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  • Vibronic Point level detection Liquiphant FTL31 Point level switch for liquids in compact design with stainless steel housing Liquiphant FTL31 is a point level switch for liquids. The FTL31 is designed for industrial applications in all industries, mainly the machinery industry. The Liquiphant is used for overfill prevention or pump dry-run protection in cleaning and filter systems as well as in cooling and lubrication vessels. - Smallest vibronic sensor in the market - Continuous self-monitoring - Reliable switching independent of media properties - No calibration or adjustment - Plug & play Benefits:
    • Designed according to highest requirements to quality and environmental sustainability. The self-monitoring Liquiphant offers safe switching also in case of power supply loss
    • Independent of changing media properties an accurate switching point is offered
    • A real plug & play sensor is offered without any need for adjustment even with changing media. Measurement is unaffected by conductivity, build-up, turbulence, flows or air bubbles
    • No calibration is required, no specific know-how or tools (e.g. software) necessary
    • Robust design made of stainless steel (316L) assures highest durability
    • A modular design offers different process temperatures and the widest variety of process connections and accessories in the market to fit every application
    • No mechanically moved parts, free of maintenance

  • Soliphant FTM50 is a robust point level switch for use in silos containing fine-grained or powdery solids even with a low bulk density. Suitable for a wide range of applications with international certificates for use in dust or gas hazardous areas. Available with polished fork and stainless steel housing with Tri-Clamp or with aluminum housing and coated fork. Maintenance-free device for use in typical applications like: cereals, flour, cocoa, sugar, animal feed, dye powder, chalk.

    Features and specifications :

     
    • Process connections: Threads, flanges and hygienic connection (Tri-Clamp)
    • Temperature: -50 to +280°C (-60 to +540°F)
    • Pressure: -1 to +25bar (-14.5 to +360psi)
    • Sensor length: 145mm, 200mm
    • Sensor material: 316L (3,2µm, 0,8µm, PTFE coated, ETFE coated)
    • International explosion protection certificates
  • Soliphant FTM51 is a robust point level switch for use in silos containing fine-grained or powdery solids even with a low bulk density. Suitable for a wide range of applications with international certificates for use in dust or gas hazardous areas. Available with polished fork and stainless steel housing with Tri-Clamp or with aluminum housing and coated fork. Maintenance-free device for use in typical applications like: cereals, flour, cocoa, sugar, animal feed, dye powder, chalk. Features:
    • SIL2 in accordance with IEC 61508
    • No mechanically moved parts, free of maintenance
    • Measurement not affected by build-up or external vibration
    • Various electronic inserts: e.g. NAMUR, relay, thyristor and PFM-signal outputs for optimum alignment with the plant control system
    • Build-up and abrasion display selectable, density setting and switching delay selectable
    • Choice of coated or polished sensor
    • Build-up and corrosion detection

  • Soliphant FTM52 is a robust point level switch for use in silos containing fine-grained or powdery solids even with a low bulk density. Suitable for a wide range of applications with international certificates for use in dust or gas hazardous areas. Available with polished fork and stainless steel housing with Tri-Clamp or with aluminum housing and coated fork. Maintenance-free device for use in typical applications like: cereals, flour, cocoa, sugar, animal feed, dye powder, chalk.

    Features and specifications :

     
    • Process connections: Threads, flanges and hygienic connection (Tri-Clamp)
    • Temperature: -40 to +80°C (-40 to +170°F)
    • Pressure: -1 to +2bar (-14.5 to +30psi)
    • Sensor length: 750mm to 20,000mm
    • Sensor material: 316L (3,2µm, 0,8µm, PTFE coated)
    • International explosion protection certificates
     
  • OPTISWITCH 4000 series is a level sensor that uses a vibrating fork for detecting level. It is designed for use in all liquids. It is not affected by foam and external vibration. It is also unaffected by variations of product properties such as εr, viscosity etc.d

    OPTISWITCH 4000 - The economical version

    • Simple and robust measuring system, virtually unaffected by the chemical and physical properties of liquids
    • Easily mountable in pipelines from DN 25, vessels and tanks
    • Outputs: contactless electronic switch or transistor

    Features:

    • Output options: relay, transistor, NAMUR, contactless electronic switch and 2-wire
    • 5000 series: Plastic, aluminium or stainless steel housings
    • LED signal lamp for indicating the switching condition (with plastic housing only)
    • 5000 series: Large choice of materials for wetted parts. This includes 316L, Hastelloy C4, enamel, ECTFE and PFA.
    • 5000 series. Probe length: 53...6000 mm / 2...236"
    • Repeatability: +/-2 mm
    • Thread connections G/NPT ¾; flange sizes from DN25 PN40; Triclamp 1" or 2" and other hygienic fittings

  • OPTISWITCH 5000 series is a level sensor that uses a vibrating fork for detecting level. It is designed for use in all liquids. It is not affected by foam and external vibration. It is also unaffected by variations of product properties such as εr, viscosity etc.d

    Features:

    • Output options: relay, transistor, NAMUR, contactless electronic switch and 2-wire
    • 5000 series: Plastic, aluminium or stainless steel housings
    • LED signal lamp for indicating the switching condition (with plastic housing only)
    • 5000 series: Large choice of materials for wetted parts. This includes 316L, Hastelloy C4, enamel, ECTFE and PFA.
    • 5000 series. Probe length: 53...6000 mm / 2...236"
    • Repeatability: +/-2 mm
    • Thread connections G/NPT ¾; flange sizes from DN25 PN40; Triclamp 1" or 2" and other hygienic fittings

    OPTISWITCH 5100, 5150 - The compact version

    • Standard or HT version, large array of process fittings, housings and electronics
    • Outputs: relay, transistor, 2wire, NAMUR or contactless electronic switch
    • Process connection option for high temperature up to 250°C / 482°F
    • With all relevant approvals (ATEX etc.)
    • Version OPTISWITCH 5150 with polished tuning fork e.g. for food processing

    OPTISWITCH 5200, 5250 - The special version with probe extension

    • Standard or HT version, large array of process fittings, housings and electronics
    • Probe length up to 6000 mm / 236"
    • Outputs: relay, transistor, 2wire, NAMUR or contactless electronic switch
    • Process connection option for high temperature up to 250°C / 482°F
    • With all relevant approvals (ATEX etc.)
    • Version OPTISWITCH 5150 with polished tuning fork e.g. for food processing
  • SITRANS LVS200 is a vibrating point level switch for high or low levels of bulk solids. The standard LVS200 detects high, low or demand levels of dry bulk solids in bins, silos or hoppers. The liquid/solid interface version can also detect settled solids within liquids or solids within confined spaces such as feed pipes. It is designed to ignore liquids in order to detect the interface between a solid and a liquid. A pipe extension version is available with either the standard or liquid/solid interface electronics and fork, separated by a customer supplied 1" pipe. SITRANS LVS200 has an optional 4 to 20 mA output for monitoring buildup on the fork to determine when preventative maintenance should be performed in sticky applications. The LVS200 has a compact design and can be top, side or angle mounted. The vibrating fork design ensures the tines are kept clean. The unique design of the fork and crystal assembly eliminates false high level readings even if tines become damaged. A signal from the electronic circuit excites a crystal in the probe causing the fork to vibrate. If the fork is covered by material, the change in vibration is detected by the electronic circuitry which causes the relay to change state after a one second delay. When the fork is free from material pressure, full vibration resumes and the relay reverts to its normal condition.

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