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Scanlab Collimation Module

Flexible mounting options

Replaceable protection window in front of collimating optics

Good transmission to red-guided lasers

Optics for laser powers of several kilowatts

Typical Applications:

•  Welding, micro-welding

•  Cutting

•  Rapid prototyping, additive manufacturing

Typical Industries:

•  Automotive

•  Mechanical engineering and metalworking

Layout and Principle of Operation

The solidly designed Collimation Module includes an adapter for mounting the module and scan system to a machine.

Installation is possible from four sides, providing a high level of integration flexibility. 

Various fiber adapters are offered for laser coupling. The water-cooled, stainless-steel beam entrance aperture is corrosion-free even when using DI water.

A scale ring facilitates manual adjustment of the movable collimation optic.

This allows precisely setting the focus position to the scan system’s nominal working distance, as well as compensating for tolerances.

Housing

The Collimation Module‘s robust housing is dust and splash proof – particularly at the junction to the scan head. 

A replaceable protective window in front of the collimation optic additionally protects the lens unit from dust infiltration when changing fibers. 

This guarantees a long service life in industrial environments.

Optional Camera Port 

The Collimation Module can be optionally equipped with a camera adapter for process control or workpiece position detection. 

The light arriving from the workpiece is coupled out of the laser beam path by an integrated beam splitter and directed to an observation port. 

The laser light itself, however, is nearly fully www.cniacs.com reflected by the beam splitter to establish a 90° angle between fiber-in and beam-out.

Scanlab SCANcube high speed scanning in pocket size

SCANcube series combines a robust and compact design with an attractive price/performance ratio. It is the best choice for both standard and demanding laser applications.

The latest generation of our versatile scan head series is www.cniacs.com now also available with readback functions.

Key Features

• Compact & lightweight design

• Robust, sealed housing

• High dynamic performance

• Large selection of mirror coatings

• Optional: readback function of actual position, temperature and status values

Typical Applications

• Marking tasks

• Semiconductor-industry materials processing

• Microstructuring

• Processing-on-the-fly

• Additive manufacturing (3D printing)

Scanlab intelliSCAN Scanning Head Intelligent Scanning

smart scanning 

 SCANLAB’s intelliSCAN scan heads stand out with variant diversity and high dynamics. They’re among the 2D scan systems that enable deflecting and positioning of laser beams in the working plane. 

 Key Features

•  Highest dynamic performance 

•  Maximum flexibility due to switchable tunings 

•  Ideal adaptability enabled by a multitude of variants 

•  Comprehensive diagnostic and www.cniacs.com monitoring functions 

•  High long-term stability 

•  Water & air cooling optionThe intelliSCAN series allows versatile and flexible usage. It’s designed for tasks with very high scan requirements across a broad variety of application areas.

Typical Applications

•  Additive manufacturing (3D printing) 

•  Materials processing, micro-structuring 

•  Marking, welding, drilling 

•  Processing-on-the-fly

 Range of intelliSCAN Product Lines

 •  intelliSCAN (10, 14, 20 and 30 mm apertures)

 •  intelliSCAN III (10, 14, 20 and 30 mm apertures)

 •  intelliSCAN se (10, 14, 20 and 30 mm apertures)

 •  intelliSCAN de (14, 20 and 30 mm apertures) 

Advantages of intelliSCAN series

 •  Variant diversity (customer-specific tunings, assorted housings and cooling methods)

 •  High extendibility (e.g. z-axes, camera adapter)

 •  Application-specific and customerspecific tunings

 •  Lower heat generation due to digital control

 Advantages of iDRIVE technology

 •  Digital servo electronics provides improved dynamics and higher marking quality

 •  Up to three switchable tunings reduce process times

 •  Comprehensive diagnostics and communication possibilities between the scan system and RTC

 •  Acquisition of all key state variables in real time

ABB Line Transformer 500LTD02

APPLICATIONS

The Line Transformer 500LTD02 is designed to be used

for 9.6kBd FSK channels and to isolate and protect RTU500 series modems.

Isolates and protects RTU500 series modems

23WT24 and 560FSM11 Isolates and protects the RTU500 series modems from the remote control line.

Line isolation and protection. In addition, it can be connected to

other data terminal equipment. It operates over a frequency range of 2 kHz to 50 kHz.

Frequency range of 2 kHz to 50 kHz

The line impedance is 150 ohms and is suitable for the above modems.

Both types of modems are capable of high-resistance interleaving on party lines and multi-line circuits.

This is due to the fact that the line transformer has no additional load on the line.

In configurations using full duplex communication channels, two line transformers are required, one for the transmit direction and the other for the receive direction.

Features

The line transformers can withstand isolation voltages of

 > 7.5kV

ABB 23WT25 Modem 50-2400 baud rate serial communication

Applications

The 23WT25 modem is designed to operate on remote control lines with the RTU560.

However, it can also be connected to other data terminal equipment because it operates on an interface similar to a general purpose FSK modem in the voice band.

Because it www.cniacs.com operates on an interface similar to a general-purpose FSK modem in the voice band

range (300-3400 Hz) of a general-purpose FSK modem.

The 23WT25 modem can be assigned a two-wire or four-wire line with communication channels from 50 baud to 2400 baud (24 channels at 50 baud).

Baud (24 channels of 50 baud, 12 channels of 100 baud, 6 channels of 200 baud, 2 channels of 600 baud).

(12 100 baud channels, 6 200 baud channels, 2 600 baud channels, 1 1200 baud channel).

The modem 23WT25 is available in two versions (rubrics):

– R0001: 5 VDC power supply

– R0002: 24 VDC power supply

Features

The 23WT25 modem enables high-resistance interleaving on multidivision lines. No special additional provisions are required for duplex and half-duplex operation.

such as butterfly connections based on channel assignment and the selected two-wire or four-wire line. It is designed for the transmission characteristics of local cable lines.

Light-emitting diodes indicate the most important operating states, and disconnect test sockets on the front panel make it easy to test and measure VFT channels as well as Data Terminal Equipment (DTE) interface signals.

In the RTU560 subrack, the modem board occupies one slot. The modems are available in two different sizes for two different supply voltages.

In the RTU560 subrack, it is powered by 24 V DC (R0002). the R0002 (24 V DC) can also be used with a 24 V supply voltage with a voltage tolerance of ± 20 %.

Therefore, it can also be used outside the RTU 560. If only 5 V DC is available, the R0001 standard is used.

The digital signal processor (DSP) is responsible for converting binary information into speech bands and vice versa.

Among other things, its high processing power enables highly selective channel filtering (90 dB) and thus unlimited channel assignment.

ABB 560NUS04 Integrated Unmanaged Switch with 4 Ports

Applications

The RTU component 560NUS04 is an unmanaged plug-and-play 10/100 Mbps Ethernet switch providing four Fast Ethernet auto-negotiation RJ45 ports.

It features automatic MDI/X (automatic crossover detection and correction). The switch is used to distribute Ethernet within the station and to provide Ethernet for the local area network (LAN).

It provides additional ports for local area networks (LANs) and can be used with the rackmount 560MPR01. 560MPR03. and 560SFR02.

Features

For documentation purposes, Ethernet ports are labeled as

No specific uplink port; all ports function identically.

Status indicators show the link and speed status of each port (see “Connectors and Indicators”).

Status indicators show link and speed status for each port (see Connectors and Indicators).

The switch learns the Ethernet address by analyzing received frames.

The frames are analyzed to learn the Ethernet address. The learned addresses are stored in a lookup table (up to 1024

entries), which is used to forward frames only to the correct port.A

received frame is forwarded to all ports, but the receiving port

forwards to all ports if it is broadcast or multicast or if the destination address is not found in the lookup table.

The destination address is not found in the lookup table. If an entry in the lookup table is not refreshed by an incoming frame with a specific source

the entry in the lookup table is not refreshed by incoming frames with a specific source, it is aged out for up to 300 seconds.

ABB Singlemode SFP Module 500SSM11 EDS500 Series Ethernet and DSL Switches

– Medium-range (IR) SFPs with transmission distances up to 10 kilometers

– Suitable for all applications with SFP slots

– Duplex LC connector/single mode fiber

– Monitors optical signal quality/alarms Alerts prior to link loss

Applications

This Intermediate Reach (IR) SFP is a pluggable optical transceiver for fiber optic transmission lines up to 1.5 meters.

transceiver for fiber optic transmission lines up to 10 km.

10 km range. No minimum attenuation required.

This SFP type supports monitoring of receiver

input power as well as transceiver temperature and voltage (via DOM (Digital DOM)).

This SFP type supports monitoring of receiver input power as well as transceiver temperature and voltage (via DOM (Digital Optical Monitoring)).

Mechanical Form Factor and Electrical Interface

are compatible with the Multi-Source Agreement (MSA).

In addition, with this SFP type, optical signal quality and attenuation can be monitored.

quality and attenuation are monitored (e.g., the host supports SNMP). Signal Quality

ABB 560NMS24 Integrated Managed Switch with 2 SDSL Ports and 4 Ethernet Ports

Applications

The RTU component 560NMS24 is a managed plug-and-play Layer 2 switch that provides four Fast Ethernet auto-negotiating RJ45 ports with automatic MDI/X (automatic cross detection and correction) and two 2-wire SDSL ports for dedicated copper cables.

The 560NMS24 is a managed, plug-and-play Layer 2 switch that provides four Fast Ethernet auto-negotiation RJ45 ports with automatic MDI/X (automatic cross detection and correction) and two 2-wire SDSL ports for dedicated copper cable.

It is designed to be used with dedicated copper cables. It can be used with Rack Models 560MPR01. 560MPR03. and 560SFR02.

The switch is used to distribute Ethernet within the station via RJ45 ports. the SDSL port can be used to connect stations up to a maximum distance of 20 kilometers (with 0.8 mm diameter copper cables).

Longer distances can be realized by cascading several 560NMS24s. The switch provides a redundant topology via (fast) spanning tree protocol. www.cniacs.com The switch supports VLAN framing and serial data tunneling.

Features

Ethernet ports are labeled 1 to 4 for documentation purposes.

SDSL ports are connected via the backplane.

There are no specific uplink ports. All ports are functionally identical.

The link and speed status of each Ethernet and SDSL port is indicated by status LEDs (see “Connectors and Indicators”).

The switch learns Ethernet addresses by analyzing received frames and stores them in the query.

The switch learns Ethernet addresses by analyzing received frames and stores them in a lookup table (up to 2048 entries),

used to forward frames only to the correct port. If the frame is

widecast or multicast, or the destination address is not found in the lookup table, the received frame is forwarded to the correct port.

then the received frame is forwarded to all ports except the receive port.

Receive port. If an entry in the lookup table is not refreshed by an incoming frame with a specific source address

then it is aged out for a maximum of 304 seconds.

Maximum 304 seconds (default, configurable).

For IEEE 802.1Q VLAN frames, the switch can be configured in VLAN or transparent mode. In transparent mode

the switch does not change any frames or frame TAGs; in VLAN

mode, the switch can be configured to support a variety of applications, such as

trunking or access ports.

ABB 560NMS34 Managed Plug and Play Layer 2 Switch

560NMS34 – Integrated Managed Switch with 1 SDSL Port and 4 Ethernet Ports

Integrated managed Layer 2 switch

4 10/100 BaseT ports (RJ45. electrical, auto-negotiation)

1 SDSL port for copper wiring

Redundant topology via (Rapid) Spanning Tree Protocol (RSTP)

1 RS-232 port for serial protocols

Applications

The RTU component of the 560NMS34 is a managed, plug-and-play Layer 2 switch.

Provides 4 Fast Ethernet auto-negotiation with automatic MDI/X (automatic crossover detection and correction)

RJ45 ports and a two-wire SDSL port for dedicated copper. It can be used with Rack Models 560MPR01. 560MPR03. and 560SFR02.

The switch is used to distribute Ethernet within the station via the RJ45 port.

The switch is used to distribute Ethernet within the station via the RJ45 ports.The SDSL port can be used to connect to stations up to a maximum distance of 20 km (0.8 mm diameter copper cable).

The SDSL port can be used to connect stations over a maximum distance of 20 km (0.8 mm diameter copper cable). The switch provides a redundant topology via (fast) spanning tree protocol. The switch supports VLAN framing and serial data tunneling.

ABB Communication Unit 560CMR01 RTU560 Product Family

Communication module for RTU560 with 32-bit CPU

– 2 serial communication interfaces (RS-232 or RS-485) for remote communication

– 2 Ethernet interfaces (10/100BaseT)

– 1x USB port

– 1x serial peripheral bus

– Battery buffered real-time clock

Applications

The 560CMR01 Communication Unit is one of the CMU modules of the RTU560 product family.

Its main tasks are

– Managing and controlling the I/O modules via the serial I/O bus interface.

– Read process events from the input modules.

– Send commands to the output modules.

– Communicate with the control system and the local HMI system via the serial interface (RS232) and the Ethernet 10/100BaseT interface.

– Communicates with sub-RTUs, IEDs, or multimeter devices via interface (RS485) and Ethernet interfaces.

– Manages the time base of RTU560 product line stations and synchronizes I/O modules.

– Handles the dialog between the RTU560 product line and a web browser through the LAN interface.

Within the RTU560 chassis, the board occupies . www.cniacs.com The communication unit handles communication protocols based on Ethernet and UART characters.

The unit is equipped with a battery-buffered real-time clock (RTC).

The unit is available in two versions:

– R0001: with standard network security

– R0002: with security chip with advanced network security features

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