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Electromagnetic compatibility - Import export

Germany

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Initiator cables, also referred to as sensor/actuator cables, connect control units and different sensors, or, in the case of reversal of the measurement principle, actuators. Frequently used abbreviations include ini or ini cable (plural: inis). Sensor or measurement transducers transform physical quantities such as rotation, speed, distance or length into analogue electric impulses. In the case of an actuator, the measured electric current (symbol: I, unit: ampere; A) or voltage (symbol: U, unit: volt; V) is transformed into temperature, pressure or torque. The connection cable consists of at least three cores with a small cross-section of between 0.14mm² and 0.34mm². In the simplest case, two cores are required for supplying the voltage, while the last core transmits an I/O signal. For sensitive applications, there are shielded versions in addition to the traditional ini cables to avoid EMC disruptions (electromagnetic compatibility).

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Germany

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The electromagnetically compatible design of a system, from first sketches through creating the circuit diagrams all the way to EMC-optimised routing on the circuit boards, allows the creation of a robust electrical product that will still function reliably even under difficult conditions. As specialists in ignition systems, we know the sources of electromagnetic disturbance and are world leaders in EMC processes.

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Russia

The heat capacity measuring insert is intended for measurement of the heat capacity temperature dependencies in constant magnetic field. In this insert the adiabatic method is used. The inner sample holder is equipped with the resistive heaters, resistive temperature sensors and Hall sensor. The heat capacity measurement insert characteristics: - relative measurement accuracy of heat capacity: 3 %; - sample dimensions: a rectangular bar 4×5×2.5 mm; - temperature interval – from 80 to 370 K; - magnetic field interval – from 0.02 to 2 T.

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Russia

The thermal conductivity measuring insert is intended for measurement of the thermal conductivity coefficient temperature dependencies in constant magnetic field using stationary method. The inner sample holder is equipped with the resistive heaters, resistive temperature sensors and Hall sensor. The thermal conductivity measuring insert characteristics: - relative measurement accuracy of thermal conductivity coefficient: 3 %; - sample dimensions: a rectangular plate 22×4×2 mm; - temperature interval – from 80 to 370 K; - magnetic field interval – from 0.02 to 2 T.

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Russia

AMT&C LLC offers the wide variety of measuring inserts under customized requirements. Measuring inserts are designed for operation with Halbach-type adjustable magnetic field source, for following applications: - ac susceptibility; - dc susceptibility and magnetization measurements; - torque magnetometry; - heat capacity measurements; - electro-transport measurements; - thermal transport measurements.

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Russia

Induction magnetometer allows to measure magnetic field isotherms of magnetization (magnetization versus magnetic field (M(H) dependences) in the fields up to 2 T and in the temperature interval from 80 to 370 K. Magnetization is measured by induction method. Specification: - temperature interval — from 80 to 370 К, - magnetic field interval — from 0,02 to 2 Т, - relative measurement accuracy of magnetization - 2 %, - maximal sample dimensions - Ø1.5 × 3.7 mm. Magnetometer (its measuring part) consists of the measuring insert, electronic module and control and data acquisition program and can be used together with the magnetocaloric measuring setup (which includes permanent magnet adjustable magnetic field source, liquid nitrogen cryostat, temperature controller, 2 digital voltmeters, control computer with corresponding interface and control boards).

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Russia

Experimental setup for express measurements of the adiabatic temperature change in the room temperature range. The setup is intended for measurements of the magnetocaloric effect (MCE), namely adiabatic temperature change (ΔТ), in the temperature range from 273 to 370 K in order to get ΔТ versus temperature dependences rapidly and evaluate suitability of using of the material under investigation as a working body of magnetic refrigerators. The measurements in the setup are conducted by the direct method with the help of a thermocouple. The magnetic field change is accomplished by linear movement of the permanent magnet magnetic field source along the measuring insert. The setup operates in automatic mode under control of the program written on LabView. The setup includes: - the desktop measuring unit, - the desktop control unit, - the ΔТ measuring system, - the control computer. The enhanced algorithm of the setup operation makes possible to investigate up to 20 samples per day.

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Russia

AMT&C LLC for many years is engaged in design and manufacture of the measuring equipment intended for research of magnetic properties of materials. In the field of the magnetocaloric effect (MCE) these products continue own scientific interests of the AMT&C company employees, recognized experts in this realm of physics. Manufacture of the scientific equipment is based on the following core technologies, backed by patents and numerous know-how: - a wide experience in design and manufacture of complicated magnetic systems, including the adjustable magnetic field generators, controlled by a computer; - use of the most advanced products and ideas in the field of measuring technics; - the magnetic field source and data acquisition system are controlled by means of the specialized software that allows to create setups operating in automatic mode; as a rule, the LabView based software is used. Since 2009 AMT&C LLC produces the measuring equipment under trade mark "MagEq".

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Russia

LLC "AMT&C" offers automatic measuring system (AMS) for measurements of the magnetocaloric effect and other magnetic parameters. AMS includes: - Halbach-type magnetic field source with changing magnetic field based on permanent NdFeB magnets, - liquid nitrogen cryostat, - the set of measuring inserts, - data acquisition and measurements control system guided by a control computer. AMS has the following working parameters: - variable magnetic field strength - from -1.85 to +1.85 T, - variable frequency of the magnetic field change from 0.1 to 1.8 Hz (magnetic field change rate from 0.05 to 6 T/s), - dimensions of the magnetic field area with heterogeneity no more than 1 % - diameter 20 mm, length 20 mm, - working temperature region – 80 ÷ 365 К, - automatic and manual measuring modes. The basic option of AMS is the magnetocaloric effect measurement. - sample dimensions (min-max) (1-2)×(2-5)×(8-10) mm, - measurement accuracy of magnetocaloric effect: 0.1 K.

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China

Parameters Basic Parameters Bus Power Supply: 9~32VDC Current consumption (static):≤14mA(FF/PA) 11V~35 VDC(HART) Input Signal: Pt100, Pt1000, Cu50, Cu100 Ω, 0, 0 to 500 ~ 4000 Ω Resistance, B, E, J, N, K, R, S, T eight degrees of Thermocouple, -100mV ~ 100mV Voltage Signal The Channel Number: Single Channel Fieldbus Protocol: FF/PA/HART Insulation: Between the Terminal and the Housing:500Vrms(707VDC) Operating Temperature: -40℃~85℃ Humidity Range: 0%~95%RH Starting Time: ≤5secs. Turnover Time: 0.5secs. Electromagnetic Compatibility: In Line with the GB/T 18268-2010 Explosion-Proof Sign: Ex ia IIC T4 Ga (HART)

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Germany

Our compact asynchronous motors are distinguished by high torques in combination with a small size. They are highly dynamic with a low inertial moment, with a proven design as well as electromagnetically compatible for optimal, compact performance levels. We develop our compact asynchronous motors specially as speed-controlled drivers and for a supply from frequency converters. They also consist of a flexible platform system and can be adapted to specific customer requirements. The housing is angular and jacketless. Being ventilated by a separately driven fan, the motors can constantly deliver the full torque over the entire speed range. The optimised control behaviour with converter operation means that these machines can replace DC machines.

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Germany

— Degaussing of pipes and metal sheets — Automatic degaussing before welding — Dependable degaussing for better welding results through stable welding process without magnetic deflection, minimisation of finishing work — activgauss (10–250 A) – degaussing during welding: — Avoids moving up of magnetic field during the welding process in case of very long and strongly magnetised components — Portable and robust — Quick connection at the pipe by means of three load cables — Use at -25 °C to +40 °C with mains voltage tolerances of +/- 20% Advantages of degaussing: — No deflection of the arc by residual magnetism in the workpiece — Prevention of lack of fusion due to insufficient sidewall fusion — Minimisation of finishing work — Cost-efficient and high-quality results — Set: Degauss 600 degaussing machine, two 5-metre, 35 mm² load cables, one 20-metre, 35 mm² load cable, RT DGS1 remote control and 5-m connection cable

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Germany

• from high quality plastics • for all common spirits • for 0,7 - 1,0l bottles • not anise-resistant • Note: measure pourers only function flawlessly with unsweetened spirits

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Germany

Encoders convert rotational movement into electrical signals. Our encoders combine the benefits of a magnetic measuring system with a robust mechanical design. They have proven themselves in a wide variety of applications across the world, even in the harshest of industrial environments. It goes without saying that these encoders offer high reliability and a long service life. • For shaft load up to 500 N • Reference signal • Cable or plug outlet, axial or radial • Various shaft diameters from 6 mm to 16 mm • High electromagnetic compatibility

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Germany

General Characteristics of the brakes: 98/37/EEC Machine Instructions Regulation 73/23/EEC Low Voltage Regulation 93/68/EEC Electromagnetic Compatibility Regulation 60335-1-CEI Safety of electric devices for domestic use Regulation Regulation VDE 0580 Certificate UL/CSA File E210965 - EE219203 Certification ISO 9001:2010 95/16/CE: TÜV Institute Atex Ex Group II class 1 GD d T6 IIC in phase of certification nearby TUV SÜD 0123 New Machine Instructions 2006-42

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Hungary

ECE R10 is a regulation published by The United Nations Economic Commission for Europe (UNECE) for automotive industry. ECE R10 is defining Electromagnetic Compatibility requirements of the vehicles and electronic sub assemblies (ESAs) used in automotive. Do you need ECE R10 testing or ECE R10 Type Approval, Homologation or E-marking? We are offering ECE R10 testing and type approval (E marking) services with our international network of accredited laboratories and designated technical services. Contact Testups, one of our expert engineers will contact you and send a quote specific to your requirements.

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United Kingdom

Features Provide 24 Gigabit electric interface,2 Gigabit opticalinterface Fanless design,IP30 protection grade, Impact resistant metal shell Applicable voltage range 100~240V AC Meet the requirements of electromagnetic compatibility EMC industrial grade 4(anti-lighting, static electricity, surge, group pulse) All port anti-lighting 6KV Applicable to -20℃~60℃ working environment

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