Energy efficiency class IE4 for decentralized installations. Mechatronic drive systems MOVIGEAR and DRC.. electronic motor

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Drive Technology \ Drive Automation \ System Integration \ Services Energy efficiency class IE4 for decentralized installations Mechatronic drive systems MOVIGEAR and DRC.. electronic motor

2 Mechatronic drive systems Extremely efficient: Mechatronic drive systems in efficiency class IE4 Rising energy prices are not the only reason for system manufacturers and operators to face the challenges of saving energy, reducing costs, and increasing profitability when planning new systems or expanding existing production facilities. Decentralized installations have already been used since the end of the 90s as a profitable alternative to centralized solutions for spacious machines or production systems. It is in particular in spacious production plants that decentralized installation concepts can help achieve impressive cost savings. Unlike centralized solutions, control cabinet space and the amount of cabling is reduced significantly. For example, using mechatronic MOVIGEAR drive systems or DRC.. electronic motors with SNI communication (Single Line Network Installation) requires only one cable for energy and information transfer. Decentralized components from SEW-EURODRIVE have always been innovative. MOVIMOT, for example, the gearmotor with integrated frequency inverter has already been successfully used for decades in many conveyor systems in the most various industries. The new MOVIGEAR mechatronic drive systems and the DRC.. electronic motor are two more energy efficient solutions SEW-EURODRIVE offers in energy efficiency class IE4. Driving the world with innovative drive solutions for all branches of industry and for every application. Products and systems from SEW-EURODRIVE for any application worldwide. SEW-EURODRIVE products can be found in a variety of industries, e. g. automotive, building materials, food and beverage as well as metal-processing. The decision to use drive technology made by SEW-EURODRIVE stands for safety regarding functionality and investment.

3 Two solutions with IE4: MOVIGEAR and DRC.. electronic motor With MOVIGEAR, the mechatronic drive system for horizontal materials handling technology, SEW-EURODRIVE has set completely new standards already in 2008 in terms of profitability and functionality. MOVIGEAR not only combines a gear unit with a motor and the matching drive electronics in one product but, above all, ensures that the technical and economic advantages of these three drive components are maintained and utilized in an optimum manner. Apart from that, MOVIGEAR complies with efficiency class IE4 (Super Premium Efficiency). Since the beginning of 2012, the DRC.. electronic motor has given fresh impetus to decentralized installations: its versatile fields of use due to the flexibility in mounting any type of gear unit and the optional mechanical brake make the DRC.. electronic motor stand for innovative drive technology and highest product quality made by SEW-EURODRIVE.

4 MOVIGEAR and DRC.. electronic motor An efficient unit comprising motor, gear unit and electronics: MOVIGEAR in IE4 MOVIGEAR : Mechatronisches Antriebssystem aus Motor, Getriebe und Elektronik MOVIGEAR Technical data: The MOVIGEAR mechatronic drive system is available in two sizes and two mechanical variants: MOVIGEAR sizes - MGF.2 (torque class: 200 Nm) - MGF.4 (torque class: 400 Nm) - MGF.4/XT (torque class: 400 Nm / increased torque) MOVIGEAR drive units MOVIGEAR variants - MOVIGEAR with hollow shaft and key - MOVIGEAR with TorqLOC hollow shaft mounting system Features and benefits Compact design: Motor, gear unit and electronics are combined in a single mechatronic drive system Installation topology with SEW controller: - SNI: only one cable for power supply and communication; installation effort reduced by up to 60% - SBus: for applications with higher performance requirements, such as angular synchronism, etc. Installation topology binary or AS-Interface Reduced number of variants due to wide setting range and universal mounting position Lower storage costs High degree of protection Hygienic surface design for applications in hygienic areas No air, dirt and germ swirls Reduction of energy costs by up to 50% due to the high efficiency of all components (gear unit, motor, electronics) High degree of reliability due to systematic development of all components Reduced total costs and operating costs of the materials handling system Integrated functional safety: Safe Torque Off (STO) up to PL e according to EN ISO 13849-1

5 NEW: in IE4 and flexibility in mounting any type of gear unit: the DRC.. electronic motor DRC.. electronic motor Technical data: DRC.. 1-4 The figure shows the DRC.. 1-4 The new DRC.. electronic motor consists of a permanent-field synchronous motor with integrated drive electronics. The motor is available in 4 sizes: Power: Size DRC.. 1: 0.55 kw (2.6 Nm rated torque) Size DRC.. 2: 1.5 kw (7.2 Nm rated torque) NEW: Size DRC.. 3: 3 kw (14.3 Nm rated torque) NEW: Size DRC.. 4: 4 kw (19.1 Nm rated torque) Features and benefits Combination of a permanent-field synchronous motor (2,000 rpm rated speed) with integrated drive electronics in a completely enclosed housing: - No fan - Degree of protection IP65 and IP66 NEW: 4 sizes with a nominal torque of 2.65 Nm, 7.2 Nm, 14.33 Nm and 19.1 Nm (continuous power 0.55 and 4.0 kw) A completely new mechatronic drive system is created together with a highly efficient helical-bevel, helical or parallel-shaft helical gear unit High gear unit flexibility: - Direct mounting to the gear unit using flange and pinion shaft Motor efficiency class IE4 (Super Premium Efficiency) of the international standard IEC 60034 Energy savings up to 50% Overload capacity of 250% Universal application due to large control range of 1:2000 Mechatronic drive system from a single source: All individual components are perfectly matched, are reliable and durable, and significantly contribute to a high level of system availability Installation topology with MOVIFIT -FDC-SNI controller: - Only one cable for power supply and communication - Considerably less cabling effort than with conventional solutions - Installation effort reduced by up to 60% Installation topology binary or AS-Interface: - For stand-alone applications or systems with simple drive functionalities Installation topology with SEW system bus controller makes for highest performance and short response times for implementing demanding drive tasks Integrated STO safety function (Safe Torque Off)

SNI SNI 6 MOVIGEAR and DRC.. electronic motor Impressive combination: Functionality and design of mechatronic drive systems Application options NET RUN DRIVE MOVIGEAR B NET RUN DRIVE X4 X3 X2 X1 NET RUN DRIVE MOVIGEAR B The following types of electronics covers are available for all sizes of MOVIGEAR /DRC..- DSC-B and MOVIGEAR /DRC..-SNI-B units: Electronics cover without application slot Electronics cover with application slot The electronics cover of MOVIGEAR /DRC..- DBC-B and MOVIGEAR /DRC..-DAC-B is designed without application slot. Electronics cover without application slot, electronics cover with application slot (with installed GIO12B option) Application options Electronics cover with application option for connecting digital inputs and outputs Application options are installed in the application slot of MOVIGEAR /DRC... These options implement specific interfaces, such as binary inputs or binary outputs. The energy supply of the option as well as the communication between MOVIGEAR /DRC.. and the option is contactless. GIO12B application option The GIO12B application option allows for controlling up to 2 digital actuators and for processing up to 4 digital sensors. GIO13B application option The GIO13B application option comes equipped with the following interfaces: 1 digital output 4 digital inputs (two of them can be used as primary frequency input) 1 analog output 1 analog input

7 Features and benefits The DRC.. electronic motor completes the product portfolio of mechatronic drive systems with a drive solution that is particularly flexible in terms of gear unit mounting. Helical, parallel-shaft helical and helical-bevel gear units are directly mounted via flange and pinion shaft end. This flexibility and the resulting universal use make the mechatronic drive systems attractive for many industries, such as logistics, automobile industry, food and beverage industry, airport logistics, and construction industry. MOVIGEAR and DRC.. electronic motor provide optimal and efficient mechatronic drive solutions, for example for belt and chain conveyors, corner transfer units or palletizers. Equipping the DRC.. with an optional brake makes it also suited for use in inclining tracks and hoists. Motor efficiency class IE4 allows for saving up to 50% of energy Mechatronic drive systems from a single source: All individual components are perfectly matched, are reliable and durable, and significantly contribute to a high level of system availability.

8 Energy efficiency Best possible energy efficiency reduces energy and operating costs Using any opportunity to save energy is not only an important contribution to conserving the environment but also pays off financially. This also affects the selection and projecting of modern drive technology. The drive technology used and its overall efficiency play a crucial role in sustainably reducing the energy consumption in industrial applications. A simple equation illustrates this: P Input = P Output + P Losses This means that the costs for electrical energy input P Input are calculated from the effectively needed mechanical energy P Output plus losses P Losses resulting from the overall efficiency. The following applies disregarding the application and the system: Energy costs can only be reduced if energy losses during plant operation are kept as low as possible.

9 Verified by an independent entity: Energy saving potential of up to 50% A comparison of the test results shows a significant efficiency advantage of MOVIGEAR drives over the entire load range. Source: Report of the University of Applied Sciences of Kaiserslautern on the efficiency measurement of the mechatronic drive system MOVIGEAR TÜV SÜD confirms that MOVIGEAR requires up to 50% less energy compared to other drive systems available on the market and awards the mechatronic drive system the certificate Energy-Efficient Plant Technology. University of Applied Sciences of Kaiserslautern Department of Applied Engineering Sciences P Input reduce η increase P Losses minimize P Output

10 Energy efficient every day Tried and tested energy savers Mechatronic drive systems not only actively contribute to the conservation of resources and the environment, they also offer system manufacturers and operators a true cost-saving alternative to conventional, centralized installation solutions. MOVIGEAR DRC.. electronic motor costs High overall efficiency of all components (motor, gear unit and electronics): Optimized interfaces between motor and gear unit Permanent-field synchronous motor Highly efficient gearings New electronic components and intelligent control methods High gear unit flexibility: Direct mounting to the gear unit using flange and pinion shaft A completely new mechatronic drive system is generated together with a highly efficient helical-bevel, helical or parallel-shaft helical gear unit Optionally with mechanical brake Energy optimization Reducing energy costs by increasing the overall efficiency The highest motor efficiency complies already today with efficiency class IE4 (Super Premium Efficiency) of the international standard IEC 60034 New electronic components and intelligent control modes Proven energy-saving potential of up to 50% depending on the application Significantly reduced reactive power consumption compared to motors operated directly on the mains supply helps ensure that reactive power limit values are complied with Sustainable reduction of CO 2 emissions helps protecting the environment

w 11 Latest measurements on a belt conveyor in a logistics center show the following result:* Average reduction of the power consumption by approx. 820 kwh/year per drive Reduction of energy consumption by 56% Reduction of CO 2 emissions of 532 kg/year per drive 98.00 of energy saved per drive/year * Calculation based on customer data with energy costs of 0.12 /kwh and a runtime of 16 hours per day and 220 days per year. The higher costs compared to conventional drive solutions are compensated within only one or two years by the saved energy expenses.

12 Operation in sensitive areas Solutions for sensitive areas In addition to objectives such as higher productivity or cost reduction, the system environment is becoming an increasingly important criterion for the development of modern machines and systems. Until now, compliance with normative limit values has served system operators as a gauge for determining the environmental impact. In the meantime however, the creation of high-quality workplaces has become one of the key purchase criteria. This is why the influences on the system environment, such as noise emission, are analyzed thoroughly.

13 Low noise emissions improve the quality of the workplace In conventional drives, air swirls and vibrations in the fan guard account for most of the noise. This is the reason why SEW-EURODRIVE aimed at developing a drive without fan. This has now been successfully achieved with the mechatronic components: both MOVIGEAR and the DRC.. electronic motor do not have a fan and therefore significantly contribute to reducing noise in the plant.

14 Areas of application Demanding areas of application? No Problem Clean room Energy efficiency and cleanliness in clean rooms are not mutually exclusive, at least not when using the decentralized drive components of SEW-EURODRIVE. MOVIGEAR and the DRC.. electronic motor are easy to clean and comply with the demanding requirements on the hygienic conditions in clean rooms with regard to air quality and permitted number and size of particles released. The EN ISO 14644 standard stipulates the requirements on clean rooms and associated clean room areas. The mechatronic MOVIGEAR drive system complies, for example, with air cleanliness class 2 according to ISO 14644-1 and consumes about 50% less energy than conventional drive solutions. Energy efficiency in clean rooms made easy: Many machine and plant operators have already been benefitting from the impressive energy-saving potential of MOVIGEAR and DRC.. in their production and logistics facilities and have been successfully implementing clean room compliant decentralized concepts. For example suited for the Chemical, pharmaceutical and cosmetic industries Biotechnology Food industry Medical technology Semiconductor industry Solar panel production * gemäß ISO 14644-1 The Fraunhofer Institute certifies that the MOVIGEAR drive for clean room applications meets the requirements up to air cleanliness class 2 according to ISO 14644-1, depending on the motor speed, and that the drive can be operated in such applications.

15 Wet areas The mechatronic MOVIGEAR drive system variant for use in wet areas is specifically designed for applications in permanently wet areas, such as hygienic areas in the food and beverage industry. Even regular acidic or caustic wet cleaning is no problem and cleaning inaccessible areas is possible thanks to the non-stick properties of the surface. The smooth surface prevents dirt from adhering to it the mechatronic components are virtually self cleaning. MOVIGEAR : Wet area features Design Without fan Smooth overall design and compact unit comprising gear unit, motor, and electronics Facilitates thorough cleaning of the entire drive system and results in a reduced emission of particles Available in two sizes covering a torque range from 20 Nm to 400 Nm. No swirling of air, dirt, and particles Reduced noise emission Allows for complying with noise limits at the workplace MOVIGEAR variants for use in wet areas Special anti-stick surface Makes for easier cleaning Prevents paint flaking at the interfaces as the surface is treated prior to assembly and burnt into the housing material Prevents particles from sticking to the surface Resistant against mechanical stress and common cleaning agents Cost-effectiveness Sample applications Reduction in energy costs by up to 50% due to high overall efficiency Hygienic and aseptic conveyors in the beverage industry Systems in cheese dairies and butcher shops Splash zones in the food industry

16 Installation topologies of mechatronic drive systems: SNI and SEW system bus Installation topologies of mechatronic drive systems: SNI and SEW system bus Single Line Network Installation With MOVIGEAR -SNI and the DRC.. electronic motor SNI, completely new system concepts can be implemented as energy and data are transferred via one standard cable. This principle is referred to as Single Line Installation. Simplified installation leads to significantly reduced installation and system costs. Installation topology with SNI controller MOVIGEAR -SNI and DRC.. electronic motors SNI Single Line Network Installation PLC Control cabinet level Field level MOVIFIT -FDC Features Single control Reduction in the number of components Bus lines do not have to be routed in the field No risk of hidden faults in the bus cabling Reduced startup times Shorter project runtimes/reduction of project costs Single Line (SNI) MOVIGEAR -SNI-B SNI electronic motor Single Line (SNI) MOVIGEAR -SNI SNI electronic motor Application options As drive for applications with high breakaway and starting torques Conveyor systems with variable speeds As drive for applications that require soft and/or defined startup behavior As group drive for easier implementation of synchronous operation Application examples Belt conveyors Pallet conveyors Roller and wheel conveyors Screw conveyors Container and packaging unit transports Chain and drag-chain conveyors

DHE21B 17 High performance and fast bus communication The SEW system bus allows for the functional integration of MOVIGEAR -DSC and the DRC.. electronic motor DSC in applications close to the machine. High performance and short response times distinguish this variant and enable the reliable implementation of challenging drive tasks. Installation topology with SEW system bus controller MOVIGEAR and DRC.. electronic motor with SEW system bus (DSC) High performance and fast bus communication via CAN Supply system SBus controller (CCU / MOVI-PLC ) SBus (CAN) PLC Control cabinet level Field level Features Line wiring Single control Integrated communication interface Fast communication for short cycle times Hybrid cable for minimum installation effort System bus controller for control cabinet or fieldbus installation with integrated PLC High drive dynamics and performance MOVIGEAR -DSC-B SBus (CAN) DRC..-DSC electronic motor Application options As drive for applications with high breakaway and starting torques As drive for conveyor systems that have to be operated dynamically at varying speeds For forming intelligent function groups As group drive for realizing angular synchronism DRC..-DSC electronic motor MOVIGEAR -DSC-B Application examples Pallet conveyors Machine-integrated conveyor belts Feeding conveyors Synchronized feeder conveyors Reversing drives

NETRUN DRIVE 18 Installation topologies of mechatronic drive systems: Binary and AS-Interface Installation topologies of mechatronic drive systems: Binary and AS-Interface Stand-alone operation The binary installation topology solution with MOVIGEAR -DBC and the DRC.. electronic motor DBC from SEW-EURODRIVE are specifically suited for stand-alone applications as well as applications with simple functions: DIP switches and potentiometers allow for simple and fast startup, no PC is required. The devices can be controlled via binary inputs either by a central PLC or in local/manual mode. Installation topology binary Binary MGF Supply system Controller / PLC MOVIGEAR and DRC.. electronic motor binary (DBC) Stand-alone operation Safety relay 4 inputs Ready Control cabinet level Field level Features Simple startup without PC using DIP switches and potentiometer Parameterizable fixed speeds and ramps Binary input control and signal relay evaluation via PLC Local/manual operation via binary inputs Interface for diagnostics and parameterization STO MOVIGEAR -DBC-B Binary DRC.. Supply system Safety relay Controller / PLC Control cabinet level Application options Simple stand-alone applications and single applications For applications that require soft startup behavior Applications with two fixed speeds For applications with high breakaway torques As a replacement for line-powered drives STO 4 inputs Ready Field level DRC..-DBC electronic motor Application examples Simple conveyors Rotary tables Actuating drives Agitators and mixers Crushers and shredders Presses

19 Cost-effective fieldbus connection The installation topology with AS-Interface is the simple fieldbus connection variant for MOVIGEAR -DAC and the DRC.. electronic motor DAC. Parameterizable fixed speeds and ramps, integrated STO safety function and connection options for external sensors ensure fast and extremely efficient implementation of material handling systems. Installation topology with AS-Interface MOVIGEAR and DRC.. electronic motor AS-Interface (DAC) Simple and economical fieldbus connection AS-Interface controller PLC Supply system Control cabinet level Field level AS-Interface MOVIGEAR DAC-B DRC..-DAC electronic motor AS-Interface MOVIGEAR DAC-B DRC..-DAC electronic motor Features Parameterizable fixed speeds and ramps Control via standard AS-Interface specification Connection of external sensors on the actuator Voltage supply for connected sensors Local/manual operation via binary inputs Interface for diagnostics and parameterization Available in 2 slave variants: - Binary slave (GLK30) - Double slave (GLK31) Application options Simple fieldbus connection For applications that require soft startup behavior Signal feedback of connected sensors For applications that require a lot of space Individual parameter access in connection with GLK31 Application examples Accumulating roller conveyors Roller and wheel conveyors Pallet conveyors Rotary tables

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