THE WORLD S FASTEST AT 64,000 PROFILES/SEC.

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1 NEW High-speed 2D/3D Laser Scanner LJ-V7000 Series THE WORLD S FASTEST AT 64,000 PROFILES/SEC. Speed that makes the measurement of any product and of any shape a reality! SCAN THIS CODE TO ACCESS WEB VIDEO 1 LJ-V7000 Series

2 Ultra-high-speed/ Ultra stability What is a laser measuring device that is truly useful inline? Improved quality, defect outflow prevention, increased yield Calls and complaints from customers regarding manufacturing issues continue to increase on a daily basis, causing the level of demand for these items to increase. KEYENCE s new proposal is the LJ-V7000 Series, an ultra-high-speed inline profile measuring device that implements ultimate quality control to measure any product of any shape with extreme detail. 2

3 [World's fastest] 240 times greater than conventional devices 64,000 profiles/sec. sampling 12,800,000 points/sec. The LJ-V7000 Series has achieved the world's fastest sampling speed. Other devices within the 2D laser measuring device market cannot even come close. It can measure the shapes of products running on a line or through equipment at ultra high speeds, with high-resolution and without missing an item. As an example, it can measure targets moving at 6.4 m/s with a pitch of 0.1 mm. The LJ-V7000 Series does not allow the passing of abnormal or defective areas. [Industry's greatest] 64 times the dynamic range of conventional devices Overwhelming workpiece response capabilities and detection stability Normally, detection stability is inversely proportional to speed. However, the LJ-V7000 Series has achieved the improvements in both speed and detection stability. Shapes are accurately measured even in cases where black surfaces or inclines with low reflectivity and metallic surfaces with high reflectivity are mixed together under the same optical axis. SCAN THIS CODE TO ACCESS WEB VIDEO 3

4 Applications Measuring the shapes of projections and depressions on extrusion moulded products Checking orientation before robot picking is performed to determine if the shapes of moulded parts that are extruded at high speeds are correct or not. Various targets can be supported, including rubber, metal, ceramics, concrete, and food products. Before coming into the robot picking system, the orientation and shape of the target are scanned and then feedback is sent to the robot. When work is performed by the robot, it is possible to control the robot at high-speeds with accuracy. 3D profile measurement of forged products Measuring loose bearing seals The 3D shapes of flowing targets are measured to determine if they are correct or not. Your own original measurement algorithms can be constructed based on profile data that is sent at high-speeds from the measurement device. Bearings are rotated to detect loose seals and perform a variety of measurements. High-speed measurement is possible, and in addition to bearings, the completion time to inspect shapes for rotating objects is also greatly improved. 4

5 Measuring the swelling of steel sheets Measuring welding grooves and bead shapes The shapes of continuous swelling on steel sheets that are flowing at high-speeds are measured. Because it is possible to measure at speeds of up to 64 khz, you can perform high-definition measurement at fine pitches. Welding grooves and bead shapes are measured. Can be used on site without worry due to its strong IP67 structure, shock resistance, and high-flex cable. Measuring the application amount for solder paste Measuring the amount of warpage on compact electronic parts The shape and application amount of solder paste on PC boards are measured. Naturally, this can also be used to perform inspection after chip mounting. The warps of small IC pins that are running in an intermittent fashion are measured. It is also possible to measure the microscopic warping on small parts with high-accuracy. 5

6 Advanced technology that has achieved ultra-high-speed and high-stability Cylindrical lens Semiconductor Lasers GP64-Processor principle The laser light is projected in a horizontal line by the cylindrical lens and diffusely reflects on the target object. This reflected light is formed on the HSE 3 -CMOS and by detecting changes in position and shape, displacement and shapes are measured. 2D Ernostar lens HSE 3 -CMOS World s first Blue laser optical system Forms images of profiles with ultra-stability and high-accuracy The LJ-V7000 Series is the first 2D laser displacement sensor in the world to adopt a blue laser. A sharp line beam is formed on the light-receiving element by focusing a short wavelength 405 nm laser to its maximum limit with a 2D Ernostar lens. This generates a stabilised high-precision profile. Also, the received light density for the laser has been increased to successfully secure a greater level of received light intensity. This achieves ultra-stable and highly accurate measurement with all types of targets that are typically difficult to detect. Red laser (conventional) Blue laser (LJ-V) With a conventional red laser, the beam that formed the image is thick, resulting in the generation of variation in the profile. With a blue laser, the image forming beam becomes sharp to enable the measurement of shapes with excellent accuracy. World s first Double polarisation function Identifies unnecessary multiple reflection light We have developed the world s first double polarisation function, which distinguishes and cancels multiple reflection light that acts as an obstacle to measurement. Light is shined on the intersection between the X-polarisation and Y-polarisation to calculate differences in the amount of received light for each unit of image capture data. Multiple reflection light has the characteristic of generating differences in the amount of received light for X-polarisation and Y-polarisation, and this characteristic is used to cancel data for areas that have large differences. The power of this function is demonstrated in the measurement of metals with complex shapes and complicated areas. Multiple reflection light -> A large difference in light intensity is generated between (1) and (2). Data with areas that contain large differences is canceled. (1) (X polarisation) Captured image (2) (Y polarisation) Captured image Generator profile 6

7 Newly developed/world's greatest HSE 3* -CMOS Can perform stable measurement of any target even at ultra-high-speeds The LJ-V7000 Series is equipped with the newly developed HSE 3 -CMOS. In addition to improved speed, the dynamic range has been further powered up over the established and conventional E 3 -CMOS. Even with the extremely short exposure time of 64 khz (15.6 μs) it has achieved sensitivity that allows it to reliably measure a range of surfaces from black (small amount of reflection) surfaces to those with lustre (large amount of reflection) as well a wide dynamic range. * HS=High Speed E 3 =Enhanced Eye Emulation When using low-speed sampling When using high-speed sampling CMOS (General displacement metre) is impossible due to insufficient light intensity. Could not be measured at all. Dynamic range 300x E 3 -CMOS (LJ-G) All ranges could be measured. The exposure time is short, so inclines could not be measured. Dynamic range 64x Reflectivity and light intensity in the width direction will change greatly depending on the shape, colour, material, or sampling speed (exposure time) of the target. HSE 3 -CMOS (LJ-V) All ranges could be measured. Even though the exposure time is short, all ranges could be measured without issue. Newly developed GP * 64-Processor Achieves 64 khz ultra-high-speed measurement We have newly developed a custom IC that can perform ultra-high-speed pipeline processing that in addition to reading CMOS image capture data and performing high-resolution subpixel processing, also performs highprecision linearisation and data output. This allows for the measurement of objects moving at high-speeds with room to spare. * G=Generating P=Profiles CMOS image capture data reading High-resolution subpixel processing High-accuracy linearisation processing Subpixel (1) Subpixel (2) linearisation (2) Data output Data output (1) 64 khz 64 khz Conventional models Could not measure targets moving at 6.4 m/s with a 24.3 mm pitch 240x the speed of conventional devices LJ-V Can measure profiles for targets moving at 6.4 m/s with a 0.1 mm pitch. 7

8 All types of measurements are possible with this single device The industry s greatest variety 74 types of measurement modes With 13 types of measurement details and 7 types of measurement target specifications, this single device can handle a total of 74 types of measurements. This single device achieves the measurement of a wide variety of target and responds to customer demands without missing a beat. Types of measurements Types of measurement targets for each measurement Types of measurements Measures the height of specified points. Makes a comparison with the registered master shape and then measures the area with the largest difference in height. Measures the height difference from a reference point to a specified point. Measures the radius of curved shapes. Measures the coordinates/amount of movement for the specified position. Measures the thickness of specified points. (When using 2 heads) Measures the width of specified points. Measures the angle between two specified lines or the angle from a single horizontal line. Measures the coordinate of the centre position for a specified point. Measures the cross-section area from a reference line or master shape. Measures the distance between 2 points. Calculates multiple measurement results. Measures the distance from a reference line to a specified point. 8

9 The industry's greatest variety 16-point complete simultaneous measurement Any 16 points can be measured simultaneously with a measurement mode that has been selected from the 74 types that are available. Simultaneously completes measurements and inspections that were considered to be a lost cause until now. Centre position Angle Height Distance Height difference Width Bottom height/position Cross-section area Easy for anyone Easy 3D measurement function Equipped with an easy 3D measurement function for height, height differences, and position. Not only is it possible to measure 2D cross-section profiles but it is also possible to easily measure scanned 3D data of the target. Types of measurements Types of measurement targets for each measurement example (PC board IC chip height difference measurement) Scanning the measurement target area settings menu area (1) (Peak height) area (2) (Average height) value (1)-(2) 9

10 An emphasis on inline measurement X adjustment, Z adjustment, θ adjustment Trusted position adjustment function θ -> X adjustment Corrects positional misalignment of the target, which is directly connected to errors in the measurement results. Even in cases where the target is flowing at random or when it is difficult to perform positioning, it is possible to perform measurement without error. If the position of the workpiece becomes misaligned... Adjustment The measurement area tracks the positional misalignment of the target. Double XZθ adjustment function The LJ-V7000 Series is equipped with a new function that makes it possible to individually set various adjustments in 2 areas. This is effective when measuring gaps, angles, or height differences that are constructed of 2 parts. Conventional LJ-V area (2) area (1) area (2) area (1) If the position of individual workpieces becomes misaligned... Because position adjustment was applied to a single side as reference, measurement could not be properly performed. Adjustment Because original adjustment is applied individually to measurement areas (1) and (2), measurement can be properly performed. Double head adjustment function By understanding the positional relationship of both heads, it is possible to match the θ adjustment centre of rotation for both heads. Even when measuring targets with variation or incline changes, it is possible to measure the correct points. Conventional LJ-V Head A Head A area Head A area If the workpiece tilts... Head B area The actual thickness is a different value. Adjustment Head B area The correct thickness can be measured. Head B <Ex.> Minimum thickness measurement The θ adjustment centre of rotation for each head differs, so the measurement area for head (B) becomes misaligned. The θ adjustment centre of rotation for both heads match, so the measurement area is not misaligned. 10

11 Free selection 3-way operation A touch panel has been prepared so that it is possible to perform on-site monitor or setting operations during measurement. It is also possible to perform operation using a PC or a console that is connected to a commercially available monitor. It is possible to use the touch panel, a monitor, or a PC depending on the situation. Analogue RGB monitor Touch panel CA-MP120T PC On site considerations Various specifi cations that include all on-site needs Supports encoder input Can perform encoder synchronised measurement up to a top speed of 64 khz. Can measure shapes in the direction of movement with high-speed and with an accurate pitch. High-fl ex cable Has adopted a high flex cable as standard. Can be installed on robots and other movable parts without worry. IP67 enclosure rating supported for the sensor head and connection cable In addition to the sensor head, the connection cable also supports an IP67 enclosure rating. There are no problems even in environments like processing plants where spray easily comes on to the product. Impact resistance test Clears IEC Equipped with high shock resistance that is necessary for industrial robots. 11

12 Data output that supports a variety of usage methods Output method Ethernet value USB RS-232C Analogue voltage PC Ethernet USB Profile data PLC, etc. OK/NG judgement Ethernet USB RS-232C I/O The industry's largest Large-capacity memory and data reading at anytime 16 areas x approx. 3,800,000 units of data Equipped with a large-capacity memory that can temporarily store large amounts of data to the controller. With measurement values, 16 areas x approx. 3,800,000 pieces of data can be stored, and with profile data, approx. 250,000 profiles can be stored. Also, stored data can always be read regardless of whether measurement is being performed or not. Large capacity memory Storage Approx. 250,000 profi les Reading Regardless of whether measurement is being performed or not, it is possible to read data with your desired timing. Storage Example of data reading Conventionally Workpiece (1) measurement Workpiece (1) reading Workpiece (2) measurement Workpiece (2) reading LJ-V Conventionally, measurement could not be performed while data was being read. Workpiece (1) measurement Workpiece (2) measurement Workpiece (3) measurement Workpiece (4) measurement Workpiece (1) reading Workpiece (2) reading Workpiece (3) reading With the LJ-V Series, it is possible to move on to the next measurement while measurement data is being read, thus making it possible to greatly improve tact time. 12

13 Achieves the demands of high-end users Publicly open communications library Continuous profile data output at a top speed of 64 khz Profile data Max. 64,000 profiles/sec. Giga bit Ethernet Profile data The LJ-V7000 Series has now been equipped with a TOE (TCP/IP off-road engine) specifically for processing high-speed communication. This achieves high throughput that does not affect CPU load. With this it is possible to output 64,000 units of profile data at a top speed of 1 second. Rather than performing measurements in standard measurement mode, the LJ-V7000 Series is used as a measuring probe and is effective in cases when you would like to perform measurements using your own original algorithms. The communications library is also publicly available as standard. Height data that has been linearised at 20 bits for each point Pixel pitch Differences with a 3D measurement camera 3D measurement camera LJ-V Series 1 Easy installation When using a 3D camera, the laser light source and receiver (camera) are independent of each other, which makes it so that performing on-site installation and adjustment consume a great deal of time and effort. With the LJ-V, the laser light source and receiver are contained in a single body, making on-site adjustment unnecessary. This also makes it so that misalignment that occurs from use does not take place. 2 Linearisation adjustment unnecessary When using a 3D camera, the height of individual pixels and width data differ due to the positional relationship of the laser light source and the receiver, and it cannot be used in this state. There is need to perform linearisation adjustment each time that this occurs. With the LJ-V Series, authentic data from the controller that has already been processed with linearisation adjustment is output, so there is no need for you to perform adjustment tasks. 3 A measuring device that guarantees accuracy The LJ-V Series is not a camera, but a measuring device that guarantees accuracy. Depending on the international standard, calibration is performed with a standard machine. and inspection with sense of security and reliability are possible. 3D camera If the position of the workpiece changes, then the profile that is obtained will differ. LJ-V It is possible to obtain the real measurements and the same profile no matter where measurement is performed within the measurement area. Generator profile Generator profile 13

14 Easy and convenient! PC software that has thoroughly considered usability Easy 3D display function With the LJ-V7000 Series, you can instantaneously check the results of a scanned target using a 3D bird's eye view. This makes it possible to intuitively understand if measurement is stabilised or not. Scan Multi-screen function It is possible to simultaneously check your favourite screens, including measurement values, measurement profiles, height image displays (greyscale displays), and measurement value trend graphs. It is possible to freely determine the screen size and placement to construct your own original screen. value monitor Height image display (Greyscale display) Profile display 14

15 Easy settings Easy navigation settings Anyone can perform setting intuitively and by following the navigation in the order of image capture settings, measurement settings, and output settings. Settings applied in real-time The measurement conditions are applied to the settings screen profile in realtime. There is no need to return to the measurement screen for confirmation, making it possible to greatly reduce the time and effort spent on setting up. Hint functions that don't require the manual Hint icons have been prepared for each screen. Profile storage function Terminal operation monitor function It is possible to store approx. 28,000 profiles. You can also store measurement values for 16 outputs at the same time. The LJ-V7000 Series is equipped with various analysis functions, which is useful for the verification of defects and for research and development. Can check the ON/OFF status of controller I/O terminal in a list. It is possible to greatly reduce the time and effort that until now were exhausted on-site. 15

16 Components selection guide Sensor head High-accuracy specular reflection LJ-V7060K High-accuracy LJ-V7060 Middle range LJ-V7080 (mm) (mm) (mm) mm 54.6 mm 62.2 mm range 54.6±7.6 mm range Z-axis X-axis 54.6±7.6 mm 14 mm 50 range 57 mm range Repeatability Z-axis 0.4 μm Repeatability Z-axis 0.4 μm Repeatability X-axis 5 μm X-axis 5 μm Width 25 mm 80 mm Width 8 mm 52 mm Width 13.5 mm Width 32 mm Width 14 mm 60 mm Width 15 mm 0 68 mm mm Width 8 mm Width 15 mm Width 39 mm range range 60±8 mm 80±23 mm Z-axis X-axis 60±8 mm 15 mm 50 Z-axis X-axis Z-axis X-axis 80±23 mm 32 mm 0.5 μm 10 μm Controller Monitor Controller LJ-V7001(P) Controller variation Display output unit LJ-VM100 Touch panel monitor CA-MP120T Specialised monitor stand OP NPN output type LJ-V7001 PNP output type LJ-V7001P Settings monitor software LJ-H2 USB cable (LJ-H2 accessory) OP Console OP

17 Long range LJ-V720 0 Ultra-long range LJ-V730 0 (mm) (mm) mm Width 110 mm LJ-V Series Selection guide mm Width 180 mm mm Width 51 mm mm Width 62 mm mm range 200±48 mm range Repeatability Width 73 mm Z-axis 200±48 mm X-axis 62 mm Z-axis 1 μm X-axis 20 μm mm range 300±145 mm range Repeatability Z-axis X-axis Z-axis X-axis Width 240 mmm 300±145 mm 180 mm 5 μm 60 μm Cable connector Optional accessories Head connection cable CB-B3 3 m /CB-B10 10 m Head connection extension cable CB-B5E 5 m /CB-B10E 10 m CB-B20E 20 m Touch panel monitor extension cable OP m OP m 24 VDC constant-voltage power supply CA-U3 Display monitor connection cable OP m /OP m RS-232C cable OP m D-sub9 pin connector OP

18 Specifications Controller/display output unit/operating system environment Controller Model LJ-V7001 LJ-V7001P No. of connectable sensors Max. 2 units Display Minimum display unit 0.1 μm, mm 2, 0.01 Maximum display range ± mm, ± mm 2 Laser remote interlock input Non-voltage input Encoder input NPN open-collector output, voltage output (5 V/12 V/24 V), and line-driver output all supported Trigger inputs Timing 1, 2 input Auto-zero1, 2 input Input terminal Reset 1, 2 input block Start measurement/stop input Start storage/stop input Clear memory input Laser OFF input Programme switch input Non-voltage input Non-voltage input x 4 inputs Voltage input Voltage input x 4 inputs Analogue voltage output ±10 V x 2 outputs, Output impedance: 100 Ω OUT comparator output NPN open collector output x 12 outputs (Can freely assign 16 OUTs x 3 stage judgement results) Output Strobe output terminal block Disable trigger output Memory FULL output NPN open collector output PNP open collector output Ready output Error output NPN open collector output (N.C.) PNP open collector output (N.C.) Ethernet interface 1000BASE-T/100BASE-TX USB Interface USB 2.0 high speed compliant (USB 1.1 Full-SPEED compatible) RS-232C interface data output and control I/O (Can select a baud rate of up to 115,200 bits/s) Rating Voltage Includes 24 VDC ±10% ripple (P-P) Maximum current consumption 1.3 A or less when connected to 1 head/ 1.9 A or less when connected to 2 heads Environmental Operating ambient temperature 0 to +50 C resistance Operating ambient humidity 20 to 85% RH (No condensation) Weight Approx g The rating for NPN open-collector output is up to 50 ma (40 V or less), residual voltage of up to 1 V The rating for PNP open-collector output is up to 50 ma (30 V or less), residual voltage of up to 1 V The rating for non-voltage input is up to 1 V for ON voltage and up to 0.6 ma for OFF current The rating for voltage input is a maximum input voltage of 26.4 V, a minimum ON voltage of 10.8 V, and up to 0.6 ma for OFF current PNP open collector output x 12 outputs (Can freely assign 16 OUTs x 3 stage judgement results) Display output unit Model Monitor output Voltage Power consumption Environmental Operating ambient temperature resistance Operating ambient humidity Weight LJ-VM100 Analogue RGB XGA ( ) Touch panel monitor (CA-MP120T), specialised connector included Supplied from the controller 2.5 W or less 0 to +50 C 20 to 85% RH (No condensation) Approx. 400 g LJ-H2 (LJ-Navigator 2) operation system environment Item PC Interface Supported OS Supported languages *2 CPU Memory capacity 2D cache memory Free space on hard disk Display resolution Weight Ethernet *1 USB *1 Minimum system requirements 1000BASE-T/100BASE-TX USB 2.0 high speed compliant (USB 1.1 Full-SPEED compatible) Windows7 (Home Premium, Professional, Ultimate) Windows Vista (Home Basic, Home Premium, Business, Ultimate) Windows XP (SP2 or later) (Home Edition, Professional Edition) Japanese, English, German, French, Simplified Chinese, Traditional Chinese Core i3 2.3 GHz or higher 2GB or more 2MB or more 10GB or more XGA (1024 x 768) or higher Approx. 400 g *1 Connections through a hub are not covered under warranty. *2 All languages except for Japanese and English are expected to receive support in the near future. Windows is a registered trademark of the Microsoft Corporation, U.S.A. Core is a registered trademark of the Intel Corporation. 18

19 Head/cable Sensor head unit Model LJ-V7060K LJ-V7060 LJ-V7080 LJ-V7200 LJ-V7300 Mounting conditions Specular reflection Diffuse reflection Reference distance 54.6 mm 60 mm 80 mm 200 mm 300 mm range Z-axis (height) ±7.6 mm (F.S.=15.2 mm) ±8 mm (F.S.=16 mm) ±23 mm (F.S.=46 mm) ±48 mm (F.S.=96 mm) ±145 mm (F.S.=290 mm) NEAR side 8 mm 13.5mm 25 mm 51mm 110 mm X-axis (width) Reference distance 14 mm 15 mm 32 mm 62 mm 180 mm Far side 8 mm 15 mm 39 mm 73 mm 240 mm Blue semiconductor laser Wavelength 405 nm (visible beam) Laser class Light source IEC FDA(CDRH) Class 2 Laser Product Class 2M Laser Product *10 Class 2 Laser Product Part *11 Output 4.8 mw 10 mw 4.8 mw Spot shape (reference distance) Approx. 21 mm x 45 μm Approx. 48 mm x 48 μm Approx. 90 mm x 85 μm Approx. 240 mm x 610 μm Repeatability *1 Z-axis (height) *2 0.4 μm 0.5 μm 1 μm 5 μm X-axis (width) *3 5 μm 10 μm 20 μm 60 μm Linearity Z-axis (height) *4 ±0.1% of F.S. ±0.05 to *5 ±0.15% of F.S. Profile Data interval X-axis (width) 20 μm 50 μm 100 μm 300 μm Sampling cycle (trigger interval) *6 Top speed: 16 μs (high-speed mode) Top speed: 32 μs (advanced function mode) Temperature characteristics 0.01% of F.S./ C Enclosure rating *7 IP67 (IEC60529) Ambient operating illuminance *8 Incandescent lamp: lux max Environmental Ambient temperature *9 0 to +45 C resistance Operating Ambient humidity 20 to 85% RH (No condensation) Vibration resistance 10 to 57 Hz, 1.5 mm double amplitude in X, Y, and Z directions, 3 hours respectively Impact resistance 15 G/6 msec Material Aluminium Weight Approx. 450 g Approx. 400 g Approx. 550 g Approx g *1 This value is from a case in which measurement has been performed with a reference distance at an average frequency of 4096 times. *2 The measurement targets are KEYENCE standard targets (white diffused objects). This value is from a case in which the average height of the default setting area has been measured in height mode. All other settings are default. *3 The measurement target is a pin gauge. This value is from a case in which the position of the intersection between the rounded surface of the pin gauge and the edge level has been measured in position mode. All other settings are default. *4 The measurement targets are KEYENCE standard targets (white diffused objects). The profile data is from a case in which measurement has been performed with 64x smoothing and 8x averaging. All other settings are default. *5 The linearity will differ depending on the measurement area. (See the diagram on the right.) *6 When the measurement area is at its minimum, binning is ON, image capture mode is set to standard, and parallel image capture is ON in high-speed mode. All other settings are default. When the measurement area is at its minimum, binning is ON and image capture mode is set to standard in advanced function mode. All other settings are default. *7 This value is from a case in which the head cable (CB-B*) or extension cable (CB-B*E) has been connected. *8 When measuring white paper, this is the illuminance for the light-receiving surface of the sensor head when light has been shined onto white paper. *9 Use the sensor head after first mounting it on a metal plate. *10 Viewing the laser output with certain optical instruments (for example, eye loupes, magnifiers and microscopes) within a distance of 100 mm may pose an eye hazard. *11 The laser classification for FDA(CDRH) is implemented based on IEC in accordance with the requirements of Laser Notice No ±0.15% of F.S. ±0.05% of F.S. ±0.1% of F.S. Cables Model CB-B3 CB-B10 CB-B5E CB-B10E CB-B20E Cable type Head cable Extension cable Cable length 3 m 10 m 5 m 10 m 20 m Minimum bend radius Enclosure rating *1 Material (outer covering) 22 mm IP67 (IEC60529) Weight Approx. 250 g Approx. 750 g Approx. 400 g Approx. 800 g Approx g *1 This value is from a case in which the sensor head has been connected. However, the controller side connector is not included. Regarding cable extension between the head and controller: Up to 2 cables can be connected with the CB-BxxE, and these cables should be kept to a total length of 30 m or less. PVC 19

20 Dimensions Sensor head Unit (mm) High-accuracy specular reflection model LJ-V7060K High-accuracy model LJ-V M4 Depth: x M4 Depth: 2.8 M4 Depth: x M4 Depth: x ø4.4 Mounting hole x M3 Depth: (75) 59 2 x ø4.4 Mounting hole 4 x M3 Depth: area area Long range model LJ-V x M4 Depth: x M3 Depth: (75) x ø4.4 Mounting hole area

21 Unit (mm) Middle-range model LJ-V M4 Depth: x M4 Depth: x M3 Depth: (75) x ø4.4 Mounting hole area x M4 Depth: x M3 Depth: (75) 3 x ø5.4 Mounting hole Ultra-long range model LJ-V area

22 Dimensions Controller Unit (mm) Multi-function controller LJ-V7001(P) Display output unit LJ-VM (70) DIN rail mounting unit DIN rail mounting unit x M4 Depth: 6 2 x M4 Depth: Console OP Head connection cable CB-B3/CB-B ø Cable length (3 m, 10 m) ø ø4.5 Cable length (3 m) Head connection extension cable CB-B5E/CB-B10E/CB-B20E 51 ø Cable length (5 m, 10 m, 20 m) (CB-B cable side) (Sensor head side) 22

23 5 Monitor Unit (mm) Touch panel monitor CA-MP120T (Effective display) (Effective display) ø (49.5) Panel mounting Panel thickness (1.6 to 4.0) Mounting brackets Mounting screws Panel cut dimensions 263 (Mounting bracket dimensions) Specialised monitor stand OP x 2 x R

24 Your online portal to... A complete knowledge centre to assist you with all of your measuring needs Get Useful Technical Literature FREE! Would you like to learn more about today's Technology? MEASUREMENT TECHNOLOGY Measurecentral.com has a vast database of technical resources to help beginners and experts learn more about effectively implementing measurement technology. Beginner s Help Ask the Experts Our experts are ready to answer your questions on measurement applications. services/ask.php Not sure which product is right for you? PRODUCTS FINDER Let KEYENCE help you determine the ideal measurement solution to your specific application. productfinder/ topics/index.php Please visit: SAFETY INFORMATION Please read the instruction manual carefully in order to safely operate any KEYENCE product. KEYENCE CORPORATION , Higashi-Nakajima, Higashi-Yodogawa-ku, Osaka, , Japan Phone: AUSTRIA Phone: Fax: BELGIUM Phone: Fax: BRAZIL Phone: Fax: CANADA Phone: Fax: CHINA Phone: Fax: CZECH REPUBLIC Phone: Fax: FRANCE Phone: Fax: GERMANY Phone: Fax: HONG KONG Phone: Fax: HUNGARY Phone: Fax: INDIA Phone: Fax: ITALY Phone: Fax: JAPAN Phone: Fax: KOREA Phone: Fax: MALAYSIA Phone: Fax: MEXICO Phone: Fax: NETHERLANDS Phone: Fax: POLAND Phone: Fax: ROMANIA Phone: Fax: SINGAPORE Phone: Fax: SLOVAKIA Phone: Fax: The information in this publication is based on KEYENCE s internal research/evaluation at the time of release and is subject to change without notice. Copyright (c) 2012 KEYENCE CORPORATION. All rights reserved. LJV-WW-C-GB A96 Printed in Japan SLOVENIA Phone: Fax: SWITZERLAND Phone: Fax: TAIWAN Phone: Fax: THAILAND Phone: Fax: UK & IRELAND Phone: Fax: USA Phone: Fax: WW * A 9 6 *

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