Climatic Independent Level Sensor LAR

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3 JAHRE GEWÄHRLEISTUNG SENSORS FOR FOOD AND BIOPHARMA. Product Information LAR-361 LAR-761 FOOD Climatic Independent Level Sensor LAR Application / Specified usage Hydrostatic level measurement in humid ambiance Special applicable for exterior storage vessels Application examples Level measurement with LAR, linearization and evaluation with PEM-DD (6 standard geometries, 1 geometry programmable; see separate product information) Difference pressure measurement with 2 x LAR and evaluation device PEM-DD Authorizations LAR-361 3 3 Y R S W A R R A N T Y TYPE EL March 2006 74-06 Hygienic design / Process connection By using the Negele weld-in sleeve EMZ-352 or the build-in system EHG-.../1" a front-flush, hygienic and easy cleanable measurement point will be achieved. EHEDG certificate for hygienic process connection CLEANadapt (LAR-361) Conforming to 3-A Sanitary Standard for versions with Tri-Clamp DIRECTadapt (LAR-761) CIP-/ SIP-cleaning up to 140 C (284 F) / max. 30 min Front-flush stainless steel sensor cell All wetted materials are FDA-conform Sensor completely made of stainless steel Protection class IP 69 K (with cable connection) Available process connections (adapter): Tri-Clamp, SMS, DRD, Varivent, BioControl Features / Advantages Measurement cell without any contact to atmosphere, fully closed measurement system No drift problems caused by condensation Very high accuracy and long term stability Measurement up to 130 C (265 F) medium temperature Oil filling, FDA approved Factory or field calibration Integrated two-wire measurement trancducer 4...20 ma 3 years warranty Options / Accessories Material certificate 3.1 Special pressure ranges, specific pressure calibration ex works Electrical connection with M12 plug-in connector Preassembled cable for M12 plug-in connector Measuring principle The pressure sensor utilizes an internal piezoelectric transducer to convert the mechanical pressure into a corresponding mv signal. The mv signal then passes through custom linearization and conditioning circuitry. The resulting signal is an industry standard 4...20 ma, according to the specified range. In addition, onboard circuitry handles temperature compensation to ensure a stable reading during all phases of operation. Measuring principle hydrostatic pressure + atmospherical pressure temperature sensor 1 hydraulic coupling piezoelectrictransducer hydraulic coupling temperature sensor 2 atmospherical pressure

FOOD Specification 2 Specification Pressure ranges, standard relativ 0...0.35 / 1.0 / 2.0 / 3.3 / 4.0 bar Over-range rating factor 2 times base range Process connection Materials Temperature ranges Temperature compensation time Accuracy Temperature drift Electrical connection Protection class Supply voltage LAR-361: CLEANadapt LAR-761: DIRECTadapt connector head thread connection diaphragm oil filling ambient process compensated CIP-/ SIP-cleaning t 90 hysteresis linearity reproduceability zero span cable gland cable connection thread G1" sensor, combined with Negele process connenction CLEANadapt torque max. 20 Nm Tri-Clamp 1½" or 2", DRD, SMS 38, Dairy flange DN40/50, Endress+Hauser Uni 65/85, Hengesbach PZV/VZR series SS 316 (1.4305), Ø 65 mm SS 316L (1.4404) SS 316L (1.4404), R a < 0.4 μm medical white oil, FDA approval number 21CFR172.878, 21CFR178.3620, 21CFR573.680-10...+50 C (15...120 F) -20...+130 C (0...265 F) -20...120 C (0...250 F) 140 C (284 F) max. 30 minutes 30 s / 10 K 0.075 % of full scale 0.05 % of full scale 0.075 % of full scale < 0.04 % of full scale / K < 0.04 % of full scale / K M16 x 1.5 (PG) M12 plug-in SS 316 (1.4305) (Option) IP 67 (with cable gland) IP 69 K (with M12 plug-in connector) 12...40 V DC Output 2-wire current loop analog 4...20 ma short circuit proof Max. loop resistance (not incl. LAR) Weight power supply 18 V DC 24 V DC 40 V DC max. resistive load 300 Ω 600 Ω 1200 Ω approx. 1050 g Pressure ranges Type min. operation range max. operation range over-range rating LAR-x61 / 0 0 0.1 bar 0 0.35 bar 0.6 bar LAR-x61 / 1 0 0.35 bar 0 1.0 bar 2.0 bar LAR-x61 / 2 0 1.0 bar 0 2.0 bar 4.0 bar LAR-x61 / 3 0 2.0 bar 0 3.3 bar 6.6 bar LAR-x61 / 4 0 3.3 bar 0 4.0 bar 8.0 bar

3 Dimensional Drawings Installation FOOD LAR-361 G1" CLEANadapt LAR-761 Dairy flange DIN 11851 LAR-761 Tri-Clamp 65 H 100 72 54 atmospheric vent location ØD ØD DIN 11851 size Tri-Clamp size Typ H Ø D Type Ø D G1" DN40 75.7 mm 55.9 mm TC1 50.5 mm DN50 77.0 mm 68.5 mm TC2 64.0 mm LAR-761 Endress+Hauser (EHS) LAR-761 Endress+Hauser (EHL) LAR-761 HPV 73 RD 52 x1/6 76 105 RD 52x1/6 M38 x 1,5 LAR-761 DRD-65 90 LAR-761 SMS 38 80 Mechanical connection / Installation Pay attention to the maximum tightening torque of 20 Nm if using Negele CLEANadapt system! Pay attention to remain open the 4 ports of atmospheric vent location. Ø65 Ø55

FOOD Electrical Connection Installation 4 Electrical connection With M12-plug Configuration M12-plug 1: supply +24 V DC 2: output 4...20 ma 3: not connected 4: not connected 4...20 ma 2-wire current loop Start up Connect the sensor with power supply (12 36VDC) -> see electrical connection LAR. The sensor is now ready for use. At standard factory-setting 0...100 % of the full range are equivalent to 4...20 ma of the current output. Example: LAR-xxx/1 = 0...1 bar -> 0 bar = 4 ma; 1 bar = 20 ma In case of specific factory calibration the customized measurement range is equal to 4...20 ma of the current output. Example: LAR-xxx/1 calibrated to 0...0.8 bar -> 0 bar = 4 ma; 0.8 bar = 20 ma Calibration is on-site customizable for special measurement tasks. Settings of ZERO (4 ma) and SPAN (20 ma) are non-interactive, having no effect on each other. Empty adjustment (with empty vessel) Empty adjustment After mounting an empty adjustment is strongly recommended, because mounting position can affect the ZERO setting. Empty vessel completely (no pressure or product on diaphragm, vessel is vented to atmosphere) Switch in position RUN MODE Actuate key switch ZERO for 5 seconds Empty adjustment is done. Output current is 4 ma. For maximum accuracy we advice an empty adjustment one more time after 3 weeks. After that an annually empty adjustment is recommended. Current output [ma] 20 12 4 0 0 Press ZERO -button for 5 seconds 50 100 Level / Pressure [%] 1. Full adjustment (with filled vessel utilizing level in vessel) Full adjustment Fill vessel to desired maximum level Please pay attention that hydrostatic pressure must be between min. and max. range of sensor (see table of pressure ranges page 2). Switch in position RUN MODE Actuate key switch SPAN for 5 seconds Full adjustment is done. Output current is 20 ma Current output [ma] 20 12 4 0 0 Press SPAN - button for 5 seconds 50 100 Level / Pressure [%]

5 Installation FOOD 2. Utilizing on-board setup If wet calibration (by vessel filling) is not possible, full adjustment can be done by on-board setup. First of all, the desired range (full value) must be calculated to a corresponding current value. Afterwards, the calculated current will be adjusted by multimeter to perform new calibration. In the following, a current calibration procedure is described as an example. Calibration hookup LAR calibration values Type Base range in bar Upper linearization value in bar Current CAL at base range in ma Multimeter 4...20 ma 2-wire current loop LAR-x61/0 0.35 0.3612 19.50 LAR-x61/1 1.00 1.0462 19.29 LAR-x61/2 2.00 2.0799 19.39 LAR-x61/3 3.30 3.4623 19.25 LAR-x61/4 4.00 4.0228 19.91 2.1 Calculating the current to adjust For calculating the current to adjust the upper linearization value is needed (see table calibration values). This linearization value is greater than the base range. LAR needs this value to calculate the characteristic line. Calculation formula: (( desired range / upper linearisation value ) x 16 ) + 4 = current to adjust Example: LAR-361/1 needs to be calibrated to 0.8 bar: (( 0.8 / 1.0462 ) x 16 ) + 4 = 16.23 ma 2.2 LAR adjustment Connect LAR with power supply -> see figure calibration hookup above. Perform meter hookup with test points (setting ma/dc). Set MODE SWITCH to FIELD CAL. Meter output will automatically move to 19.99 ma LAR is waiting for entry of new calibration range. Using the switches SPAN and ZERO, raise or lower the current until the calculated value (see above) has been reached. (The longer the switches are pressed the faster changes the current value.) Once the proper value has been reached, simultaneously depress both the SPAN and the ZERO switch for one second this will lock in new sensor calibration. Place MODE SWITCH in CURRENT CAL position and verify meter is reading calculated value. (When switching to CURRENT CAL position, current output is equal to actual calibration). Set MODE SWITCH to RUN MODE LAR is now ready for use with new calibration setting. 2.3 Reset to factory setting If factory reset to base range is needed, perform calibration shown in procedure 2.2 and adjust current acc. to table LAR calibration values (CURRENT CAL at base range).

FOOD Warnings Application Examples 6 Hydrostatic Level Measurement and Linaerization with LAR and PEM-DD Ventilation Difference Pressure Measurement and Linearization with 2 x LAR and PEM-DD P o P o P hydrostatic P hydrostatic + P o P hydrostatic P hydrostatic + P o P difference = (P hydrostatic + P o ) - P o P difference = P hydrostatic Advice for differential pressure measurement in pressurized vessels P o < 4 x P hydrostatic To guarantee a stable differential pressure measurement in pressurized vessels the overpressure must not be higher than 4 times of the hydrostatic pressure! Cleaning Cleaning with fluids does not effect operation Metal diaphragm (process and reference) mustn t be cleaned mechanically In case of using pressure washers, don t point nozzle directly to electrical connection or reference diaphragm (atmospheric vent location)! In case of inside cleaning with pressure washers, don t point nozzle directly to the diaphragm! Advice to EMC Applicable directives: Electromagnetic Compatibility Equipment Directive 2004/108/EC The CE label confirms compliance of this product with the applicable EC directives. The operator is responsible for ensuring compliance with the directives that are applicable to the overall system. Conventional Usage Not suitable for applications in explosive areas. Not suitable for applications in security-relevant equipments (SIL). Reshipment Sensors shall be clean and must not be contaminated with dangerous media! Note the advice for cleaning! Use suitable transport packaging only to avoid damage of the equipment! Transport / Storage No outdoor storage Dry and dust free Not exposed to corrosive media Protected against solar radiation Avoiding mechanical shock and vibration Storage temperature 0...40 C Relative humidity max. 80 % Disposal This instrument is not subject to the WEEE directive 2002/96/EC and the respective national laws. Pass the instrument directly on to a specialised recycling company and do not use the municipal collecting points.

7 Troubleshooting Process Connections FOOD Troubleshooting Symptom 1. No output current (0 ma) in any Mode. 2. Current output less than 4 ma and does not increase with level, or if mode switch set to FIELD CAL. 3. Output stuck between 4 and 20 ma 4. Performing sensor rezero procedure does not return output to 3.96...4.04 ma 5. Sensor output is not stable. 6. Output drifts over time. 7. Sensor ma output not as expected for specified level. 8. Output signals are not accurate. 9. Sensor output signal is greater than 20 ma. 10. Sensor output does not increase with the level, but does increase to 20 ma if mode switch set to FIELD CAL. Action Loop may be broken - Measure voltage across LOOP+ and LOOP- terminals. If not between 12...40 V DC, check connector and external loop wiring. Check if ma fuse in DMM is blown. This frequently occurs during testing. Connect milliammeter across LOOP+ terminal and TESTtestpoint. If loop now works, sensor circuitry has been damaged. Contact factory. Verify that MODE switch is in RUN mode. Empty vessel and perform Sensor Rezero procedure as described on page 4. Verify that CUR CAL output is between 7.2 and 20 ma. If current is less than 4 ma, follow instructions for Symptom No. 2. If current is greater than 4 ma, sensor is damaged. Contact factory. Verify that CUR CAL value is between 7.2 and 20 ma. Check for signs of moisture or water in housing. Contact factory. Perform Sensor Rezero procedure when vessel is empty. Afterwards repeat the full adjustment. Sensor may have been zeroed with product in the vessel. Perform Sensor Rezero Procedure as described on page 4. Sensor maybe over-ranged. Verify CUR CAL value, and that it is appropriate for the application. Contact factory for assistance. Sensor may have been dropped or over-ranged and permanently damaged. Contact factory for assistance. Conditions for a measuring point according to 3-A Sanitary Standard 74-06 The sensors LAR-761 / TC conforming to the 3-A Sanitary Standard. The sensors are designed for CIP-/ SIP-cleaning. Maximum 140 C / 30 minutes. Only with 3-A conforming Tri-Clamp connection. Mounting position, self draining and the position of the leackage hole must be in accordance to current 3-A Sanitary Standard. Overview of possible process connections for LAR-361. The complete overview of all available adapters you will find at product information CLEANadapt. LAR-361 Process connection Build-in system EHG (DIN 11850 series 2) Negele weld-in sleeve Dairy flange (DIN 11851) Varivent APV-Inline

FOOD Product Information LAR-361 LAR-761 8 Order Code LAR-361 LAR-761 (Climatic independent level sensor, process connection CLEANadapt G1") (Climatic independent level sensor, process connection DIRECTadapt) Measuring range (relative) 0 (0...0.35 bar) 1 (0...1.0 bar) 2 (0...2.0 bar) 3 (0...3.3 bar) 4 (0...4.0 bar) Process connection (only for LAR-761) TC1 (Tri-Clamp 1½", incl. 3-A TPV verification acc. to standard 74-06) TC2 (Tri-Clamp 2", incl. 3-A TPV verification acc. to standard 74-06) D40 (Dairy Flange DIN 11851 DN40) D50 (Dairy Flange DIN 11851 DN50) DRD (DRD Flange 65 mm) SM3 (SMS 38 mm with union nut) EHL (Endress+Hauser universal adapter Uni 65 6" D85) EHS (Endress+Hauser universal adapter Uni 65 / Uni 85) HPV (HENGESBACH PZM/VRM series) Range adjustment ex works X (no adjustment) [end value] (please specify required range in bar ) Electrical connection X (cable gland M16x1.5) M12 (M12-plug 1.4305) LAR-361 / 1 / / 0.5 / M12 Accessories PVC-cable with M12-connection PVC-cable with M12-connection made of 1.4305, IP 69 K, unshielded M12-PVC / 4-5 m PVC-cable 4-pin, length 5 m M12-PVC / 4-10 m PVC-cable 4-pin, length 10 m M12-PVC / 4-25 m PVC-cable 4-pin, length 25 m PVC-cable with M12-connection, brass nickel-plated, IP 67, shielded M12-PVC / 4G-5 m PVC-cable 4-pin, length 5 m M12-PVC / 4G-10 m PVC-cable 4-pin, length 10 m M12-PVC / 4G-25 m PVC-cable 4-pin, length 25 m M12 plug-in screw cap M12-EVK M12 plug-in screw cap, 1.4305 (303), with o-ring,as a protection against humidity and dirt CERT / 2.2 / LAR CERT / 3.1 / LAR factory certificate 2.2 acc. to EN10204 (only product contacting surface) inspection certificate 3.1 acc. to EN10204 (only product contacting surface) 50023 / 3.2 / 2015-08-26 / MU / EU NEGELE MESSTECHNIK GMBH Raiffeisenweg 7 87743 Egg an der Guenz Phone +49 (0) 83 33. 92 04-0 Fax +49 (0) 83 33. 92 04-49 sales@anderson-negele.com Tech. Support: support@anderson-negele.com Phone +49 (0) 83 33. 92 04-720