3377 results found
    1. Securely Fastened Loads

      Securely Fastened Loads

      When something needs to be lifted, a crane, ropes or chains are needed – plus anchoring points on the load itself. Ganter offers a wide range of solutions here. The classic and simplest lifting points are lifting eye bolts according to DIN 580, which are screwed into existing threads on the load. When threads are not possible, lifting eye nuts according to DIN 582 are used instead. Ganter offers these standard parts in two materials: steel and stainless steel. However, a look in the Ganter portfolio reveals far better and stronger lifting points that are optimized for specific materials and – most important – easier to handle. In particular, the integrated RFID tags are worth mentioning as a special highlight. These make it possible to clearly identify specific lifting points during wear and safety inspections and manage them digitally and without system interruption. Such RFID tags can be found in the lifting eye bolt GN 581 and the lifting eye nut GN 583, for example, which are still able to rotate around their vertical axis even after installation. Both of these options also identify load rings GN 586.1, although here the lifting eye can also be folded down. And thanks to the eye ring with ball bearing, load rings GN 5860 are fully rotatable even under load. Load rings GN 587.1 are not screwed in but welded on. This load ring is also suitable for outdoor applications since the design of the weld-on block permits a closed seam that is safe from corrosion. The ring itself can be swiveled by 180 degrees, and an optionally integrated spring can secure it in any position. The lifting point GN 589 for welding can accept loads from any direction and impresses with its minimal height. This is an extremely important feature when the maximum hook height of the lifting equipment is limited.

    2. Seismic vibration transmitter ST5484E

      Seismic vibration transmitter ST5484E

      Reliable machine monitoring (e.g. housing vibrations caused by imbalances) is ensured by a highly sensitive, low-noise and robust sensor technology. The M8, M10, ¼", ⅜" or ½" screw connections of the sensor allow machine-specific and reliable mounting, which is also possible in hard-to-reach places. Continuous machine monitoring is performed via the integrated 4 ... 20 mA current interface for central monitoring. The raw signal output ('Dynamic Signal') is available for 'real-time' evaluations or diagnosis of the vibration signals.

    3. Self closing textile split braided sleeving PLIOSIL WS

      Self closing textile split braided sleeving PLIOSIL WS

      SES-STERLING presents its new product: the self-closing textile split braided sleeving PLIOSIL WS. It is distinguished by a new opening system, easier assembly of the electrical harnesses and improved support. Split sleeving with overlap: PLIOSIL WS Its characteristics • material: polyester • colour: black • diameters: from 5 to 50 mm • operating temperatures: -50 to +150 °C • fire resistance: V0 UL94, halogen-free Fields of application • automotive industry • railway industry • electronics industry Special features of the PLIOSIL WS sleeving The product has the particularity of opening while allowing a clean closing thanks to its self-closing system. This new feature makes it possible to improve efficiency. Due to its opening, the sheath allows the assembly and maintenance of electrical harnesses and also branches, while adapting to their irregular shapes without stiffening them. It is possible to assemble electrical harnesses before or after connection.

    4. Sensor Connectivity

      Sensor Connectivity

      Connecting the Intelligence of Sensors Electro-Mechanical Interface: Connectors used in sensor technology form the electro-mechanical interface between sensors and high-level control or evaluation units. They ensure the reliable transmission of: - Analog signals - Digital data - Power supply Sensor connectors perform key functions such as ensuring reliable electrical contact, providing mechanical strain relief, and protecting the interface from environmental influences. Locking mechanisms and vibration-optimized contact geometries ensure a stable, interference-free signal transmission even under strong dynamic loads. Many applications also place high demands on sealing performance. Protection classes such as IP67, IP68, or IP69K safeguard the connection against moisture, dust, oils, and intensive cleaning processes, maintaining a durable, leak-tight interface even after numerous mating cycles. In addition, sensor connectors are designed for quick and intuitive assembly to ensure efficient installation. Rosenberger develops high-end RF, high-speed data, and power connectivity solutions that meet the increasing demands of modern sensor technology. Our connection systems enable stable high-frequency signals, low-interference data transmission, and reliable power supply. Why High-Performance Connectivity for Sensors? The miniaturization of sensors and devices presents engineers with a clear challenge: More performance in increasingly smaller spaces. At the same time, requirements for transmission speed and electromagnetic safety continue to grow. Digital interfaces such as: - IO-Link - Ethernet-based protocols - High-speed data lines demand highly precise, robust, and EMC-optimized connection technology.

    5. Sensor technology

      Sensor technology

      Various types of sensors used for a wide range of applications, such as presence/absence or differentiation of parts. Photoelectric sensors: Presence detection of test objects by means of LED light source. Photoelectric sensors are used for presence detection or part discrimination. Distance- or intensity-based detection makes it possible to distinguish between weakly reflective objects as well as highly reflective objects (e.g. metals). Fibre optic sensors: Fast and reliable detection using fibre optics for a wide range of applications. The fibre optic sensors are particularly user-friendly and easy to operate. The large selection of fibre optics means that the right sensor can be found for every application and environmental condition. Laser Sensors: Large Detection Distance for Presence Detection Using Visible Focused Laser Light Beam. KEYENCE has a variety of laser sensors that can detect components based on intensity or distance. Depending on the model, the sensors are available as all-in-one or with a separate evaluation unit. Inductive sensors: Presence detection of ferrous and non-ferrous metal objects. The fast, high-precision detection enables 24-hour monitoring of plants and products and prevents the production of rejects from the outset. Network communication units: Monitor and control sensors via Profinet, EtherNet/IP™, EtherCAT and other protocols. By using KEYENCE network communication units, you simplify the integration of sensor data into the machine control system and can reduce the wiring effort. By comparing multiple processes in parallel, it is possible to detect potential problems before they occur.

    6. Sensor Technology

      Sensor Technology

      A NEW ERA IN DRIVE TECHNOLOGY: Capture your drivetrain data with utmost precision. Sensor integration redefined: R+W’s coupling solution enables precise acquisition of torque, speed, and temperature directly in the drivetrain. In response to rising demands driven by digitalization, automation, and IIoT, the iFlange system offers a future-ready solution already available today. Wireless data transmission via Bluetooth to gateway or app is combined with modular coupling configurations and a comprehensive range of accessories.

    7. Sensorgehäuse apraSens

      Sensorgehäuse apraSens

      Immer mehr Technologien nutzen die Intelligenz von Sensoren. Die maschinellen Sinnesorgane sorgen nicht nur dafür, dass unser Alltag smart wird, sondern heben auch industrielle Prozesse auf ein neues Effizienzlevel. Jedoch stößt auch der leistungsfähigste Sensor an Grenzen, wenn er äußeren Störungsfaktoren schutzlos ausgesetzt ist. Durchdachte Gehäuse erhalten die Funktionalität der Sensoren und stellen so sicher, dass sich die Investition in IIoT-Technologie für Unternehmen auf dem Weg in die Industrie 4.0 nicht nur kurzfristig, sondern auch langfristig lohnt.

    8. Sensorless standstill monitor UG 9146

      Sensorless standstill monitor UG 9146

      Sensorless standstill monitoring The sensorless standstill monitor UG 9146 from the VARIMETER series is used for sensorless monitoring of electric motors for standstill. This means sensors such as encoders or proximity switches are not required. The standstill monitor measures the induced voltage of the coasting motor. If the induced voltage approaches 0, this means motor standstill for the device and the output relay is activated. With a width of only 22.5 mm, the UG 9146 can be installed in switch cabinets with limited space as well as in retrofit applications. - Simple retrofitting as sensorless - No external initiators required - Space-saving in the switch cabinet due to a width of only 22.5 mm

    9. Sensors

      Sensors

      Sensors provide important information for almost all areas of industrial automation, such as digital and analog signals on positions, currents, flow rates, temperatures, distances, and angles. As a co-founder and pioneer of modern sensor technology, we offer the appropriate range of products for these purposes. You can choose from more than 5,000 proximity switches, photoelectric, flow and position sensors to implement your made-to-measure solutions. Product groups - Sensors and metrology (innovative technologies) - Control, automation and robot technology (innovative technologies) - Production technology methods (innovative technologies) - Materials handling technology, materials flow, logistics (innovative technologies)