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ABB The AC 800PEC, the ultimate approach for high demands

The AC 800PEC, the ultimate approach for high demands

The AC 800PEC provides the unique combination of features

required in demanding applications:

− Short cycle times down to 100 μs

− High processing power

− Fast communication and I/O

− Programming tools:

− System engineering with IEC61131-3 languages using

ABB’s Control Builder, either as Compact or Profes sional version

− Product & control development using MATLAB® /

Simulink® for model-based design, easily bridging the

gap from simulation to implementation

− Full integration into ABB’s System 800xA

− Innovative and flexible use of FPGAs to include protocols

and application functionality in the devices without

creating additional processor load

− Optical communication

− Industrial grade hardware with no moving parts

− Long life cycle, easy upgrading

ABB AC 800PEC The high-performance control system for model-based design

Can you imagine a process with a cycle time of less than 100 μs?

We can – and we’ve built the AC 800PEC to achieve it

High-performance applications with extremely fast control

algorithms – cycle times that range from 100 microseconds

for fast control loops to seconds for long-term operational

transients – require specialized control devices.

That is why we have designed the AC 800PEC, extending the

capabilities of ABB’s well-known ControlIT automation

technology to handle the very high-speed algorithms of

processes such as power electronics applications. We’ve

even gone a step further: now, a single processor unit

combines these high-speed controls with the low-speed

process control tasks usually carried out by separate PLC units.

To facilitate the implementation of control algorithms, the AC

800PEC can be programmed using MATLAB® / Simulink® –

the code is automatically generated from the model and can

be downloaded without manual interaction.

Embedded into a robust and flexible system structure with

integrated standard communication, the AC 800PEC is

unique in the field of industrial process controllers.

Alstom RPH3/PS125b Controlled Switching Device,CT1VT220/TCR

This new Alstom Grids point-on-wave switching controller, RPH 3.

offers an electronic alternative to conventional solutions with increased security

and protection of the electrical equipment.

It can be used for configuration, monitoring, data logging and diagnostics.

It provides a more reliable way of stopping transient over voltages from damaging networks than traditional devices.

Traditionally, circuit breakers have been equipped with closing resistors to

minimize the level of over voltage generated during closing or re-closing operations.

This solution is expensive because a lot of equipment has to be installed and secondly

it is inherently less reliable since its mechanical parts can be affected by external

disturbance such as severe climatic conditions.

RPH 3 reduces the stress create by switching operations caused by lightning strikes and transient surges.

It is suitable for protecting circuit breakers and transmission circuits from 362 kV power networks

and above and can be applied to closing and auto-reclosing of

uncompensated or shuntcompensated transmission lines as well as

dual switching of high voltage lines and transformers.

RPH 3 uses sophisticated algorithms and fast digital signal processing

to close contacts in under a millisecond, when the voltage across the breaker is close to zero.

It increases reliability, requires less maintenance, is very easy to install and is smart grid ready

(fully IEC 61850 compliant) with its integrated web server.

RPH 3 fully supports the optimization of the customers network design,

operation and maintenance and reduces the total cost of ownership.

Vibro-Meter RLC16 Relay card Relay card Description

Description of the RLC16 Relay Card

The RLC16 relay card is designed for use in Meggitt Sensing Systems’ VM600 Series 

Vibrometer® product line for mechanical protection systems as well as condition and performance

monitoring systems.

It is an optional card for use when the four relays on the IOC4T I/O card

are insufficient for the application and additional relays are required.

The RLC16 is mounted on the rear of the VM600 (ABE04x) rack and connects directly to the rack

backplane via a connector.

The RLC16 contains 16 relays with changeover contacts.

Each relay is associated with 3 terminals on the screw terminal strip at the rear of the VM600 rack.

The relays are controlled by software-controlled open collector actuators.

Jumpers on the RLC16 card allow selection of either Normal Energized (NE) or Normal De-energized

(NDE) relays.

Storage

– Temperature : -40 to +85°C (-40 to +185°F) -40 to +85°C (-40 to +185°F)

– Humidity: 0 to 95% non-condensing

Vibration and shock: See general specifications for VM600 racks

Physical Dimensions

Height: 6U (262 mm, 10.3 inches)

Width: 20 mm (0.8 in)

Depth: 125 mm (4.9 in)

Weight: 0.30 kg (0.66 lbs)

Translated with DeepL.com (free version)

Vibro-Meter RLC16 Relay card Relay card Relay Characteristics

Relay Characteristics

Relay Name: RL1 to RL16

Type: PE014005

Contact Arrangement: 1 COM, 1 NC, and 1 NO contact/relay.

All relay contacts are on J1. J2 and J3.

Rated voltage: 250 VAC

Current Rating: 5 AAC

Maximum breaking capacity (no contact protection): 1250 VA

Description of the RLC16 Relay Card

The RLC16 relay card is designed for use in Meggitt Sensing Systems’ VM600 Series 

Vibrometer® product line for mechanical protection systems as well as condition and performance

monitoring systems.

It is an optional card for use when the four relays on the IOC4T I/O card

are insufficient for the application and additional relays are required.

The RLC16 is mounted on the rear of the VM600 (ABE04x) rack and connects directly to the rack

backplane via a connector.

The RLC16 contains 16 relays with changeover contacts.

Each relay is associated with 3 terminals on the screw terminal strip at the rear of the VM600 rack.

The relays are controlled by software-controlled open collector actuators.

Jumpers on the RLC16 card allow selection of either Normal Energized (NE) or Normal De-energized

(NDE) relays.

IBA ibaLink-SM-128V-i-2o VMEbus Interface Card Scope of delivery

Relevant specifications (VITA standards):

 VMEbus

 IEEE 1014-1987

 VME64

 ANSI VITA 1-1994 VME64X; VITA 1.1-19

Remarks Since an analog channel always corresponds to a digital channel in the iba bus concept,

an analog value and a digital value are referred to as a channel or a signal for simplicity of description.

Scope of delivery

The goods are checked for completeness and integrity after unpacking.

The scope of delivery includes

 Device ibaLink-SM-128V-i-2o

 Manual

Safety instructions

Specified use

The device is an electrical device. It can only be used for the following applications:

 Automation of industrial systems

 Measurement data logging and analysis

 Application of ibaSoftware products (ibaPDA, ibaLogic, etc.)

IBA ibaLink-SM-128V-i-2o VMEbus Interface Card Relevant specifications

The following non-privileged modes of VME access are possible:

 A24 and A32 in the following VMEbus data formats

 D08 (E0)

 D16

 D32

 A40 MD32 (on special request)

The BLT and MBLT modes as well as the auto-configuration and geo-addressing functions are being prepared, but are not available at this time.

The 2eVME mode has not yet been implemented. Access is only allowed in unprivileged data access mode.

The SM128V is a passive board on the VMEbus, i.e., it will not be actively accessed or interacted with on the VMEbus.

The board uses 256 kbytes of address space on the VMEbus.

Relevant specifications (VITA standards):

 VMEbus

 IEEE 1014-1987

 VME64

 ANSI VITA 1-1994 VME64X; VITA 1.1-19

Remarks Since an analog channel always corresponds to a digital channel in the iba bus concept,

an analog value and a digital value are referred to as a channel or a signal for simplicity of description.

Vibro-Meter VM600Mk2/VM600 ABE056 Slimline Racks SPECIFICATIONS

SPECIFICATIONS

OVERVIEW

Housing: Painted galvanized steel sheet

Color: Off-white (RAL 9002)

Power supply: Integrated RPS1U power supply for VM600Mk2/VM600

The integrated RPS1U power supply provides +5 VDC and ±12 VDC for the VM600Mk2/VM600 and all installed modules (cards).

See also AC Input Power on page 3 and DC Input Power on page 3.

Power Input: The power input has an AC or DC connector (with RFI filter) and an on/off switch.

See Ordering Information on page 6 for information on the main power cord (power strip).

Backplane: Proprietary VM600Mk2/VM600 rack bus (open collector (OC) bus) for data/signal sharing between modules (cards)

Rack Slots (module (card) locations):

Front of rack:

– 1 × slot – module (card) position 01 – for handling modules (cards) such as MPC4Mk2. XMx16. MPC4. or AMC8.

Rear of rack:

– 1 × Slot – Module (Card) Position 01 – For associated input/output modules (cards) such as IOC4Mk2. XIO16T, IOC4T or IOC8T.

– 1 × slot – module (card) position 00 – for the relevant relay module (card), e.g. RLC16Mk2 or RLC16.

Vibro-Meter VM600Mk2/VM600 ABE056 Slimline Racks Applications RPS1U

​Both power supplies support a wide input voltage range.

The rack has an integrated backplane that provides electrical interconnection between the integrated

power supply (RPS1U) and the installed VM600Mk2/VM600 modules (cards).

The rack also has a power check relay on the rear of the rack to indicate if the integrated power supply is

functioning properly.

The VM600Mk2/VM600 Processing Module (Card) is mounted at the front of the rack and the

associated Input/Output Module (Card) is mounted at the rear of the rack.

The input/output modules (cards) provide connectors for connecting sensors/measurement

chains and for sharing various signals with external systems such as DCS or PLC.

In general, the VM600Mk2/VM600 ABE056 Ultra Slim Racks are factory-configured before shipment and

are therefore ready for use.

Optionally, each module (card) can be reconfigured to meet the needs of a specific machinery monitoring

application.

Each module (card) can be reconfigured to meet the needs of a specific machinery

monitoring application using the appropriate software package from Meggitt Vibro-Meter: VibroSight®

or VM600 MPSx.

Vibro-Meter VM600Mk2/VM600 ABE056 Slimline Racks Applications

Applications

– VM600Mk2/VM600 Mechanical Protection and/or Condition Monitoring Systems

VM600Mk2/VM600 Mechanical Protection and/or Condition Monitoring Systems

The VM600Mk2/VM600 ABE056 slimline rack is used to house the hardware for

the VM600Mk2/VM600 series of machine protection and/or condition monitoring systems in the

Vibrometer® product line.

The VM600Mk2/VM600 ABE056 slimline rack has a standard height of 1U and provides mounting

space (rack slots) for a single wide VM600Mk2/VM600 processing module (card pair) and a relay module

(card).

This rack is particularly suitable for industrial environments where the equipment must be permanently

installed in a 19-inch cabinet or panel.

Different versions of the integrated RPS1U power supply can power the VM600Mk2/VM600

ABE056 slimline racks from an external AC or DC power supply.

Both power supplies support a wide input voltage range.

The rack has an integrated backplane that provides electrical interconnection between the integrated

power supply (RPS1U) and the installed VM600Mk2/VM600 modules (cards).

The rack also has a power check relay on the rear of the rack to indicate if the integrated power supply is

functioning properly.

The VM600Mk2/VM600 Processing Module (Card) is mounted at the front of the rack and the

associated Input/Output Module (Card) is mounted at the rear of the rack.

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