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SCANLAB hurrySCAN Compact Scanning Heads

The hurrySCAN®II scanning head sets high-end performance standards with its optimised combination of dynAXIS® galvanometer scanner, reflector design and high-performance electronics.

Typical applications

– Material processing

– Marking

– Microstructuring

– Rapid manufacturing

– 3D Applications

– Just-in-Time Machining

Optics

Scanning mirrors and objective lenses with optimised mounts dcs-sis.com for all typical laser types and working areas.

types and working areas.

In order to make full use of the standard objective lens, the two scanning axes of the hurrySCAN® 25 have different maximum scanning angles.

This produces an elliptical image field in which the larger half-axis is perpendicular to the entrance beam axis.

Controls

All scanning heads in these series are equipped with analogue or digital standard interfaces and can be easily controlled via SCANLAB’s RTC® control panel. All scanning heads are available with an optional fibre optic data interface.

Installation regulations

The hurrySCAN® 20. 25 and 30 have threaded and unthreaded holes on the beam entry side of the housing for easy mounting of the scanning head and fibre optic output.

On the beam exit side, threaded holes are available for mounting additional components such as cross jets, illumination, distance sensors or heat shields.

Cooling

The hurrySCAN ® 20. 25 and 30 scanning heads offer water-cooled interfaces for the entrance aperture, the electronics and the galvanometer scanner, as well as air-cooling for the dedusting mirror.

This ensures constant operating conditions and excellent long-term stability, thus guaranteeing reliable operation even in high laser power applications.

The hurrySCAN ® 7. 10 and 14 are also available with optional cooling.

Options

– Expandable to a 3-axis scanning system with varioSCAN (hurrySCAN ® 20. 25 and 30 also with varioSCAN 40FLEX)

– Can be equipped with additional reference sensor systems (10 mm aperture and above)

– Available with high-performance lightweight mirrors (14 mm aperture and above)

– Scanning modules without housing available (except for hurrySCAN ® 30)

– Available with water cooling system (standard on hurrySCAN ® 20. 25 and 30)

– In extreme conditions, the scanning mirrors can be air-cooled (standard for hurrySCAN ® 20. 25 and 30)

– All scanning heads can be monitored via a camera adapter.

Woodward Flex500 Programmable Real-Time Deterministic Dedicated Digital Controller

The Flex500 is a programmable, real-time deterministic dedicated digital controller that optimises the performance and protection of compressors, steam turbines, gas turbines and water turbines.

Woodward builds on our reliable, field-proven 505D hardware platform.

Designed and manufactured in conjunction with our industry trusted and easy to use GAP programme and advanced service tools.

This model is a backplane mounted low voltage 18-36 Vdc power input rated for Class 1 Div. 2 standard position.

Features and Functionality

The Flex500 control system represents a new generation of dedicated controller remote view virtual terminal connections.

The industrial hardware platform provides stable, low-cost control for a wide variety of turbine, engine and compressor applications.

As a low-cost alternative to general-purpose PLCs, the Flex500 provides a simple, user-friendly gap-planning architecture as well as

True industrial-grade long production and support lifecycles eliminate frequent high-cost obsolescence issues.

The platform’s real-time operating system and dedicated inputs and outputs provide deterministic performance for critical prime mover control functions.

Its fast I/O scan times, high accuracy and software dcs-sis.com program synchronisation make it ideal for controlling and protecting critical high-speed rotating equipment.

Applications.

Compressor control and protection

Steam turbines

Gas turbines

Hydraulic turbines

Gas and diesel engines

Features.

Optional rear panel

Remote view

Virtual terminal connection

Powerful real-time microprocessor control

Fast, accurate on-board I/O channels

Combines real-time control with PLC programming

Deterministic I/O scan rates as fast as 5 ms.

Distributed input/output RTCnet and LINKnet HT compatible

Compliant with time synchronisation protocol SNTP

Network control connection to DCS

Low-cost alternative to general-purpose PLCs

Sulphur-resistant conformal coating

Standard or hazardous location certified

Woodward 2301E-ST Controller

The 2301E-ST controller is equipped with internal algorithms designed to start/stop, control and protect small turbines driving generators, pumps and compressors.

Features and Functions

The 2301E-ST performs the core control and protection functions of a small turbine unit.

The application software is field configurable, allowing it to be configured and modified to meet site-specific requirements.

Modbus communication also allows easy interfacing dcs-sis.com with a packaged PLC or plant DCS.

The 2301E-ST controller is backwards compatible with the existing 2301D-ST controller as it has the same form, fit and function.

The new controller ensures the continued availability of a proven, versatile product with enhanced functionality: -Accepts two redundant MPU speeds.

-Accepts two redundant MPU speed signal inputs

-Independent RS-232 and RS-422 serial ports, both with 9-pin connectors

-Additional status led for power and RS-422 communications

-Fault data logging function that collects 16 seconds of data every 10 milliseconds in the event of a shutdown, peak speed, and load detection

Low current PWM output for driving Woodward L-Series, F-Series, P-Series and PISC actuators

-New terminal block accommodates additional I/O, with most terminals located in the same locations as the 2301D-ST model.

-Major compliance certifications

Woodward 5009XT Industrial Turbine

The 5009XT is a standard off-the-shelf, single-pump steam turbine control for industrial steam turbines in reliability-critical applications.

The controller utilises Woodward’s field-proven MicroNet TMR triple-redundant fault-tolerant hardware platform combined with Woodward’s state-of-the-art XT steam control core and algorithms.

Features and Functionality

The 5009XT’s triple redundant fault tolerant design allows it to continue to safely operate the turbine at any single point of failure.

The modular design and hot-swappable features maximise uptime and minimise maintenance downtime required for control.

The unique PID architecture of the 5009XT controller makes it ideal for applications that require precise control of parameters.

These parameters include turbine speed, load, extraction header pressure, intake header pressure and exhaust header pressure or contact line power.

The field-programmable controller allows users to easily change system configurations without the need for OEM expertise.

The system can be controlled and configured using the optional 17-inch touch screen monitor or any workstation running Woodward RemoteView software.

workstation to control, configure, calibrate and tune the system.

RemoteView also serves as the system’s HMI, allowing the operator to monitor the system, start/stop the turbine, enable/disable all control modes, and view/reset system alarms.

Applications.

Speed/Frequency Control

Turbine or generator load control/limiting

Pumping and/or inlet manifold pressure control

Turbine inlet manifold pressure control/limiting

Turbine exhaust manifold pressure control/limiting

Plant input/output power control/limiting

Synchronised load sharing between units

Any process directly related to unit load

Proportional or integral servo position control dcs-sis.com with LVDT/RVDT excitation (with optional module)

Features.

Subject to C61508 SIL-3 certification (MSM required)

Triple-mode redundancy

API 612 and 670 compliant

Field-proven controller

Online configurable and repairable

Optional integrated HMI/engineering workstation

Problem Ahead Indication

Fault tolerant power supply

One millisecond timestamp alarms and faults

Integrated overspeed protection

CANOpen for integrated Woodward valves and I/Os

Emerson CSI A6620 Four-Channel Process Input Monitor

Designed for high reliability on the plant’s most critical rotating machinery, the Process Input Monitor monitors process inputs such as temperature, pressure, load, and more.

This 1-slot monitor can be used with other CSI 6500 monitors to form a complete API 670 machinery protection monitor.

Applications include steam, gas, compressor and water turbine machinery.

The main function of the Process Input Monitor is to accurately monitor process parameters and reliably protect machinery.

parameters and reliably protect the machine by comparing the parameters to alarm setpoints, actuating alarm and

Setpoints, actuate alarms and relays to accurately monitor process parameters and reliably protect the machine.

Process inputs can be ±1 V, ±10 V, or 0/4-20 mA.

The CSI 6500 Machine Health Monitor is an dcs-sis.com integral part of PlantWeb® and the AMS Suite.

PlantWeb combines the Ovation® and DeltaV™ process control systems to provide operators with an integrated view of machine health.

The AMS Suite provides maintenance personnel with advanced predictive and performance diagnostic tools to accurately determine machine failures at an early stage.

Features:

Four-channel, 3U size, 1-slot plug-in module that cuts cabinet space requirements in half compared to traditional four-channel 6U cards

API 670-compliant hot-swappable modules

Remotely selectable limit multiplication and trip bypass

Pre- and post-buffered and proportional outputs, 0/4-20 mA outputs, 0 – 10 V outputs

Self-test features include monitoring hardware, power inputs, hardware temperature, sensors, and cables

For IMR600020 chassis

IC693CPU374-JY Processor Module Series 90-30

The 90*-30 Series CPU374 PLUS provides a built-in enhanced Ethernet interface for TCP/IP communication with the following devices

Provides TCP/IP communication:

Series 90. PACSystems, and VersaMax PLCs.

Host computers running the Host Communications Toolkit or CIMPLICITY software

Computers running the TCP/IP version of the programming software

CPU Functionality

High-speed Boolean and non-Boolean processing provided by 586-class 133MHz processors

High-speed Boolean and non-Boolean processing provided by the processor

Two Ethernet ports: Two Ethernet ports: 10/100 Mbytes (one IP address), built-in auto-sensing Ethernet switch

Supports EZ Store devices for downloading dcs-sis.com programmes without a PC

240KB user memory

Key Ethernet Features

Comprehensive PLC programming and configuration services

Periodic data exchange using Ethernet Global Data (EGD) and EGD commands to read and write PLC and EGD switching memory over the network

TCP/IP communication services using SRTP

SRTP client (channel) support

Modbus/TCP server supporting Modbus Conformance Class 0. 1 and 2.

Modbus/TCP client supporting Modbus Conformance class 0. 1 and Conformance class 2 function codes 15. 22. 23 and 24.

Remote PLC monitoring via web browser

Comprehensive station management and diagnostic tools

IC693CPU372 Single Slot Modular CPU

DESCRIPTION: The IC693CPU372 is a GE Fanuc 90-30 series component.

It is a single-slot modular CPU with an AMD SC520 processor installed, a clock speed of 133MHz, and a maximum user program memory of 240Kbytes.

It supports 2048 discrete inputs, 2048 discrete outputs, 32.640 analogue input words (maximum) and 32.640 analogue output words (maximum).

It has two (2) built-in Ethernet interfaces supporting 10/100 dcs-sis.com mbps transfer speeds, Industrial Ethernet and Modbus TCP/IP.

About the IC693CPU372

The IC693CPU372 is a TCP I/P Ethernet communication interface. The module is mainly used to implement Ethernet communication

and supports system protocols such as Modbus TCP server/client and Industrial Ethernet.

The module can be used to perform periodic data exchanges using Ethernet Global Data (EGD), SRTP and SRTP clients.

The IC693CPU372 supports full PLC programming and configuration services. the IC693CPU372 has dual Ethernet ports that share the same IP address and can be used for a variety of applications.

The IC693CPU372 is equipped with dual Ethernet ports that share the same IP address and function as an internal Ethernet switch for networking and Device Level Ring (DLR) topology via daisy chain connections.

Each port supports network auto-sensing, eliminating the need to assign modules based on the speed of an existing network.

The IC693CPU372 is equipped with a dedicated processor clocked at 133 MHz.

For configuration, a built-in web server allows remote connection to a configuration station for simple module configuration and module monitoring.

For programming programmable logic controller (PLC) functions, the IC693CPU372 is configured using the machine version of the PLC Logic Developer from the Proficy Machine Edition software package.

The IC693CPU372 supports 2048 discrete inputs, 2048 discrete outputs, 128 – 32.640 analogue input words and 128 – 32640 analogue output words (maximum).

Total user memory is 240 Kbytes. internal memory is Random Access Memory (RAM) type with battery backup.

Optionally, non-volatile memory or flash memory can be added to provide memory that does not require battery power to retain its contents.

The IC693CPU372 module is designed and manufactured by GE Fanuc. This industrial communication module is used to communicate over an industrial Ethernet network running over the TCP/IP protocol.

FOXBORO Standard 200 Series Baseplate

Standard 200 Series Base Plates

The Standard 200 Series Base Plate provides a mounting platform and communications backplane for DIN rail mounted 200 Series modules.

Overview

These Standard 200 Series Baseboards support distributed dcs-sis.com control of small and large systems, specifically the following Foxboro Evo™ System Modules:

 Field Control Processor 280 (FCP280) Fault Tolerant or Non-Fault Tolerant

 Field Device Controller 280 (FDC280) Fault tolerant or non-fault tolerant

 Field Control Processor 270 (FCP270) Fault tolerant or non-fault tolerant

 Field Communication Modules (FCM100Et and FCM100E) and other FCMs

 Fieldbus Expansion Module (FEM100E)

 Fieldbus Isolator/Filter Modules (FBI200/FBI100)

 Standard Fieldbus Modules (FBMs) and 100 Series FBM connections.

The FBM-enabled 200 Series standard baseplate enables total system mounting capability by providing unit increments of 2. 4. and 8 FBM positions, as well as vertical and horizontal mounting.

Features

Key features of the 200 Series Base Plate are listed below:

 for FBM-enabled baseplates:

– 2. 4. and 8 module positions combined with vertical and horizontal mounting

– Field connectable I/O termination assemblies, redundant adapters, and modules

Identifiers for each module

– DIP switches for identification of specific module backplanes

– Additional 200 series baseboards can be added without removing the system from service (redundant bus required)

 supports FCP280/FCP270. FDC280. and FCM100Et baseboards:

– Connection for optional GPS time strobe.

All non-FDC280 module time strobe connections require a splitter/splitter. direct connections are supported on the FDC280 baseboard.

 All baseboards are supported except the FDC280 baseboard (RH101KF):

– Connection to 2 Mbps modular fieldbus for standard fieldbus modules or 268 Kbps fieldbus for 100 series FBMs

– Splitter/terminal modules for A/B fieldbuses

– Backwards compatible with existing I/O subsystems, allowing for future expansion

No additional interface hardware required

 Primary and secondary 24 VDC power supplies and communication connections

 Dedicated keying position for individual CP-type modules (e.g. FCP280. FDC280 or FCM/FBM), depending on the substrate type

 Passive backplane for increased system reliability.

200 Series Substrate Mounting

Most 200 series baseboards are available in three basic mounting configurations – horizontal DIN rail mount), vertical DIN rail mount, or horizontal or vertical DIN rail mount, but the baseboards themselves must be orientated horizontally.

Any of these mounting configurations can be used inside the cabinet, outside the cabinet, or mounted on secure DIN rails.

Bently Nevada 9200 and 74712 Seismic Probe Velocity Sensors

Description

The Bently Nevada Seismic Probe Velocity Sensor System is designed to measure absolute vibration (relative to free space) of a bearing housing, enclosure, or structure.

The two-wire system consists of a transducer and appropriate cable.

The Seismoprobe series of velocity sensors is a two-wire design using moving coil technology.

It provides a voltage output proportional to the vibration velocity of the sensor.

Moving coil sensors are less sensitive to shock or pulse excitation than solid state velocity sensors.

Solid-state velocity sensors are themselves accelerometers with embedded integrated electronics.

Moving coil sensors are less sensitive to shocks or pulsed excitation and are a good choice for some applications.

Portable measurement applications are facilitated by the fact that no external power supply is required.

Available Types

There are two types of seismic probe velocity sensors:

l 9200: The 9200 is a two-wire sensor suitable for dcs-sis.com continuous monitoring or periodic measurements with test or diagnostic instruments.

When ordered with the optional integrated cable, the 9200 offers excellent corrosion resistance without the need for an additional cable.

l 74712: The Model 74712 transducer can be used for continuous monitoring or periodic measurements with test or diagnostic instruments.

l 74712: The 74712 is the high temperature version of the 9200.

Interconnecting cables can be used to connect 9200 and 74712 sensors to other instruments.

Other Instruments. These cables are available in various lengths, with or without stainless steel armour.

When ordering the 9200 and 74712 Seismic Probe Velocity Sensors, expect approximately six weeks lead time.

Approximate lead time is six weeks. Lead times vary depending on component availability and configuration.

For estimated lead times for specific orders, contact your local Bently Nevada representative.

Omron SRM 1-C01/CO2-V2 Master Control Unit (S Controller)

Ultra-compact stand-alone model with CompoBus/S host and SYSMAC controller functionality

Features

Maximum number of remote I/O points per master:256

Maximum number of slaves per master: 32

Communication cycle time:Maximum 0.5 ms. (Baud rate is 750 kbps).

Communication distance:Up to 500 metres. (Baud rate is 93.75 kbps).

Additional commands (PID, SCL, NEG, ZCP) ensure analogue compatibility.

Integrated RS-232C port (SRM1-C02-V2).

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