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MOOG Silencer® Series Drive Features

Features

• 2-quadrant speed controllers for brushless motors

• Feedback using Hall effect sensors

• Motor speed is set by either an internal or external potentiometer

• Motor rotation direction can be present by the direction control input;

the controller output stage can be activated and deactivated by the disable

control input

• Maximum constant current can be adjusted via an on-board potentiometer

• Internal thermal cutoff prevents heat overload

• Very high efficiency is achieved by using POWER-MOS-FET technology in

the controller output stage

• Efficient PWM speed control

• Operating temperatures from -10 to 45°C and storage temperatures from

-40 to 85°C

MOOG MSD Modular Multi-Axis Servo Drive System

A MODULAR APPROACH TO MOTION CONTROL WITH MULTI-AXIS SERVO

DRIVES AND SINGLE-AXIS SERVO DRIVES

Higher performance machines can mean a real advantage in productivity

and profitability and Moog’s Multi-Axis Servo Drive System is a key enabler

in achieving this objective.  This integrated family of products provides

the highest levels of dynamic response, smooth performance and application

versatility.

This system includes both modular and single-axis servo drive options and

a common shared power supply to coordinate the motion across multiple

axes.

Advantages

• Higher machine productivity – From lowering cycle times in an injection

molding machine to increasing feed rates in a metal forming press, this

product delivers a significant increase in application performance

• Improved machine precision – More precise motion control such as smoother

movement in flight simulators and higher accuracy and finished part quality

in industrial machinery

• Higher machine flexibility – The modularity of the MSD coupled with the

ability to tailor customer-specific solutions provides the perfect flexible platform

for different machine types, putting them at the heart of today’s leading-edge designs

• Integrated safety function (per EN 61800-5-2) with Safety PLC available as an option

Markets

• Industrial Production Machinery

• Metal Forming Machinery

• Injection and Blow-molding Machines

• Simulation

• Gas and Steam Turbines

• Packaging and Food Processing Machines

MOOG DM2020 Advantages

Advantages

• The compact design and the multi-axis architecture, with shared power supply,

allow machine builders to reduce cabinet space and consistently cut wiri

• Maximum flexibility to work with different motor types and feedback devices

to meet all applications requirements

• Energy savings thanks to the shared DC BUS configuration that allows an

exchange of energy between the axes, reducing overall energy consumption

• Reduced electrical sizing of the machine controls thanks to the DE2020 Energy

Mangement System

• A user-friendly graphic interface allows easy access to all functions, simplifying

the settings, initial start-up and system monitoring

• Dual servo drive modules available in various sizes

Markets

• Industrial Production Machinery

• Metal Forming Machinery and Presses

• Injection and Blow-molding Machines

• Simulation

• Gas and Steam Turbines

• Packaging and Food Processing Machines

• Electric and Hybrid Vehicles

MOOG DM2020 Digital Multi-Axis Servo Drive

COMPACT, DIGITAL MULTI–AXIS SERVO DRIVES FOR TOP PERFORMANCE AND

MAXIMUM PRODUCTIVITY

The DM2020 is a state of the art servo drive designed to meet the requirements

of the most challenging machine builders. It unites flexibility, high performance

and simplicity of use. Its  modular design platform permits a high level of

customization to satisfy specific application needs. With its high-performance

control board and software for advanced control, the DM2020 guarantees

speed and faster cycle times, improving efficiency and ensuring maximum

productivity. The multi-axis architecture with a shared power supply unit

reduces the size of the axis module and overall dimensions of the system

by roughly 50% compared to a stand-alone similar configuration.

The DC-Bus is distributed among the axes through internal front panel

connections.

In addition to the shared DC BUS configuration that allows the exchange of

energy among the axes, specific modules are also available.

The capacitive ABC module, for example, increases the exchange of energy

among the different axes of the system, improving the efficiency of the machine.

By connecting external supercapacity modules, the peaks required by the

machine cycle can be delivered independently. By integrating Moog’s DE2020

Energy Management System >, it is possible to control the power absorbed

from the mains during peak times thus limiting the sizing of the system to

the nominal value required by the regular cycle.

MOOG DM2020 Drive System Overview

System Overview

Product description

The DM2020 drive is a new generation of digital servo drives manufactured

by Moog-Casella for controlling brushless synchronous or asynchronous motors.

The drives have a multi-axis rack configuration with a power supply module

and various control modules positioned side by side.

• The power supply supplies direct current to the various modules via

connecting BUSBARs housed on the front connectors

• There are two standard power supply models

• Each module is available as a single- or dual-axis module

• The current ratings of the various axes range from 2 to 128 Arms of direct

current and 4 to 256 Arms of peak current

• Compatible feedback systems:

• Resolver

• Stegmann absolute single-turn sinusoidal encoder with and without hiperface

• Stegmann absolute multi-turn sinusoidal encoder with and without hiperface

• TTL incremental encoder

• Heidenhain absolute single-turn sinusoidal encoder with and without EnDAT

• Heidenhain absolute multi-turn sinusoidal encoder with and without EnDAT

• Heidenhain EnDat 22 full digital encoder

• Heidenhain linear encoder with EnDAT

• The modules are cooled by forced air, with fans incorporated in each module

• Ethernet interface on which the EtherCAT Real Time protocol is implemented

with the DS402 proile

• Standard CANOpen interface on which the CANOpen protocol is implemented

with the DS402 proile

• “Safe Torque Off” (STO) (protection against accidental start-up) incorporated

into each axis

• configuration/commissioning via GUI: Dx2020GUI allows users to conigure,

calibrate and control the drive

• Alarm diagnostics: Via GUI

• Accessories:

• EMC filters

• Power and signal cables

• Brake resistor

MOOG DS2020 Integrated Safe Torque Off (STO) function

Integrated Safe Torque Off (STO) function

• The Safe Torque Off safety function is integrated as

standard in every drive.

Applications

• Single-axis applications in industrial automation

• Applications with high precision and top dynamics

• Applications requiring significant space saving during

installation

• Applications with personalised functions and flexible

configurations

• Applications requiring quick, precise movements

Features

• The extremely compact design allows machine builders to

reduce cabinet space and consistently cut layout installation

costs

• Maximum flexibility to work with different motor types,

different motor and load position tranducer and fieldbus to

meet all applications requirements

• Its user-friendly graphic interface (DX2020GUI) allows easy

access to all functions, simplifying the commissioning, the

machine start-up and system monitoring

Markets

• Industrial Production Machinery

• Metal Forming Machinery

• Injection and Blow-molding Machines

• Simulation

• Gas and Steam Turbines

• Packaging and Food Processing Machines

MOOG DS2020 Digital Single-Axis Servo Drive

EXTREMELY COMPACT, SINGLE-AXIS, STAND-ALONE DRIVES FOR

HIGH ACCURACY AND FLEXIBILITY

The DS2020 is the single-axis, stand-alone, new servo drive,

specifically designed with extremely compact dimensions for

significant space saving.  Available in six sizes, from 2 to 192

Arms, continuous, and 4 to 384 A, peak, the DS2020 can be 

easily tailored to meet any application requirement with different

motor and load position tranducer and fieldbus interfaces.

SYSTEM OVERVIEW

Highly compact, modular design for top  productivity

• The DS2020 is a digital “stand-alone” servodrive,  purposely

designed with ultra compact  dimensions.  The current sizes

of the five versions (50. 75. 85. 125  165 and 355 mm) range

from 2 Arms to 192 Arms  continuous, and from 4 Arms to

384 Arms peak.

Designed to work with different motor types and

feedback devices

• The DS2020 servodrive is designed to control  synchronous

brushless or asynchronous motors (it is  compatible with

various feedback systems (Resolver  standard, encoder

single and multi-turn, incremental)  as well as motors with

sensorless algorithms.

User-friendly Graphic User Interface (GUI)

• The graphic user interface offers easy access to all  the drive

functions, simplifying the settings, initial  start-up and

system monitoring. Communication  with the PC is via a USB

or RS422 interface.

GE AT868-2-1-1 Panametrics Ultrasonic Liquid Flow Transmitter

Applications

Le transmetteur de débit pour liquide AquaTrans

AT868 est un système de mesure de débit à

ultrasons complet des liquides suivants:

• Eau potable

• Eaux usées

• Eaux d‘égout

• Eaux de rejet

• Eau traitée

• Eau de refroidissement et de chauffage

• Autres liquides

Caractéristiques

• Mesure du débit non intrusive et économique

• Installation et configuration simples

• Adapté à un large éventail de tailles de conduites

et de matériaux

• Adapté aux conduites à revêtement interne

• Version deux canaux/deux cordes disponibles

• Vitesse d‘écoulement , débit volumétrique et

débit totalisé

• Clavier interne pour la programmation sur site

AT868 Caractéristiques techniques

Performance

Types de fluides

Fluides acoustiquement conducteurs, y compris la plupart

des liquides propres et de nombreux liquides chargés ou

contenant des bulles de gaz. La fraction de vide maximum

dépend du transducteur, de sa fréquence, de la longueur de

la trajectoire et du trajet acoustique des conduites.

Tailles de conduite

• Transducteurs « clamp-on » : 12.7 mm à 7.6 m et plus

• Transducteurs mouillés : 25.4 mm à 5 m et plus

Épaisseur de paroi de conduite

Jusqu‘à 76.2 mm

MOOG Reconfigurable Actuation Control Unit Family

Moog’s line of actuation control solutions are designed to be used in

multiple aerospace and harsh environments.

The commercial actuation controllers fall into our Reconfigurable

Actuation Control Unit (RACU) product family. This family is capable

of covering a wide range of performance characteristics with varying

design parameters. This new product line is derived and based on

existing and qualified Moog heritage solutions that is specifically

focused on lower cost, faster lead times, and a reconfigurable nature.

The modularity and available of the controllers lends itself to both

rapid design iteration and solution evolution.

Key Features:

• Six Step and Field Oriented Control capable

• User configurable gains and filters allows for adjustment of system

behavior in application

• Configurable directly from MATLAB

• Qualified for launch vehicle environments

• Proven flight heritage

MOOG 2-channel Electronic Control Unit (ECU)

The Moog 2-channel Electronic Control Unit (ECU) is comprised of 2 Moog

hybrid stepper motor controllers, an EMI filter, and 6 analog pass-throughs

for telemetry. The ECU enclosure has been designed to allow 2 ECU’s to

be stacked to form a 4-channel ECU. The 2-channel ECU contains all power

conditioning, pulse sequencing and output driver stages necessary to drive

two 3-phase motors. The system electrical interface consists of power and

command input lines, output motor drive lines and telemetry outputs.

The required input commands are discrete for ENABLE and DIRECTION,

and a pulse train on the STEP input. An initial discrete logic state on the

ENABLE line will activate the control unit for the desired motor.

On the DIRECTION line, one logic state enables clockwise rotation, and the

other state enables counterclockwise rotation. Motion is initiated by the

application of a pulse train on the STEP command line.

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