High-Precision Aice Tech 1 Inch Magmeter for Accurate Measurements

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Customization: Available
After-sales Service: 1 Year
Warranty: 1 Year
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Number of Employees
16
Year of Establishment
2020-06-16
  • High-Precision Aice Tech 1 Inch Magmeter for Accurate Measurements
  • High-Precision Aice Tech 1 Inch Magmeter for Accurate Measurements
  • High-Precision Aice Tech 1 Inch Magmeter for Accurate Measurements
  • High-Precision Aice Tech 1 Inch Magmeter for Accurate Measurements
  • High-Precision Aice Tech 1 Inch Magmeter for Accurate Measurements
  • High-Precision Aice Tech 1 Inch Magmeter for Accurate Measurements
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Basic Info.

Model NO.
RC-LDG
Main Application
Water, Wastewater, Nature Gas, Corrosive Liquid/Gas
Size
DN10~DN1600
Type
Electromagnetic Flow Meter
Measuring Media
Conductive Liquids
Measuring Principle
Eletromagnetic
Measurement Object
Closed Pipeline
Certification
CE, ISO
Nominal Diameter
DN10~DN1600
Nominal Pressure
0.6~4.0MPa (Others Customizable)
Lining Material
Urethane Rubber/Neoprene Tfn/Silicon Fluorine
Electrode Form
Standard Type/Scraper Type
Electrode Material
316L / Hastelloy B & C/Titanium/Tantalum/Platinum
Medium Temperature1
Polyurethane Rubber -20~70ºC
Medium Temperature2
PTFE-20~120ºC
Measuring Range
1500:1 Flow Velocity Setting <15m/S
Protection Class
IP65/IP67/IP68 Optional
Power Supply
AC220V 50Hz, DC 24V, DC 3.6V
Output Signal
0-10mA, 4-20mA, Frequency, Alarm, Pulse Outputs
Communication Signal
RS232c, RS485, Hart (Optional)
Load Resistance
0-10mA 0~1.5KΩ, 4-20mA 0~750Ω
Power-off Protection
Internal Non-Power-off Clock
Ambient Humidity
5~100%Rh (Relative Humidity)
Transport Package
Depends on Flanges Size
Specification
Depends on flanges size
Trademark
Aice Tech
Origin
China
HS Code
9026100000
Production Capacity
5000000/Pieces

Packaging & Delivery

Package Size
40.00cm * 40.00cm * 43.00cm
Package Gross Weight
30.000kg

Product Description

RC-LDG serial Flowmeter is a high accuracy and high stability electromagnetic flow meter
For measuring pipeline conducting liquids and slurries volume flow rate
The accuracy is not affected by changes in density, viscosity, temperature, pressure and conductivity of the liquid
Applicable pipe diameter DN10~DN1600
Output signals such as 0-10mA, 4-20mA
RS232, RS485, HART (optional) communication signals
This model is customized for PTFE lined DN50 pipeline

 
Instrument installation
 
Choosing the correct installation location and adopting the correct installation method is the key to using 
the electromagnetic flow meter. If the installation is wrong, 
Not only will it affect the measurement effect, it will also affect the measurement accuracy, it will also 
affect the life of the flow meter, and even damage the flow meter.
 
1. Installation location selection 
In order to make the sensor work reliable and stable, the following requirements should be paid attention 
to when choosing the installation location: 
(1) Try to avoid ferromagnetic objects and equipment with strong electromagnetic fields (such as large 
motors, large transformers, etc.) to prevent magnetic fields from affecting transmission 
The working magnetic field and flow signal of the sensor. 
(2) It should be installed in a dry and ventilated place as much as possible,and not in a place with 
dampness and water. 
(3) Avoid sun and rain as much as possible, and avoid ambient temperature higher than 60ºC and relative 
humidity higher than 95%. 
(4) Choose a place that is convenient for maintenance and convenient for activities. 
(5) The flow meter should be installed at the back of the pump, not on the suction side; the valve should 
be installed on the downstream side of the flow.
 
2. Installation requirements 
For your correct measurement, you should pay attention to the following requirements when selecting 
the location on the pipeline: 
(1) The sensor can be installed on a straight pipe, or on a horizontal or inclined pipe, but the center 
connection of the two electrodes is required in a horizontal state. 
2) The medium should flow in the full pipe at the installation position to avoid dissatisfied pipe and gas 
adhering to the electrode. 
(3) For liquid-solid two-phase fluids, it is best to install vertically to make the sensor lining wear evenly 
and prolong the service life. 
(4) When the medium at the installation position of the flow meter is not full, the method of raising the 
back-end pipeline of the flow meter can be adopted to make it full. 
Install flow meters at the high point and the water outlet. 
(5) Modify the installation method of the pipeline: When the flow rate of the medium does not meet the 
requirements, a flow meter with a smaller diameter should be used. 
Use reducer pipe or modify part of the pipe to make it the same diameter as the sensor, but the front and 
rear straight pipe sections must at least meet the front straight pipe section 10DN, straight back pipe ≥ 
5DN (DN is pipe diameter). 
(6) The front and rear straight pipe sections are 10DN before the flow meter and 5DN at the back 
end. 
 
3. Instrument wiring 
If the signal cable connected by split installation uses a customized dedicated cable, the shorter the cable, 
the better. 
The excitation cable can choose Yz medium-sized rubber sheathed cable, and its length is the same as the 
signal cable. 
Signal cables must be strictly separated from other power sources and cannot be laid in the same pipe. 
The signal cable and the excitation cable should be as short as possible, and the excess cables should not 
be rolled together. The excess cables should be cut off, and 
Re-solder the joints. 
When the cable mediates the sensor electrical interface, it is made into a U-shape at the port, which can 
prevent rainwater from penetrating into the sensor.
 

Technical parameter

 
Item Technical parameter
Main power AC220V 50HZ/DC24V/DC12V/3.3V battery power supply
Power consumption <15W (Supporting power consumption with sensors )

Display and buttons
Display in Chinese and English, can display instantaneous flow, accumulated flow and alarm display (excitation open circuit alarm, empty pipe alarm, flow over limit alarm). Four membrane
touch switches for data setting
Counter Forward total, reverse total










Output signal
Analog
output
Two-way, fully isolated 0~10mA/4~20mA
    Load resistance: 0~1.5kΩ when 0~10mA; 0~750Ω when 4~20mA
 
Frequenc y output
Forward and reverse flow output, the upper limit of output frequency can be set within 1~5000Hz. Open collector bidirectional output of transistor with photoelectric isolation. The external power supply is not greater than 35V, and the
maximum current of the collector when it is turned on is 50mA
 
Alarm Output
Two-way open collector alarm output with photoelectric isolation transistor. The external power supply is not greater than 35V, and the maximum current of the collector when it is turned on is 250mA. Alarm status: fluid empty pipe, excitation
disconnection, flow overrun
 

Pulse output
Forward and reverse flow output, the output pulse upper limit can reach 5000CP/S.
Pulse equivalent is 0.0001~1.0
m³/P. The pulse width is automatically set to 20ms or square wave. Open collector output of transistor with photoelectric isolation. The external power supply is not greater than 35V, and the maximum current of the collector when conducting is
50mA
Matching accuracy ±0.5% of indicated value, optional ±0.3% or ±0.2% of indicated value
Damping time constant Continuous variable from 0~100s (90%) time grading optional
Communication Optional RS232C or RS485 serial communication interface, HART communication protocol
Loss of power The internal design of the instrument has a power-off clock, which can store 16 power-off records
(10 years) (need to be customized)
Protection class IP65
Explosion-proof mark Ex d ia [ia Ga] q IIC T6 Gb

Flow range table


Flow range and Flow rate table
m3/h
mm m/s

0.5

1

2

3

4

5

15(maximum)
10 0.14 0.28 0.27 0.85 1.13 1.41 4.24
15 0.32 0.64 1.27 1.91 2.54 3.18 9.54
20 0.57 1.13 2.26 3.39 4.52 5.65 16.96
25 0.88 1.77 3.53 5.30 7.07 8.84 26.51
32 1.45 2.90 5.79 8.69 11.58 14.48 43.43
40 2.26 4.52 9.05 13.57 18.10 22.62 67.86
50 3.53 7.07 14.14 21.21 28.27 35.34 106.03
65 5.97 11.95 23.89 35.84 47.78 59.73 179.19
80 9.05 18.10 36.19 54.29 72.38 90.48 271.43
100 14.14 28.27 56.55 84.82 113.10 141.37 424.12
125 22.09 44.18 88.36 132.54 176.71 220.89 662.68
150 31.09 63.62 127.23 190.85 254.47 318.09 954.26
200 56.55 113.10 226.19 339.29 452.39 565.49 1696.46
250 88.36 176.71 363.43 530.14 706.86 883.57 2650.72
300 127.23 254.47 508.94 763.41 1017.88 1272.35 3817.04
350 173.18 346.36 692.72 1039.08 1385.44 1731.80 5195.41
400 226.19 452.39 904.78 1357.17 1809.56 2261.96 6785.84
450 286.28 572.56 1145.11 1717.67 2290.22 2862.78 8588.33
500 353.43 706.86 1413.72 2120.58 2827.43 3534.29 10602.88
600 508.94 1017.88 2035.75 3053.63 4071.50 5089.38 15268.14
700 692.72 1385.44 2770.88 4156.33 5541.77 6927.21 20781.64
800 904.78 1809.56 3619.11 5428.67 7238.23 9047.79 27143.36
900 1145.11 2290.22 4580.44 6870.66 9160.88 11451.11 34353.32
1000 1413.72 2827.43 5654.87 8482.30 11309.73 14137.13 42411.50
1200 2035.75 4071.50 8143.01 12214.51 16286.02 20357.52 61072.56
1400 2770.88 5541.77 11083.54 16625.31 22167.08 27708.85 83126.54
1600 3617.11 7238.23 14476.46 21714.69 28952.92 36191.15 108573.44
1800 4580.44 9160.88 18321.77 27482.65 36643.54 45804.42 137413.26
2000 5654.87 11309.73 22619.47 33929.20 45238.93 56548.67 169646.00
2200 6842.39 13684.78 27369.56 41054.33 54739.11 68423.89 205217.66
2400 8143.01 16286.02 32572.03 48858.05 65144.07 81430.08 244290.24
2600 9556.72 19113.43 38226.85 57340.71 76453.71 95567.13 206701.40
2800 11083.54 22167.90 44334.15 66501.23 88668.31 110835.39 332506.16
3000 12723.45 25446.90 50893.80 76340.70 101787.60 127234.50 381703.50


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High-Precision Aice Tech 1 Inch Magmeter for Accurate MeasurementsHigh-Precision Aice Tech 1 Inch Magmeter for Accurate MeasurementsHigh-Precision Aice Tech 1 Inch Magmeter for Accurate MeasurementsHigh-Precision Aice Tech 1 Inch Magmeter for Accurate MeasurementsHigh-Precision Aice Tech 1 Inch Magmeter for Accurate Measurements
High-Precision Aice Tech 1 Inch Magmeter for Accurate Measurements

 

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