Ultrasonic Coating Thickness Gauge — Non-Metallic Substrates, Handheld, Non-Destructive
Measure coatings on resins, polymers, plastics, concrete, and mortar instantly and non-destructively — surfaces where eddy-current and magnetic-induction gauges cannot work. Calibrate against known thicknesses, place the probe on the coating, and read the result on the LCD.
Ultrasonic Measurement: Reads coating thickness on non-metallic substrates, and polymer or resin coatings on thin metallic substrates
Non-Destructive: Replaces cross-sectional analysis and scratch testing — no sample damage, no lab turnaround
Portable: Battery operated with statistics functions and Hi/Lo alarms, for laboratory-quality measurement anywhere
Ferrous Coating Thickness Gauge — Magnetic Induction, Integrated Printer - no longer in production
The LE200C measured non-magnetic coatings on iron and steel substrates, with on-board statistics and a built-in thermal printer. It has been replaced by the L500 dual-mode coating thickness gauge.
Ferrous substrates: Non-magnetic coatings on iron and steel
Magnetic induction method: Instant, non-destructive readings
Integrated thermal printer: Statistics printed on the spot
Ferrous Coating Thickness Gauge — Magnetic Induction, Integrated Printer - no longer in production
The LE200 measured non-magnetic coatings on iron and steel substrates, with on-board statistics and a built-in thermal printer. It has been replaced by the L500 dual-mode coating thickness gauge.
Ferrous substrates: Non-magnetic coatings on iron and steel
Magnetic induction method: Instant, non-destructive readings
Integrated thermal printer: Statistics printed on the spot
Dual-Mode Coating Thickness Gauge — Ferrous and Non-Ferrous, Integrated Printer - no longer in production
The LZ200C measured coatings on both ferrous and non-ferrous substrates in one instrument, with double calibration memory and a built-in thermal printer. It has been replaced by the L500 dual-mode coating thickness gauge.
Dual mode: Ferrous and non-ferrous substrates in one unit
Two methods: Magnetic induction and eddy current
Double calibration memory: Four parameter sets per mode
Integrated thermal printer: Statistics printed on the spot
Dual-Mode Coating Thickness Gauge — Ferrous and Non-Ferrous, RS-232C, Integrated Printer - no longer in production
The LZ200J measured coatings on both ferrous and non-ferrous substrates in one instrument, with double calibration memory, RS-232C data output, and a built-in thermal printer. It has been replaced by the L500 dual-mode coating thickness gauge.
Dual mode: Ferrous and non-ferrous substrates in one unit
Two methods: Magnetic induction and eddy current
RS-232C output: Data transfer to computer
Double calibration memory: Four parameter sets per mode
Non-Ferrous Coating Thickness Gauge — Eddy Current, Integrated Printer - no longer in production
The LH200 measured insulating coatings on aluminum, copper, brass, and other non-ferrous metals, with on-board statistics and a built-in thermal printer. It has been replaced by the L500 dual-mode coating thickness gauge.
Non-ferrous substrates: Insulating coatings on non-magnetic metals
Eddy current method: Instant, non-destructive readings
Integrated thermal printer: Statistics printed on the spot