Ring-Torsion Load Cells RTB

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Ring-Torsion Load Cells RTB % PTB & OIML approved as suitable for trade use (up to 6000 d and 7500 d in case of multi-divisional scales) % High accuracy, even for very small utilisation ranges (down to 15 % in case of trade use according to OIML) % Low power consumption thanks to high impedance resistance of 1100 Ω % Protection to EEx ib IIC T 6 for use in explosion hazardous areas % Protection class IP68 Application Acting as a transducer, the load cell converts the mechanical input signal, the load, proportionally into the electrical output voltage. The special design of the ringtorsion load cells offers particular benefits for the user: % The extremely low headroom simplifies the use in almost all weighing applications % The sturdy design enables easy transport, installation, and operation, even under harsh environmental conditions (interfering forces, or extreme temperatures) Construction % Hermetically sealed due to laser welding and glass-metal transition (IP68) % Corrosion protection due to the use of stainless steel % All electrical components are inside the load cell and are thus optimally protected % The high-quality, sturdy connection cable is lead radially into the load cell % Mechanically compatible with the RTK series Functions % High repeatability % High long-term stability and thus continuing and consistently high accuracy % Minimal effect on accuracy by side forces % High reliability and availability, even in case of unavoidable shock loads, constraining forces or electrical interferences % Moment-free load input/output due to direct, vertical force flow BV-D2226GB

RTB 0,13 t RTB 0,25 t / 0,5 t Ø80 13.7 Ø6.5 Ø70 SW14 SW 14 120 Ø3.2 120 M10 Ø6.5 Ø20 +.01 -.04 M5, 8 tie f 11 35 Ø63 Ø55.5 13 Ø20 +.01 -.04 M6, 8 tie f 9.5 35 Order No. Variants Accuracy class C3 C3MI7,5 C6 0.13 t V041085.B01 --- --- 0.25 t V041086.B01 --- --- 0.50 t V041087.B01 V041087.B03 V041087.B06 0.25 t MR V041086.B07 --- --- 0.50 t MR V041087.B07 --- please enquire Order No. Version ATEX II 2G; EEx ib IIC T6 / II 2D T70 C 0.13 t V041085.B11 --- --- 0.25 t V041086.B11 --- --- 0.50 t V041087.B11 --- please enquire Other Variants please enquire Accessories: Elastomer mount, Compact mount

Technical Data Rated capacity E max 0,13 t 0,25 t 0,5 t Accurate class C3 C3 C3 C3MI7.5 C6 Bezug Sensitivity C n 1 mv/v ±0.1 mv/v 1.75 mv/v ±0.1 mv/v 2 mv/v ±0.1 mv/v Combined error F comb ±0.018 % ±0.023 % ±0.0115 % C n Minimum dead load output return F dr ±0.0167 % ±0.0167 % ±0.0066 % ±0.0083 % C n Creep (30 m) F cr ±0.012 % ±0.0245 % ±0.0123 % C n, B tn Hysteresis ±0.017 % ±0.0167 % ±0.0083 % C n, B tn Temperature effect on zero sensitivity per 10K TK 0 ±0.008 % --- ±0.014 % ±0.007 % ±0.014 % --- ±0.009 % ±0.005 % C n, B tn Option MR Temperature effect on sensitivity per 10K TK c ±0.008 % ±0.01 % ±0.005 % C n, B tn Maximum number of load cell intervals n LC 3000 3000 6000 For multi-divisional scales: Z 7500 Minimum load cell verification interval V min E max /17500 ----- E max /10000 E max /20000 E max /10000 --- E max /15000 E max /28000 Standard Option MR Min. utilisation range B amin 17 % --- 30 % 15 % 30 % -- 40 % 21 % E max Option MR Max. utilisation range B amax 100 % E max Load limit * L l 150 % E max Max. transverse load L q 100 % E max Input resistance R e 1260 Ω ±100 Ω 1100 Ω ±50 Ω 1110 Ω ±50 Ω Output resistance R a 1020 Ω ±0.5 Ω 1025 Ω ±50 Ω 1025 Ω ±25 Ω Zero signal S 0 1 % 1.5 % 1 % C n Supply voltage U s max. 30 V (recommended): 5 V 15 V Nominal temperature range B tn -10 C +40 C Service temperature range B tu -30 C +85 C -30 C +75 C Storage temperature range -50 C +95 C -50 C +80 C Protection class Cable specification Colour code Material IP66 / IP68 length of cable 5 m, Screen insulated from housing (0.13 t), or connected to housing (0.25 t 0.50 t) Input + 82: pink / input - 81: grey output + 28: brown / output - 27: white Stainless steel Corrosion protection see table of Chemical resistance DDP8 483 Recommended torque for attachment bolts 8 Nm 12 14 Nm ATEX-approval II 2G; EEx ib IIC T6 / II 2D T70 C * Permitted vibration stress to DIN 50100: 70% E max. Peak value of stress must not exceed E max.

Schenck Process GmbH Pallaswiesenstr. 100 64293 Darmstadt, Germany Phone: +49 6151 1531-1758 Fax: +49 6151 1531-3632 components@schenckprocess.com www.schenckprocess.com BV-D2226GB 1213 All information is given without obligation. All specifications are subject to change. by Schenck Process GmbH, 2012

Ring-Torsion Load Cells RTN % OIML approved as suitable for trade use (up to 5000 d and 7500 d in case of multidivisional scales) % High accuracy, even for very small utilisation ranges (down to 15 % in case of trade use according to OIML) % High output signal and, thus, highresolution of useful signal range % Low power consumption allows realisation of multi-scale systems with simple evaluation electronics % Use in hazardous zone with protection class Ex ia IIC T4 Gb / Ex ia IIIC T125 C Db or protection class Ex na IIC T4 Gc / Ex tb IIIC T125 C Db % Protection class IP68 Application Acting as a transducer, the load cell converts the mechanical input signal, the load, proportionally into the electrical output voltage. The consistent optimization of the ringtorsion load cells offers additional advantages: % The extremely low headroom simplifies the use in almost all weighing applications % The sturdy design enables easy transport, installation, and operation, even under very harsh environmental conditions (e.g. aggressive media, interfering forces, or extreme temperatures) Construction % Hermetically sealed due to laser welding; protection class IP68 % High corrosion protection due to the use of electrolytically polished stainless steel % All electrical components are inside the load cell and are thus optimally protected % The high-quality, sturdy connection cable is lead radially into the load cell % The RTN load cells are compatible with earlier ring-torsion load cells if our adapter kits are used Functions % High measuring sensitivity % High repeatability % High long-term stability and, thus, continuing and consistently high accuracy % Minimal effect on accuracy by side forces % High reliability and availability, even in case of unavoidable shock loads, constraining forces or electrical interferences % Integral excessive voltage protection % Moment-free load input/output due to direct, vertical force flow BV-D2019GB

RTN 1 t 4.7 t RTN 10 t - 470 t A View A Technical Data Rated Capacity E max t Safe- Load- Limit L l t Breaking Load L d t Nominal displacment h n mm Dead weight kg 1 1.7 4 0.13 0.6 2.2 4 9 0.12 0.6 4.7 8 19 0.12 0.7 10 17 40 0.17 1.2 15 28 60 0.18 1.3 22 38 90 0.21 1.3 33 58 130 0.25 2.1 47 80 190 0.33 4.3 68 120 270 0.35 4.8 100 170 400 0.45 7.0 150 250 600 0.57 8.6 220 380 900 0.67 22.0 330 580 1200 0.85 29.0 470 700 1500 1.00 50.0 Dimensions Type Dimensions (mm) RTN A B C D H K J 1 t 49 20 60 53 43 7.5-2.2 t 49 20 60 53 43 7.5-4.7 t 49 20 60 53 43 7.5-10 t 73 30 75-50 6.5 7 15 t 75 30 75-50 6.5 7 22 t 75 30 75-50 6.5 7 33 t 95 40 95-65 10 7 47 t 130 60 130-75 14 7 68 t 130 60 130-85 14 7 100 t 150 70 150-90 16 7 150 t 150 70 150-100 16 7 220 t 225 100 225-130 24 10 330 t 225 100 225-145 24 10 470 t 270 120 270-170 28 10 Admissible static side load L q = 0.5 (E max 0.8 L z), but no higher than L qmax = 0.3 E max; E max = rated capacity; L z = load in measuring direction Admissible dynamic load to DIN 50100: 70 % E max. Dynamic load value must not exceed E max.

Technical Data Rated capacity E max 1 t 470 t 1 t 100 t Accuracy class 0.05 C3 C5 / C4 Mi 7.5 Reference Sensitivity C n 2.85 mv/v ±2.85 µv/v Combined error F comb 0.05 % 0.02 % 0.01 % C n Minimum dead load output return F dr ±0.03 % ±0.016 % ±0.006 % C n Creep (30 m) F cr ±0.04 % ±0.024 % ±0.009 % C n Temperature effect on zero sensitivity per 10 K TK 0 ±0.03 % ±0.05 % ±0.007 % ±0.02 % ±0.0058 % ±0.02 % C n, B tn C n, B tu Temperature effect on sensitivity per 10 K Maximum number of scale intervalls TK c ±0.05 % ±0.07 % ±0.008 % ±0.02 % ±0.0062 % ±0.02 % n LC 3000 5000 C n, B tn C n, B tu For multi-divisional scales Z 7500 Minimum load cell verification intervall V min E max/20000 E max/24000 Max. utilisation range B amax B amax = E max Input resistance R e 4450 Ω ±100 Ω T r Output resistance R a 4010 Ω ±2 Ω 4010 Ω ±0.5 Ω T r Zero signal S 0 ±1 % C n Max. supply voltage U smax 60 V Nominal temperature range B tn -10 C +40 C Service temperature range Explosing-proof design B tu -40 C +80 C, Option to +110 C *) -30 C +70 C Reference temperature T r 22 C Storage temperature range B ts -50 C +85 C Protection class Explosing-proof design Cable specification Colour code Material Corrosion protection IP68, 1 m / 100 h; (Option 110 C: IP66) IP67 TPE (grey) 6.5 mm, silicone and halogen free, -30 C to +150 C, Length 5 m for RTN 1 t - 15 t and RTN 150 t - 470 t Length 15 m for RTN 22 t - 100 t Black: input + / blue: input - Red: output + / white: output - Yellow: screening Stainless steel see Spec Sheet DDP8483 Chemical resistance of RT Load Cells *) Optional feature 110 C not possible in combination with C5 or ATEX

Order No. Variants Accuracy class 0.05 C3 C5 / C4 Mi 7.5 RTN 1 t D726173.04 D726173.02 D726173.10 RTN 2.2 t D726174.04 D726174.02 D726174.10 RTN 4.7 t D726175.04 D726175.02 D726175.10 RTN 10 t D726176.04 D726176.02 D726176.10 RTN 15 t D726177.04 D726177.02 D726177.10 RTN 22 t D724781.04 D724781.02 D724781.10 RTN 33 t D724754.04 D724754.02 D724754.10 RTN 47 t D724782.04 D724782.02 D724782.10 RTN 68 t D724783.04 D724783.02 D724783.10 RTN 100 t D724784.04 D724784.02 D724784.10 RTN 150 t D726178.04 D726178.02 RTN 220 t D726179.04 D726179.02 RTN 330 t D726180.04 D726180.02 RTN 470 t D726181.04 D726181.02 Optional feature ATEX/IECEx approval Intrinsically safe ATEX explosion-proof design category 2GD and IECEx EPL Gb, Db Gas-Ex II 2G Ex ia IIC T4 Gb (Zone 1) Dust-Ex II 2D Ex ia IIIC T125 C Db, IP67 (Zone 21) Warning: The verification of intrinsically safe circuit must be verified. New barriers are provided in particular for new systems. The verifications of intrinsically safe circuit are available for all load cells and barriers. Accuracy class 0.05 2GD C3 2GD C5 / C4 MI 7,5 2GD Variant.82 Variant.81 Variant.83 Load cells marked as intrinsically safe - Ex "i" - are also operated intrinsically safely irrespective of the zone. Non intrinsically safe ATEX explosion-proof design category 2D, 3G and IECEx EPL Db, Gc Gas-Ex II 3G Ex na IIC T4 Gc (Zone 2) Dust-Ex II 2D Ex tb IIIC T125 C Db, IP67 (Zone 21) Accuracy class 0.05 2D3G C3 2D3G C5 / C4 MI 7,5 2D3G Variant.86 Variant.85 Variant.87 Example for ordering: 47 t, accuracy class C3, ATEX category 2D, 3G. Typ RTN 47 t C3 2D, 3G ; Order No. D724782.85 Option % Variant for service temperature range of up to 110 C % Customized cable length % Special corrosion protection % Protection class IP69K % Cable resistant to gnawing rodents % Mounting holes Schenck Process Europe GmbH Pallaswiesenstr. 100 64293 Darmstadt, Germany Phone: +49 6151 1531 0 Fax: +49 6151 1531 66 sales@schenckprocess.com www.schenckprocess.com Accessories SENSiQ Elastomer Mount (SEM) SENSiQ Secure Mount (SSM) SENSiQ Pendulum Mount (SPM) SENSiQ Fixed Mount (SFM) BV-D2019GB 1608.1 All information is given without obligation. All specifications are subject to change. by Schenck Process GmbH, 2016

Load Cells VBB and Load Cell Mounts VEB Highest accuracies (up to 6000 increments to OIML R60) Hermetically sealed due to laser welding (IP68) Use in hazardous zone with protection class Ex ia IIC T4 Gb / Ex ia IIIC T125 C Db or protection class Ex na IIC T4 Gc / Ex tb IIIC T125 C Db Optimized for parallel connection through perfect calibration 6-wire circuit 100 % stainless steel Application Construction Functions Load cells of the VBB type are designed to convert the mechanical input signal, the load, proportionally into the electrical output voltage. Combined with the corresponding VEB elastomer mounts, they are very suitable for use with platform, batching, and hopper scales. Their compact design simplifies the integration in any existing construction. The rugged design of the load cells and mounts ensures reliable operation even in severe environments. Entirely made of stainless steel and hermetically sealed by laser welding, the VBB load cells are connected by using a high-quality shielded 6-wire PVC cable. The 6-wire circuit provides for a measuring signal which is insensitive to connecting cables of different lengths. High calibrating accuracy, thus, optimal prerequisites for the parallel connection of load cells High degree of measuring signals repeatability Damping of side forces through the elastomer mount Self-centering after side load Minimal effect on accuracy by side forces BV-D2041GB

VBB Load Cells 5 kg 0.5 t Fixation Load input Shielded 6-wire cable, shield on housing Metal bellows Variant Dimensions (mm) А В VBB 5 kg 0.2 t 8.2 8.2 VBB 0.5 t 10.5 11.1 VEB Elastomer Mount 5 kg 0.5 t for VBB Load Cells Capacities 5 kg 0.2 t Capacity 0.5 t Screws offset by 35 0 Elastomer mount correct mounting position Dimensions (mm) Elastomer mount A B C D E F G H K L M N P R F R* S max** VEB 5 kg 0.2 t 75 M12 12 40 79 ±1,3 18.5 M8 SW 17 19 - - - - - 163 3 VEB 0.5 t 80 M10 10 39 26 - SW 27-20 120 100 9 60 400 4.5 * F R Restoring force in N with 1 mm lateral displacement ** S max., in mm, maximum adm. lateral displacement if loaded with rated capacity

Technical Data Rated capacity E max 5 kg 0.5 t Accuracy class D1 C3* C4** C6*** Reference Nominal characteristic value C n 2 mv/v +20 μv/v; -2 μv/v 2 mv/v ±1 μv/v Combined error F comb 0.05 % 0.02 % 0.013 % 0.01 % C n Zero signal return after loading (30 min) Creep error during stress (30 min) Temperature coefficient of zero signal Temperature coefficient of characteristic value Maximum number of increments in certified applications F dr ±0.049 % ±0.016 % ±0.012 % ±0.008 % C n F cr ±0.049 % ±0.016 % ±0.012 % ±0.008 % C n TK 0 ±0.05 %/10 K ±0.0125 %/10 K ±0.009 %/10 K ±0.009 %/10 K C n в В tn TK c ±0.05 %/10 K ±0.008 %/10 K ±0.007 %/10 K ±0.004 %/10 K C n в В tn n LC 1000 3000 4000 6000 Min. scale interval v min 0.036 % 0.009 % 0.0066 % 0.0066 % Е max Minimum utilisation rate B amin 36 % 27 % 26 % 39 % Е max Maximum utilisation rate B amax B amax = E max Input resistance R e 350 Ω - 480 Ω t r Output resistance R a 356 Ω ±0.2 Ω 356 Ω ±0.12 Ω t r Zero signal S 0 ±1 % C n Maximum supply voltage U smax 18 V Nominal temperature range B tn -10 C +40 C Service temperature range Explosion-proof design B tu -40 C +70 C -30 C +70 C Reference temperature t r 23 C Storage temperature range B ts -50 C +85 C Safe load limit E L 150 % C n Breaking load E D 300 % C n Displacement **** at rated capacity Protection class Explosion-proof design Cable specification 0.25 mm 0.3 mm 0.4 mm 0.6 mm 5 kg 10-100 kg 200 kg 500 kg IP68 (tightened test conditions: 1 m water gauge; 100 h) IP67 3 m PVC cable, 6 wires, shielded, shield on housing Colour code Corrosion protection black: input - / blue : input + / black/yellow: shield red : output - / white : output + grey : sensor - / green : sensor + Stainless steel *: Quality C3 available for nominal loads > 10 kg only **: Quality C4 available for nominal loads > 20 kg only ***: Quality C6 available for nominal loads > 50 kg only ****: Please adjust the overload stops to nominal displacement +0.05 mm (unloaded scale)

Variants Load Cells Order No. VBB 5 kg D1 D 725 417.01 VBB 10 kg D1 D 725 417.02 Ex-Variants Load Cells Order No. 2GD Order No. 2D/3G VBB 10 kg СЗ D 725 419.02 VBB 10 kg СЗ Ex" D 725 419.32 D 725 419.42 VBB 20 kg D1 D 725 417.03 VBB 20 kg C3 D 725 419.03 VBB 20 kg C3 Ex" D 725 419.33 D 725 419.43 VBB 50 kg D1 D 725 417.04 VBB 50 kg C3 D 725 419.04 VBB 50 kg C3 Ex" D 725 419.34 D 725 419.44 VBB 0.1 t D1 D 725 409.01 VBB 0,1 t D1 Ex" D 725 409.61 D 725 409.41 VBB 0.1 t C3 D 725 409.04 VBB 0,1 t C3 Ex" D 725 409.64 D 725 409.44 VBB 0.1 t C4 D 726 370.01 VBB 0,1 t C4 Ex" D 726 370.31 D 726 370.41 VBB 0.2 t D1 D 725 409.02 VBB 0,2 t D1 Ex" D 725 409.62 D 725 409.42 VBB 0.2 t C3 D 725 409.05 VBB 0,2 t C3 Ex" D 725 409.65 D 725 409.45 VBB 0.2 t C4 D 726 370.02 VBB 0,2 t C4 Ex" D 726 370.32 D 726 370.42 VBB 0.2 t C6 D 726 370.04 VBB 0,2 t C6 Ex" D 726 370.34 D 726 370.44 VBB 0.5 t D1 D 725 409.03 VBB 0,5 t D1 Ex" D 725 409.63 D 725 409.43 VBB 0.5 t C3 D 725 409.06 VBB 0,5 t C3 Ex" D 725 409.66 D 725 409.46 VBB 0.5 t C4 D 726 370.03 VBB 0,5 t C4 Ex" D 726 370.33 D 726 370.43 Variants Elastomer Mounts Order No. VEB 5 kg 0.2 t D 725 408.01 VEB 0.5 t D 725 408.02 Example for ordering: Rated Capacity 0.2 t, Accuracy Class C6: Variant VBB 0.2 t C6 Ordering Number D726 370.04 Additional versions available upon request. Optional feature ATEX/IECEx approval Intrinsically safe ATEX explosion-proof design category 2GD and IECEx EPL Gb, Db Gas-Ex II 2G Ex ia IIC T4 Gb (Zone 1) Dust-Ex II 2D Ex ia IIIC T125 C Db, IP67 (Zone 21) Load cells marked as intrinsically safe - Ex "i" - are also operated intrinsically safely irrespective of the zone. Warning: The verification of intrinsically safe circuit must be verified. New barriers are provided in particular for new systems. The verifications of intrinsically safe circuit are available for all load cells and barriers. Non intrinsically safe ATEX explosion-proof design category 2D, 3G and IECEx EPL Db, Gc Gas-Ex II 3G Ex na IIC T4 Gc (Zone 2) Dust-Ex II 2D Ex tb IIIC T125 C Db, IP67 (Zone 21) Schenck Process GmbH Pallaswiesenstr. 100 64293 Darmstadt, Germany Phone: +49 6151 1531 0 Fax: +49 6151 1531 66 sales@schenckprocess.com www.schenckprocess.com BV-D2041GB 1506.1 All information is given without obligation. All specifications are subject to change. by Schenck Process GmbH, 2015

VDW Self-Centering Pressure Load Cell % Legal for Trade Use Pressure Load Cell, Optimized for Use in Vehicle Scales % Self-Straightening Function % Simple Installation and Orientation thanks to Matching Accessories % Comparison of Characteristic Value and Output Impedance Simplifies Corner-Load Comparison in Multiple-Cell Scales % Excellent Protection Against Electromagnetic Influences thanks to an Optimized Screening Concept % Integrated Over-Voltage Protection % Laser-Welded, Protection Class IP 68 1m/100hr; IP69K Application Acting as a measuring transducer, the load cell converts the mechanical input variable load into the electrical output variable voltage. The VDW has been consistently optimized for use in vehicle scales. : % The design of the cell as a selfstraightening stabilizer link keeps transverse forces away from it, even if the bridge is displaced horizontally to a large degree. % The design allows for a rapid and cost-effective assembly of the cell with no expensive mounting parts. % Matching accessories and fitting aids simplify installation. Construction % Hermetically sealed thanks to the laser-welding (IP68) % High corrosion protection thanks to the use of rustproof materials - incl. high-grade steel cable screw connections % Built-in over-voltage protection % All electrical components are located in the interior of the load cell and are thus optimally protected. % Laser-welded, protection class IP 68 1m immersion depth /100hr, or IP69K ( steam jet cleaning ) Function % High measuring sensitivity % High reproducibility % High long.term stability and thus continuously high accuracy over time. % Characteristic value and output impedance of the VDW are compared to each other such that the corner-load comparison for a multiple-cell scales generally becomes redundant % The optimized screening concept (no conductible connection from cable screen to load cell body) gives excellent protection against electromagnetic influences.. BV-D2321GB