LVDT. Inductive Position Transducer - Hydraulic Series. SM-HYD Hydraulic Series. Key-Features:

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HM 1808 LVDT Inductive Position Transducer - Hydraulic Series SM-HYD Hydraulic Series Key-Features: Content: - Screw flange M18x1,5 / M30x1,5 or plug-in flange Ø18 - Pressure up to 400 bar - Measurement range 2...180 mm - Linearity up to ±0.10 % - Protection class IP67 - Sensor working temperature up to 150 C - High EMC-grade - Customized versions available 28.06.18

- 2 - DESCRIPTION LVDTs (Linear Variable Differential Transformers) are inductive sensors excellent for use in harsh industrial environments, e.g. high temperature- and pressure ranges, as well as high accelerations and measuring cycles. The SM series offers ultimate reliability and precision in a small size, and is designed for industrial- and lab use. The SM series is also available as a pressurized hydraulic model to 400 bar for installation directly in hydraulic cylinders (See data sheet SM-HYD and SM-F18). As of 2013 IMCA and KAB electronics (explanation see page 5) have a built-in cable breakage monitoring and are entirely galvanically isolated. The signal output is optimized for interference compatibility with very low residual noise. The guarantee for ultimate resolution and measuring accuracy. The sensors are used in hydraulic cylinders with a maximum pressure resistance of up to 400 bar. They are especially suited to be employed in harsh industrial environments where a high electromagnetic tolerance is required. The sensor works nearly unaffected by electric or magnetic fields. This sensor enables a connection between the hydraulic cylinder and the machine control. TECHNICAL DATA Sensor Ranges [mm] 2...180 mm (see chart on page 3) Linearity [% of FS] ±0.20 % - 0.80 % (see chart on page 3), 0.10 % for selected models Temperature range -40...+120 C, optional up to 150 C (H-option) Vibration stability DIN IEC68T2-6 10 G Shock stability DIN IEC68T2-27 200 G / 2 ms Connection 4 core cable or M12-connector with coupling nut cable TPE (standard) ø 4.5 mm, 0.14 mm², non-halogen, suitable for drag chains PTFE (option H) ø 4.8 mm, 0.24 mm², max. temperature 200 C, UL-Style 2895 Max. cable length 100 m between sensor and electronics Electronics IMCA external electronics (built-in) KAB cable electronics Output signal 0...20 ma, 4...20 ma (load < 300 Ohm) 4...20 ma (load < 300 Ohm) 0...5 V, ± 5 V (load > 5 kohm) 0...5 V, ± 5 V (load > 5 kohm) 0...10 V, ± 10 V (load > 10 kohm) 0...10 V, ± 10 V (load > 10 kohm) Temperature coefficient -0,0055, ±0,002 %/K -0,0055, ±0,002 %/K Resolution* 0,04 % FS 0,04 % FS Corner frequency 300 Hz/-3 db (6-pole Bessel) 300 Hz/-3 db (6-pole Bessel) Isolation stability > 1000 VDC > 1000 VDC Power supply 9...36 VDC 9...36 VDC Current consumption 75 ma at 24 VDC 65 ma at 24 VDC 150 ma at 12 VDC 140 ma at 12 VDC Sensor supply 3 V eff, 3 khz (adjustable, 1-18 khz) 3 V eff, 3 khz (adjustable, 1-18 khz) Working temperature -40...+85 C -40...+85 C Storage temperature -40...+85 C -40...+85 C Housing polyamide PA6.6, meets UL94-VO ABS Mounting on DIN EN-rail bore diameter ø 5,5 * 98.5% confidence interval (confidence limit)

- 3 - TECHNICAL DATA AND DIMENSIONS Range (FS) Type Body length A Linearity [%] Linearity [%] [mm] [mm] (standard) (optional) 0...2 SM2-HYD 48 0.30 0.20 0...5 SM5-HYD 54 0.30 0.20 0...10 SM10-HYD 64 0.30 0.20 0...25 SM25-HYD-M 94 0.30 0.20 0...25 SM25-HYD 137 0.30 0.20 0...50 SM50-HYD-M 144 0.30 0.20 0...50 SM50-HYD 207 0.30 0.20 0...100 SM100-HYD-M 220 0.80-0...100 SM100-HYD 244 0.30 0.20 0...120 SM120-HYD 227 0.80-0...140 SM140-HYD 260 0.80-0...160 SM160-HYD 336 0.80-0...180 SM180-HYD 300 0.80 - other ranges on request Different output types with flange type thread M18 x 1,5 / M30 x 1,5 Connector, 6-pole, (according to MIL-5015) Cable output Connector, 4-pole, M12 diameter of inner tube ø 4 mm Plug-in flange with radial cable or radial connector output

- 4 - INSTALLATION DRAWING flange with thread M30 for plug-in flange S18 * note: Rz = 1,6 for non pulsating pressure Rz = 0,8 for pulsating pressure M18x1,5 M30x1,5 A M18x1,5 M30x1,5 B 2,4 3,1 C 19,8 32,4 D 26 42 AC-OUTPUT 9 5 8 6 assignment for TPE-cable: white (5): primary 2 black (6): secondary 2 brown (9): primary 1 blue (8): secondary 1 assignment for PTFE-cable: white (5): primary 2 green (6): secondary 2 yellow (9): primary 1 brown (8): secondary 1

- 5 - CABLE ELECTRONICS KAB function cable TPE cable PTFE-UL V+ brown yellow GND blue brown signal white white signal GND black green If not specified otherwise the cable electronics is placed at 1 m from the end of the cable. ETERNAL ELECTRONICS IMCA external electronics IMCA (for DIN-rail mounting) Connection The external electronics IMCA is designed to be installed in switch cabinets (Din-rail mounting). The connection to the sensor is conducted as connector with push-in spring connection. * Terminals 1 and 7 are internally connected. CABLE BREAK DETECTION The electronics by eddylab feature a built-in cable break detection. This is achieved by an impedance measurement of the LVDT s secondary coil. If the sensor cable is cut, the impedance on the secondary connections of the electronics change regardless of the push rod position, triggering the cable break detection. This feature is based on a broken secondary connection. A partial cable break of the primary connections (cables between primary coil and electronics) will not activate this function. The electronics vary in their functional range. The external electronics IMCA offers the widest range. The cable electronics KAB only visualises a cable break by a red LED. IMCA: For the use of the cable break functions an alarm system (signal lamp, acoustic alarm device) or an alarm input of the PLC must be connected to the 7-pole terminal. The circuit board features a analog switch which is a normally open. Normal operation IMCA: Cable break IMCA: The green POWER-LED on the front side is on. The signal output is active. The alarm output is disabled. In case of a cable break the analog switch closes and the alarm system is activated or an electrical signal is conducted. Please note the maximum electrical values: 30 ma or 14 V. A front side ERROR-LED flashes in case of an error. The signal output is deactivated. There is no current or voltage signal.

- 6 - CABLE BREAK DETECTION Normal operation KAB: Cable break KAB: Die ERROR-LED leuchtet rot. The green POWER-LED is on. The red ERROR-LED is on. ELECTRICAL CONNECTION & CABLE mating connector: AT3106F, according to MIL-5015 (please order separately) PIN assignment PIN assignment connector Lemo and M12 Connection cable (shielded) for connector output Cable M12 with straight connector K4P2M-S-M12 2 m K4P5M-S-M12 5 m K4P10M-S-M12 10 m Cable M12 with angular connector K4P2M-SW-M12 2 m K4P5M-SW-M12 5 m K4P10M-SW-M12 10 m Mating connector for self assembly (shielded) Straight connector D4-G-M12-S M18 / M30 flange Angular connector D4-W-M12-S M18 / M30 flange Straight connector Lemo-FGG.0T S18 flange Protection class IP67 IP68 Temperature range -25...+90 C -40...150 C Mode of connection spring closure construction soldering contact Cable diameter ø 4...8 mm Ø 4,5...5,0 mm Conductor 0.14...0.34 mm² 0,14...0,25 mm² ADJUSTMENT OF ZERO POINT AND GAIN Please note that the zero point and gain may shift for long cable length between sensor and electronics. Thus install the sensor with the according cable length to the electronics and then adjust zero point and gain. 1. Push rod entirely in adjust offset. Move the sensor to the zero point of the measuring range and set the offset potentiometer on 4 ma/0 V for the output signal. 2. Push rod entirely out adjust gain Move the sensor to the end of the measuring range (push rod moved out) and set the gain potentiometer on 20 ma /10 V/5 V for the output signal. Signal inversion: If an inverted output signal is required (20...4 ma /10...0 V/5...0 V), swap clamps 6 and 8 (secondary coil) on the external electronics.

- 7 - ORDER CODE SENSOR SM HYD a b c d e f g a measurement ranges [mm] d cable / connector output f temperature range 2 / 5 / 10 / 25 / 50 / 100 S1: sensor with connector output 1 = -40...+120 C (standard) 120 / 140 / 160 / 180 1 = connector output 2 = -40...+150 C (option H) b type of flange 18 = thread M18 x 1,5 30 = thread M30 x 1,5 S18 = plug-in flange ø18 S2: sensor with cable output, open cable end (for IMCA) A = TPE cable 2 m B = TPE cable 5 m C = TPE cable 10 m g housing 1 = standard body length 2 = short body length c output S = connector output (MIL-5015 / LEMO) D = PTFE-UL cable 2 m (option H) E = PTFE-UL cable 5 m (option H) F = PTFE-UL cable 10 m (option H) M12 = connector output (M12) K = cable output S3: sensor with cable output for KAB G = TPE cable 2 m H = TPE cable 5 m J = TPE cable 10 m K = PTFE-UL cable 2 m (option H) L = PTFE-UL cable 5 m (option H) M = PTFE-UL cable 10 m (option H) e linearity 1 = 0,30 / 0,80 % (standard, see table page 3) 2 = 0,20 % (option L20, see table page 4) 3 = 0,10 % (option L10, see table page 4) ORDER CODE ELECTRONICS IMCA 24V KAB 24V a ab b type b KAB: type of cable / cable length IMCA = external electronics KAB = cable electronics E1: for sensor with cable output - = KAB integrated in sensor cable a output signal 020A = 0...20 ma 420A = 4...20 ma 10V = 0...10 V 5V = 0...5 V ±5V = -5...5 V ±10V = -10...10 V E2: for sensor with connector output A = cable 2 m, M12 straight female connector B = cable 2 m, M12 angular female connector C = cable 5 m, M12 straight female connector D = cable 5 m, M12 angular female connector E = cable 10 m, M12 straight female connector F = cable 10 m, M12 angular female connector possible combinations: S1: sensor with connector output S2: sensor with cable output S3+E1: sensor with cable output, KAB integrated in sensor cable S1+E2: sensor with connector output, cable electronics with cable K4PxM S1+E3: sensor with cable output, cable K4PxM, external electronics IMCA S2+E3: sensor with cable output, external electronics IMCA S1 S2 S1+E3 S3+E1 S1+E2 S2+E3

- 8 - Subject to change without prior notice. eddylab GmbH Ludwig-Ganghofer-Str. 40 83624 Otterfing Tel. Fax +49 (0)8024 46772-0 +49 (0)8024 46772-100 E-mail info@eddylab.de Internet www.eddylab.de