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Technical scales - Import export

Switzerland

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We carry out projects quickly and without loss of quality. You have short project durations, thus lower costs and a quick return on investment. Contact us for an initial discussion! Our projects often combine Technical and regulatory issues: •Technology & technology transfer (adapt, improve technologies) •Optimise in production •Quality projects (Quality by Design "QbD", Process Analytical Technology "PAT", test design, validations, qualifications) •Short processing times in administration •Improve the supply chain We optimise supply chains, develop suppliers, um/damit: •"Shorten "Lead Times •the supplier reacts quickly •broaden the supplier base •find new suppliers •Relocate productions We take over technical projects like: •"Scale up" in biotechnology and pharmaceuticals •Model and simulate production steps in biotechnology and pharmaceuticals •Improve production processes (quality, process) •modelling new or modified buildings ("virtual factory") •simulate

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Germany

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Scaled prices Technical Data CAD data Scaled prices (Price group: D) Quantity Single price [EUR] 1 2.6500 EUR 7 1.6000 EUR 17 0.7400 EUR 37 0.4700 EUR 75 0.3100 EUR 125 0.2493 EUR 175 0.1940 EUR 250 0.1662 EUR 350 0.1274 EUR 450 0.1109 EUR Technical Data Formula symbols Value Unit Description Weight 18.98 g weight of one spring Tol2 0.15 mm +/- tolerance groove diameter d3 109.2 mm outer diameter Mat EN 10270-1 - type of material r 1.8 mm radius d2 108.2 mm groove diameter d7 3.2 mm wire diameter e 32 mm width Tol1 1.2 mm +/- tolerance outer diameter d1 105 mm tube diameter PG D - price group

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Germany

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Scaled prices Technical Data CAD data Scaled prices (Price group: A) Quantity Single price [EUR] 1 2.5200 EUR 7 1.5000 EUR 17 0.6200 EUR 37 0.3300 EUR 75 0.1700 EUR 125 0.1330 EUR 175 0.1052 EUR 250 0.0831 EUR 350 0.0609 EUR 450 0.0553 EUR Technical Data Formula symbols Value Unit Description Weight 0.108 g weight of one spring Tol2 0.05 mm +/- tolerance groove diameter d3 10.9 mm outer diameter Mat EN 10270-1 - type of material r 0.5 mm radius d2 10.8 mm groove diameter d7 0.8 mm wire diameter e 4 mm width Tol1 0.3 mm +/- tolerance outer diameter d1 10 mm tube diameter PG A - price group

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Germany

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Scaled prices Technical Data CAD data Path-force calculation Scaled prices (Price group: AQ) Quantity Single price [EUR] 1 13.5900 EUR 3 7.9100 EUR 7 6.1800 EUR 17 4.6900 EUR 37 3.9900 EUR 75 3.9000 EUR 125 3.8260 EUR 175 3.7261 EUR 250 3.6544 EUR 350 3.4205 EUR Technical Data Formula symbols Value Unit Description Mat EN 10270-1 - type of material L0x mm unstressed length of the section sx mm loaded deflection of the section Fx N loaded force of the section d 0.12 mm wire diameter D 0.88 mm mean coil diameter Dd mm maximum diameter of mandrel De 1 mm outer coil diameter Detol mm (+/-) tolerances of outer coil diameter Dh mm minimum diameter of bush F1 N prestressed spring force F1tol N (+/-) tolerance of prestressed spring force F2 N loaded spring force F2tol N (+/-) tolerance of loaded spring force Fn 0.801 N maximum force Fntol N (+/-) tolerance of maximum force L0 mm unstressed spring length L0tol mm (+/-) tolerance of unstressed spring length L1 mm prestressed spring length L2 mm loaded spring length Ln mm minimum length s1 mm prestressed spring deflection s2 mm loaded spring deflection sn mm maximum spring deflection sn1 0.25 mm maximum spring deflection of one coil R N/mm spring rate R1 3.1 N/mm spring rate of one coil S 0.4 mm pitch of spring, distance mid-wire to mid-wire Gew 0.629 g weight of one spring PG AQ - price group

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Germany

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Scaled prices Technical Data CAD data Path-force calculation Scaled prices (Price group: AQ) Quantity Single price [EUR] 1 13.5900 EUR 3 7.9100 EUR 7 6.1800 EUR 17 4.6900 EUR 37 3.9900 EUR 75 3.9000 EUR 125 3.8260 EUR 175 3.7261 EUR 250 3.6544 EUR 350 3.4205 EUR Technical Data Formula symbols Value Unit Description Mat EN 10270-1 - type of material L0x mm unstressed length of the section sx mm loaded deflection of the section Fx N loaded force of the section d 0.12 mm wire diameter D 0.98 mm mean coil diameter Dd mm maximum diameter of mandrel De 1.1 mm outer coil diameter Detol mm (+/-) tolerances of outer coil diameter Dh mm minimum diameter of bush F1 N prestressed spring force F1tol N (+/-) tolerance of prestressed spring force F2 N loaded spring force F2tol N (+/-) tolerance of loaded spring force Fn 0.801 N maximum force Fntol N (+/-) tolerance of maximum force L0 mm unstressed spring length L0tol mm (+/-) tolerance of unstressed spring length L1 mm prestressed spring length L2 mm loaded spring length Ln mm minimum length s1 mm prestressed spring deflection s2 mm loaded spring deflection sn mm maximum spring deflection sn1 0.35 mm maximum spring deflection of one coil R N/mm spring rate R1 2.24 N/mm spring rate of one coil S 0.5 mm pitch of spring, distance mid-wire to mid-wire Gew 0.564 g weight of one spring PG AQ - price group

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Germany

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Scaled prices Technical Data Download datasheet CAD data Path-force calculation Scaled prices (Price group: J) Quantity Single price [EUR] 1 2.8200 EUR 7 2.1000 EUR 17 1.0300 EUR 37 0.7700 EUR 75 0.6200 EUR 125 0.4300 EUR 175 0.3713 EUR 250 0.3270 EUR 350 0.3102 EUR 450 0.2881 EUR Technical Data Formula symbols Value Unit Description Mat EN 10270-3-1.4310 - type of material alpha2 degree loaded rotational angle M2 Nmm torque by angle alpha2 F2 N loaded spring force Wri Left - coiling direction d 0.4 mm Wire diameter Di 1.6 mm inner coil diameter Ditol 0.08 mm (+/-) tolerance of inner coil diameter Dd mm diameter of mandrel Ddmin 1 mm Min. possible mandrel diameter Ddmax 1.3 mm maximum possible mandrel diameter Lk0 1.7 mm length of spring body Ls 20 mm leg length LsH mm leg length of the lever leg LsR mm leg length of the recumbent leg alpha 90 degree leg position when relaxed alpha1 degree prestressed rotational angle alphah degree working rotational angle alphan 37.95 degree maximum rotational angle M1 Nmm torque by angle alpha1 Mn 7.54 Nmm maximum torque Mntol 2.52 Nmm (+/-) Tolerance maximum torque F1 N prestressed spring force RH mm leverage nt 3.25 pc. total number of coils Gew 0.06 g weight of one spring PG J - price group

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Germany

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Scaled prices Technical Data Download datasheet CAD data Path-force calculation Scaled prices (Price group: J) Quantity Single price [EUR] 1 2.8200 EUR 7 2.1000 EUR 17 1.0300 EUR 37 0.7700 EUR 75 0.6200 EUR 125 0.4300 EUR 175 0.3713 EUR 250 0.3270 EUR 350 0.3102 EUR 450 0.2881 EUR Technical Data Formula symbols Value Unit Description Mat EN 10270-3-1.4310 - type of material alpha2 degree loaded rotational angle M2 Nmm torque by angle alpha2 F2 N loaded spring force Wri Right - coiling direction d 0.4 mm Wire diameter Di 1.6 mm inner coil diameter Ditol 0.08 mm (+/-) tolerance of inner coil diameter Dd mm diameter of mandrel Ddmin 1 mm Min. possible mandrel diameter Ddmax 1.3 mm maximum possible mandrel diameter Lk0 1.2 mm length of spring body Ls 20 mm leg length LsH mm leg length of the lever leg LsR mm leg length of the recumbent leg alpha 0 degree leg position when relaxed alpha1 degree prestressed rotational angle alphah degree working rotational angle alphan 23.35 degree maximum rotational angle M1 Nmm torque by angle alpha1 Mn 7.54 Nmm maximum torque Mntol 2.84 Nmm (+/-) Tolerance maximum torque F1 N prestressed spring force RH mm leverage nt 2 pc. total number of coils Gew 0.0522 g weight of one spring PG J - price group

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Germany

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Scaled prices Technical Data Download datasheet CAD data Path-force calculation Scaled prices (Price group: ZG) Quantity Single price [EUR] 1 2.8300 EUR 7 1.9200 EUR 17 0.9600 EUR 37 0.6200 EUR 75 0.4900 EUR 125 0.4518 EUR 175 0.4355 EUR 250 0.4246 EUR 350 0.3975 EUR 450 0.3888 EUR Technical Data Formula symbols Value Unit Description Mat EN 10270-3-1.4310 - type of material s2 mm loaded spring deflection L2 mm loaded spring length F2 N loaded spring force Oefo 1/1 deutsche - loop shape Oest 180 degree loop position Oesttol 37 degree (+/-) tolerance of loop position d 0.2 mm Wire diameter D mm mean coil diameter De 2.7 mm outer coil diameter Detol 0.15 mm (+/-) tolerance of outer coil diameter Dh 3.2 mm minimum bush diameter F0 0.061 N initial tension Fn 1.101 N Maximum spring force Fntol 0.1 N (+/-) tolerance of maximum spring force Lk 5.1 mm length of unstressed spring body L0 8.8 mm length of unstressed spring, measured from inner edge of loop to inner edge of loop L0tol 0.6 mm (+/-) tolerance of unstressed length L1 mm Prestressed spring length Ln mm maximum spring length, inner loop to inner loop sn 28.31 mm Maximum spring deflection Lh 1.85 mm distance of inner edge of loop from the spring body m mm loop opening width R 0.037 N/mm Spring rate nt pc. total number of coils Gew 0.0512 g weight of one spring PG ZG - price group

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Germany

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Scaled prices Technical Data Download datasheet CAD data Path-force calculation Scaled prices (Price group: ZG) Quantity Single price [EUR] 1 2.8300 EUR 7 1.9200 EUR 17 0.9600 EUR 37 0.6200 EUR 75 0.4900 EUR 125 0.4518 EUR 175 0.4355 EUR 250 0.4246 EUR 350 0.3975 EUR 450 0.3888 EUR Technical Data Formula symbols Value Unit Description Mat EN 10270-3-1.4310 - type of material s2 mm loaded spring deflection L2 mm loaded spring length F2 N loaded spring force Oefo 1/1 deutsche - loop shape Oest 270 degree loop position Oesttol 26 degree (+/-) tolerance of loop position d 0.2 mm Wire diameter D mm mean coil diameter De 2.7 mm outer coil diameter Detol 0.15 mm (+/-) tolerance of outer coil diameter Dh 3.2 mm minimum bush diameter F0 0.061 N initial tension Fn 1.101 N Maximum spring force Fntol 0.13 N (+/-) tolerance of maximum spring force Lk 2.55 mm length of unstressed spring body L0 6.2 mm length of unstressed spring, measured from inner edge of loop to inner edge of loop L0tol 0.6 mm (+/-) tolerance of unstressed length L1 mm Prestressed spring length Ln mm maximum spring length, inner loop to inner loop sn 13.58 mm Maximum spring deflection Lh 1.82 mm distance of inner edge of loop from the spring body m mm loop opening width R 0.076 N/mm Spring rate nt pc. total number of coils Gew 0.0263 g weight of one spring PG ZG - price group

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Germany

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Scaled prices Technical Data Download datasheet CAD data Path-force calculation Scaled prices (Price group: A) Quantity Single price [EUR] 1 2.5200 EUR 7 1.5000 EUR 17 0.6200 EUR 37 0.3300 EUR 75 0.1700 EUR 125 0.1330 EUR 175 0.1052 EUR 250 0.0831 EUR 350 0.0609 EUR 450 0.0553 EUR Technical Data Formula symbols Value Unit Description Mat EN 10270-1 - type of material s2 mm Loaded spring deflection L2 mm Loaded spring length F2 N Loaded spring force Fdn Closed - spring ends d 0.2 mm Wire diameter D 2.5 mm Mean coil diameter Dd 2 mm maximum diameter of mandrel De 2.7 mm Outer coil diameter Detol 0.15 mm (+/-) tolerances of outer coil diameter Dh 3.1 mm minimum diameter of bush F1tol N (+/-) tolerance of prestressed spring force F2tol N (+/-) tolerance of loaded spring force Fn 1.144 N maximum force in static use Fntol 0.12 N (+/-) tolerance of maximum force in static use Lk mm buckling length L0 8.2 mm unstressed spring length L0tol 0.53 mm (+/-) tolerance of unstressed spring length L1 mm Prestressed spring length Ln 2.17 mm Minimum length in static use s1 mm Prestressed spring deflection sn 6.03 mm Maximum spring deflection in static use S 1.4 mm pitch of spring n 5.5 pc. number of active coils nt pc. total number of coils R 0.19 N/mm Spring rate Fndyn 1.11 N maximum force in dynamic use Fndtol 0.12 N (+/-) tolerance of maximum dynamic force Lndyn 2.35 mm Minimum length in dynamic use shdyn 1.92 mm Maximum stroke in dynamic use Gew 0.0146 g weight of one spring PG A - price group

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Germany

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Scaled prices Technical Data Download datasheet CAD data Path-force calculation Scaled prices (Price group: A) Quantity Single price [EUR] 1 2.5200 EUR 7 1.5000 EUR 17 0.6200 EUR 37 0.3300 EUR 75 0.1700 EUR 125 0.1330 EUR 175 0.1052 EUR 250 0.0831 EUR 350 0.0609 EUR 450 0.0553 EUR Technical Data Formula symbols Value Unit Description Mat EN 10270-1 - type of material s2 mm Loaded spring deflection L2 mm Loaded spring length F2 N Loaded spring force Fdn Closed - spring ends d 0.2 mm Wire diameter D 2.5 mm Mean coil diameter Dd 2 mm maximum diameter of mandrel De 2.7 mm Outer coil diameter Detol 0.15 mm (+/-) tolerances of outer coil diameter Dh 3.1 mm minimum diameter of bush F1tol N (+/-) tolerance of prestressed spring force F2tol N (+/-) tolerance of loaded spring force Fn 1.122 N maximum force in static use Fntol 0.13 N (+/-) tolerance of maximum force in static use Lk mm buckling length L0 5.4 mm unstressed spring length L0tol 0.38 mm (+/-) tolerance of unstressed spring length L1 mm Prestressed spring length Ln 1.63 mm Minimum length in static use s1 mm Prestressed spring deflection sn 3.77 mm Maximum spring deflection in static use S 1.4 mm pitch of spring n 3.5 pc. number of active coils nt pc. total number of coils R 0.298 N/mm Spring rate Fndyn 1.088 N maximum force in dynamic use Fndtol 0.13 N (+/-) tolerance of maximum dynamic force Lndyn 1.75 mm Minimum length in dynamic use shdyn 1.25 mm Maximum stroke in dynamic use Gew 0.0107 g weight of one spring PG A - price group

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Belgium

Thanks to its deep knowledge of all unitary operations related to edible oil, sugar and sugar fermentation processes, De Smet Engineers & Contractors is the ideal partner for assisting investors in developing and implementing biochemical production plants and bio-commodities production facilities. DSEC has already successfully built for international key players a betain and several inulin plants based on their proprietary knowhow. Moreover, DSEC’s experience in implementing cogeneration units built along with facilities for the production of fermentable grade sugar (derived from sugar beet, cane and grains) allows the company to fine-tune the overall process set-up in order to achieve ideal conditions with regard to material and energy flows. Notable examples of bio-based chemicals include non food starch, cellulose fibers and cellulose derivates, tall oils, fatty acids and fermentation products such as ethanol and citric acid for which. DSEC is fully qualified to provide the facility that will efficiently generate the required feedstock on an industrial scale. From a technical point of view, almost all industrial materials respectively their building blocks made from fossil resources can be substituted by their bio-based counterparts: • C2 building blocks: ethanol, acetic acid • C3 building blocks: lactic acid, 3-hydroxypropanoic acid, glycerol • C4 building blocks: fumaric acid, succinic acid, butyric acid, 1-butanol • C5 building blocks: itaconic acid, furfural • C6 building blocks: citric acid, glucaric acid, 5-HMF, adipic acid

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Switzerland

With seed tests the 1000 kernel weight is an important quality criterion, which must be determined with high accuracy. Counting and dosage of mechanical and electronic small articles as SMD’s are made increasingly also over the determination of the 1000 grain weight. By means of an additional software module, an electronic balance and a special frame, our precision counter C3 can be used for the direct determination of the 1000 kernel weight of a sample. Both the C3 as well as a balance are connected with the control computer. A freely selectable quantity is counted and falls on the scale pan. At the end of the counting operation the weight of the sample and the corresponding number of particles is transmitted automatically to the PC, where the 1000 kernel weight is calculated. With the conventional 1000 grain weight determination, the number of items and the weight must be entered manually into a calculating machine. In many cases, exactly 1000 kernels are counted and weighed; and then the 1000 grain weight can be determined without arithmetic exercise, but the danger exists that the result is falsified by separation effects during the operation of the vibrating conveyor (grain size selection). With the simultaneously determination of seed quantity and weight all potentially faulted manual inputs are eliminated. If necessary the result can be printed out or processed electronically. Further the danger of the grain size selection can completely be avoided. Technical data Scales are available with a resolution of 1 mg, 10 mg or 100 mg. The data of the elmor C3 seed counter and the scale are sent to the control computer via two RS232 ports or – on request – with two USB cables.

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