FMCW Radar Solid Level Transmitter TLR1000B5

TLR1000B5

TLR1000B5 FMCW radar solid level transmitter supports non-contact level measurement in suitable powder, granule and bulk solid storage applications. It is designed for silos, hoppers, bunkers and storage vessels where material behavior, dust, buildup and mounting geometry affect measurement. As a result, it helps users monitor bulk material inventory and process storage levels after correct application review.

  • Non-contact solid monitoring
  • Suitable for silos and hoppers
  • FMCW radar technology
  • Bulk material level support
  • Application-based selection

Material behavior review

Silo height selection

Mounting position guidance

Beam path check

Installation support

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  • FMCW radar solid level transmitter
  • Non-contact level measurement
  • Suitable for powders, granules and bulk solids
  • Applicable for silos, hoppers and storage vessels
  • Useful for bulk material inventory monitoring
  • Supports continuous level indication
  • Helps reduce mechanical wear compared with contact switches
  • Suitable for dusty solid applications after review
  • Mounting position should be selected carefully
  • Silo geometry and beam path should be checked before installation
  • Application review needed for buildup, dust and uneven material surface
  • Suitable for cement, fly ash, coal and powder applications subject to selection
  • Silo level monitoring
  • Hopper level measurement
  • Powder storage monitoring
  • Bulk material inventory control
  • Cement silo level measurement
  • Fly ash silo monitoring
  • Coal bunker monitoring
  • Granule level measurement
  • Mineral storage monitoring
  • Industrial solid storage applications
  • Model: TLR1000B5
  • Product Type: FMCW Radar Solid Level Transmitter
  • Measurement Principle: FMCW Radar
  • Application: Solid, powder, granule and bulk material level monitoring
  • Measurement Type: Continuous non-contact level measurement
  • Typical Vessels: Silos, hoppers, bunkers and storage vessels
  • Mounting Style: Top-mounted non-contact radar arrangement
  • Output: Confirm final configuration from product selection table before publishing
  • Protection: Confirm final configuration from product selection table before publishing
  • Range / Accuracy: Confirm final selected variant before publishing detailed values
  • Important Selection Factors: Dust, buildup, material angle, silo height, nozzle, beam path and mounting position

    What Customers Say About Us

    Trusted Engineering Support

    The team provided clear technical guidance and practical solutions. Execution was smooth and well coordinated throughout.

    Mr. Vivek NairGeneral Manager – Operations, Cement Industry
    Dependable Technical Partner

    Their approach was systematic and aligned with our plant needs. Overall experience with product and service has been positive.

    Ms. Kavita RaoSenior Manager – Maintenance, Steel Sector
    Application-Focused Solutions

    They understood our process conditions before recommending equipment. Support during installation was handled professionally.

    Mr. Rohan MehtaProject Lead – Power Plant
    Consistent Service Delivery

    Product performance has been stable in regular operations. The support team responds in a timely manner.

    Mr. Anil DeshmukhInstrumentation Head, Process Manufacturing

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    Frequently Asked Questions

    TLR1000B5 is used for non-contact solid level monitoring in silos, hoppers, bunkers and bulk material storage vessels.
    Yes. It can support powder applications after checking dust, buildup, silo height and material surface behavior.
    Yes, it can be considered for cement silo monitoring after reviewing silo geometry, dust level, measuring range and mounting position.
    Users should check material type, silo height, dust, buildup, material angle, nozzle size, mounting location, output requirement and installation access.
    Solid material surfaces are often uneven, and internal structures can create false echoes. Correct mounting improves signal quality and measurement reliability.

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