Process Monitoring Systems. maxymos XY Monitors for 100 % Quality in Production, Assembly and Product Testing.

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Process Monitoring Systems maxymos XY Monitors for 100 % Quality in Production, Assembly and Product Testing

Kistler Your Partner for Process Efficiency and Cost Effectiveness The Kistler Group is one of the world's leading manufacturers of sensors and systems to measure pressure, force, torque and acceleration. Thanks to systems from Kistler, measurement signals can be captured and analyzed so companies benefit from increased process efficiency and enhanced business success over the long term. 2

Content Focus on Product Quality and Process Reliability 4 Plant Integration 6 Evaluation Objects 8 Product Overview: Monitoring Systems 9 maxymos BL 10 maxymos TL 11 maxymos NC 12 Sequence Control (Sequencer Mode) 13 Measuring Chains 14 Solution Packages for Manually Operated and 16 Pneumatic Presses Service: Customized Solutions from A to Z 18 Kistler At Our Customers' Service Across the Globe 19 3

The maxymos process monitoring system offers maximum control of production, assembly and product testing. Focusing on Product Quality and Process Reliability Quality is increasingly ranked as the critical cost factor in the industrial production sector, where processes have to run without errors. Kistler's process monitoring systems use the profile to monitor and evaluate the quality of a product or manufacturing step. As well as meeting the highest standards for quality, safety and reliability, these systems provide the essential basis for business success. The global market environment for industrial production is extremely challenging and this applies to every sector, from automobile manufacture and medical technology to electrical engineering. Requirements for product quality and process reliability are already high, but they will become even more demanding as time goes on. Now, the maxymos family gives users a simple system that can quickly and accurately accomplish a variety of product testing tasks. maxymos can be used in production plants, and it is the ideal solution for end-to-end process monitoring, quality assurance and documentation in joining, assembly, forming and testing processes. Benefits at a Glance: In-process monitoring of joining and assembly processes Early detection of quality deviations in the production process Minimized outlay on quality assurance Faster feedback thanks to transparency in the production process Traceable process results No additional testing routines 4

Process Monitoring Systems for Every Application maxymos BL (Basic Level) is suitable for standard assembly and product testing applications. maxymos TL (Top Level) offers a variety of interfaces, making it the ideal platform for capturing and evaluating a diverse range of measurands. maxymos NC controls, monitors, evaluates and documents the XY profiles for joining and press-fit processes in conjunction with NC Joining Modules and the IndraDrive servo amplifier that is included in the system. Higher Quality Lower Costs Convincing benefits across the board: with Kistler's XY monitors and process monitoring systems, optimal cycle times and maximum repeat accuracy can also be achieved for multi-stage processes. Downtime is minimized and machine availability is increased resulting in a boost in productivity for the entire manufacturing process. In short: Kistler provides the basis for maximum control of the entire production chain paving the way for increased quality and reduced costs in production. Increased Process Efficiency with Kistler Now Online! View our animation to experience convincing, first-class Kistler solutions the sure way to optimize process efficiency: /maxymos 5

Kistler's XY monitors track and evaluate XY profiles where two measurands must be in a specified relation to one another. Transparent Production Processes Guarantee Quality The maxymos process monitoring system can use a profile to monitor and assess the quality of a product or a production step. To achieve this, the system interrelates all the measurands: those captured via the Y channel with force, torque or pressure sensors, for instance, and those acquired via the X channel with displacement or rotation angle sensors. maxymos uses defined evaluation objects (EOs) to analyze quality-relevant sections of the measured curves that are captured by the measuring functions. To do this, the maxymos monitoring system verifies whether the curves pass through the evaluation objects in the predefined manner. If so, maxymos generates an "" result; otherwise, the result is "Not " (). Benefits at a Glance: Simple integration into existing plants and processes Uniform intuitive operating concept High-performance evaluation objects Extensive diagnostic possibilities, so causes of are tracked down quickly Standard interfaces Identical signal and data formats Profiles of this sort can be generated for many applications: examples include press-fitting of ball bearings, rotation and swiveling of seat backrests, riveting and caulking of housing components, or tactile processes on rotary switches and also for testing springs and measuring haptic behavior, e.g. in switch tests. 6

1708 Ethernet 9247A Y X X NO-PASS START RESET READY 2869B + Monitor 2869B USB Cycle control Y ZERO-X Channel-X Channel-Y 6157B Laptop 1200A49 Dig IO (24V) or fieldbus 1995A Integration into the plant infrastructure is simple because numerous interfaces are available. The maxymos family supports a variety of data protocols, not only to control the measuring cycle but also to transmit the measurement data obtained and for maintenance purposes. Interfaces For the Y channel, a connection for strain gage sensors and sensors with a ±10 V output is provided, as well as the input for piezo sensors. For the X channel, inputs are installed for analog sensors (potentiometric, ±10 V, LVDT, inductive) and digital sensors (incremental, SSI). This means that the connected sensors can be defined flexibly depending on the requirements set by the measuring assignment. Display Module (DIM) Measuring and Evaluation Modules (MEM) Integration of maxymos devices into a fieldbus environment enables communication with the machine control. This makes it possible to optimize coordination of the measurement to the production cycle. Also, individually definable measurements can be transmitted via the fieldbus it is even possible to parameterize the maxymos monitoring system via the fieldbus. Server PLC SERCOS III Cascadability: up to eight pairs of XY channels. The MEMs can be accommodated in the control cabinet. The DIM provides central visualization and can be connected directly via a cable (cable extender > distance of 5m). 7

Extract: Evaluation Objects (EOs) for maxymos Entry and exit as specified. No violation of "closed" sides permitted. Each side can be defined as an entry or exit. Type UNI-BOX The line must be crossed once. An X-value at the point of intersection is monitored. Type LINE-X The line must not be crossed. Otherwise: "" and "NO- PASS" real-time signal appears. Type NO-PASS The measured curve must not violate the upper and lower line of the envelope curve band. Evaluation object can be "learned" quickly with trend tracking. Type ENVELOPE CURVE Entry and exit as specified. Violation of the closed sides supplies a realtime signal and stops the sequence. Type TUNNEL BOX-X Evaluates the average of all Y values in the box range. Type AVERAGE Box detects significant curve features and their XY coordinates in the expectancy range. These can be used as reference points for other EOs or as input for the CALC object. Type GET-REF Y1 X1 X2 Y2 The evaluation criterion is the time between the entry and exit points in a special box. Type TIME The evaluation criterion is the speed between the entry and exit points in a special box. Type SPEED Object references two selectable process values and performs calculations and evaluations with them, e.g. to calculate the X-difference between two ripples. Type CALC A defined gradient change is expected within the expectancy range (box) and can be used as a further switching condition in the sequence. Type BEND Supplies "" and online signal in case of sudden gradient change within an expectancy range (box), e.g. tool breakage and stops the sequence. Type BREAK The area under the curve is determined and evaluated. Type INTEGRAL Evaluates gradient dx/dy between two horizontal lines. Type GRADIENT-X Evaluates the X-hysteresis between forward and reverse curves on a horizontal line. Type HYSTERESIS-X If the curve path is within the defined range, the maximum force offset between forward and reverse curves is determined and verified. Type DELTA-Y Y Y X X If the curve path is within the defined range, testing determines whether a digital signal is present (switch test). Type DIG-IN 8

Product Overview: maxymos BL/TL/NC Type 5867B... 5877A... 5847A... XY Monitors Name maxymos BL maxymos TL maxymos NC Application Process monitoring Process monitoring Joining with electromechanical systems Number of measurement channels per basic unit 1 XY 1 XY 1 XY Expandable up to (maximum measurement channels) 8 XY 8 XY Measurement curve detection functions y = f(x), y = f(t), y = f(x, t), x = f(t) y = f(x), y = f(t), y = f(x, t), x = f(t) y = f(x), y = f(t), y = f(x, t), x = f(t) Storage depth per measured curve 8 000* XY 8 000* XY 8 000* XY Sampler rate (XY value pairs/second) 5 000 20 000 10 000 Number of parameter sets per XY channel 16 128 128 Diagnosis storage for measured curves 360 curves 500 curves 500 curves Sensor Channel X Sensor Channel Y Motion elements for evaluating curve progression Potentiometer Power ±10 V Incremental Sin-Cos (A, B, Z) Incremental right angle (A, B, Z) SSI LVDT Inductive half bridge Piezo Strain gage Power ±10 V UNI-BOX (window) ENVELOPE (envelope curves) LINE (X + Y) NO-PASS (line with online signal) BREAK HYSTERESIS (X + Y) SPEED AVERAGE (average value BOX) GRADIENT (X + Y) TIME GET-REF (finds reference point) CALC (calculates and evaluates) INTEGRAL TUNNEL BOX (X + Y) BEND DIG IN Monitor output Monitor output Standard According to choice 9

Monitoring Devices maxymos BL Technical Data Type 5867B... Type 5867B... Number of measuring channels Resolution per channel Bit 24 Sampler rate X / Y max. khz 5 Accuracy class % 0,3 Sensors that can be connected Measuring functions Curve evaluation using Evaluation Objects (EOs) Evaluation results via Channel-X Channel-Y Type DIG outputs Fieldbus Optical 1 X/Y Potentiometer, transmitter ±10 V Piezo, strain gage, transmitter ±10 V Y(X), Y(t), Y(X,t), X(t) UNI-BOX, ENVELOPE, LINE (X + Y), NO-PASS,,, process values Curve, process values, traffic light Data transfer via Interface Ethernet TCP/IP, USB, fieldbus: Profibus DP, ProfiNet, EtherCAT, EtherNet IP, CC-LINK Visualization Via VNC or integrated display Data export via Ethernet CSV (TCP/IP) Housing Front panel or desktop/wall mounting Data sheet: see 5867B (000-863) Accessories Connector Set for Strain Gage Type 5867AZ010 Version (1 set included in scope of delivery) Connector Set for Piezo Version Type 5867AZ011 (1 set included in scope of delivery) Windows Software Basic Version Type 2830A1 Power supply, 240VAC / 24VDC Type 5779A3 maxymos BL Sequencer Mode License Type 2832A1 10

maxymos TL Technical Data Type 5877A... DIM MEM Type 5877A... Number of measuring channels 1 X/Y... 8 X/Y Resolution per channel Bit 24 Sampler rate X / Y max. khz 20 Accuracy class % 0,3 Sensors that can be connected Channel-X Channel-Y Via menu choice: potentiometer, transmitter ±10 V, incremental, SSI, LVDT, inductive Via menu choice: piezo, strain gage, transmitter ±10 V Measuring functions Y(X), Y(t), Y(X,t), X(t) Curve evaluation using Evaluation Objects (EOs) Type UNI-BOX, ENVELOPE, LINE (X + Y), NO-PASS, BREAK HYSTERESIS, SPEED, AVERAGE, GRADIENT, TIME, GET-REF, CALC, INTEGRAL, TUNNEL BOX (X + Y), BEND, DIG IN Evaluation results via DIG outputs Fieldbus Optical,,, process values Curve, process values, trend display, traffic light Data transfer via Interface Ethernet TCP/IP, USB, fieldbus: Profibus DP, EtherNet/IP, ProfiNet, EtherCat, CC-LINK Visualization via VNC or DIM Data export via USB CSV, XML, PDF, Q-Das, Q-DA9, IPM Ethernet (TCP/IP) Housing Front panel or desktop/wall mounting (Combination of MEM/DIM) accommodated in MEM switch cabinet Data sheet: see 5877A (000-973) Accessories Display Module (DIM) Type 5877AZ000 Completes an existing Measuring and Evaluation Module (MEM) by adding a touchscreen Measuring Module (MEM) Type 5877AK00 Extends an existing maxymos TL system with an additional XY channel pair Basic Connector Set Type 5877AZ010 (1 set included in scope of delivery) Standard Rail Clip Type 5877AZ... to mount the measuring module (MEM) on a DIN rail Windows Software Basic Version Type 2830A1 Power supply, 240 VAC / 24 VDC Type 5779A3 DIM Cable Extender Type 1200A163 11

maxymos NC to Monitor and Control NC Joining Modules Technical Data Type 5847A... DIM MEM Type 5847A... Number of measuring channels Resolution per channel Bit 24 Sampler rate X / Y max. khz 10 1 X/Y Accuracy class % 0,3 Sensors that can be connected Channel-X Channel-Y Servo, SSI, incremental, potentiometer, process signal, ± 10 V, inductive Piezo, strain gage, transmitter ±10 V Measuring functions Y(X), Y(t), Y(X,t), X(t) Curve evaluation using Evaluation Objects (EOs) Evaluation results via Visualisation Data export via Type DIG outputs Fieldbus Optical USB Ethernet (TCP/IP) UNI-BOX, ENVELOPE, LINE (X + Y), NO-PASS, BREAK, HYSTERESIS, SPEED, AVERAGE, GRADIENT, TIME, GET-REF, CALC, INTEGRAL, TUNNEL BOX (X + Y), BEND, DIG IN,,, process values Curve, process values, trend display, traffic light via VNC or DIM CSV, XML, PDF Data transfer via Interface PROFIBUS DP, PROFINET, EtherCat, EtherNet/IP, 2-port Ethernet switch Special features Integrated sequence control to maximize flexibility; real-time process control with SERCOS III so cycle times are shorter; high-performance control and evaluation functions (EOs with partially live evaluation); uniform operating philosophy. Everything is on board (e.g. PROFIBUS, PROFINET, EtherCAT, EtherNet/IP); minimal spare parts inventory (one type only) Data sheet: see 5847A (003-126) DIM Cable Extender, actively extends cables between maxymos MEM and display DIM, range: up to 100 m Technical Data Type 1200A163 Power supply VDC 18... 30 Power consumption: DIM Cable Extender only Total (plugged into maxymos DIM) W W 4 24 Dimensions mm 197 163 26,5 with mounting plate Special features Screen content data transmission; touch and USB via one Ethernet cable for distances >5 m; multiple measuring modules can be selected on one display; mixed operating mode (maxymos TL / NC) is possible Accessories (included in delivery scope) Supply voltage connector with terminal housing Type 55145411 Data sheet: see 1200A163 (003-221) 12

Simple Control of Complex Processes Sequencer mode makes it possible to program sequence controls for targeted control of the production process. An independent program can be created for each sequence of measurements for instance, special processrelevant conditions can be interrogated and/or outputted via the freely programmable digital inputs and outputs. every application: this has been made possible by equipping the maxymos TL (Top-Level System) and the maxymos BL (Basic-Level System) with a sequencer mode, in the same way as the maxymos NC (Numeric Control). Sequencer mode was developed so that multiple testing sequences can be programmed and evaluated in one device. In other words, multiple testing tasks can be accomplished with a single device. This not only allows separation of the end results into good and bad; it also allows a precise specification of whether the desired quality was achieved in each step of the sequence chain. Thanks to integrated sequence control, complex test processes can also be mapped with no need to rely on costly external PLC programming. The programs can be set up quickly and easily via the intuitive user interface on the touch display and no programming know-how is required. Now, maxymos users can also measure multi-stage production processes (i.e. those with consecutive staggered steps) in An independent sequence can be defined for each of the programs (up to 128 in number). 13

Measuring Chains In order to integrate sensor technology into a given application, it is beneficial to clarify the following points in advance. This will provide the basis for selecting the relevant components to generate the measuring chain: Type of signal: charge for piezoelectric sensors, voltage, frequency, PLC integration (fieldbus, TCP/IP) Pin allocation for sensor and evaluation unit (see data sheet) High-insulation cable (typical insulation value: >1E12 Ohm) is a particularly important element of piezoelectric measuring technology, and it should be selected according to the ambient conditions. When installing the cables, make sure that the maximum permitted cable length is not exceeded. It is advisable to use original Kistler cables only. Measure Connect 6157B 9247A 6157B Amplify 9247A Monitor & Control Type 4501A 2869B + Monitor Type 5867B 2869B + Monitor 2869B Type 9232A 17081708 Laptop Laptop 2869B 1200A49 1200A49 1995A 1995A Type 2118A 14

Measure Connect Amplify Monitor & Control y = f(t) Type 9333A Type 5877A 6157B 9247A 6157B 9247A 1708 1708 6157B 9247A 6157B 9247A 1708 1708 Type 4503B 869B + Monitor 6157B 2869B + Monitor 9247A 6157B 2869B 2869B 9247A Laptop Laptop 1708 1708 1200A491200A49 6157B 869B + Monitor + Monitor Type 5877A 9247A 2869B +6157B Monitor 2869B 9247A 2869B 1995A 1708 1708 Laptop Laptop 1995A 1200A491200A49 1995A 1995A Type 5847A Typ 2151B + Monitor 2869B + Monitor 2869B 2869B + Monitor 2869B Type 4577A Type 2118A 2869B 2869B LaptopLaptop 1200A49 1200A49 LaptopLaptop 1200A49 1995A 1200A49 1995A 1995A 1995A 5877A Type PLC 15

Solution Packages for Manually Operated Presses Thanks to solution packages from Kistler, quality control using force-displacement monitoring can now be integrated for manually or pneumatically operated presses. Compression connectors are often manufactured on manually operated presses. The only option for post-production control of the joint in this particular case is destructive testing. In this situation, it pays off to integrate quality control directly into the process. This solution allows immediate detection and separation of rejects so that zero-defect manufacture of the end products is guaranteed. The force-displacement monitoring system can be used or retrofitted wherever manual knuckle-joint presses or pneumatically powered presses are in operation. For this purpose, the piezoelectric sensor is clamped directly between the press ram and the die. Evaluation of the resultant force-displacement curve then provides the basis for good/bad assessment, making it is a key factor in achieving zero-defect production. The ready-packaged solution also available as a retrofit for existing manual presses, Type 9819A... This package includes the new Press Force Sensor and the maxymos BL XY monitor for process recording and monitoring. Also included: mounting pin for the force sensor, displacement sensor, cable and attachment fittings. Press Force Sensor, Type 9340A... Measuring range 10... 60 kn Calibrated for 1 %, 10 %, 100 % Ready to measure no on-site calibration Fits tool adapter ø 10 or 12 mm 16

Accessories Displacement Sensors Technical Data Model TRS25 TRS50 TRS75 TRS100 Type 2112A... Potentiometric displacement sensor Measuring range mm 25 50 75 100 Repeat accuracy mm 0,002 0,002 0,002 0,002 Maximum permitted V 42 42 42 42 supply voltage Actuation force (horizontal) N 5 5 5 5 General Technical Data Temperature range C 30... 100 Oscillations Hz 5... 2 000 Shock g/ms 50/11 Degree of protection IP 40 (EN 60529) Electrical connection 5-pole round connector, IEC 130-9 Data sheet: see 2112A (000-868) Technical Data Model TR10 TR25 TR50 TR75 TR100 Type 2118A... Potentiometric displacement sensor Measuring range mm 10 25 50 75 100 Repeat accuracy mm 0,002 0,002 0,002 0,002 0,002 Maximum permitted V 24 42 42 42 42 supply voltage Actuation force (horizontal) N 5 5 5 5 5 General Technical Data Oscillations Hz 5... 2 000 Shock g/ms 50/11 Degree of protection IP 40 (EN 60529) Electrical connection 3-wire, shielded cable with tension relief, length: 2 m Data sheet: see 2118A (000-875) Technical Data Model DK10 DK25 DK50 DK100 Repeat accuracy mm 10 25 50 100 Repeat accuracy (for 20 ) μm 2 2 2 2 Shock N < 4,9 < 4,9 < 6,2 < 9,3 Type 2122B... Incremental displacement sensor General Technical Data Vibration resistance m/s 2 150 (10... 2 000 Hz) Temperature range C 0... 50 Power supply VDC +5 (± 5 %) Degree of protection IP 64 (sensor body) Lifetime Minimum of 5 million strokes without shock Data sheet: see 2122B (003-235) 17

From professional advice on installation to speedy deliveries of spare parts: Kistler's comprehensive range of services and training is at your disposal across the globe. Service: Customized Solutions from A to Z Kistler offers sales and service wherever automated manufacturing processes take place. In addition to sensors and systems, Kistler offers a host of services ranging from professional advice on installation to speedy deliveries of spare parts worldwide. For an overview of the services we offer, visit. For detailed information on our training courses, please contact our local distribution partners (see page 19). Kistler Services at a Glance Advice Support with system commissioning Process optimization Periodic sensor calibration Education and training events Development services On-site calibration of maxymos equipment 18

Kistler At Our Customers' Service Across the Globe With over 1 400 employees, the Kistler Group leads the global market for dynamic measuring technology. 31 group companies and over 30 distributors ensure close contact with customers, individual application support and short delivery times. Data Sheets and Documents Use our search engine to download data sheets, brochures or CAD data. Your Contacts No matter whether you come to us for advice or support with an installation on our website, you will find the contact details for your personal partner anywhere in the world. Education and Training Events Education and training courses when our sensors and measuring systems are explained by experienced Kistler experts are the most efficient way for you to acquire the expertise you need. 19

960-338e-10.16 2016, Kistler Group Kistler Group Eulachstrasse 22 8408 Winterthur Switzerland Tel. +41 52 224 11 11 Kistler Group includes the Kistler Holding AG and all its subsidiaries in Europe, Asia, Americas and Australia. Find your local contact on