Full-Bore Measurement
The meter body provides an obstruction-free flow path without moving measurement components in the liquid stream.
The EMAG with its traditional flow tube design provides an economical alternative for those applications where some piping straight run or flow profiling is available.
Or talk to someone right away. Dial (888) 556-3913
The Cadillac® EMAG Magnetic Flow Meter has been acknowledged as the industry standard for accuracy and electronics innovation.
The Cadillac® EMAG magnetic flow meter is capable of measuring liquids of all types and consistency while providing an obstruction free flow path. While the EMAG has a traditional flow tube/coil design the EMAG shares the same electronics platform as the CMAG. This provides the EMAG with the same electronics capabilities that enhance the CMAG’s performance and thus enhances the EMAG capabilities in a similar fashion. The result is a reduced flow profiling or piping straight run requirement in comparison to meters with the same flow tube design eliminating more than half of the piping straight run in comparison.
The EMAG with its traditional flow tube design provides an economical alternative for those applications where some piping straight run or flow profiling is available. With a common electronics platform shared with the CMAG, the EMAG has all the electronics features and options available as standard and an industry standard accuracy of +/- 0.50% of rate or reading. In any conductive liquid application the Cadillac® magnetic flow meter is the number one technology choice due to Cadillac® ’s accuracy, linearity, reliability and rangeability.
With improved flow profiling requirements over traditional flow meters the EMAG makes an excellent choice for both Hot and Chilled water energy applications, where some piping straight run is available.The EMAG electronics capability allows retrofit areas with some flow profiling, without affecting the measurement accuracy. In addition, the EMAG has a turn-down of 100:1, which is suited for many applications with modulating flow rates that remain above 1 ft/sec.
With its improved flow profiling or piping straight run requirement the EMAG makes an optimal choice for both water and wastewater applications. With line sizes common above 16 inches the EMAG allows new designs to eliminate long piping straight runs in order to get an accurate and reliable flow measurement. This helps reduce the footprint of a building or other areas where the flow meters would be mounted. With increased wetted material selections most Water, including potable (NSF/ANSI 61 approvals), applications have also looked to magnetic flow meters as the preferred choice, especially in applications requiring analog (rate) or pulse (totalized) outputs.
Explore the EMAG’s operating principle, applications, flow ranges, materials, electronics, dimensions, model structure and installation guidance for conductive-liquid measurement.
The Cadillac® EMAG is a rate and totalizing magnetic flow meter designed to measure conductive liquids through an unobstructed, full-bore flow path. With no moving parts in the measured stream, it provides an alternative to mechanical and insertion-style flow technologies in suitable water, wastewater and industrial applications.
The EMAG combines a traditional flow-tube and coil arrangement with the same electronics platform used by the Cadillac CMAG. It is positioned as an economical magnetic-meter option for installations where some piping straight run or flow profiling is available.
The meter body provides an obstruction-free flow path without moving measurement components in the liquid stream.
Published performance is ±0.50% of the reading when the meter is properly selected and installed with suitable flow profiling.
A typical 100:1 turndown supports systems with changing flow demands when the meter is correctly sized for the application.
Integral or remote electronics can provide indication, totalization and configured outputs for monitoring or control systems.
Selection requirement: Magnetic flow measurement requires a conductive liquid and a full pipe. Fluid properties, operating range, materials, temperature, pressure and installation conditions must be reviewed before ordering.
The EMAG is intended for conductive-liquid services across energy, water and industrial systems. Final suitability depends on the liquid, expected flow range, process conditions, wetted materials and available piping configuration.
Application review: Confirm liquid conductivity, chemical compatibility, minimum and maximum flow, process temperature, pressure, grounding and the available piping arrangement before final meter selection.
The EMAG operates according to Faraday’s law of electromagnetic induction. When a conductor moves through a magnetic field, it produces a voltage proportional to its velocity. Inside the EMAG, the conductive liquid acts as that moving conductor.
By measuring the induced voltage and applying the calibrated meter factor, the electronics calculate the liquid velocity and convert it into volumetric flow.
Encapsulated coils generate a magnetic field across the full-bore flow tube.
Conductive liquid moving through the field generates a voltage proportional to its velocity.
A pair of electrodes detects the voltage produced across the flowing liquid.
The converter combines measured velocity, flow-tube area and the meter-specific calibration factor.
The calculated flow can be displayed, totalized and transmitted through configured outputs.
Each meter’s K-factor is documented during a NIST-traceable flow test completed before shipment. This factor relates the detected voltage and liquid velocity to the meter’s calculated volumetric flow.
Published EMAG information specifies a minimum liquid conductivity of 3 µS/cm. Liquid compatibility, grounding, empty-pipe conditions and the actual process environment must also be considered.
The following specifications consolidate the current EMAG product information and the published technical brochure. Final materials, electronics, approvals and performance conditions must be confirmed for the ordered configuration.
| Characteristic | Published Specification |
|---|---|
| Measurement principle | Electromagnetic flow measurement based on Faraday’s law |
| Flow path | Full-bore body with encapsulated and rigidly retained coils; no moving measurement parts |
| Published accuracy | ±0.50% of the reading with proper meter sizing, flow profiling and piping straight run |
| Typical turndown | 100:1 or better when correctly sized for the operating range |
| Minimum conductivity | 3.0 µS/cm |
| Published meter sizes | Model structure lists ½ inch through 12 inches; consult Cadillac Meter for larger sizes and current availability |
| Electronics | Integral or remote converter with instantaneous rate, indication and totalization |
| Analog output | 4–20 mA |
| Pulse output | Conditioned pulse; published brochure lists an open-collector output rated to 30 VDC and 200 mA maximum |
| Communications | Modbus RTU or Profibus PA listed as available options |
| Power supply | 100–240 VAC, 50/60 Hz; optional 24 VDC |
| Power consumption | Current product page lists approximately 19 W; confirm the requirement for the selected converter |
| Diagnostics | Empty-pipe detection with alarm or digital-contact capability |
| Calibration | NIST-traceable flow test and calibration certificate |
On smaller screens, swipe horizontally to view the complete table.
Specification control: EMAG documents have been issued at different dates. The quotation and project submittal should be treated as the controlling source for the final meter size, materials, electronics, power consumption, communications and approvals.
The published EMAG brochure lists the following minimum and maximum volumetric spans for the 4–20 mA output. These figures support preliminary sizing only. Final meter selection must be based on the actual minimum, normal and maximum operating flow.
| Nominal Meter Size | Published Minimum Span | Published Maximum Span |
|---|---|---|
| ½ inch | 0–0.25 GPM | 0–25 GPM |
| 1 inch | 0–0.75 GPM | 0–75 GPM |
| 1¼ inches | 0–1.25 GPM | 0–125 GPM |
| 1½ inches | 0–1.75 GPM | 0–175 GPM |
| 2 inches | 0–3 GPM | 0–300 GPM |
| 2½ inches | 0–4.75 GPM | 0–475 GPM |
| 3 inches | 0–6.5 GPM | 0–650 GPM |
| 4 inches | 0–10 GPM | 0–1,000 GPM |
| 5 inches | 0–17.5 GPM | 0–1,750 GPM |
| 6 inches | 0–25 GPM | 0–2,500 GPM |
| 8 inches | 0–50 GPM | 0–5,000 GPM |
| 10 inches | 0–70 GPM | 0–7,000 GPM |
| 12 inches | 0–100 GPM | 0–10,000 GPM |
| 14 inches | 0–120 GPM | 0–12,000 GPM |
| 16 inches | 0–160 GPM | 0–16,000 GPM |
| 18 inches | 0–200 GPM | 0–20,000 GPM |
On smaller screens, swipe horizontally to view the complete table. Consult Cadillac Meter for current availability above 12 inches.
Published for meter sizes from ½ inch through 16 inches.
Published for meter sizes from ½ inch through 10 inches.
Published for larger meter sizes from 12 through 24 inches.
Published choices include 316L stainless steel and Hastelloy C. Confirm compatibility with the measured liquid.
Published choices include no grounding ring, 316 stainless steel, Hastelloy C or another material selected for the application.
Material selection: Temperature range alone does not establish compatibility. Confirm the liquid chemistry, concentration, temperature, pressure and expected service conditions before choosing the liner, electrodes and grounding-ring material.
Cadillac Meter’s April 2024 comparison presents a general EMAG arrangement of 3 nominal pipe diameters upstream and 1 diameter downstream for the published ±0.50% accuracy.
This is materially shorter than the 10-diameter upstream and 5-diameter downstream arrangement used for the traditional magnetic flow-meter comparison in the same document.
Conventional straight-run arrangement shown in the 2024 comparison graphic.
D = nominal flow-meter diameter.
General straight-run arrangement presented for the EMAG in the April 2024 comparison.
Published as general guidance for ±0.50% accuracy.
The 3D-upstream and 1D-downstream arrangement is general published guidance. It does not replace a review of the actual piping system. Confirm the required straight run during meter selection whenever valves, elbows, tees, expanders, reducers, pumps, multiple disturbances or non-ideal flow profiles are located near the meter.
Select an orientation and location where the meter tube remains completely filled during measurement.
Identify valves, bends, tees, transitions and pumps located upstream or downstream of the meter.
Confirm the piping material, electrical grounding arrangement and whether grounding rings are required.
Allow suitable clearance for the converter, wiring, inspection and future maintenance access.
The current EMAG product page publishes the following dimensions and weights for ANSI Class 150 configurations. Confirm certified dimensions, flange drilling and final shipping weight for the exact ordered meter before pipe fabrication or installation.
| Meter Size | L1 Face-to-Face | L2 Centerline-to-Top | L3 Top-to-Bottom | Published Weight |
|---|---|---|---|---|
| ½ inch | 7.9 in | 8.1 in | 10.0 in | 20 lb |
| 1 inch | 7.9 in | 8.5 in | 10.9 in | 22 lb |
| 1¼ inches | 7.9 in | 8.7 in | 11.3 in | 25 lb |
| 1½ inches | 7.9 in | 8.9 in | 11.6 in | 28 lb |
| 2 inches | 7.9 in | 9.3 in | 12.3 in | 32 lb |
| 2½ inches | 7.9 in | 9.8 in | 13.2 in | 40 lb |
| 3 inches | 7.9 in | 10.0 in | 13.6 in | 47 lb |
| 4 inches | 9.8 in | 10.4 in | 14.5 in | 61 lb |
| 5 inches | 9.8 in | 11.2 in | 16.1 in | 80 lb |
| 6 inches | 11.8 in | 11.8 in | 17.3 in | 106 lb |
| 8 inches | 13.8 in | 12.8 in | 19.3 in | 145 lb |
| 10 inches | 17.7 in | 13.5 in | 21.4 in | 205 lb |
| 12 inches | 19.7 in | 14.5 in | 23.2 in | 318 lb |
| 14 inches | 21.7 in | 15.4 in | 25.0 in | 379 lb |
| 16 inches | 23.6 in | 16.5 in | 27.5 in | 465 lb |
| 18 inches | 23.6 in | 17.4 in | 29.6 in | 503 lb |
| 20 inches | 23.6 in | 18.3 in | 31.7 in | 590 lb |
| 24 inches | 23.6 in | 20.5 in | 26.2 in | 897 lb |
On smaller screens, swipe horizontally to view the complete table.
Fabrication warning: Do not use this summary table as a certified dimensional drawing. Obtain the approved project submittal for the exact meter size, converter arrangement, liner, flange configuration and selected accessories before finalising pipework or structural supports.
The published EMAG model structure identifies the meter size, converter arrangement, flange configuration, electrode material, liner, grounding-ring material and selected approvals. Use these codes as a configuration guide rather than a substitute for a current quotation.
| Code Group | Code | Published Description |
|---|---|---|
| Meter series | EMAG | Cadillac magnetic flow meter |
| Meter size | A | ½ inch |
| B | 1 inch | |
| C | 1¼ inches | |
| D | 1½ inches | |
| E | 2 inches | |
| F | 2½ inches | |
| G | 3 inches | |
| H | 4 inches | |
| I | 5 inches | |
| J | 6 inches | |
| K | 8 inches | |
| L | 10 inches | |
| M | 12 inches; consult Cadillac Meter for larger sizes | |
| Converter | II RC |
Integral converter with indicator/totalizer Remote converter |
| Meter body | F-150 | Flanged body, ANSI Class 150 |
| Electrode material | S H |
316L stainless steel Hastelloy C |
| Liner material | U F P |
Polyurethane FEP PTFE |
| Grounding ring | W S H X |
Without grounding rings 316 stainless steel Hastelloy C Other specified material |
| Approval option | FM | FM approval where specified and currently available |
On smaller screens, swipe horizontally to view the complete table.
Minimum, normal and maximum flow rate with the required engineering units.
Liquid description, conductivity, operating temperature and pressure.
Pipe size, flange standard, available straight run and nearby flow disturbances.
Required liner, electrode and grounding-ring material compatibility.
Integral or remote electronics and the required interconnecting cable length.
Power supply, analog and pulse outputs, communications and required approvals.
Ordering control: Model codes and available options may change. Cadillac Meter should confirm the complete model number and current availability before an order is placed.
Download the complete technical guide or contact Cadillac Meter with your liquid, flow range, pipe size, process conditions, material requirements and available straight run.