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Hall sensors - Import export

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Germany

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Features – 4-pole rotor with resin bonded NeFeB-magnets – 3-phase winding in delta-connexion – 3 inside hall sensors for rotor position detection – Housing made in aluminium – End shields in precision machined aluminium parts – Ballbearings on both sides

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Germany

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Features – 4-pole rotor with resin bonded NeFeB-magnets – 3-phase winding in delta-connexion – 3 inside hall sensors for rotor position detection – Housing made in aluminium – End shields in precision machined aluminium parts – Ballbearings on both sides

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Germany

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Features – 4-pole rotor with resin bonded NeFeB-magnets – 3-phase winding in delta-connexion – 3 inside hall sensors for rotor position detection – Housing made in aluminium – End shields in precision machined aluminium parts – Ballbearings on both sides

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Germany

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Features – 4-pole rotor with resin bonded NeFeB-magnets – 3-phase winding in delta-connexion – 3 inside hall sensors for rotor position detection – Housing made in aluminium – End shields in precision machined aluminium parts – Ballbearings on both sides electronics

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Germany

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Features – 4-pole rotor with resin bonded NeFeB-magnets – 3-phase winding in delta-connexion – 3 inside hall sensors for rotor position detection – Housing made in aluminium – End shields in precision machined aluminium parts – Ballbearings on both sides electronics

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Germany

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Features — 4-pole rotor with plastic-bonded magnets NeFeB — Threefold winding connected in delta — Internal Hall sensors for rotor position detection offest by 120° — Ball bearings — Multiple combination possibilities with gears, encoders, brakes — Power output in rated operation: 15,1 Watt — Multiple combination possibilities with gears, encoders, brakes and integrated electronics

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Germany

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The completely equipped electrical cylinder unit includes the motor transmission unit, along with the motor brake, two-channel Hall-IC sensor and two end-limit switches. All connection lines run directly out of the unit to make configuration and initial start-up easier, particularly for PLC operation. The fixation of the electric cylinder connections is compatible with commercial pneumatic and hydraulic cylinders.

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Germany

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Conductive plastic and Hall rotary sensors and encoders to determine an angular position. Our potentiometers and membrane sensors are also custom-made to your requirements.

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Germany

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Sensors of the series HG are used for speed measurement, for example of gear wheels, under extreme conditions, high temperatures, humidity, contaminated or oily environment and mechanical stress. Based on the Hall sensor principle the sensor detects moving ferro-magnetic metal parts. EGE speed monitoring sensors can be modified based on your own ideas.

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Germany

Cylinder magnet is also known as rod magnet, it is a magnet with its length larger than diameter, this gets the magnet to generate very high level of magnetism from a relatively small surface pole area. Cylinder magnet has high "Gauss" values because of its greater magnetic length and deep depth of field, making them ideal for activating reed switches, hall effect sensors in security and counting applications, also it is ideal for educational, research and experimental uses. We are ready to make a custom cylinder magnet for your application, welcome to contact us for a further communication.

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Germany

Statox 501 Infratox detects gases in the LEL and ppm range. Protecting people and assets from hydrocarbons The infrared absorption method of gas detection is ideal to detect hydrocarbons such as fuels. It features enough sensitivity to expand the range of application into the ppm range. For instance fuels such as gasoline, diesel or kerosene are mixtures of hydrocarbons. Infrared gas detection theory of operation Some gases absorb light at a certain wavelength (colour). This absorption band is specific to the gas. The rate of the absorption depends not only on the substance to be detected but also on the number of gas molecules (i.e. the concentration of the gas). This premise is used to detect gases. For example, the C - H bond in hydrocarbon molecules will oscillate and absorb light at 3, 4 mm. This fact makes it so easy to detect fuels. Hexane, for instance has 14 C - H bonds compared to Methane which has only 4! A light beam is directed through a cuvette filled with the gas to be detected. The more hydrocarbons are present, the more light will be absorbed. A photo detector at the other end of the cuvette measures the remaining light intensity. The difference between the original and remaining light intensity corresponds to the gas concentration. A reference beam with a different wavelength compensates for potential interferences of dust, humidity or variations of intensity from the light source. Fail-safe technology Failure of important components such as the light source or photo detector will trigger a "system fail" alarm. Most local authorities will accept this as a self-diagnostic feature. Systems including a self-check require less maintenance and calibration, saving time and money. Simple maintenance: Easy to read display and non-Vintrusive calibration The bright LED display of the Statox 501 Infratox shows the gas concentration in percent L.E.L. (Lower Explosion Limit). An important accessory is the calibration adapter, featuring control buttons operating Hall-sensors inside the Ex d housing. The service menu is password protected preventing unauthorised access. All parameters can be checked and changed, or a calibration can be done all without opening the transmitter. The adapter is also equipped with a gas outlet so that it can be used for flow-through applications. Impervious compact design The dimensions of the Statox 501 Infratox are small and compact. The sensor compartment is completely sealed, not allowing dust or insects to enter. It is located in the center of the sensor head. This allows heat radiation from the electronics and the infrared lamp to keep the unit a few degrees above the ambient temperature thus avoiding condensation. This innovative design makes any additional heating unnecessary, allowing the sensor head to be very energy efficient. This saves additional money by eliminating more expensive wiring and a bigger power supply that would otherwise be necessary. The sensor head is rated protection class IP 67 (6 = protection even against fine dust, 7 = submerged 1 m deep in water for 30 minutes). You can have confidence that this system will safely operate even in the harshest environment.

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Germany

Non-contacting 2-channel flange speed sensor with stainless-steel sensor tube, difference-Hall principle. Due to its design and type approval according to DIN EN 50155 especially suitable for transport technology. Output signals 90° offset for speed and direction of rotation detection (module m1 - m3). Robust and high quality housing: IP68 pressure-tight and individually tested at 5 bar (for details see technical data). Excellent vibration and shock resistance. Straight connection outlet.

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Germany

Non-contacting multi-channel stainless-steel speed sensor, difference-Hall principle. Due to its design and type approval according to DIN EN 50155 especially suitable for transport technology. Optionally with current output signal. Robust and high quality housing: IP69 pressure-tight and individually tested at 5 bar (for details see technical data). Excellent vibration and shock resistance and double protection of the sensor head. Connection outlet straight or lateral; with protective tubing on request. Detection of very low speed (near zero speed).

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Germany

Non-contacting multi-channel stainless-steel speed sensor, difference-Hall principle. Due to its design and type approval according to DIN EN 50155 especially suitable for transport technology. Up to 4 galavanically isolated measurement channels Robust and high quality housing: IP69 pressure-tight and individually tested at 5 bar (for details see technical data). Excellent vibration and shock resistance and double protection of the sensor head. Connection outlet straight or lateral; with protective tubing on request. Detection of very low speed (near zero speed).

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Germany

Angle position measurement by means of Hall sensors and signal processing including generation of the analogue output signal. Robust brass housing – stainless steel shaft with sliding bearing – sensor circuit consisting of ASIC with Hall elements – electrical connection via connector.

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Germany

Recording of the angular position by means of Hall sensor and signal processing, including generation of the analogue output signal. Incrémental ou absolu: Absolu

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Germany

Recording of the angular position and revolutions by means of Hall sensors - absolute multiturn transmission for up to 4096 revolutions - data output plus parameterisation and diagnosis via EtherCAT. Robust housing (housing sickness 5 mm) manufactured from seawater-resistant aluminium (AlMgSi1) or stainless steel - stainless steel shaft - ball bearing with shaft seal - sensors circuit consisting of ASIC with Hall elements - electrical connection via M12 connector or cable outlet. In the model series TRK absolute encoders, the EtherCAT interface is integrated according to IEC 61158-2 to 6 and encoder profile CiA DSP406. As a "full slave", the TRK supports all EtherCAT addressing modes such as logical addressing, position addressing and node addressing. Use of the CANopen over EtherCAT message and the CANopen encoder profile enable parameter and diagnostic data handling as familiar from CANopen. These are contained in an object directory under the same indices as in the case of CANopen.

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Germany

Recording of the angular position and revolutions by means of Hall sensors - multiturn version with absolute transmission for up to 4096 revolutions - data output plus parameterisation and diagnosis via Profibus-DP. Robust housing manufactured from seawater-proof aluminium or stainless steel - stainless steel shaft - ball bearing with radial shaft seal - sensor circuit consisting of ASIC with Hall elements - electrical connections via the connecting cap with threaded cable connections. The absolute encoders are designed for direct connection to the PROFIBUS-DP. The interface is implemented with the SPC3 Siemens PROFIBUS controller. The protocol corresponds to DP-Slave Class 2 functionality in accordance with Profibus profile for encoders, No. 3.062, and is described in detail in the TRD 12770 user manual. The TRD is mechanicallly and electrically compatible with the electro-optical encoder CRD.

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Germany

Recording of the angular position and revolutions by means of Hall sensors - absolute multiturn transmission for up to 4096 revolutions - data output plus parameterisation and diagnosis via EtherCAT. Robust housing manufactured from seawater-resistant aluminium or stainless steel - stainless steel shaft - ball bearing with radial shaft seal-sensor circuit consisting of ASIC with Hall elements - electrical connection via M12 connector or cable outlet. In the model series TRK absolute encoders, the EtherCAT interface is integrated according to IEC 61158-2 to 6 and encoder profile CiA DSP406. To achieve the SIL2 level, the TRK/S3 contains a redundant sensor system and additional internal monitoring mechanisms as well as safe communication via the FSoE (failsave over EtherCAT) protocol. The FSoE protocol is implemented according to the Safety over EtherCAT specification ETG.5100 version 1.2.0.

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Germany

Recording of the angular position and revolutions by mens of Hall sensors - multiturn version with absolute transmission for up to 4096 revolutions - data output plus parameterisation and diagnosis via Profibus-DP. Robust housing manufactured from seawater-proof aluminium or stainless steel - stainless steel shaft - ball bearing with radial shaft seal - sensor circuit consisting of ASIC with Hall elements - electrical connections via the connecting cap with threaded cable connections. The absolute encoders are designed for direct connection to the PROFIBUS-DP. The interface is implemented with the SPC3 Siemens PROFIBUS controller. The protocol corresponds to DP-Slave Class 2 functionality in accordance with Profibus profile for encoders, No. 3.062, and is described in detail in the TRD 12770 user manual. The TRD is mechanicallly and electrically compatible with the electro-optical encoder CRD.

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Germany

Recording of the angular position and revolutions by means of Hall sensors - data output plus parameterisation and diagnosis via PROFINET. Robust housing manufactured from seawater-resistant aluminium or stainless steel - stainless steel shaft - ball bearing with radial shaft seal-sensor circuit consisting of ASIC with Hall elements - electrical connection via M12 connector or cable outlet. The Profinet interface according to IEC 61158 / 61784 or PNO specifications order No. 2.712 and 2.722, version 2.2, is integrated into the model series TRT absolute encoders. Real time classes 1 and 3 are supported, i.e. Real Time (RT) and Isochronous Real Time (IRT) plus the requirements of conformance class C. To achieve the SIL2 level, the TRT/S3 contains addtitional internal monitoring mechanisms as well as safe communication via PROFIsafe. The PROFIsafe protocol is implemented according to the PROFIisafe Profile for Safety Technologie version 2.4 (PNO Order No. 3.192)

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Germany

Recording of the angular position and revolutions by means of Hall sensors - multiturn version with absolute multiturn transmission for up to 4096 revolutions - data output plus parameterisation and diagnosis via PROFINET. Robust housing manufactured from seawater-resistant aluminium or stainless steel - stainless steel shaft - ball bearing with radial shaft seal-sensor circuit consisting of ASIC with Hall elements - electrical connection via M12 connector or cable outlet. The Profinet interface according to IEC 61158 / 61784 or PNO specifications order No. 2.712 and 2.722, version 2.2, is integrated into the model series TRT absolute encoders. Real time classes 1 - 3 are supported, i.e. Real Time (RT) and Isochronous Real Time (IRT) plus the requirements of conformance class C. Setting the address, baud rate or terminating resistances is not necessary. A name, which is stored in the absolute encoder's non-volatile memory, is assigned via the PROFINET controller to address the device.

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Germany

•Supply voltage: 14V - 65V •Phase current: 300A •Motor types: PMSM •Control algorithm: Field oriented control with flux weakening •Functions: Automatic teach-in, four ride modes, reverse gear, boost, display control, smartphone app •Position feedback: Hall sensor •Analog inputs: 2 •Digital inputs: 2 •Communication: CAN, Smartphone Connectivity •Diagnostic interface: USB, CAN •Diameter: 155mm •Height: 45 mm •Weight: 970 g

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Germany

Space-saving, compact – but rugged nonetheless The TRY50 series covers the transition from finger- to hand-size joysticks. This is realized by a construction of the very robust mechanism combined with space-saving Hall sensors. The TRY50 was specifically developed for applications, where a rugged hand joystick is needed, but space is limited. The optimized dimensioning of the mechanism and control lever make it possible to use the joystick in environments, where only finger joysticks would fit, but lack the needed load resistance. The joystick is equipped with Hall sensors and thus shows only minimal drift of the output signal over many years of operation. Optionally, redundant sensors can be chosen to further increase reliability.

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Germany

The joysticks of the TRY100 series cover a great variety of different applications due to their high number of configuration options, and convince technically in every respect The TRY100 is the all-rounder in the field of finger joysticks because of the extensive selection of handles, limiters and output options. Optionally, redundant sensors are available. Thus, the joysticks can be optimized for almost all possible applications. With the convenient plug-in contact and the small installation depth of < 26 mm, the joystick offers unequalled opportunities in case of space-limitations below the panel. Due to its modern contact-less hall-sensors, the electro mechanics guarantee for a long mechanical life expectancy of 5 million operations. The construction is laid-out for a load resistance up to 200 N, and improved handle options offer protection up to IP67 above the panel.

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Germany

High-quality haptics for one-dimensional control tasks The proportional rockers of the PW30 series meet the highest demands on quality and reliability for long-term use in industrial environments. With the look of a rocker switch but the sensor technology of industrial joysticks, the PW30 series combines the advantages of joysticks (for transmitting an analogue control variable) with those of toggle switches (flat design, low space requirement). In addition to two different rocker shapes, choices between potentiometric or Hall-effect sensor technology, as well as between spring return to the centre position or to the end position, are possible. Redundant versions are also available on request.

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Germany

Unbeatable small installation depth and the highest stability in its class. The joysticks of the series 844 exhibit properties, which are normally found in heavy-duty products only, even though it is a very compact finger joystick. For example, with handle "T" the 844 becomes the most compact stock grip joystick with push button (see picture above in the center). In this configuration, the 844 has the advantage over larger models of lower price and space requirements. The joysticks of the series 844 are equipped with wear-less Hall Effect sensors, are available with up to 3 axes, and exhibit a robust mechanical construction, with a ball-socket pivot. It withstands high push, pull, translational and rotational forces, up to a load of 400 N (vertically). The operational lifetime is up to 10 million operations. With protection up to IP65, a variety of handle shapes, limiters and output options, the optimum product can be selected for the application.

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