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ABB AI825 System 800xA hardware selector

Features and benefits

• 4 channels individualy galvanic isolated inputs for +20 mA, 0 .20 mA, 4 .20 mA, +10 V, 0 .10 V, 2 .10 V

• 14 Bit resolution plus sign

• Input shunt resistors protected to 30 V d.c.

• The input withstands HART communication

The AI825 Analog Input Module has 4 individualy galvanic isolated,

bipolar current/voltage inputs. Each channel can be either a voltage

or current input.

The module has a direct current input that withstand up to 6.3 V and

a over voltage protected current input that withstand up to +30 V d.c.

The current is limited by a PTC resistor.

Power to the input stages is converted from the 24 V on the

ModuleBus.

BAUMULLER b maXX 3000 Servo Controller BM3401-LIFBO-ACOOOCB-G-02-O-02

The b maXX 3300 servo converter was designed for small outputs of up to approx.

5 kW and is specially configured for operation with Baumüller servo motors of size

28-100 as well as disc and linear motors. Thanks to the consistent design of the

controller with a view to economy and compact construction, the b maXX 3300 is

just as suitable for applications in the handling or robotics sector as it is for

applications in the printing, textile and packaging industries.

High-quality servo-controller for small drives

The b maXX 3300 servo-controller is a high-quality servo-controller with integrated

position control for the small power range. The maXX 3300 features a compact,

space-saving design. The field-oriented regulation ensures an excellent smooth

running quality. The higher-level speed and position control ensures dynamic and

precise positioning. The b maXX 3300 is compatible with b maXX 5000 servo-

controllers in terms of handling, communication, parameter structure, main

functionality and operation. The b maXX 3300 is parameterized via ProDrive.

The highly dynamic control of the b maXX 3300 in conjunction with the highly

dynamic small servo motors of the DSD series increases the clock rate of the

application and thereby the production rate of machines and systems.

GE PCM Regulator for EX2100e Power Conversion Module 151X1235DB15SA1

Software

The EX2100e uses the ToolboxST* application for

configuration and diagnostics and retains all attributes for

high-speed analysis of rotating machinery and the enhanced

look-and-feel of plant-level Distributed Control System

software. For example, the ToolboxST application can analyze

and configure I/O modules, controllers, networks, and

operator stations for generator controls, turbine controls, and

balance-of-plant controls to simplify maintenance.

Proven Technology

While controllers, networks, I/O modules, and software tools

are upgraded, the heart of the system remains the same.

Proven control and protection algorithms remain unchanged.

Similarly, mission-critical power bridge technology is carried

over from the EX2100 power conversion assemblies.

In addition, control cabinet footprints are unchanged and

compliance to international regulations and standards is retained.

ABB AO815 System 800xA hardware selector

Features and benefits

• 8 channels of 4 .20 mA

• 1 group of 8 channels isolated from ground

• Analog inputs are short circuit secured to ZP or +24 V

• HART pass-through communication

The AO815 Analog Output Module has 8 unipolar analog output

channels. The module performs self-diagnostic cyclicaly. Module

diagnostics include:

• External Channel Error is reported (only reported on active

channels) if the process power supply that supply voltage to

output circuitry is too low, or the output current is less than the

output set value and the output set value is greater than 1 mA

(open circuit).

• Internal Channel Error is reported if the output circuit can not

give the right current value.

• Module Error is reported in case of Output Transistor Error, Short

Circuit, Checksum Error, Internal Power Supply Error or

Watchdog error.

The module has HART pass-through functionality. Only point to point

communication is supported. The output filter must be enabled on

channels used for HART communication.

Emerson Fisher™ 377 Features

Features

• Cost Effective—Single trip valve construction

reduces costs and spare part requirements of those

systems using three separate switching valves to

perform the failure functions. A single trip valve

greatly simplifies piping requirements.

• Ease of Mode Conversion—Conversion to any of the

fail modes requires only minor hookup changes.

• Adjustable Trip Valve—The trip point is adjustable

for specific supply pressure requirements.

• Reliable Operation—The trip valve design includes

large diaphragm areas and few moving parts for

efficient performance, minimum maintenance, and

long service life.

Specifications

Available Configurations

When supply pressure falls below the trip point,

377D Trip Valve: Fails actuator piston down. Includes

check valve and volume tank.

377L Trip Valve: Locks actuator piston in the last

position.

377U Trip Valve: Fails actuator piston up. Includes

check valve and volume tank.

377CW Trip Valve: Fails fully clockwise to close the

valve. Requires check valve and volume tank. Trip

valve moves piston to either up/down position and

requires actuator configuration for actual clockwise

movement.

377CCW Trip Valve: Fails fully counterclockwise to

close the valve. Requires check valve and volume

tank. Trip valve moves piston to either up/down

position and requires actuator configuration for

actual counterclockwise movement.

All 377 trip valves can be converted to any of the

above fail modes with minor hookup changes

Emerson Fisher™ 377 Trip Valve

Fisher™ 377 Trip Valve

Fisher 377 pressure‐sensing trip valves are for control

applications where a specific valve/actuator action is

required when supply pressure falls below a specific

point. When supply pressure falls below the trip point

(see figure 1), the trip valve causes the actuator to fail

up, lock in the last position, or fail down. When the

supply pressure rises above the trip point, the 377 trip

valve automatically resets, allowing the system to

return to normal operation. The trip valve can be

top‐mounted on a manifold, yoke‐mounted, or

bracket‐mounted to match the application

requirements. 377 trip valves can be used with Fisher

480. 585C, 685. 1061. 1066. 1069. and Bettis™ G

Series piston actuators.

Prosoft MVI56-104S IEC 60870-5-104 Ethernet Server Communication Module

The IEC 60870-5-104 Server functionality supported by the module includes: 

 The IEC 60870-5-104 communication driver is built in accordance to the approved 

IEC specification 

 The module functions as a Server on the network supporting data read/write 

commands from an IEC 60870-5-104 client on the network 

 One TCP server socket 

 Supports unsolicited messages, either cyclic or spontaneous (cyclic rate is 

configurable) 

 Supports clock synchronization commands from client or from the ControlLogix 

processor 

 Supports Group interrogation (Global, General 1 to 16, Global Counters, Counters 

1 to 4) 

 Event timestamping configurable by type (None, 24 bit, 56 bit) 

 Event queue supports 99 points for each data type 

 Optional user defined list of acceptable client host IP addresses 

 Configurable Common ASDU address (sector) and Information Object Address 

 An IEC Interoperability Document for the MVI56 is available which fully documents 

data types supported by the module

Prosoft MVI56-104S General specifications

General specifications include:

 User-definable database memory usage, based on data types and point counts

 Protocol implementation conforms to the IEC 60870-5-104 specification with fully-configurable

parameters

 SNTP (Simple Network Time Protocol) timestamping for detailed logging of data transactions (events)

IEC 60870-5-104 Server Specifications 

Operating in the Server mode, the module accepts commands from a Client(s) to 

read/write data stored in the module’s internal registers. This data is easily and 

continuously transferred between the MVI56-104S, Edition 2 module and the 

ControlLogix processor’s data registers. 

Prosoft MVI56-104S General Specifications – 104S

General Specifications – 104S

Operating in server mode (only), the 104S protocol implementation accepts commands

from an IEC-60870-5-104 Client to read data stored in or write data into the gateway’s

internal database memory registers. The 104S implementation is also capable of generating

unsolicited messages. Unsolicited messages can be either spontaneous (event-driven) or

cyclic (timing-driven) communication.

The remote Client device uses the fully-configurable gateway memory database to control

outputs and monitor inputs to devices on the

IEC 104 network.  Changes to the gateway database can also be used to transfer monitoring

and control data to devices connected to

the gateway using another installed network protocol. The 104S gateway thus provides a data

transfer solution between an IEC 60870

5-104 Ethernet network and other serial and Ethernet network protocols, as well as proprietary interfaces.

Prosoft MVI56-104S IEC 60870-5-104 Ethernet Server Communication Module with Edition 2 Support

The MVI56 IEC 60870-5-104 Server Communication Module allows

ControlLogix compatible processors to interface easily with IEC 60870-5

104 protocol-compatible hosts.

The MVI56-104S module acts as an input/output module between the IEC

60870-5-104 Ethernet network and the ControlLogix processor. Data

transfer between the module and the processor is asynchronous from the

actions on the network. Databases are defined by the user for the module to

hold data as required by the protocol.

General Specifications

 Single Slot – 1756 backplane-compatible

 The module is recognized as an Input/Output module and has access to

processor memory for data transfer between processor and module.

 Ladder Logic is used for data transfer between module and processor.

Sample ladder file included.

 Configuration data obtained from configuration text file downloaded to module. 

Sample configuration file included

 Local or remote rack

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