Customization: | Available |
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Warranty: | 12 Months After Delivery Date |
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Product advantages | ||
Project | CAMCT | Others |
Lower flow limit | 0.1m/ s (linear accuracy guaranteed) |
0.3m/ s (linear accuracy guaranteed) |
Response time | 100ms | ≥3S |
Strong steady flow function | have | Don't have |
Product category | |||
Medium | Conductive liquid such as sewage, chemical liquid and tap water | ||
Output | 4-20Ma (load resistance 0~750Ω), pulse, frequency, RS485 protocol | ||
Accuracy class | Class 0.3, 0.5 | Velocity range | 0.1-15m/ s |
Medium temperature | -20~+160ºC | Ex-proof grade | Exd lI CT6 G |
Protection grade | IP67, Special requirements could up to IP68 |
Technical parameters | |
Executive standards | Electromagnetic flowmeter(JJG 1033-2) |
Nominal caliber (can be customized) | Pipe type PTFE lining: DN15-DN2000 Pipe type rubber lining: DN65-DN2000 Pipe type PFA lining: DN40-DN600 |
Flow direction | Positive, negative, net flow |
Range down | 150:1 |
Repeatability | ±0.1% |
Medium temperature | Regular rubber lining: -20ºC~+60ºC Normal temperature rubber lining: -20ºC~+90ºC PTFE lining: -30ºC~+120ºC High temperature PFA lining: -20ºC~+160ºC |
Rated working pressure | (DN15~DN25) ≤4.0MPa (DN32~DN300)≤1.6MPa (DN350~DN800)≤1.0MPa (DN800~DN2000)≤0.6MPa |
Velocity range | 0.1-15m/ s |
Conductivity range | ≥5μ s / cm |
Communication output | RS485, HART protocol, GPRS output |
Power supply | 220VAC,Tolerance 15%or 24VDC,ripple wave≤5% |
Required straight pipe segment length | Upstream≥5DN, Downstream≥2DN |
Connection type | Flange connection: HG20592-2015 |
Protection grade | IP67 |
Ex-proof Class | ExdIIct6 Certificate No.:CE19.14 |
Ambient temperature | -25°ºC~+60°ºC |
Relative humidity | 5%~95% |
Total power consumed | <7.5W |
Measurable range | |||||
Caliber | Min adjustable range(0.3m/s, per hour) | Max adjustable range (10m/s, per hour) |
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mm | inch | m³/h | GPM | m³/h | G |
15 | 0.5 | 0.19 | 0.84 | 6.36 | 28.0 |
25 | 1 | 0.53 | 2.35 | 17.7 | 78.0 |
32 | 1.25 | 0.87 | 3 | 29.0 | 100 |
40 | 2 | 1.36 | 600 | 45.2 | 200 |
50 | 2 | 2.12 | 9.35 | 70.7 | 310 |
65 | 2.5 | 3.58 | 15.0 | 119.5 | 502 |
80 | 3 | 5.43 | 24.0 | 181.0 | 800 |
100 | 4 | 8.48 | 37.5 | 282.7 | 1250 |
125 | 5 | 13.25 | 60.2 | 441.8 | 2008 |
150 | 6 | 19.1 | 84.0 | 636.1 | 2800 |
200 | 8 | 34.0 | 150.0 | 11313 | 5000 |
250 | 10 | 53.0 | 41.0 | 1767 | 8031 |
300 | 12 | 76.3 | 347 | 2544 | 11565 |
350 | 14 | 103.9 | 472.3 | 3463 | 15741 |
400 | 16 | 135.7 | 616.9 | 4523 | 20560 |
Selection list | ||||||
ZYDC | Intelligent electromagnetic flowmeter | |||||
M | Integral | |||||
F | Split | |||||
Lining material | F | PTFE | ||||
Z | Rubber lining | |||||
A | PFA | |||||
Pipe connection | C1 | HG 1.0Mpa flange type | ||||
C2 | HG 1.6Mpa flange type | |||||
C3 | HG 2.5Mpa flange type | |||||
E1S | DIN PN10 clamping type | |||||
E2S | DIN PN16 clamping type | |||||
Instrument caliber | DN15 DN20 DN25 DN32 DN40 DN50 DN65 DN80 DN100 DN125 DN150 DN200 | |||||
Nominal caliber | ||||||
Electrode material | L | 316L | ||||
H | HC 276 | |||||
Ti | Titanium | |||||
Ta | Tantalum | |||||
P | Platinum-iridium alloy | |||||
N | No | |||||
Electrode ring | S | 316L | ||||
H | HC 276 | |||||
Ti | Titanium | |||||
Ta | Tantalum | |||||
P | Platinum-iridium alloy | |||||
Connection | ||||||
2 | 1/2" NPT Internal thread | |||||
4 | M20*1.5 Internal thread | |||||
Power supply | A2 | 220V AC | ||||
D1 | 24V DC | |||||
Ex-proof | Explosion-proof sign | |||||
N | No ex-proof | |||||
D | Flame-proof EXD II CT6 | |||||
Communication protocol | Communication protocol | |||||
N | No | |||||
H | Hart protocol | |||||
M | Modbus protocol | |||||
P | Profibus-PA | |||||
Selection example: ZYDC/M/F/C2/L/DN25 | ||||||
Explanation: intellgiengt flowmeter integrated PTFE lining flange connection 1.6Mpa 316L electrode 1/2NPT internal thread 220V AC power supply Modbus protocol |
PACKING & SHIPPING
We are devoted to fulfilling your orders with unparalleled speed and efficiency, ensuring that every product you purchase reaches you promptly and meets your exact specifications.The installation of the electromagnetic flowmeter is contingent on the specific site pipeline conditions. For installations where a ball valve isn't included, ensure it's on a non-pressurized pipeline. This flexibility allows for choosing flowmeters without a ball valve.
A precise 50mm diameter hole should be drilled into the pipeline, followed by welding a connecting pipe to this opening, ensuring a secure fit.
In scenarios necessitating continuous flow during loading and unloading, or where media overflow is unacceptable, incorporating a ball valve is essential. This means selecting an insertion-type electromagnetic flowmeter equipped with a ball valve structure.
Again, a 50mm diameter hole needs to be drilled into the pipeline, and preparations made for welding a connecting pipe to the opening, ensuring robustness.
Measuring range | Recommend using range | 0.5m/s to 10m/s continuously adjustable |
Max using range | 0.2m/s ~ 15m/s continuously adjustable |
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Output | The switching quantity can be set to | Pulse output (up to 1000HZ) |
High/low flow alarm | ||
Empty pipe alarm | ||
Flow direction indication | ||
Fault alarm | ||
Current output | Output 4-20mA | |
Configuration mode | Field configuration with three manual keys | |
Field configuration through remote controller | ||
Field configuration by hand operator | ||
Memory | EEPROM memory that does not disappear and does not require battery storage |
For optimal performance, the straight pipe sections should adhere to the requirements: 5D upstream and 3D downstream. This configuration guarantees the precise functionality of the electromagnetic flowmeter and meets stringent accuracy standards.
The innovative measurement principle of the electromagnetic flowmeter remains unaffected by the flow characteristics, ensuring reliable readings.
Even if turbulence and vortices occur outside the measurement area (caused by elements like elbows, tangential throttling, or a partially open shut-off valve upstream), the measurement remains unaffected.
However, if steady-state vortices occur within the measurement area, it compromises both the stability and accuracy of the readings.
In such cases, the following measures should be employed to stabilize the flow and ensure accurate measurements:
1.2. Pipeline-type Electromagnetic Flowmeter
2.1. Straight Sections Requirements To counter vortices and flow field distortions, adhere to specified lengths of upstream and downstream straight pipe sections. This ensures measurement accuracy, and installing a flow straightener is also advisable. Avoid installation near control valves and partially open valves.
2.2. Process Pipes Requirements The flowmeter requires specific conditions for upstream and downstream process pipes at the installation point. The inner diameter of these pipes should match that of the sensor and meet the condition: 0.98DN ≤ D ≤ 1.05DN (DN = sensor's inner diameter, D = process pipe's inner diameter). The process pipe and sensor must be concentric, with an axial deviation ≤ 0.05DN.
2.3. Requirements for Bypass Pipes To streamline the maintenance of the flowmeter, it is highly recommended to install a bypass pipe alongside the flowmeter. This is particularly essential for situations involving heavily contaminated fluids or when the flowmeter requires cleaning without halting the fluid flow. Key guidelines include: a. Ensuring the maintenance of the flowmeter is efficient and hassle-free. b. Compulsory installation for systems with heavily contaminated fluids. c. Facilitating flowmeter cleaning without stopping the ongoing fluid flow.
3. Installation Requirements for Insertion-Type Electromagnetic Flowmeters
3.1. Requirements for Straight Pipe Sections Inlet/Outlet Straight Pipe Sections: To ensure optimal performance, the inlet should have a straight pipe section of at least 10×DN, while the outlet must maintain a straight pipe section of at least 5×DN.
3.2. Requirements for Grounding Points For the reliable operation of the instrument and enhanced measurement accuracy, it is crucial to avoid the influence of external parasitic potentials. The sensor must be properly grounded, achieving a grounding resistance of less than 10 ohms. (Note: If the metal pipeline already has good grounding, a dedicated grounding device is unnecessary.)
3.3. Requirements for Installation Position Refer to the accompanying diagram for detailed installation positioning requirements.
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