indicates consistent revision and coating specifications across both designation fields.
This board conditions and counts pulse signals from magnetic speed pickups or proximity probes, delivering accurate rotational speed data essential for turbine startup sequencing, fuel control, synchronization, and over-speed protection logic.
The DS3800HXRA1E1D is a specialized variant of the High-Speed Counter/Accumulator board manufactured by General Electric (GE) for the Mark IV and Mark V Speedtronic turbine control systems. It belongs to the DS3800HXRA base series, with the extended suffix 1E1D indicating Revision E, a specific component population, and a D-type conformal coating. The X in the base model denotes a custom or prototype configuration, making this a non-standard board intended for specialized turbine applications or OEM-specific requirements. The E revision represents a more advanced iteration than Revision D, and the D coating provides robust environmental protection.
This board conditions and counts pulse signals from magnetic speed pickups or proximity probes, delivering accurate rotational speed data essential for turbine startup sequencing, fuel control, synchronization, and over-speed protection logic.