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ABB MNS iS Motor Control Center

Functional separation

The switchboard is divided into vertical and horizontal compartments thus separating different functional

areas.

As even power cabling and control wiring are strictly separated within MNS iS, the switch-board is

structured as follows:

1. Equipment compartment

All equipment, including the standard motor starter modules MStart or feeder modules MFeed in withdrawable design, is situated therein.

The compartment can be divided in horizontal and vertical sub compartments.

2. Control cable compartment

Contains the integrated control devices MControl, control cables and terminals.

3. Power cable compartment

Contains power cables and connection units.

4. Busbar compartment

Contains the MNS main busbar system and distribution bars. The distribution bars are embedded

in the Multifunction Separation Wall (MFW) which is located between the Equipment compartment and

the Busbar compartment

ABB Instrumentation 2600T Technical limit values

Technical limit values

The device is designed for use exclusively within the values stated on the name plates and within the

technical limit values specified on the data sheets.

The following technical limit values must be observed:

• The Maximum Working Pressure may not be exceeded.

• The Maximum ambient operating temperature may not be exceeded.

• The Maximum process temperature may not be exceeded.

• The housing protection type must be observed.

Warranty provisions

Using the device in a manner that does not fall within the scope of its intended use, disregarding this

manual,using under-qualified personnel, or making unauthorized alterations, releases the manufacturer

from any liability for any resulting damage.

This makes the manufacturer’s warranty null and void.

ABB Instrumentation 2600T Pressure Transmitter family

Improper use

It is prohibited to use the device for the following purposes:

• As a climbing aid, e.g., for mounting purposes

• As a support for external loads, e.g., as a support for pipes, etc.

• Adding material, e.g., by painting over the name plate or welding/soldering on parts

• Removing material, e.g., by drilling the housing.

Repairs, alterations, and enhancements, or the installation of replacement parts, are only permissible as far as these are described in the manual.

Approval by ABB must be requested for any activities beyond this scope. Repairs performed by ABB-authorized centers are excluded from this.

Technical limit values

The device is designed for use exclusively within the values stated on the name plates and within the technical limit values specified on the data sheets.

The following technical limit values must be observed:

• The Maximum Working Pressure may not be exceeded.

• The Maximum ambient operating temperature may not be exceeded.

• The Maximum process temperature may not be exceeded.

• The housing protection type must be observed.

Warranty provisions

Using the device in a manner that does not fall within the scope of its intended use, disregarding this manual,

using under-qualified personnel, or making unauthorized alterations, releases the manufacturer from any liability for any resulting damage.

This makes the manufacturer’s warranty null and void.

ABB 266DSH Mounting position

Mounting position

Rotations in the plane of the diaphragm have a negligible

effect. A tilt from the vertical of up to 90° causes a zero

point shift of up to 0.5 kPa (5 mbar, 2 inH2O), which can be

corrected by making an appropriate zero position

adjustment. There is no effect on the measuring span.

In applications where a dynamic inclined installation is

required (e.g. naval applications with maximum vessel

inclination of +/-22.5°), the maximum error can be up to 3

mbar for 266DSH

Such error might be resulting in a deviation from the

standard accuracy with percentual magnitude depending

on the range of the selected device.

In case of non-dynamic inclined installations, this effect

can be eliminated by performing a zero calibration in the field.

Please contact ABB to assess more in details on the installation effects

ABB 266DSH Differential pressure transmitters Static pressure

Static pressure

(zero errors can be calibrated out at line pressure)

per 0.5 MPa, 5 bar or 72.5 psi (sensor A)

per 2 MPa, 20 bar or 290 psi (sensor B)

per 3.5 MPa, 35 bar or 500 psi (sensor E)

per 7 MPa, 70 bar or 1015 psi (sensor F to S)

Model 266DSH standard static

• zero error: ±0.05 % of URL for sensor F to S

±0.08 % of URL for sensor A, B and E

• span error: ±0.08 % of reading.

Model 266DSH flange mounted

per 2 MPa, 20 bar or 290 psi

• zero error: ±0.05 % of URL for sensor F to P

±0.08 % of URL for sensor E

span error: ±0.08 % of reading.

Mounting position

Rotations in the plane of the diaphragm have a negligible

effect. A tilt from the vertical of up to 90° causes a zero

point shift of up to 0.5 kPa (5 mbar, 2 inH2O), which can be

corrected by making an appropriate zero position

adjustment. There is no effect on the measuring span.

In applications where a dynamic inclined installation is

required (e.g. naval applications with maximum vessel

inclination of +/-22.5°), the maximum error can be up to 3

mbar for 266DSH

Such error might be resulting in a deviation from the

standard accuracy with percentual magnitude depending

on the range of the selected device.

In case of non-dynamic inclined installations, this effect

can be eliminated by performing a zero calibration in the field.

Please contact ABB to assess more in details on the installation effects

ABB UNITROL 1005 Automatic voltage regulators (AVR)

Introduction

This document is a quick installation guide for the UNITROL1005 automatic

voltage regulator. Make sure that you read and understand this document

before you install or use the product. This document is meant only as a brief

guide to the product. For detailed information on the product, refer to the User 

Manual.

Device description

UNITROL 1005 is an automatic voltage regulator (AVR) for synchronous

machines up to 80MVA. The AVR can be used for the excitation of indirectly

excited synchronous machines and motors. The AVR can also operate as a

reactive power regulator, power factor regulator or field current regulator.

Product package

Contents of the product package:

• UNITROL1005 AVR

• Special red USB cable that is used to power and to connect with the AVR.

Keep this USB cable in a safe place.

• Quick installation guide and test certificate

Make sure that all of the listed items are in the product package and that there is

no damage to the items.

ABB SYMAP Diagnostics and monitoring Functions

Stopping the recorder can be triggered by either an event or a preset

time. For easier management and trouble-shooting, event data can be

transferred and analyzed. The data transfer is made by a link through a

plug on the front panel of the SYMAP® device.

Diagnostics and monitoring

SYMAP® provides various diagnostic and monitoring functions:

•  all memories (ROMs, RAMs, EEPROMs)

•  all analog reference voltages

•  automated test sequences

•  control power ON/OFF

•  binary input and output for control logic

The following supervising systems are offered by SYMAP®:

•  self-diagnostics

•  inputs of analog data (auxiliary circuit)

•  status and position of switching device and motor’s on-off status

•  supervising supply of trip coil

•  gas pressure

• temperature inside panel

•  each operating life of breaker (hours)

ABB Data recorder (optional) SYMAP

Data recorder (optional)

The data recorder can log analog inputs, digital inputs, and digital out

puts. The recorder has the following settings:

•  number of samples (6-72)

•  recording period (5-60 sec)

•  pre-trigger (0-100%)

•  trigger event (start for recorder)

•  trigger event (stop for recorder)

The recording period depends on the number of samples. The recorder

can be set with the pre-trigger to record event data even before the

event happens.

Diagnostics and monitoring

SYMAP® provides various diagnostic and monitoring functions:

•  all memories (ROMs, RAMs, EEPROMs)

•  all analog reference voltages

•  automated test sequences

•  control power ON/OFF

•  binary input and output for control logic

The following supervising systems are offered by SYMAP®:

•  self-diagnostics

•  inputs of analog data (auxiliary circuit)

•  status and position of switching device and motor’s on-off status

•  supervising supply of trip coil

•  gas pressure

• temperature inside panel

•  each operating life of breaker (hours)

ABB SYMAP Detailed protection function history

Detailed protection function history

SYMAP® automatically collects and stores all activated events related to

protection functions with a time stamp. A maximum of 1.000 protection

function events can be stored. In case of overflow, overwriting follows

the FIFO principle.

Event history

SYMAP® automatically collects and stores all activated events with their

number, title, appearing and disappearing status and a time stamp. A

maximum of 5.000 events can be stored. In case of overflow, overwriting

follows the FIFO principle. The event history can be transferred to a PC

and evaluated by a PC tool. Regardless of power supply, the data store is permanent.

ABB SYMAP Communication Digital Protection Relays

Communication

SYMAP® can serve as the main bay controller for the power management

system or substation system. The following list shows the station system

items available through  SYMAP®:

• remote supervision

•  remote control

•  remote parameter setting

•  central registration of measured and calculated values

•  central event logging

•  central fault recording, analysis and logging

•  plant power management

Communication interfaces

SYMAP® provides communication ports available with the following

interfaces and protocols:

•  1 x RS 232 on the front panel for programming and data output

•  1 x RS 422/485 port

• 1 x PROFIBUS DP (RS485 or fiber optic port)

•  MODBUS RTU

•  MODBUS TCP (RJ45 or fiber optic port)

•  IEC 60870-5-103 (RS485 or fiber optic port)

•  IEC 61850 (RJ45 or fiber optic port)

•  CANBUS 1 (communication between devices as power management

system, breaker control interlocking)

•  CANBUS 2 (engine control interface: MTU, VOLVO, DEUTZ etc.)

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