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Chaltron Systems, Inc. is proud to represent TOSHIBA INTERNATIONAL CORPORATION (TIC) Instrumentation division serving the Industrial markets in Ohio and Kentucky.  Headquartered in Houston, Texas, TIC provides application solutions to a wide range of industries including general industrial, oil and gas, utilities, data centers, renewable;s, HVAC, water/wastewater, and mining.  TOSHIBA has been manufacturing top of the line Magnetic Flow Meters that carry a 10 year warranty and are backed by quality manufacturing practices derived from 50 years of industry experience.

TOSHIBA offers a wide range of meter sizes from 1/2" up to ​120" and a variety of meter types to best fit the application as well a density analyzer.

  • GF Series - Premium Value

  • LF Series - Mount Anywhere

  • Sanitary - Gap-Free 

  • Capacitance Severe Service

  • Microwave Density Analyzer

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The GF630PV Magnetic Flow Meter Premium Value Series is one of the greatest values in the magmeter market. It is economically-priced, yet loaded with features not found in many top-of-the-line conventional magmeters. The meter is built with Toshiba's reputation for high quality, and the detector has a 40-year MTBF rating using military specification (MIL-HDK-217F) standards.

What good is saving a few extra dollars on a low quality stripped down magmeter if the add-on cost and ownership cost can actually add thousands of dollars to the original price of the meter? The GF630PV is available in sizes from 1/2 to 24 inches, and liner materials are available in polyurethane, teflon, and rubber.

  • Body: Carbon Steel

  • Linings: PU, FEP or PTFE

  • Converter Mounting : Integral or Remote

  • Electrodes:  316 SS or Hastelloy C

  • ISO Lay Length

  • cFMus (Class 1, Div. 2)

  • NSF Certification with PU Lining

  • Sizes:  1/2" - 18" Polyurethane, Up to 24" Teflon Lining

  • Piping Requirements: 5 Diameters upstream from the flange, 0 Diameter downstream

The LF414 Mount-Anywhere™ Gap and Crevice Free Wafer Style Magmeter is an excellent choice for high slurry concentrations, abrasive, adhesive, or corrosive applications. Toshiba's exclusive Float-N-Place™ ceramic liner has been specially designed to operate in severe slurry applications where a continuous slurry exposure could damage non-floating ceramic liners. Toshiba's ceramic liner is specially mounted "inside" the flow tube and does not protrude to the outside of the body like conventional ceramic magmeters. This exclusive design virtually eliminates the possibility of breakage due to accidental bumping of the meter, rapid temperature changes, or over tightening of flanges. Compare Toshiba's Float-N-Place™ thermal shock specifications of 302°F change in just 0.5 seconds to others that have stationary locked-in-place ceramic liners.

  • Body: 304 Stainless Steel 1" - 4"

  • Linings: Ceramic 1/2" - 4", Teflon PFA 6" & 8"

  • Wafer Style Mounting

  • Converter Mounting : Integral or Remote

  • Electrodes:  Hastelloy C

  • Grounding Rings:  316 SS

  • ISO Lay Length

  • cFMus (Class 1, Div. 2), CE Certified

  • Sizes:  1/2", 1", 1.5", 2", 4", 6", 8"

  • Piping Requirements: 1 Diameter upstream from the flange, 0 Diameter downstream

Toshiba's LF654 Mount-Anywhere Magmeter has saved thousands of customers thousands of dollars in installation costs by reducing or eliminating the cost of wiring, fence, labor, pipe, conduit, and space. The Mount-Anywhere characterized coil technology allows flow measurement to better than 0.5% (down to 0.2%) of rate accuracy with only one diameter from the flange of an elbow, valve in line sizes up to 18".

The Mount-Anywhere Magmeter is the world's first and only true-flow, profile-immune magmeter. There is no need to re-pipe the process or to design long straight runs ahead of time to ensure the magmeter will meet its published accuracy specification. The Mount-Anywhere Magmeter is ideal for use as a universal magmeter with its ability to be installed virtually anywhere in the plant. This model is the successor of LF434/LF620, LF434/LF622.

  • Body: Carbon Steel

  • Linings: PU, PFA

  • Converter Mounting : Integral or Remote

  • Electrodes:  316L SS, Ti, Pt-Ir, or Hastelloy C

  • cFMus (Class 1, Div. 2), CE Certified

  • NSF Certification with PU Lining

  • Sizes:  1/2" - 18"

  • Piping Requirements: 1 Diameters upstream from the flange, 0 Diameter downstream

The LF664 uses Faraday's Law of Electromagnetic Induction to measure the process flow. The device consists of two units; the first is a detector, through which the fluid to be measured flows and in which low level signals proportional to flow rates are obtained. The second unit is a converter which supplies excitation current to the detector, amplifies the signals from the detector, and processes and converts the signals into the 4 to 20 mA DC current signal. Model LF664 is available as a remote or integraly-mounted unit, and ranges in sizes from 500 to 1,950 mm (20 to 78").

  • Body: Carbon Steel

  • Linings: Natural or Hard Rubber

  • Converter Mounting : Remote

  • Electrodes:  316L SS or Hastelloy C

  • Grounding Rings:  304 SS, 316 SS, 316L SS

  • cFMus (Class 1, Div. 2), CE Certified

  • NSF Certification with Hard Rubber Liner

  • Sizes:  20" - 78" (Larger Available with LF150, 80" - 120")

  • Piping Requirements: 20" - 24" 1 Diameter upstream from the flange, 0 Diameter downstream, Meters Larger than 24" require 3 Diameters upstream, 0 downstream

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The LF620/LF622 converters are available with HART protocol and as an option with Modbus and Profibus.

User-friendly design provides ease of installation and operation. Wiring connection access of the LF620/LF622 converter is via the front panel of the unit. The LCD display rotates 90,180, and 270 degrees to fit every installation condition.

All converters are equipped with infrared switches. There is no need to open the cover when setting!

  • Infrared Switch Technology

  • Program without opening the cover

  • Simple 3 Button Programming

  • IP67 Water Tight

  • Electrically Rotate the Display 

Most conventional sanitary magmeters are made from three or more pieces before it connects to your process piping. The more parts to a magnetic flow meter detector, the greater the chance for bacteria to hide and grow. Toshiba's LF494 Gap-Free™ sanitary magmeter is designed as a single body piece, eliminating the possibility of liquids solidifying in cracks or gaps in the unit. With the exception of electrodes from the input flow process connector to the outlet flow connector, there is only the Gap-Free™ detector body. The totally gap-free design eliminates gaps, cracks, crevices, flanges, screws, gaskets, matching body adapters, and any other part that would allow bacteria to collect. The unibody design not only prevents trapping of particles but also provides for fast and easy cleaning on both the inside and outside of the meter.

Toshiba's Gap-Free™ Magmeter is also available in a sanitary capacitance, electrode-less model for the ultimate in total-gap and crevice-free design.

  • Body: 304 SS, SUS 304 TriClamp & Ferrule Included

  • Linings: PFA Teflon Liner

  • Converter Mounting : Integral or Remote

  • Electrodes:  SUS 316L SS, 3-A Certified

  • cFMus (Class 1, Div. 2), CE Certified, IP67 (NEMA 4)

  • NSF Certification with Hard Rubber Liner

  • Sizes:  1" - 4"

  • Piping Requirements: 1 Diameter upstream from the flange, 0 Diameter downstream

The LF516 Severe Service Magmeter is unquestionably one of the toughest and best performing industrial magmeters in the world today. Its extraordinarily tough performance specifications make the LF516 the pefect choice for the harshest industrial applications. Its exclusive electrodeless Float-N-Place™ alumina ceramic liner gives it the highest abrasion, corrosion, adhesion, and thermal shock performance specifications on the market.

The LF516 has one of the lowest conductivity magmeter specifications on the market. The LF516 has an ultra low conductivity specification of 0.01µS/cm on flows up to 9.84 ft/s, allowing it to work in applications where other low conductivity meters would fail.

Toshiba's ceramic liner is specially mounted "inside" the flow tube (Float-N-Place™) and does not protrude to the outside of the body like conventional ceramic magmeters. This exclusive float-inside-the-body design virtually eliminates any possibility of breakage due to accidental bumping of the meter or rapid temperature changes since the ceramic liner is not constrained by flanges. Compare Toshiba's Float-N-Place™ Thermal shock specifications of 302°F change in just 0.5 seconds to other stationary locked-in-place liners.

The Toshiba LQ500 Microwave Analyzer measurement technique is based on the way solids affect the propagation of microwaves compared to all other ingredients in the pipe, and thus, the unit is solely specific to the percent solids in the pipe.

The LQ500 has a linear output and is optimized to measure true percent total solids in your process fluid. Accordingly, an easily-repeatable measurement and excellent closed-loop control can be implemented.

The LQ500's primary use is to increase plant efficiency, improve product quality, and reduce labor and laboratory costs. It is also used for replacing high maintenance or poor performing meters such as optical, ultrasonic, nuclear, blades, coriolis, etc.

The LQ500 can be used in industries such as water/wastewater, pulp & paper, food & beverage, mining, aggregate, and pharmaceutical.

  • Body: SCS14A cast (Equivalent to 316L SS)

  • Linings: Polysulfone Window with Fluoric Rubber Sealant, Teflon liner available

  • Converter Mounting : Remote

  • Microwave phase shift technology

  • UL/CUL Class I, Division 2, Groups A, B, C and D hazardous locations (only detector) Converter is suitable for use in non-hazardous location only

  • Current Output ( 4-20 mA) proportional to %TS plus HART communications.

  • Range: 0-1.5 to 0-50% or more Total solids (TS)

  • Repeatability : +/- 0.01% TS

  • Resolution: 0.001% TS

  • Sizes:  2" - 12"

  • Piping Requirements: 0 Diameter upstream from the flange, 0 Diameter downstream

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The brand and product names contained within this document are trademarks or registered trademarks of their respective holders.

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