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Woodward GS-Series (GS40/50) Fuel Metering Valves Fuel Flow

Fuel Flow

Gas fuel flow is normally achieved by the accurate scheduling of the metering valve port area, based on

values for gas properties, operating pressures, and temperature. The GS-Series valve is factory calibrated

under flow and pressure conditions to provide an accurate valve metering to the input demand signal.

Flow equations for the valves are located in the O&M manual. These can be used to set up the valve for

any site-specific conditions.

Port Sizes

The GS-Series is available with five different port sizes to optimize valve performance for various flow and

pressure drop requirements. Standard port effective area sizes are:

GS40

• 0.30 in² (193.5 mm²)

• 0.75 in² (483.9 mm²)

GS50

• 1.0 in² (645.2 mm²)

• 1.5 in² (967.7 mm²)

• 2.0 in² (1290.3 mm²)

The standard metering ports are contoured to provide approximately square law relationships between

commanded position and effective area.

Woodward The on-board valve driver performs the following functions

The on-board valve driver performs the following functions:

• Fast and accurate closed loop position control of the gas valve in response to the 4–20 mA or

CANopen/RT

Ethernet input command signal

• Actual valve position feedback via 4–20 mA or CANopen/RT Ethernet

• Independent remote shutdown input

• Valve/driver fault output

The driver includes protection and alarm indications for the following faults:

• Analog input out of range

• Feedback—open wire and short

• Input power out of range

• Position error

• Internal driver faults

• Actuator open/short

• Driver overcurrent

All faults are available through the CANopen/RT Ethernet connection or through an Ethernet Service

connection.

Woodward GS40/50 On-board Driver

On-board Driver

The valve driver and wiring terminal box are integral with the valve assembly,

eliminating interconnecting wiring, reducing package size requirements, and

lowering the installed cost. The on-board driver can be interfaced to the turbine

control via redundant 4–20 mA input and feedback signals, through redundant

CANopen control networks, or through redundant real-time Ethernet networks. The

GS-Series can be configured to accept both the 4–20 mA signal and CANopen/RT

Ethernet position command in a redundant configuration. With this arrangement, if

either demand signal fails, the driver will switch to the healthy input demand signal.

The valve driver operates with a 90-150 VDC or 18-32 VDC power supply,

depending on the model.

Woodward The GS-Series is an electrically actuated fuel valve with an on-board electronic driver

Description

The GS-Series is an electrically actuated fuel valve with an on-board electronic

driver. The self-cleaning, shear-type metering action keeps the metering port free

from performance-limiting deposits of gas condensates, contaminants, and system

debris. The valve minimizes the moving parts within the fuel metering element,

actuator rotor, and redundant position feedback resolvers to maximize accuracy over

the entire operating range. Available actuator torque has been increased to provide

more robust performance in the harshest conditions. Accurate flow versus input

signal characteristics is achieved on each valve version by precision forming of the

valve metering port, the use of extended valve travels, and high precision resolvers

for valve position feedback. The GS valves can achieve flow turn-down ratios in

excess of 100 to 1. The positive flow shut-off rating meets the requirements of ANSI

B16.104 Class IV across all valve sizes and ports.

• Electric actuation

• Integrated driver

• Robust self cleaning valve

• Aluminum or stainless steel body

• Multiple trim sizes available

• -40°F to 350°F fuel range

• Fuel pressures to 1440 psig

• SAE and ANSI RF flange options

• 24 VDC or 125 VDC input voltage options

• IIoT ready

• Analog and digital I/O

• Models available with CE Marking to applicable directives, with IECEx

Certification to Hazardous Locations, and North America

• 100% Hydrogen Compatible Model Available

Woodward GS-Series (GS40/50) Fuel Metering Valves

Applications

The Woodward GS Series gas fuel metering valve

family is the latest version of rotary control valves

utilizing an integrated actuator and on-board driver

built on decades of application experience in the

gas turbine market.

The self-cleaning valve design is ideal for applications ranging from clean pipeline

gas to wellhead gas. The valve features an on-board electric actuator driver for

ease of packaging and installation. The on-board driver eliminates the need for

costly climate-controlled terminal boxes and associated cabling. Each valve

includes redundant position feedback resolvers and an integral failsafe spring to

maximize reliability and safety. The integrated driver incorporates redundant signal

conditioning, fault detection, and selectable failure management options. The

multiple valve sizes and trims can be configured in single or multi-path systems to

enable a wide range of applications.

ABB GFD233 3BHE022294R0102 Control Processing Input Module

The ABB 3BHE022294R0101 GF D233 or GFD233 3BHE022294R0101 Analog Module,

designed for use with the ABB Megadrive LCI, serves as a critical component for signal conversion in

industrial automation. 

This module can perform both analog-to-digital and digital-to-analog conversions,

making it essential for sensor data acquisition, control systems, and monitoring applications.

The key features of the relay are:

1. Self-Powered Three-Phase Non-Directional Overcurrent GFD233 3BHE022294R0102 and Earth-Fault

Protection:

• Provides protection against overcurrent and earth faults with both definite minimum time (DMT) and

inverse definite minimum time (IDMT) characteristics.

2. Dual Mode of Earth Fault Measurement:

• Offers the option of internal vector summation or external Current Transformer (CBCT) input for earth

fault measurement.

3. Integrated IDMT Curves:

• Incorporates IDMT curves (IEC and Special) within a single product to accommodate time coordination

requirements for secondary distribution protection.

4. GFD233 3BHE022294R0102 Protection Blocking by Second Harmonic Measurement:

• Ensures stability during magnetizing inrush of transformers by utilizing second harmonic measurement.

5. Capacitor Discharge Impulse Output:

• Provides a low-energy trip coil for efficient operation.

6. Built-in Hand-Reset Electromagnetic Flag:

• Features a hand-reset electromagnetic flag for trip indication.

7. Easy Setting by DIP Switches:

• Settings are easily adjustable via DIP switches, protected by a transparent cover.

8. Compact Design for Secondary Switchgear Applications:

• Designed to be compact and mountable, suitable for Ring Main Unit (RMU) and secondary switchgear

applications.

9. Test Facility:

• Offers a test facility for testing the entire protection scheme, including primary CT, relay, and trip coil.

10. Signal Output for Trip Indication:

• Provides a signal output for trip indication to external systems.

Prosoft Ethernet Communication Gateway PLX31-EIP-SIE

ProSoft Technology’s EtherNet/IP™ to Siemens® Industrial Ethernet communication

gateway allows high-speed bi-directional data transfers between EtherNet/IP™

enabled controllers or devices and Siemens® S7-200. S7-300. S7-400. S7-1200. and

S7-1500 PACs.

In addition, the gateway includes several features, including data prioritization, that

allow for simplified integration, reduced commissioning time and optimized

performance.

Features

 Data prioritization: Multiple I/O connections allow you to set RPIs for status and/or control data,

optimizing Ethernet bandwidth.

 Includes an embedded EDS Add-On Profile, allowing for simplified integration and reduced

commissioning time.

 Includes a SD card slot (SD card optional) for storing configuration files. This can be used for disaster

recovery.

 ProSoft Discovery Service: This utility allows your PC to see the gateway and change its default IP

address without being on the same subnet.

 Secure module configuration via module switch (v1.04 and greater).

 Up to 10.000 16-bit registers can be used to exchange large amounts of data.

Prosoft PROFIBUS DPV1 Master Communication Module

DPV1 Services Supported

 Read Request

 Write Request

 Alarm Indication

 Extended Device Diagnostics

Configuration

The Configuration for the PS69-DPM is done with our next generation configuration tool PROSOFT.fdt.

The configuration software and communication DTM are included with the module allowing easy

configuration of the Master module and network slave devices.

The DTM can be used in any FDT compatible software container.

The configuration is transferred via the serial diagnostic interface and stored in the FLASH memory of the

PS69-DPM module.

General Specifications

 Single Slot – 1769 backplane compatible

 The module is recognized as an Input/Output module and has access to processor

memory for data transfer between processor and module

 Ladder Logic is used for data transfer between module and processor. Sample

ladder file included.

 Supports all CompactLogix and MicroLogix 1500 LRP Controllers except 1769

L23E-QBFC1B, 1769-L16x, and 1769-L18x

Prosoft The PS69 PROFIBUS DP Master module

The PS69 PROFIBUS DP Master module expands the functionality of ’s

CompactLogix / MicroLogix family of processors to include PROFIBUS. This

module supports both I/O control and messaging, thus integrating DPV0 and DPV1

functionality into CompactLogix / MicroLogix.

The PS69-DPM is a CompactLogix / MicroLogix compatible, PROFIBUS certified

module, which enables controllers to communicate with a PROFIBUS network. The

configuration and diagnostic of the PROFIBUS system is done via the serial

diagnostic interface of the module using the System Configuration tool . The data

exchange between controller and module is done via the I/O process data image

using CompactLogix / MicroLogix backplane technology.

DPV0 Services Supported

 Fail Safe Mode

 Global Control

 Sync and Freeze

 Watchdog

DPV1 Services Supported

 Read Request

 Write Request

 Alarm Indication

 Extended Device Diagnostics

ABB AC 800F Overview of Technical Data

Benefits

• Availability: Redundancy at all levels

• Supports different fieldbus types, even simultaneously:

• PROFIBUS-DP, up to 12 MBd

• FOUNDATION Fieldbus H1 (with LD 800HSE)

• HART

• Modbus

• Telecontrol

• CAN (for Freelance Rack I/O)

• Typically around 1.000 I/Os

• Compact, rugged design

AC 800F Overview of Technical Data

CPU    32-bit super scalar RISC processor with rapid

bit processing

RAM    16 MB (SD-RAM)

for application with battery backup

Task execution    Cyclic (configurable cycle times from 5 ms)

Event driven (predefined events)

As fast as possible (PLC mode)

Interfaces    Ethernet

PROFIBUS

FOUNDATION Fieldbus

MODBUS TCP

Station bus (CAN bus)

Serial:

RS485/422/232

Modbus protocol

IEC 60870-5-101 Telecontrol protocol

Ambient temperature    0…60°C (32…140°F),

no forced cooling required

Certificates    CE, NAMUR, UL, ISA-S71.04 (G3 severity level)

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