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Woodward will provide update files for legacy DSLC-2 and MSLC-2 devices Schedule

The important control functions run on the same task rates that ensures the same control dynamic.

Most important, it is being designed to be able to run with the legacy DSLC-2/MSLC-2 system.

This becomes more important than ever due to lack of obtainable components that may

force us to make a hard stop to the DSLC-2/MSLC-2 product line later this year.

If some minor rules are observed the DSLC-2XT can be mixed with already existing DSLC-2 / MSLC-2 in an application.

MSLC-2XT (in line with DSLC-2XT) is also in preparation and comes few months after DSLC-2XT.

Others:

The communication 9-pin D-sub connectors are replaced by phoenix plugs with screw terminals

The analog outputs 1 & 2 are supported with two terminals now (the shunt for voltage output is internally populated)

Schedule:

DSLC-2XT: Design release to production scheduled for Sept’22.

Shipment expected Oct’22 however depends on availability of components.

Limited early sample and draft manual available. Please contact your account manager.

MSLC-2XT: Design release to production scheduled for Nov’22.

Shipment expected Dec’22 however depends on availability of components.

Limited early sample and draft manual available. Please contact your account manager.

Part Numbers:

8440-2298: MSLC-2XT

8440-2299: DSLC-2XT

Woodward Communicating with legacy DSLC-2 (and MSLC-2) General

General:

The DSLC-2XT/MSLC-2XT is an upward compatible successor device for the DSLC-2/MSLC-2.

They are based on the easYgen-3400XT-P2 hardware. It is designed to function

as good as the original DSLC2/MSLC-2 (version 1.1511).

The new generation is equipped with a more powerful CPU, memory, and communication.

It is more responsive in HMI and SCADA communications.

The important control functions run on the same task rates that ensures the same control dynamic.

Most important, it is being designed to be able to run with the legacy DSLC-2/MSLC-2 system.

This becomes more important than ever due to lack of obtainable components that may

force us to make a hard stop to the DSLC-2/MSLC-2 product line later this year.

If some minor rules are observed the DSLC-2XT can be mixed with already existing DSLC-2 / MSLC-2 in an application.

MSLC-2XT (in line with DSLC-2XT) is also in preparation and comes few months after DSLC-2XT.

Others:

The communication 9-pin D-sub connectors are replaced by phoenix plugs with screw terminals

The analog outputs 1 & 2 are supported with two terminals now (the shunt for voltage output is internally populated)

Woodward Communicating with legacy DSLC-2 (and MSLC-2)

Important Considerations:

Communicating with legacy DSLC-2 (and MSLC-2)

Woodward will provide update files for legacy DSLC-2 and MSLC-2 devices in the field if

there is to run a mix of both DSLC-2/MSLC-2 generations.

The legacy device will then send their UDP messages in a way that DSLC-2XT/MSLC-2XT can evaluate.

It is mandatory to load this update file into the legacy devices for the system to run smoothly.

2. Using your existing settings file (*. WSET) from legacy DSLC-2 (and MSLC-2)

Woodward will provide a conversion rule for ToolKit to make the configuration transfer as smooth as possible.

Some minor parameters will be shown in a log file, to be evaluated manually.

3. The AC measurement of the DSLC-2XT (and MSLC-2XT)

The measurement hardware and software are different in comparison to the legacy devices.

This is mainly due to higher accuracy, more flexible measurement range and fast response characteristics.

The earthing of the DSLC-2XT/MSLC-2XT devices has become more important due to higher impedance of the measurement circuits.

4.ToolKit

To give you a seamless transition experience, the ToolKit layout (*. WTOOL file) is designed like the original devices.

There are few less parameters due to new AC measurement and communication interfaces.

5.Documentation server

Product literature (manuals, config. files, software etc.) is hosted on a documentation server

that is easily accessible by a QR code printed on the housing.

Two additional QR stickers are delivered with the controllers to help you paste them at a location convenient to you.

Subsequently, product CD is removed from scope of delivery.

What are the differences between DSLC-2 MSLC-2 and DSLC-2XT MSLC-2XT ?

Woodward understands the time-intensive nature of Power Generation projects.

Ensuring the longevity of our products is one way we make our customers successful.

Woodward has supplied and supported the field proven MSLC-2/DSLC-2 line of

synchronizers and load controllers for over a decade.

An upcoming state of the art Drop-In replacement successor extends the life cycle of this product line for another decade and

possibly beyond. This document provides an overview of what to expect from the successor products,

namely MSLC-2XT/DSLC-2XT respectively.

Important Features:

→  Drop-In Replacement (Mounting dimensions and overall dimensions are same)

→  Similar Look and Feel as MSLC-2/DSLC-2 (available in back panel mounting style)

→  USB Connectivity to PC (RS-232 port is removed; new: USB Type B)

→  Direct connect up to 690VAC (increased range handled by device configuration)

→  Software selectable 1A/5A CT input (supported by one P/N)

NE810 ABB Ability™ System 800xA® hardware selector

NE810 is an Industrial switch made for harsh environments. Due to

our multi-rate SFP solution, the switch can be used in either 100

Mbit or Gigabit networks. Our unique FRNT (Fast Recovery of

Network Topology) technology is the fastest protocol on the

market to re-configure a network in case of any link or hardware

failure. That is why NE810 is also used in safety-critical applications

such as tunnels, traffic signal control, and railway systems.

Installations in harsh environments and places with heavy electrical

interference require the use of reliable media. NE810 provides a

number of solutions using fiber optic transceivers. Multi- or singlemode

transceivers can be used to build point-to-point or

redundant ring networks with ranges up to 120 km between each

switch. Our BIDI transceiver, which transmits and receives data on

a single fiber can be used in applications where the number of fiber

cores is limited.

Real-time properties are implemented in the switch in order to

achieve determinism for real-time critical applications. NE810

supports QoS (Quality of Service) with four priority queues and

strict priority scheduling as well as HoL (Head of Line Blocking

Prevention). All to assure that the data network is deterministic.

NE810 ABB Ability™ System 800xA® hardware selector Features and benefits

Features and benefits

• Pre-configured for use with System 800xA

• NE810 supports redundant power connection

• Enhanced monitoring using PNSM

• Industrial Ethernet 10-port switch

• Long life duration

• Fully supported by ABB

NE810 is an Industrial switch made for harsh environments. Due to

our multi-rate SFP solution, the switch can be used in either 100

Mbit or Gigabit networks. Our unique FRNT (Fast Recovery of

Network Topology) technology is the fastest protocol on the

market to re-configure a network in case of any link or hardware

failure. That is why NE810 is also used in safety-critical applications

such as tunnels, traffic signal control, and railway systems.

Installations in harsh environments and places with heavy electrical

interference require the use of reliable media. NE810 provides a

number of solutions using fiber optic transceivers. Multi- or singlemode

transceivers can be used to build point-to-point or

redundant ring networks with ranges up to 120 km between each switch. 

ABB NE802 System 800xA hardware selector

NE802 is an unmanaged 5-port switch with one SFP fibre port and

four copper ports, al supporting 10/100 Mbit/s or Gbit Ethernet. The

ABB range of Smal Form-factor Pluggable (SFP) transceivers are

available as multimode, singlemode or Bi-Di transceivers with

distance up to 120 km.

The unit is designed for use in industrial applications with dual 10 to

57 VDC power input. The unique “tri-galvanic” isolation provides

isolation between al ports, power supply and between each chassis

screen avoiding ground loop currents. The IP21 rating ensures that

the unit can be instaled in locations where condensed water may

occur. Only industrial grade components are used which gives the

units an MTBF of 1.182.000 hours and ensures a long service life. A

wide operating temperature range of –40 to +70 °C (–40 to +158 °F)

can be achieved with no moving parts.

ABB NE802 System 800xA hardware selector Features and benefits

Features and benefits

• TX shields individualy isolated

• Wide DC power range 12 – 48 VDC

• Wide temperature range

• Automatic MDI/MDI-X crossover

• LED indicators for Power, Speed, Duplex, Link and Traffic

• Port monitoring

• 35 mm DIN rail mounting

• Enable or disable of flow control

NE802 is an unmanaged 5-port switch with one SFP fibre port and

four copper ports, al supporting 10/100 Mbit/s or Gbit Ethernet. The

ABB range of Smal Form-factor Pluggable (SFP) transceivers are

available as multimode, singlemode or Bi-Di transceivers with

distance up to 120 km.

ABB NE810 3BSE080207R1 Network switch

NE810 is an Industrial switch made for harsh environments. Due to

our multi-rate SFP solution, the switch can be used in either 100

Mbit or Gigabit networks. Our unique FRNT (Fast Recovery of

Network Topology) technology is the fastest protocol on the

market to re-configure a network in case of any link or hardware

failure. That is why NE810 is also used in safety-critical applications

such as tunnels, traffic signal control, and railway systems.

Installations in harsh environments and places with heavy electrical

interference require the use of reliable media. NE810 provides a

number of solutions using fiber optic transceivers. Multi- or singlemode

transceivers can be used to build point-to-point or

redundant ring networks with ranges up to 120 km between each

switch. Our BIDI transceiver, which transmits and receives data on

a single fiber can be used in applications where the number of fiber

cores is limited.

Real-time properties are implemented in the switch in order to

achieve determinism for real-time critical applications. NE810

supports QoS (Quality of Service) with four priority queues and

strict priority scheduling as well as HoL (Head of Line Blocking

Prevention). All to assure that the data network is deterministic.

ABB PT805 3BSE080216R1 Single mode

ABB PT806 3BSE080227R1 Single mode,BiDi

ABB PT807 3BSE080228R1 Single mode,BiDi

ABB PT808 3BSE080217R1 Single mode

ABB PT809 3BSE080235R1 Single mode,BiDi

ABB PT810 3BSE080236R1 Single mode,BiDi

ABB PT811 3BSE080218R1 Single mode

ABB PT812 3BSE080233R1 Single mode,BiDi

ABB PT813 3BSE080234R1 Single mode.BiDi

ABB PT814 3BSE080232R1 RJ45 System 800xA hardware selector

ABB PT831 3BSE080222R1 Multi mode

ABB PT832 3BSE080225R1 Multi mode

ABB PT833 3BSE080219R1 Single mode

ABB PT834 3BSE080229R1 Single mode,BiDi

ABB PT835 3BSE080230R1 Single mode,BiDi

A-B 4100-234-R Compact Motion Controller

Allen-Bradley’s 4100-234-R compact motion controller is a microprocessor-based motion controller

with 4-axis and remote I/O options, but no axle-link option.

It uses an Intel i960 microprocessor with a 16MHz processor speed and an efficient multitasking

operating system (up to 10 tasks at a time) that allows up to 2.000 user-valued processes to be

stored as 16-bit floating-point numbers in write-protected battery-supported volatile memory.

It has 10 years of battery life and data retention. The 4100-234-R uses an I/O input power supply

in the input voltage range of 90 to 132 volts AC (47 to 63 Hz), 3 amps of current, 

and 5 to 40 volts DC (nominal 24 volts), with a maximum current of 3 amps and coupling of 3 amps.

1/4 x 11/4 ratio slow fuse. Its remote I/O option allows smooth and easy communication

with the device via a remote I/O adapter.

The 4100-234-R also allows direct connection to a programmable logic controller (PLC) using

modules and discrete transmissions. It has four isolated configurable analog outputs with

a control resolution of 6 bits, 305 µV, an output range of ±10 V DC or ±150 mA,

and a maximum offset voltage output of ±80 mV at 220Ω voltage resistance.

The 4100-234-R, when combined with the flex I/O module, provides wider discrete I/O input and output capabilities.

The 4100-234-R can connect up to eight flex I/O modules, providing a total of 128 discrete I/O points.

These discrete modules provide up to 20 dedicated optical isolated discrete inputs and

8 optical isolated open relay discrete outputs for the 4100-234-R.

The 4100-234-R uses GML for programming and RS-232C for file transfer.

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