ServoStep technology

Similar documents
Job Sheet 2 Servo Control

combine regular DC-motors with a gear-box and an encoder/potentiometer to form a position control loop can only assume a limited range of angular

Page ENSC387 - Introduction to Electro-Mechanical Sensors and Actuators: Simon Fraser University Engineering Science

Smooth rotation. An adaptive algorithm kills jerky motions in motors.

Testra Corporation ss483 Series Microstepping Motor Driver. Specifications Sep SoftStep FIRMWARE FEATURES

Step vs. Servo Selecting the Best

DC motor control using arduino

Computer Numeric Control

Latest Control Technology in Inverters and Servo Systems

ACTUATORS AND SENSORS. Joint actuating system. Servomotors. Sensors

Sensors and Sensing Motors, Encoders and Motor Control

Upgrading from Stepper to Servo

High-speed and High-precision Motion Controller

CL86T. 24~80VDC, 8.2A Peak, Closed-loop, No Tuning. Descriptions. Closed-loop. Stepper. Applications. Datasheet of the Closed-loop Stepper CL86T

Closed Loop Stepping System with Network based Motion Controller

All Servos are NOT Created Equal

ElectroCraft CompletePower Plus Universal Servo Drives

Sensors and Sensing Motors, Encoders and Motor Control

30-80V, 8.2A Peak, No Tuning, Nulls loss of Synchronization

IRT Mini Evo. Technical Manual. quality IN MOTION. quality IN MOTION

AC Drive Technology. An Overview for the Converting Industry. Siemens Industry, Inc All rights reserved.

L E C T U R E R, E L E C T R I C A L A N D M I C R O E L E C T R O N I C E N G I N E E R I N G

Motor control using FPGA

Low Cost, Small Package, 120VAC Microstepping Drive

PART 2 - ACTUATORS. 6.0 Stepper Motors. 6.1 Principle of Operation

Integrated Easy Servo

Programmable Adaptive Microstep Table

A Subsidiary of Regal-Beloit Corporation. AC Inverter Terminology

Optimizing Performance Using Slotless Motors. Mark Holcomb, Celera Motion

ies-2309 Integrated Easy Servo

CHAPTER 2 CURRENT SOURCE INVERTER FOR IM CONTROL

HBS Series Hybrid Servos

UNIT-III STATOR SIDE CONTROLLED INDUCTION MOTOR DRIVE

Basic NC and CNC. Dr. J. Ramkumar Professor, Department of Mechanical Engineering Micro machining Lab, I.I.T. Kanpur

Administrative Notes. DC Motors; Torque and Gearing; Encoders; Motor Control. Today. Early DC Motors. Friday 1pm: Communications lecture

DM9082 Closed Loop Stepping System

CHAPTER 4 FUZZY BASED DYNAMIC PWM CONTROL

Stepper Motors WE CREATE MOTION

DM8010 tm. Hardware Reference Manual. Document Revision B3 May 16, 2018

Detect stepper motor stall with back EMF technique (Part 1)

RAPID CONTROL PROTOTYPING FOR ELECTRIC DRIVES

IRT AT-Small. Technical Manual. quality IN MOTION. quality IN MOTION

Compact drives. Rotary actuators

NJM3777 DUAL STEPPER MOTOR DRIVER NJM3777E3(SOP24)

Sistemi per il controllo motori

DESIGN OF A TWO DIMENSIONAL MICROPROCESSOR BASED PARABOLIC ANTENNA CONTROLLER

3. What is the difference between Switched Reluctance motor and variable reluctance stepper motor?(may12)

Analog Devices: High Efficiency, Low Cost, Sensorless Motor Control.

Stepping motor controlling apparatus

Application Note: The electronic control of ALXION ST STK torque motors for direct drive of automated axis

Type of loads Active load torque: - Passive load torque :-

2012 Texas Instruments Motor Control Training. -V th

Datasheet of the MEZ Stepper Servo Drive MEZ 2D VDC, 8.2A Peak, Closed-loop, No Tuning. Version

Product Overview Compact Drive Technology

2.017 DESIGN OF ELECTROMECHANICAL ROBOTIC SYSTEMS Fall 2009 Lab 4: Motor Control. October 5, 2009 Dr. Harrison H. Chin

Stepper Motor Driver CW230

Speed Control Of Transformer Cooler Control By Using PWM

Electronic Speed Controls and RC Motors

EE152 Final Project Report

Sensors and Actuators

Voltage mode stepper motor control. Smooth stepper motor driving

Lab Exercise 9: Stepper and Servo Motors

ELECTRONIC CONTROL OF A.C. MOTORS

A COMPARISON STUDY OF THE COMMUTATION METHODS FOR THE THREE-PHASE PERMANENT MAGNET BRUSHLESS DC MOTOR

Hydraulic Valve Interface Products

Development of an Experimental Rig for Doubly-Fed Induction Generator based Wind Turbine

Chuck Raskin P.E. Principle R&D Engineer. Blaine, MN USA

Speed control of sensorless BLDC motor with two side chopping PWM

The Gold Duo Highly Compact Dual Axis Networking Servo Drive Up to 1.6 kw (3.2 kw Peak) of Qualitative Power Per Drive

Perfectly integrated!

STSPIN L6480 and L6482. ST motor drivers are moving the future

No Gain Tuning. Hunting. Closed Loop System

AN Industrial Stepper Motor Driver. Application Note Abstract. Introduction. Stepper Motor Control Method

Stepper Motor Driver CW8060

INTRODUCTION. In the industrial applications, many three-phase loads require a. supply of Variable Voltage Variable Frequency (VVVF) using fast and

FPGA high efficiency, low noise pulse frequency space vector modulation--part I

EXPERIMENT 6: Advanced I/O Programming

introduction to Precision lead screws & Miniature Ball Screws

High Performance Low Voltage Servo Drives

Servo Solutions for Continuous and Pulse Duty Applications

BRUSHLESS DC MOTOR FAMILY

CS545 Contents XIV. Components of a Robotic System. Signal Processing. Reading Assignment for Next Class

Modern Hardware Technology in Inverters and Servo Systems

DEVELOPMENT OF A SILENT BRUSHLESS DC MOTOR DRIVE. S. Camilleri, D. Patterson & H. Pullen

Active Vibration Isolation of an Unbalanced Machine Tool Spindle

Open Loop Speed Control of Brushless DC Motor

A logical step into basic servo solutions SMARTSTEP

Lock Cracker S. Lust, E. Skjel, R. LeBlanc, C. Kim

TDE MACNO Spa. AC&DC Drives, Servos and Drive System. AFE converters for Renewable Energies Regenerative (active) power supply (Active Front End)

Drives 101 Lesson 3. Parts of a Variable Frequency Drive (VFD)

Technical manual. Microstep driver SMC11. NANOTEC ELECTRONIC GmbH & Co. KG Gewerbestraße 11 D Landsham near Munich, Germany

MICROCONTROLLERS Stepper motor control with Sequential Logic Circuits

Stepper Motors and Control Part I - Unipolar Stepper Motor and Control (c) 1999 by Rustle Laidman, All Rights Reserved

/DSM 050 HIGH MOMENT OVERLOAD CAPACITY, HIGH CAPACITY OF THE INTEGRATED RADIAL-AXIAL OUTPUT BEARINGS, HIGH DYNAMIC PERFORMANCE.

DUAL STEPPER MOTOR DRIVER

Size 23 Double Stack External Linear Size 23 Double Stack. 57M4 n n n n n n. 57L4 n n n n n n. E57M4 n n n n n n. Bipolar 5 VDC 12 VDC 2.

STEPPER MOTOR DRIVING

Servodrives. TGN servomotors AKD digital servoamplifiers

A NEW C-DUMP CONVERTER WITH POWER FACTOR CORRECTION FEATURE FOR BLDC DRIVE

Gold Our Best Ever Motion Solutions

Transcription:

What means "ServoStep" "ServoStep" in Ever Elettronica's strategy resumes seven keypoints for quality and performances in motion control applications: Stepping motors Fast Forward Feed Full Digital Drive Full Digital technology Available specific motion control applications Wide product range Integrated motion control system Fair price

What means ServoStep ServoStep technology Stepping motors

Stepping motors Performances The graphs show the dynamic torque of the same motor driven by bipolar chopper drives with: - different phase currents (right) - different phase voltages (below) Voltage Changes Performance 1 4x V 0,8 3x V 2x V 0,6 1x V (Reference curve) 0,4 1,4 1,2 1 0,8 0,6 0,4 0,2 0 Torque vs. Current 1.5x Rated 1.0x Rated (Nominal Current) 0.5x Rated 0.25x Rated 0 2000 4000 6000 8000 10000 0,2 0 0 2000 4000 6000 8000 10000

Stepping motors Usage Stepper motors are a good match to the following mechanical solutions: Rotary Motion-Direct Drive Rotary Motion-Belt Drive Linear Leadscrew Drive Tangential Direct Drive

Stepping motors Direct drive benefits When facing an automation that requires a motor with characteristics that are offered both by an AC and a step motor, the user should choose a step motor because: a) When employing AC motors, it is necessary to use several additional mechanical components (gearbox, coupling, cardan joint, etc ) in order to obtain precise positionings b) Step motors don't need any support of additional mechanical parts to execute precise positioning tasks as they are very precise both in open loop and in closed loop drive thanks to their manufacturing technology and mechanical characteristics.

Stepping motors Technology benefits Step motor s high pole count, high torque rating in small size and very precise rotor standstill positioning favour the elimination of mechanical reduction gear and shaft encoder feedback for normal positioning making stepping motor ideal in low speed direct drive applications through simple and money saving driver solutions

Stepping motors Using ways (direct drive) A step motor has many similarities with digital technology: the motor can run the programmed number of steps (pulses) to the wanted position without any feedback devices M C pulses D E M G L Closed loop Brushless or AC MC= Master controller D = Drive M = Motor G = Gear E = Feedback encoder L = Load M C pulses D Open loop stepper M L

Stepping motors Using ways (closed loop drive) The step motor direct drive gives effective benefits as geared brushless motors replacement in high precision medium/low speed actuators M C D E M G L E Backlash Brushless or AC MC= Master controller D = Drive M = Motor G = Gear E = Feedback Encoder L = Load M C D E Stepper M Backlash L

Stepping motors Specific characteristics Synchronous brushless motors with a high number of electric poles, commonly known as stepper motors, can replace, at lower costs and in a more user-friendly way, servomotors, with a lower number of poles and a shaft fitted mechanical gear, not just in open but above all in closed loop motion control applications Characteristics Stepper Motor AC Motor Brushless Motor Dimensions Compact size and best torque/dimension ratio Good torque/dimension ratio Good torque/dimension ratio Assembly Direct installation on load with high precision positioning and elimination of mechanical gear Gear is needed, expensive if with low backlash for precise positioning Gear is needed, expensive if with low backlash for precise positioning

Stepping motors Specific characteristics Synchronous brushless motors with a high number of electric poles, commonly known as stepper motors, can replace, at lower costs and in a more user-friendly way, servomotors, with a lower number of poles and a shaft fitted mechanical gear, not just in open but above all in closed loop motion control applications Characteristics Stepper Motor AC Motor Brushless Motor Torque Feedback non- linear torque-speed characteristics linear torque-speed characteristics linear torque-speed characteristics No need of shaft encoder and circuitry. Good position stiffness in open loop system with microstepping Requires shaft encoder and the position stiffness is dependent on encoder line-to line angle Requires shaft encoder and the position stiffness is dependent on encoder line-to line angle

Stepping motors Specific characteristics Application example: With AC motor With AC motor

Stepping motors Specific characteristics Application example: With stepper motor

What means ServoStep ServoStep technology Fast Forward Feed Full Digital Drive

Fast Forward Feed Full Digital Drive Characteristics The ServoStep technology is based on step-less phase current regulation and is implemented by Ever Elettronica with an innovative algorithm called Fast Forward Feed Full Digital Drive - f 4 d 2 - owing its name to its main characteristics Possible thanks to Ever Elettronica DSPC Full Digital technology drives Designed with the aim to obtain a quick and robust 'space vector' motor control Implemented with several application firmwares, f 4 d 2 can offer a wide range of motion control solutions

Fast Forward Feed Full Digital Drive Functionality Algorithm f 4 d 2 does not change the computation coordinates in winding current regulation, as in a normal manner, the current control is implemented directly in the coordinates of the stator by modulating the amplitude and angle of the current vector according to rotor's instant position and speed and BEMF

Fast Forward Feed Full Digital Drive Benefits The algorithm f 4 d 2 can make calculations so quickly that it permits a high chopper frequency motor excitation featuring: Sinusoidal currents without any parasitic harmonics Silent rotation without any damping or resonance Maximum torque at any speed

Fast Forward Feed Full Digital Drive Closed loop drive's further benefits The high frequency (8 khz) closed loop control of the rotor's torque, speed and position provided by f 4 d 2 algorithm prevents motor overheating and guarantees very accurate position and speed "stepless" references tracking Torque Position Speed

What means ServoStep ServoStep technology Full Digital drives

Full Digital technology Characteristics ServoStep technology Ever Elettronica has created new fully digital drives series implementing the Fast Forward Feed Full Digital technology. In these new drives the power stage, that supplies current to the motor, is controlled in PWM mode by a DSPC (Digital Signal Processor Controller) running the f 4 d 2 firmware. The DSPC replaces the microprocessor normally used in traditional analogue-digital drives.

Full Digital technology Best functionality ServoStep technology Replacing the generic microprocessor with the DSPC controller, 'Full Digital' drives can improve the qualitative and functional features of old D/A technology drives offering the user a wide versatility in application possibilities, easy installation and best drive handling.

Full Digital technology Enhanced performances ServoStep technology Flexible generation and regulation of current waveforms that can be optimized by software for various movement scenarios Silent and smooth motor rotation even at very slow speed and high motor power output at minimum overheating thanks to an accurate regulation of the winding currents through high frequency power stages chopping (40 khz) A more repetitive and stable drive performance over time thanks to full digital electronics Minimized hardware parts count to improve drive reliability Extensive diagnostics functionality

What means ServoStep ServoStep technology Available specific motion control applications

Specific available applications Characteristics Ever Elettronica s Full Digital servo drives are designed to realize autonomously, in open or closed loop, specific turn key motion control applications Thanks to the f 4 d 2 algorithm the DSPC takes a minimum fraction of time to control the motor, so flexible and enhanced motion applications can be realized

Specific available applications Functionality To simplify the drive installation and maintenance and to update the working parameters of the various available applications, Ever Elettronica provides the user with PC software tools. These Windows compatible software tools provide various drive set-up and programming functions, among which: on-line and real-time diagnostics of connected devices drive's firmware updating complete working parameters configuration firmware debugging for a fast application start-up feedback parameters optimization functionalities

What means ServoStep ServoStep technology Wide products range

Wide products range Versatility ServoStep technology A wide series of standard hardware is available to the user in terms of motors and drives, each model being specified in terms of: intelligence and programmability housing power supply I/O count communication interfaces

What means ServoStep ServoStep technology Integrated systems

Integrated systems Characteristics The integrated motor, drive and optional shaft encoder provides motion control systems designed to simplify the machine control and electrical wiring Ever Elettronica s integrated motor and drive devices, feature minimal heat dissipation, even working at maximum power, as well as at high mechanical and thermal strength of the internal unit's parts. They excel in reliability even in hard vibration and temperature working conditions Some of the benefits that can be obtained by the devices: -Smaller and cooler machine's panel -Lower machine overall dimensions -Reduction of wirings -Lower electromagnetic interference

What means ServoStep ServoStep technology Fair price

Fair price Benefits Ever Elettronica's fair price has been achieved through an optimized product engineering process, aimed to reducing wastes in the production of devices, and designed to minimize material costs without sacrifying performances robustness, improved use safety and reliability, in order to meet today's needs of the automation machines manufacturers