ACTUATOR LA37 PRODUCT DATA SHEET

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1 PRODUCT DATA SHEET ACTUATOR LA37 Features: 12, 24 V DC Permanent magnetic motor Thrust from N N Static holding force up to 70 kn in push and pull Dynamic wind stress forces 15 kn push/pull times Max. speed 3,5 mm/sec. Stroke length from 100 mm up to 600 mm (Trunnion mounted: 500, 750 and mm) Built-in electrical endstop Heavy-duty aluminium housing for harsh conditions Highly efficient acme thread spindle Protection class: IP66 for outdoor use (dynamic). Furthermore, the actuator can be washed down by a high pressure cleaner (IP69K- static) Hand crank for manual operation Integrated brake, high self-lock ability Endplay - 2 mm max. Non rotating piston rod eye Noise level: 73 db (A) measuring method DS/EN ISO 8746 actuator not locked Options: Built-in end-stop switches Different back fixtures and piston rod eyes Exchangeable cables in different lengths Hall effect sensor iflex options including IC, Parallel and Bus communication* Analogue or digital feedback for precise positioning Endstop signals (not potential free) When ordering AISI (304 and up) piston rod eye and back fixture, stainless steel screws are automatically included Trunnion mounting Usage: Duty cycle at max. load 15% at -30 C to +70 C Ambient operating temperature -30 C to +70 C, full 15kN performance from +5 C to +40 C, and full 10kN performance with Modbus actuators from +5 C to +40 C * For Modbus - please see the Modbus installation guide - Tough applications require equally tough actuator solutions. Thus the LA37 is specifically developed for heavy duty applications where there is a need for more lifting capacity and holding force. This solid and powerful actuator also lives up to the well-known LINAK quality, which guarantees you a maintenance-free product with a long lifetime. iflex is a descriptive term under which every TECHLINE actuator with built-in intelligence is unified. For more information on iflex, please see:

2 Technical specifications LA37 LA37 with 12 V motor Order number Push max. (N) Pull max. (N) Selflocking min. (N) Push* Selflocking min. (N) Pull Pitch (mm/spindle rev.) Typical speed (mm/s) load Standard stroke lengths (mm) Typical amp.** (A) 12 V no full No load Full load 371CXXX1XXXX1XX CXXXAXXXX1XX LA37 with 24 V motor Order number Push max. (N) Pull max. (N) Selflocking min. (N) Push* Selflocking min. (N) Pull Pitch (mm/spindle rev.) Typical speed (mm/s) load Standard stroke lengths (mm) Typical amp.** (A) 24 V no full No load Full load 371CXXX1XXXX2XX CXXXAXXXX2XX Technical specificationswnnion mounted LA37 with 12 V motor - Trunnion mounted Order number Push max. (N) Pull max. (N) Selflocking min. (N) Push* Selflocking min. (N) Pull Pitch (mm/spindle rev.) Typical speed (mm/s) load Standard stroke lengths (mm) Typical amp.** (A) 12 V no full No load Full load 371C0XXXXXXX1XX , 750, LA37 with 24 V motor - Trunnion mounted Order number Push max. (N) Pull max. (N) Selflocking min. (N) Push* Selflocking min. (N) Pull Pitch (mm/spindle rev.) Typical speed (mm/s) load Standard stroke lengths (mm) Typical amp.** (A) 24 V no full No load Full load 371C0XXAXXXX2XX , 750, * Depending on stroke length in push ** Depending on temperature - se curves

3 LA37 Ordering example CABLE: IP-DEGREE: MOTOR TYPE: 0 = No cable 1 = 1.5 m power cable ( ) 2 = 5 m power cable ( ) 3 = 0.2 m power cable with AMP connector ( ) 4 = 1.5 m power and 1.5 signal ( ) 5 = 5 m power and 5 m signal ( ) 6 = 1.5 m Y-cable, power and signal in one ( ) 7 = 5 m power Cable + Data cable M12x1 (Only for Modbus) 8 = 5 m power and 5 m signal-uv resistant ( A) 9 = 5 m power Cable-UV resistant ( ) 2 = Standard (IP66) 1 = 12 V DC without clutch 2 = 24 V DC without clutch STROKE LENGTH: XXX = mm 100mm - 600mm - Standard back fixture mounting 500mm ; 750mm ; 999mm - Trunnion mounting on outer tube FEEDBACK: 0 = Standard ( No feedback) IFLEX feedback Standard feedback D = Bus B = Analogue feedback 0-10V 1 = Single Hall C = Analogue feedback V 2 = Analogue feedback 0-10V S = Single Hall 3 = Analogue feedback V 4 = Feedback 4-20mA 5 = PWM 10-90% 6 = PWM 20-80% END STOP: Standard IFLEX 1 = With limit switches 7 = IC Basic 2 = With limit switches 8 = IC Advanced and end-stop signal 9 = Parallel A = Modbus B = Linbus SAFETY NUT + = No Safety Nut PISTON ROD EYE: 0 = Flexible eye Ø 20H = Flexible eye Ø 19.2 (3/4") = Ø 16.2mm hole, for 16mm pin A 3 = Ø 19.2mm hole, for 3/4" pin A BACK FIXTURE: 0 = Ø30 mm (Trunnion mounting on outer tube) = Ø 16.2 mm hole, for 16mm pin A 2 = Ø 16.2 mm hole turned 90, for 16mm pin A 3 = Ø 19.2 mm hole, for 3/4" pin A 4 = Ø 19.2 mm hole turned 90, for 3/4" pin A GEARBOX: C = Gear ratio 1 : 46 2,5 mm pitch N SPINDLE TYPE: 1 = 1-threaded acme spindle (2.5 mm pitch) ACTUATOR TYPE: 37 = LA37

4 LA37 Dimensions NOTE: The above dimensions apply for all LA37 Piston rod eyes and back fixtures. LA37 Dimensions - Trunnion mounted NOTE: The above dimensions apply for all piston rod eyes.

5 LA37 Piston Rod Eyes Option 0&1 Ø 20 H7 or 19.2 ± 0.1 (3/4") Ø 51 Ø LA37 Back fixtures

6 LA37 Back fixture orientation 0 Degrees 90 Degrees NB. All with tolerance of ±4 Load and stroke curve LA37

7 Load and stroke curves LA37 - Trunnion mounted

8 Speed and current curves* * Speed and current based on nominal power supply of 24V DC. If a current peak is appearing (25 A) during normal operation, there is a risk of failure at the internal limit switches, the actuators must be stopped and inspected by a service technician. We strongly recommend to protect the application against overload by adding over current protecting.

9 Speed and current tables Temp Force Speed Temp Force Amp start (24V) Amp operation (24V) temp. C force in push/kn average std dev temp. C force in push/kn average std dev average std dev I/O specifications: Power supply - Motor Item Specification Comment Power supply Input voltage 12 V DC ± 20% 24 V DC, ± 10% Cable dimension: 2 x 2.2mm² (2 x AWG14) for all different voltages. Duty cycle 15% at max. load* At -30 C to +70 C Current consumption operation See tables, page 2 Connection To extend actuator: Connect Brown to positive Connect Blue to negative To retract actuator: Connect Brown to negative Connect Blue to positive Actuator direction can be controlled with a doublethrow switch with the middle position off Please note that for all iflex options the power supply must NOT be switched between plus and minus for extending or retracting the actuator. * For differentiated duty cycle see Usage page 1

10 Positioning feedback Hall sensors Item Specification Comment Relative positioning Signal description Can be used for positioning. Input Voltage V DC Cable dimension: 6 x 0.5mm² (6 x AWG20) for all different voltages. Output voltage Resolution (Distance the piston rod moves per count) Always the same as input voltage Note: max. output voltage 24 V DC 12 V : 11 V ± 1 V 24 V : 23 V ± 1 V LA37: Actuator = mm per count. Movement per single Hall pulse: LA37 Actuator = mm per pulse The Hall sensor signals are generated by the turning of the actuator gearing. These signals can be fed into a PLC. The PLC the quadrature signals (fig. 1 below) can be used to register position of the piston rod. N.B. For more precise measurements, please contact LINAK A/S. Frequency Frequency is Hz on XOR output depending on load. Every pulse is ON for 10 ms Low frequency with a high load. Higher frequency with no load. Current consumption (standby) 15 ma When actuator is not running. Switching capacity Max. 12 ma Max. 680 nf Connection XOR Hall output = Violet Signal GND = White Diagram of Single Hall: Input XOR Output Micro - Processor Fig. 1 Combination The Hall feedback shall be combined with limit switches. Can be combined with end-stop signal. 37xxxx+1Sxxxxxx 37xxxx+2Sxxxxxx

11 I/O Specifications: Analogue feedback p g Item Specification Comments Description The actuator can be equipped with electronic circuit that gives an analog feedback signal when the actuator moves Input Voltage V DC Feedback circuit to be powered 1 second before motor runs, and until 1 second after the motor has stopped. Cable dimension 6 x 0.5mm2 (6 x AWG20). Output voltage 0-10V (Option B) 0V = Fully retracted 10V = Fully extended +/- 0.2V Current consumption Connection Combinations V (Option C) 0.5V = Fully retracted 4.5V = Fully extended Max. 40mA Supply: Brown Supply : Blue Signal power: Red Signal: Violet Signal GND: Black The Absolute positioning shall be combined with limit switches. Can be combined with endstop signal Also when actuator is not running. Use cable XXXX 37xxxx+1Bxxxxxx/37xxxx+2Bxxxxxx/ 37xxxx+1Cxxxxxx/37xxxx+2Cxxxxxx NB. It is recommendable to have the actuator to activate its limit switches on a regular basis. Endstop signal: max 20 ma available.

12 I/O Specification: IC (basic and advanced) - option Item Specification Comment Description Easy to use interface with integrated power electronics (H-bridge) for direct IC connection. Soft start of the actuator Power supply Input voltage 12VDC ± 20% 24VDC ± 10% Cable dimension 2 x 2 mm 2 (2 x AWG14) for all voltages Current consumption Duty cycle Power connection 12V, 4-26A depending on load 24V, 2-13A depending on load 15% at maximum load Connect Brown to positive Connect Blue to negative Input: Signals to the actuator Outwards direction Inwards direction On/off voltages Input current Current consumption (standby) Extends the actuator FW - Red (Pin 2) Retracts the actuator BW - Black (Pin 1) > 67% of VIN = ON < 33% of VIN = OFF > 10 ma 70 ma When actuator is not running. Output: Signals from the actuator Signal GND Minimising signal noise To be used with all signal outputs Actuator fully extended (OUT) Actuator fully retracted (IN) Signal when endstop switch in extended position is activated IN = Yellow (Pin 5) Signal when endstop switch in retracted position is activated OUT = Green (Pin 6) Source current max. 100 ma Output voltage min. VIN - 1V Feedback: IC (basic) Item Specification Comment Feedback, Hall Single Hall signal XOR: See fig. 1, page 10. Typical: Input voltage -1V Example on 24V version: Output voltage on IN = 23V (± 0.5V) Output voltage on OUT = 23V (± 0.5V) Source current max. 12 ma Feedback, Voltage 0-10V / V Ripple max. 200 mv Transaction delay max. 20 ms Linear feedback 0.5% Source current max. 1 ma Output voltage Typical: Input voltage -1V Example on 24V version: Output voltage on IN = 23V (± 0.5V) Output voltage on OUT = 23V (± 0.5V) Connection See the LA37 user manual Combination 37xxxx+7xxxxxxx

13 Feedback: IC (advanced) Item Specification Comment Feedback, PWM Frequency: Up to 150 Hz ± 5 Hz Duty cycle: Any low/high combination between 0 and 100 percent Output voltage: (VIN - 1V) ± 1V Open Drain source current max. 12 ma Feedback, Hall Single Hall signal XOR: See fig. 1, page 10. Typical: Input voltage -1V Example on 24V version: Output voltage on IN = 23V (± 0.5V) Output voltage on OUT = 23V (± 0.5V) Source current max. 12 ma Feedback, Voltage Feedback, Current Connection Combination Any low/high voltage combination between 0 and 10 volts Any low/high current combination between 4 and 20 ma Ripple max. 200 mv Transaction delay max. 20 ms Linear feedback 0.5% Source current max. 1 ma Transaction delay max. 20 ms Linear feedback 0.5% Output: Source Serial resistance: 12V max. 300 Ohm 24V max. 900 Ohm See the LA37 user manual 37xxxx+8xxxxxxx I/O Specification: Parallel Item Specification Comment Description The parallel drive option supports up to 8 actuators Power supply 12VDC ± 20% 24VDC ± 10% Cable dimension 2 x 2 mm 2 (2xAWG14) for all voltages Current consumption Feedback 12V, 4-26A depending on load 24V, 2-13A depending on load No feedback available during parallel drive Consumption per actuator Power connections Black (Pin 1): Enable backward Red (Pin 2): Enable forward White (Pin 3): Signal GND Violet (Pin 4): Inter communication Yellow (Pin 5): Endstop signal out Green (Pin 6): Endstop signal in Combination Cable dimension 6 x 0.5 mm 2 (6 x AWG20) 37xxxx+9xxxxxxx

14 Environmental test Climatic Test Specification Comment TRD number Cold test EN (Ab) Storage at low temperature: Temperature: -40 C Duration: 72h Not connected Tested at room temperature. TRD0509 EN (Ad) Operating at low temperature: Temperature: -30 C Duration: 2h Actuator is not activated/connected Tested at low temperature. TRD0509 Dry Heat EN (Bb) Storage at high temperature: Temperature: +90 C Duration: 72h Actuator is not activated/connected. Tested at room temperature TRD0510 Storage at high temperature: Temperature: +70ºC Duration: 1000h Actuator is not activated/connected Tested at high temperature. EN (Bd) Operating at high temperature: Temperature: +60 C Int. max. 17% Duration:700h Actuator is activated Tested at high temperature. TRD0507 Change of temperature EN (Na) Rapid change of temperature: High temperature: +100 C in 60 minutes. Low temperature: -30 C in 60 minutes. Transition time:<10 seconds Duration: 100 cycles Actuator is not activated/connected. Tested at room temperature. TRD0501 EN (Nb) Controlled change of temperature: Temperature change 5 C pr. minute High temperature: +70 C in 60 minutes. Low temperature: -30 C in 30 minutes. 130 minutes pr. Cycle. Duration: cycles (90days) Actuator is not activated/connected. TRD0508 Tested at 250, 500 and cycles at low and high temperatures. Damp heat EN (Db) Damp heat, Cyclic: Relative humidity: 93-98% High temperature: +55 C in 12 hours Low temperature: +25 C in 12 hours Duration: 21cycles * 24hours Actuator is not activated/connected Tested within 1 hour after condensation, That means after upper temperature has been reached. TRD0505 EN (Ca) Damp heat, Steady state: Relative humidity: 93-95% Temperature: +40 ±2 C Duration: 56 days Actuator is not activated/connected. Tested within one hour after exposure. TRD0518 Salt spray test Actuators are tested for corrosion resistance at 500 hours salt spray test. TRD3989

15 Degrees of protection protection IPX6 static IPX6 static: Actuators are tested for water ingress according to IPX6, without movement. IPX4 dynamic: Actuators are tested in rainy conditions with movement. IP6X: Actuators are tested for dust sealing properties according to IP6X. TRD4003 TRD4004 TRD3986 Chemicals BS7691 / 96hours Diesel 100% Hydraulic oil 100% Ethylene Glucol 50% Urea Nitrogen saturated solution Liquid lime 10% (Super- Cal) NPK Fertilizer (NPK ) saturated Tested for corrosion. TRD0525 Climate test with Modbus pcb Climate test with Hall pcb Actuators with Modbus pcb are tested with N load, at temperatures of plus 5ºC and plus 40ºC. Actuators with Hall pcb are tested with N load, at temperatures of minus 30ºC and plus 70ºC. TRD3994 TRD3992 Environmental test - Mechanical Test Specification Comment TRD number Free fall Free fall from all sides: Height of fall: 0.4 meter onto steel. Actuator not activated/connected. TRD0511 Vibration EN (Fdb) Random vibration: Short time test:6.29 g RMS Actuator is not connected Long time test: 7.21 g RMS Actuator is not connected Duration: 2 hours in each direction TRD0502 EN (Fc) Sinus vibration: Frequency 5-25 Hz: Amplitude = 3.3 mm pp Frequency Hz: Acceleration 4 g Number of directions: 3 (X-Z-Y) Duration: 2 hours in each direction. Actuator is not activated TRD0517 Bump EN (Eb) Bump test: Level: 40 g Duration: 6 milliseconds Number of bumps: 500 shocks in each of 6 directions. Actuator is not connected. Shock EN (Ea) Shock test: Level: 100 g Duration: 6 milliseconds Number of bumps: 3 shocks in each of 6 directions. Actuator is not connected. TRD0503 TRD0504 Static load Static push and pull tests of basic actuators with 500, 750 and mm strokes. TRD3996 Dynamic load Dynamic push/pull tests of the actuator. TRD3990 Self-locking test Self-locking tests at dynamic and static load. TRD3988 Abuse test Tests at 100% duty cycle until damage. TRD3985 Lifetime test Lifetime tests performed at combined loads in push and pull situations. TRD4001

16 Environmental test - Electrical Test Specification Comment TRD number Power supply ASAE EP455 (1990) Operating voltages +10V - +16V Over voltage +26 (V) / 5 min. Reverse polarity 26(V) / 5min. Short circuit to ground 16 (V) / 5 min. Short circuit to supply 16 (V) / 5 min. HF-immunity EN Level: 30 V/m. at 26 MHz 1000 mhz 80% 1KHz TRD0522 TRD0516 Emmision EN Level is inside limits for 12V motor TRD0516 Insulation test Level: 500VAC/25-100hz for 1 minute TRD0516 Automotive transients ISO 7637 Load dump test only accepted on motor power connection. TRD0521 Current and Speed Actuators with loads of 0N, 7.500N and N are tested at minus 30ºC, plus 20ºC and 70ºC TRD3987 First Article Inspection Test Specification Comment TRD number FAI First Article Inspection made on new actuators. TRD3991 LA37 Manual Hand Crank The manual Hand Crank can be used in the case of power failure. The cover over the Allen Key socket must be unscrewed before the Allen Key can be inserted and the Hand Crank operated. Hand Crank Torque: Max.16 Nm ( at maximum load ) Piston Rod movement per turn: Gear C = 4.0 mm 6 mm Allen Key (With stainless steel screws: 5 mm Allen Key) Note: The power supply has to be disconnected during manual operation. If the actuator is operated as a Hand crank, it must be operated by hand or carefully by machine, otherwise there is a potential risk of overloading and hereby damaging the actuator. LA37 with CS or MODBUS options only operate by hand. Copyright LINAK MA M E. Chapter 5.17 Terms of use The user is responsible for determining the suitability of LINAK products for specific application. LINAK takes great care in providing accurate and up-to-date information on its products. However, due to continuous development in order to improve its products, LINAK products are subject to frequent modifications and changes without prior notice. Therefore, LINAK cannot guarantee the correct and actual status of said information on its products. While LINAK uses its best efforts to fulfil orders, LINAK cannot, for the same reasons as mentioned above, guarantee the availability of any particular product. Therefore, LINAK reserves the right to discontinue the sale of any product displayed on its website or listed in its catalogues or other written material drawn up by LINAK. All sales are subject to the Standard Terms of Sale and Delivery for LINAK. For a copy hereof, please contact LINAK. FOR MOUNTING INSTRUCTIONS AND GUIDANCE IN USAGE, PLEASE SEE THE RELEVANT USER S MANUALS

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