The following 7498 products have been found matching your search "Condor":

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Condor - The beginnings of the Condor-Werke lie in Westkirchen, Westphalia. The company was founded there in 1893 by Heinrich Frede as a workshop. Initially, the focus was on the manufacture of centrifuges, in the years that followed milking machines and, a little later, pumps. The granting of the world's first patent for a diaphragm pressure regulator for the automatic control of pumps in 1935 heralded a new era in the company's history. Since then, Condor-Werke has made a name for itself as a manufacturer of motor protection switches and float switches and also offers its own control construction. They can also develop customer-specific solutions of all kinds, such as pump and compressor controls or motor start-up controls. In the eibabo® shops from eibmarkt® you will find a large number of products from the Condor company, mainly switches and relays. These include motor protection switches, pressure switches, overcurrent relays, pressure monitors, control pressure switches, float switches, relief valves and motor relays. When it comes to quality, Condor makes no compromises. Even during the development phase, the prototypes are subjected to intensive mechanical and electrical endurance tests. These also continue during product use in order to continuously ensure compliance with all performance characteristics. Condor operates worldwide. In Germany, Condor Pressure Control GmbH and Scharco Elektronik GmbH belong to the company, in the United States it is Condor Werke USA, Inc.. Representatives are also located in many European countries, as well as in Australia, the Middle East, Asia and South Africa. Condor was certified according to DIN ISO 9003 in 1993 and according to DIN ISO 9001 in 1995. The eibabo® technology store is part of a powerful Condor sales network.

Found in shop categories: 9

Power switches motor protect. - Do you want to protect an electric motor from damage caused by overload or short circuits and need a motor protection switch for this? In this catalog from the eibabo® shop, we present a wide variety of circuit breakers for reliable motor protection. Read here how to find the right device and what you should pay attention to when buying it.Large machine parks are in operation, especially in industrial production. A correct function before and also after unforeseen events is of the utmost importance here. But even on a small scale, the electric motors used should function stably. For this reason, machines are protected against disturbances in the power supply and against overloads. Such errors occur, for example, due to improper maintenance, leaks, wear and tear or simple short circuits. Constant protection of the health and life of machine operators is just as important. Therefore, electricians and occupational safety specialists pay close attention to the implementation of all necessary measures to maintain business operations and protect employees. Motor protection switches are a component of such a safety package.What is a motor protection circuit breaker?The motor protection switch is a switching device for controlling the electric motor. The device serves to switch on, switch off and conduct current in the normal state of the circuit. The switch also has the task of automatically switching off the engine in emergency situations. The main function of motor protection switches is to protect devices from overload and short-circuit currents. When the rated current is exceeded, the circuit breakers shut off the power, ensuring the safety of electrical equipment and people.What is meant by thermal and magnetic motor protection?The tripping characteristic of a circuit breaker for motor protection is usually based on built-in thermomagnetic protection. This standard includes:protection against short circuits via a magnetic circuit breakerprotection against overload by means of a thermal circuit breaker  TIP:For safety reasons, we recommend always choosing a combined motor protection switch with both types of protection. The magnetic circuit breaker for short-circuit protection must respond quickly in the event of a high current. This type of protection is precise, reliable and economical. Ambient temperature changes do not affect tripping characteristics. Compared to thermal circuit breakers, magnetic circuit breakers have more precisely defined trigger parameters. The magnetic circuit breaker uses an electromagnetic mechanism. This is dimensioned differently according to the respective performance specifications of the motor protection switch. When the current reaches a certain threshold, the circuit is immediately broken. As a rule, this is set in such a way that tripping only occurs at ten times or more than the normal operating current of the motor. This avoids tripping during normal engine starting.The thermal circuit breaker for overload protection reacts with a delay because a motor usually draws a higher current when starting. This type of protection is one of the most reliable and economical types of protection for electric motors. These handle high starting currents and protect the motor from failures caused, for example, by a blocked rotor. The thermal overload protection works with a bimetallic strip. Deformation occurs when the bimetal is heated to a critical temperature by the current flowing to the motor. This indicates that the power consumption is continuously too high. The motor is under excessive load and may stall or otherwise fail. A special feature of thermal circuit breakers is their temperature compensation. In this way, a precise triggering behavior defined according to the respective calibration is guaranteed at different ambient temperatures.Image: Eaton PKZM0-1 motor protection switchWhat circumstances can cause a motor protection switch to trip?A wide variety of faults can occur during the operation of an electric motor. It is therefore important to be aware of these dangers, assess the probability of failure and anticipate possible causes. In this way, a motor can be optimally protected. An electric motor can fail or be damaged under the following conditions:Poor power quality due to high voltage, under voltage, surges, frequency change, incorrect installation or malfunction of the electric motor itselfGradual increase in temperature or reaching and exceeding the permissible limit values due to frequent switching on and off, insufficient cooling, high ambient temperature, reduced atmospheric pressure, high temperature of the working medium or excessive viscosity of the working mediumSudden rise in temperature due to blockages in the motor drive or phase failure Where are motor protection switches installed?The most common motor protection switches are designed as built-in devices. Alternatively, depending on the model, it can be installed in the control cabinet on the DIN rail. Mounting directly on the machine is obvious, because a machine is usually switched ON and OFF via the motor protection switch. Manual power on is done by pressing the start button labeled 'I' or '1'. Depending on the version, this can also be a rotary switch. Manual shutdown is done by pressing the stop button or turning the switch position back to '0'.What should be considered when selecting a motor protection switch?Basically, when selecting a circuit breaker for motor protection, you should be guided by three criteria: the rated current, the overload current and the short-circuit current. The rated current of the machine is the maximum allowable current at which the circuit breaker can remain on indefinitely. However, it is of no use if the switch is correctly selected in terms of current rating, and the wiring does not withstand the load, melts and causes a short circuit. Choose the motor protection switch not only according to the nominal power of the machine, but also the cable cross-section and the quality of the wiring. Thermal overload protection suitable for your system and magnetic protection against short circuits should be considered on the same premises.Notice:With motor protection switches, a mechanical load on the device cannot be ruled out. The switches are therefore often made of very robust and self-extinguishing plastic.When buying, make sure you choose a brand you trust. A motor protection switch must function reliably and, in an emergency, have the declared properties. This cannot be guaranteed without a doubt for no-name items. The price difference to a high-quality original is not that big when you compare the safety of man and machine. Therefore, opt for products from trusted manufacturers such as ABB, ABL, Condor, Eaton, Hager, Helios, Maico, Rockwell, Schneider Electric, Siemens and Stahl.Convince yourself of the quality of our articles. Your purchase is always protected by our buyer protection. We ship worldwide and offer you the shortest possible delivery time.  Catalogue content:In this eibabo® catalogue Low-voltage industrial components > Motor protection circuit-breaker you will find items from the following product groups:Item overview:AC voltageAlternating currentBasic switchCircuit breakerControl unitEngine outputEngine protectionEngine starterEngine switchLoad current switchLoad disconnectorLoad switchLow voltage circuit breakerLow voltage switchMolded case circuit breakerMotor protection functionMotor protection switchMotor protection switch systemOverload protectionShort circuit protectionSpring terminalStarter combinationStarter combinationsSwitch disconnectorTransformer circuit breakerfrom the following manufacturers:Manufacturer overview catalogue Power switches motor protect.:ABBCondorEatonHagerMaicoRockwellSchneider ElectricSiemensStahl
Pressure switch - Would you like to control switching processes in a technical system that are triggered by changes in the pressure of a gaseous or liquid medium? Then you need a pressure switch. Here you can learn a little more about the history, the tasks and the operating principle of pressure switches. Inexpensive and reliable pressure switches for switching valves or pumps are available here in the eibabo® online shop. Choose a model that suits your system from our range.What are pressure switches?Pressure switches are used to automate a pump or compressor. The basic principle of these switching devices is that connected devices:switched on when the pressure falls below a set limitoff when the upper pressure limit is reached Image: Eaton MCSN11-V pressure switchPressure switches have many names. The following terms are very common:Differential pressure switch, pressure limiter, pressure controller, pump relay, water pressure switch, air pressure switch or compressor switchThe devices are used, for example, in liquid tanks or gas tanks in which the filling level or the internal pressure of the medium contained therein is to be monitored. This ensures that certain values are not exceeded or fallen below. Alternatively, when a critical value is reached, switching processes are triggered in order to restore the desired or programmed normal state. A distinction is made between mechanical and electronic pressure switches, which offer individual advantages depending on the desired area of application.The history of the pressure switchIn the past, pumps and compressors were switched on and off mechanically and required constant human intervention. In the early 1930s, August Frede Maschinenfabrik (today: Condor-Werke) developed a simple and functional device that was equipped with a membrane and worked according to a spring principle. This first pressure switch should automate the switching on and off of pumps or compressors. In 1935, the company received the world's first patent for a diaphragm pressure controller for the automatic control of pumps. To this day, Condor-Werke is one of the global market leaders in the development and production of pressure switches.What are the advantages of a pressure switch?A pressure switch allows full automation of the start-up and shut-down process, eliminating the need for human involvement in managing the pump or compressor. An automatic shutdown when the upper pressure limit is reached guarantees the safety of the respective system. If pumps or compressors only work within a certain pressure range due to intelligent switching processes, energy costs can be significantly reduced and resources saved. TIPBe sure to note the installation location and, accordingly, the moisture protection of the pressure switch. In addition, pressure switches are very reliable and durable.The mechanical pressure switchDepending on the design, pressure switches can work mechanically or electronically. Mechanical type devices are more common due to their reliability, durability and simplicity. The mechanical pressure switch can be installed directly on site with minimal effort.NoticeHigh-quality pushbutton switches have non-stick silver-plated contacts, a high-strength diaphragm and fine-tuning capabilities. Especially with cheap goods from the Far East, the lack of these properties can lead to failures and unreliable switching operations. Here in the eibabo® online shop you only get reliable quality goods from well-known brands.The functional principle of a mechanical pressure switch is essentially based on the combination of a membrane with a block of adjustable springs. The pressure of the working medium is transmitted through the diaphragm to the working pressure setting springs by means of nuts or screws. A differential pressure setting spring measures the value of this compression. If the compression of the working pressure setting springs exceeds a certain value due to the pressure of the diaphragm, the differential pressure setting spring opens the contacts in the contact block and the pump or compressor is switched off. When the pressure drops, the tension in the springs relaxes again and the compression decreases. The mains contacts then close again and the connected device is switched on again. Depending on the version of the pressure switch, there may be additional outlets for connecting a pressure gauge and safety valves.The electronic pressure switchAn electronic pressure switch is actually a complete pump controller. As a rule, these devices include elements for soft starting, protection against dry running, as well as ways of setting the upper and lower thresholds of the operating mode of the pump or compressor. The advantages compared to a mechanical pressure switch are the smaller dimensions and the setting principle. Sensitivity adjustment screws are located on the electronic pressure switch body.How do I protect myself from my system running dry?The cause of failures in the operation of pumps or compressors is often the lack of the required working medium in the system. This problem is annoying and affects the reliability of all components. Idling leads to overheating or damage to parts and the associated failure of the entire system. To avoid this, when choosing a pressure switch, please consider the characteristics and allowable ratings for the operation of your pump or compressor. You avoid the danger of idling as follows:Buy a device with dry-running protection. These devices are a bit more expensive, but respond very effectively to pressure drops.Invest in the installation of a controller that not only monitors the pressure. This would, for example, also switch on the pump if the actual values fall below the set target values. How do I choose a pressure switch?When choosing a pressure switch, it is necessary to determine the type of pressure switch, the required functionality and the operating pressure:Should the switch monitor the pressure of liquids or gases?Does the switch have to be able to withstand chemical compounds?In which key figures is the working pressure range?How is the power supply designed for the switch (voltage, number of phases, current)?What sizes are required for the flange connections?What additional components and options are desired? Examples of this would be: start button, thermal relay to protect the electric motor, dry running protection relay for pumps, relief valve to make starting compressors easier and so on. When installing a high-quality pump, please remember that the pressure switch should also be of the same quality. This is the only way to ensure reliable operation. by the wayThe manufacturers of high-quality devices carry out long-term tests with the pressure switches in the laboratory in order to guarantee more than half a million switching operations. Use our detailed search to select your pressure switch. There you can precisely set the parameters of the switch you want and filter accordingly.  Catalogue content:In this eibabo® catalogue Low-voltage industrial components > Pressure switch you will find items from the following product groups:Item overview:Compressor switchCylinder switchDifferential pressure switchPressostatPressure limiterPressure monitoring devicePressure regulatorPressure sensorPressure sensorsPressure switchPressure transducerPressure transmitterTwo-position controllerVacuum monitorVacuum switchfrom the following manufacturers:Manufacturer overview catalogue Pressure switch:Alre-itBaumerBourdon-HaenniCondorDoepkeEatonElsterEndress + HauserHeliosHoneywell FemaIfm ElectronicIpf ElectronicJumoMaicoNE-MARockwellSchneider ElectricSickSMC Deutschland
Conductor rail - With a power rail you create a fixed supply line for electricity in order to supply mobile consumers in the private, commercial or industrial sector. Here in the eibabo online shop, for example, you can get busbars for installing lamps and lights. Depending on where you distribute power rails in your shop, in the living room or in the open-plan office, you can flexibly attach different numbers of spotlights to illuminate different areas of the respective room individually. In electrical engineering, busbars are also referred to as busbars, with which you can easily and conveniently distribute currents to individual power lines within electrical systems. These are also part of the large eibabo range, along with the right accessories, tools, installation material, busbar supports, LED spots, spotlights and connection adapters.Catalogue content:In this eibabo® catalogue Accessories for lighting > Light-track you will find items from the following product groups:Item overview:1-phase track3-phase track3-phase track support profile3-phase wing power rail3-phase wing railBusbarCeiling lightConductorCopper pipeFeedGlass railGlass rail lightInterior lightsLight system busbarLight-trackLow-voltage busbarMounting railPendant lightPower converterPower railPower rail for lighting systemRailRail feedShelf ticketsShop lightingSurface mountingWing railWire suspensionfrom the following manufacturers:Manufacturer overview catalogue Conductor rail:3F FilippiArcliteBruckBrumbergErcoFischer & HonselHeraLTSNeuhaus LeuchtenNZROligoPerformance in LightRidi-LeuchtenRZBSignify PLSSLVTriluxZumtobelZumtobel Group
Protective conductor terminal - You take care of the structure of your control cabinet and use various terminal blocks to organize your electrical installation. If you are still missing protective conductor terminals to complete your system, then you have come to the right place in this catalog from our shop. Here you can get all common variants from well-known manufacturers at top conditions. Protective earth terminals belong to the series terminals and were developed for electrical distribution installation. These are capable of accommodating fine-wire, multi-wire or solid conductor cross-sections. Cables with attached ferrules can also be installed in protective conductor terminals.What is a protective conductor?The protective conductor or PE conductor (PE stands for protective earth) is primarily used to connect the masses of electrical devices and conductive elements to earth. The protective conductor is easily recognizable by its green-yellow color.Already knewThe nationwide establishment of the protective conductor in Germany, Austria and Switzerland took several decades. More than 50 years passed from the first proposal to introduce a 'neutral conductor' around 1914 to the uniform definition of the green and yellow marking in 1965.An example: Let's take the classic NYM-J 3x1.5 mm² sheathed cable. Two wires carry current here, the one with the blue insulation and the one with the brown insulation. The third wire is the green-yellow protective conductor, which normally does not carry any current. If a current-carrying phase touches a metallic housing, a so-called residual current flows through it. If there is no protective conductor, the housing is not grounded and the residual current cannot flow. If a person touches the housing, the current is returned to earth via their body. This not only results in an unpleasant discharge, but in some cases leads to burns or, in extreme cases, to an electric shock, which can lead to cardiac arrest. However, if a protective conductor is properly installed, the enclosure is connected to earth through it. The residual current can thus flow off via the protective conductor.In the control cabinet, the incoming protective conductors are sorted and fastened via protective conductor terminals.What is a terminal block or a feed-through terminal block for protective conductors?Terminal blocks fulfill several functions and are among the most important components within a control cabinet. It is mounted on the DIN rail. In general, terminal blocks are connecting elements between the incoming cables and lines of an installation and the actual control cabinet installation. Technically, the special protective conductor clamps do not differ from the clamps for external conductors or neutral conductors, but they are specially designed to accommodate the green-yellow protective conductor. TIPMany ground terminals also have a coloured, mostly green-yellow housing. Their purpose is therefore unmistakable and the terminals in the control cabinet can be recognized as such at first glance. Feed-through terminals are also often mentioned. 'Terminal block' is a generic term that also includes other types of terminals. These include, for example, fuse terminals and relay terminals. Other terms describe the way a terminal is constructed or its ability to connect the conductors. In this context one often hears about one-tier terminals, three-tier terminals, spring-loaded terminals, push-in terminals or screw terminals.Why should I use protective conductor terminals?Feed-through terminals for protective conductors are required connecting elements in the control cabinet between the rigid incoming cables or lines and the following control cabinet installation. These offer the necessary flexibility to connect the protective conductors to the end devices easily and clearly. A clear installation would not be possible without the feed-through terminals. In practice, the incoming cables and lines are clearly laid out on the terminals and the individual wires then lead from there to the devices in the control cabinet. This keeps the entire installation flexible. There are connection points and nodes for checking and changing the system structure.Image: WAGO 2002-3207 three-level terminalEach protective conductor connection that is made assumes a protective function specified in the circuit diagram. This means that both the installation of the system and the function of individual connections are always traceable. This makes later maintenance, additions or repairs easier. Changes are possible at any time by reconnecting individual lines. The rigid supply lines remain unaffected.What is the difference between protective conductor terminals?Each manufacturer builds the protective conductor terminals slightly differently. However, the principle is the same. There are single-level clamps and multi-level clamps. While you can only connect one protective wire in the single-level terminal, several incoming and outgoing lines can be installed in multi-level terminals. A multi-level arrangement saves an enormous amount of space in the control cabinet.Another distinguishing feature is the way the wires are attached. With a screw terminal, the respective wire is fixed with a screw connection. This method is comparatively complex and takes a lot of time. Especially when the system is complex, you save a lot of time by using a spring-loaded terminal. This variant makes the electrical contact using a spring. The spring usually consists of a bent, flat copper contact. The protective conductor must be inserted through a hole in the copper contact. This is only possible if the contact is clamped with a pointed tool. When the clamping tool is removed, the spring pulls back and the protective conductor is jammed. This connection is released in the same way. Push-in mounting is another connection variant. This is similar to the spring-loaded terminal. But unlike the spring-loaded connection, installation is tool-free and therefore even faster. The protective conductor is inserted into the spring shaft of the terminal and the spring locks automatically. You need a tool to loosen the connection. Bend the retaining spring to the side with a small screwdriver and the protective conductor can be loosened. This method saves a lot of time, especially for cores with solid conductors. The use of ferrules is recommended for cores with flexible conductors (strands). Fastening the conductors using insulation displacement terminals is rather rare. Use this variant if your conductors are particularly thin. Here, the contact is made through a small cut in the insulation. Cheaper in a setProtective conductor terminal blocks are available individually or in sets of 25, 40 or 50 at an attractive price advantage. The cross-section of the protective conductor also affects the protective conductor terminal. Here in the shop you can get the right protective conductor terminals for all common cable cross-sections. Whether a clamp can be used for a specific cross-section is usually stated on the clamp.Why are protective conductor terminals not closed on one side?The space in a control cabinet is almost always tight. The storage capacity of a control cabinet is generally specified in module widths (HP). Protective conductor terminals are not manufactured according to this grid dimension, but as narrow as possible. The width is determined by the design of the electrical connection and the cable cross-section. Since the terminals are mounted directly in line, there is no risk of touching the contacts on the open sides. Without the second side cover, a terminal is slightly narrower. A cover is only attached to the last terminal in a row. The narrower the individual terminal is, the more terminals can be accommodated on a specific section of the DIN rail.You can buy protective conductor terminals quickly and cheaply in the eibabo® technology store ? your competence center for smart homes and electrical installations. We offer branded products from ABB, Dehn, Hager, Phoenix, Pollmann, Schneider Electric, Siemens, WAGO, Weidmüller, Wieland in large quantities. We deliver our range worldwide.  Catalogue content:In this eibabo® catalogue Terminal blocks > Ground terminal block you will find items from the following product groups:Item overview:Actuator terminalBase clampsBuilt-in housingCage clampConnection technologyFeed terminalFeed-through terminal blockFour-level clampGround railGround terminalGround wire disconnect terminalInformation technologyInitiator terminalInstallation clampInstallation clampsMulti-level clampProtective conductorShield connection technologySingle clampSpring clampsSpring clipTerminal blocksTerminal stripTest disconnect terminalsThree-wire terminalThrough terminalTwin clampUniversal clampfrom the following manufacturers:Manufacturer overview catalogue Protective conductor terminal:ABBDehnHagerPhoenixPollmannSchneider ElectricSiemensWAGOWeidmüllerWieland
Coaxial cable - Coaxial cable, or short coax cable, stands for unbalanced two-pole high frequency cable with a concentric structure. The coaxial cable is composed of an inner conductor, which is surrounded by hollow cylindrical outer conductors at a constant distance. The outer conductor is protected by an insulating, corrosion-resistant and water-tight sheath to the outside and shields the inner conductor from interference. The space between inner and outer conductors serves as an insulator and is referred to as a dielectric. The dielectric can proportionally or entirely consist of air. The characteristic impedance of a coaxial cable and the frequency dependent attenuation is largely determined by the structure of the cable. You can use a coaxial cable as a 'flying' coaxial cable without fixed installation, often used as an antenna cable for radio or TV reception, or as RCA (Cinch) connection in audio technology. In the eibabo catalog, you will find different types and dimensions of coaxial cables but also BK cables, CATV house installation cables, underground coaxial cables, Midi-coax and mini coaxial cables, video cables, special SAT cables and twin coaxial cables and accessories such as reels.Catalogue content:In this eibabo® catalogue Cables > Coaxial cable you will find items from the following product groups:Item overview:Antenna cableAudio cableBackbone cableBamboo cableCableCATV cableCCTV cableCoaxial cableData network cableEthernet cableMulti coaxNetwork cableRG 11RG 174RG 213RG 214RG 223RG 58RG 59RG 6RG 62RG 71RG 8Signal cableTelematics cableTwinaxTwinax cableVideo cablefrom the following manufacturers:Manufacturer overview catalogue Coaxial cable:Astro Strobelbda connectivitybedeaBeldenDiverseHomewayKathreinLappkabelPROTEC.classSiemensSytronicTechniSatTelegärtnerTelestarTelevesTriaxWisi
High-voltage round plug - There are two versions of the Perilex plug-in system, the 16-amp version (DIN 49445/46) and the 25-amp version (DIN 49447/48). The connectors have a protective conductor (PE), a neutral conductor (N) and the three external conductors (L1, L2 and L3). Our offered high current round plugs are standardized as a plug-in connection according to CEE Perilex. The high-current round plugs are approved for currents of up to 200A and voltages of up to 400V. To distinguish between the different versions (number of contacts, position of the earthing contact, the rated voltage and frequency), the high-current round plugs, connectors and couplers are color coded.Catalogue content:In this eibabo® catalogue Industrial socket/plug applications > Round socket/plug for high currents you will find items from the following product groups:Item overview:Attachment connectorBuilt-up device plugCEE high-current circular connectorCoupling socketDevice connectorDevice plugEquipment mounted socket outletHigh current clutchHigh current connectorHigh current wall plugHigh-current circular connectorHigh-current device connectorIndustrial connectorMounting boxPanel socketPlugPower connectorPower current plug devicePower socketPower wall socketRound socket/plug for high currentsSocketSocket outletThree-phase connectorThree-phase plug deviceWall appliance plugWall boxWall socketfrom the following manufacturers:Manufacturer overview catalogue High-voltage round plug:MarechalMennekesWalther
Coaxial connectors - Coaxial cables are used for signal transmission between the antenna and end devices such as televisions. Do you know where it got its name from? Coax is short for coaxial, which in the case of cable means that the copper center conductor and the shielding around it are on the same geometric axis of rotation. Conductor and shield are separated from each other by an insulating layer. If you now want to use the connections on the LNB of the satellite system, on the television or on the multi-switch, the required coax plugs must be attached to the cable ends. These standardized connection components are available in a wide variety of versions in the eibabo online shop. The differences exist, for example, in the type of installation on the cable, in the appropriate cable diameter or in the material composition of the connector. There are also variants with straight and angled outlets, as well as couplings for connecting coaxial cables.Catalogue content:In this eibabo® catalogue Data and telecommunication > Coax connector you will find items from the following product groups:Item overview:Angular busBNC angle connectorBNC cable angle connectorBNC connectorBNC plugBuilt-in socketBusBus (jack)CATV connectorCoax connectorCoaxial connectorConnectorConnector plugData connectorF connectorF-plugFME connectorIEC angle plugInstallation busMini UHF connectorN-ConnectorPlugRG59 connectorSocket plugTNC connectorTV plugTwinax connectorUHF connectorfrom the following manufacturers:Manufacturer overview catalogue Coaxial connectors:Astro StrobelE+P ElektrikEatonEFB-ElektronikGrotheHagerHirschmannHomewayIndexaJungKathreinKreilingRutenbeckSiemensSKSTelegärtnerTeleg?rtnerTelevesTriaxTTIWantecWisi
Earthed socket surface-mounted - Schuko is an acronym for protective contact and is the name of a certain type of plug or socket that is the most common form of electrical plug connection in Germany and other parts of Central Europe. The classic Schuko plug has two contact pins, one of which is the outer conductor and the other the neutral conductor. Of course, this Schuko plug also includes the appropriate standardized Schuko socket. In addition to built-in devices, which can be covered with the various switch ranges in shape and color to match the interior design, there are also sockets for industrial applications, for outdoor use and also surface-mounted sockets, which are less about the visual appearance and more about their appearance safe and robust design. Many of the wall sockets available in the eibabo online shop have a protective or hinged cover that protects the device from penetrating moisture such as splashing water and in some cases also from water jets.Catalogue content:In this eibabo® catalogue Domestic switching devices > Panel mounted socket outlet with protective contact you will find items from the following product groups:Item overview:Belgium socketBuilt-in boxBuilt-in socketCable duct boxConduit socketDouble socketEquipment mounted socket outletEquipment mounted socket outlet (SCHUKO)Equipment mounted socket outlet with protective contactFloor socketFrance socketHousehold canHousehold junction boxMachine socketMoisture-proof socketPanel mounted socket outlet with protective contactPanel socketProtective contact extension socketProtective contact socketSCHUKO industrial/built-on socketSchuko junction boxSchuko socketSchuko socket outletSocketSocket outletSocket outlet with safety contactWall socketfrom the following manufacturers:Manufacturer overview catalogue Earthed socket surface-mounted:ABLBalsMennekesOBOSchillSchneider ElectricSpelsberg
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1 From 625
No results were found for the filter!
RECOMMENDED
3D
Condor - SK R3/10,0 - Overcurrent relay 6.30-10.00A - Thermal overload relay 6,3...10A SK R3/10,0
¥455.65 excl. VAT

*

plus shipping
(¥543.82 RRP***)
Overcurrent relay 6.30-10.00A - Thermal overload relay 6,3...10A
Condor
| SK R3/10,0
RECOMMENDED
3D
Condor - OKN-160 AA XXX XXX - Motor protection circuit-breaker 16A OKN-160 AA XXX XXX
¥466.35 excl. VAT

*

Motor protection circuit-breaker 16A
Condor
| OKN-160 AA XXX XXX
RECOMMENDED
3D
Condor - MDR 5/5 #212850 - Pressure switch 1500...5000hPa MDR 5/5 #212850
¥690.80 excl. VAT

*

plus shipping
(¥824.58 RRP***)
Pressure switch 1500...5000hPa
Condor
| MDR 5/5 #212850
RECOMMENDED
3D
Condor - MDR 5/11-K #212942 - Pressure switch 2000...11000hPa MDR 5/11-K #212942
¥902.46 excl. VAT

*

plus shipping
(¥1,077.19 RRP***)
Pressure switch 2000...11000hPa
Condor
| MDR 5/11-K #212942
RECOMMENDED
Returns
3D
Condor - R 5/10,3 - Motorrelais R 5/10,3
¥391.13 excl. VAT

*

plus shipping
(¥544.63 RRP***)
Motor relay - Thermal overload relay 6,1...10,3A
Condor
| R 5/10,3
RECOMMENDED
3D
Condor - MDR 43 GAA #212812 - Pressure switch MDR 43 GAA #212812
¥814.85 excl. VAT

*

plus shipping
(¥972.61 RRP***)
Pressure switch
Condor
| MDR 43 GAA #212812
RECOMMENDED
3D
Condor - MDR-3 GAA #212263 - Pressure switch MDR-3 GAA #212263
¥735.29 excl. VAT

*

plus shipping
(¥877.68 RRP***)
Pressure switch
Condor
| MDR-3 GAA #212263
RECOMMENDED
3D
Condor - MDR 21 DBA #212218 - Pressure switch 1.5-7 bar, 1/4 MDR 21 DBA #212218
¥573.59 excl. VAT

*

plus shipping
(¥684.60 RRP***)
Pressure switch 1.5-7 bar, 1/4
Condor
| MDR 21 DBA #212218
RECOMMENDED
3D
Condor - MDR 53/8 #213079 - Pressure switch MDR 53/8 #213079
¥930.13 excl. VAT

*

plus shipping
(¥1,110.17 RRP***)
Pressure switch
Condor
| MDR 53/8 #213079
RECOMMENDED
3D
Condor - MDR 53/16 #213086 - Pressure switch 6-16 bar MDR 53/16 #213086
¥1,107.35 excl. VAT

*

plus shipping
(¥1,321.75 RRP***)
Pressure switch 6-16 bar
Condor
| MDR 53/16 #213086
RECOMMENDED
3D
Condor - MDR 4S/6-1/2+EA - Pressure switch MDR 4S/6-1/2+EA
¥608.58 excl. VAT

*

plus shipping
(¥726.44 RRP***)
Pressure switch
Condor
| MDR 4S/6-1/2+EA
RECOMMENDED
3D
Condor - MDR 5/16-K #212980 - Pressure switch 2500...16000hPa MDR 5/16-K #212980
¥1,029.24 excl. VAT

*

plus shipping
(¥1,228.43 RRP***)
Pressure switch 2500...16000hPa
Condor
| MDR 5/16-K #212980
1 From 625