KM01-02
This series of products are wireless remote water meters which separates the mechanic part from intelligent module completely, and upload the water consumption through NB\LORA Internet. In the use of the process of repeated counting problems, the use of algorithms to identify, to ensure the accuracy of data. Mechanical and electrical separation mode installation, good interchangeability, long service life of components
Description
1. Features
● Multi-jet vane wheel.
● Dry type register, magnetic drive,anti-magnetic interference, anti-freezing, long-term clear reading.
● Split type, separate sealing structure, easy to replace and maintain, damp-proof, IP68.
● Replaceable battery chamber design.
● Adopt stable NB\lORA internet signal transmission technology.
● Collect water consumption according to 1L,10L,100L.
● Material: iron, plastic, brass, stainless.
● Provided with lead seal and dust-proof cover.
● Climate and EMC class B\O, E1.
2. Electronic Parameter
|
Datacomms |
Static current |
Report |
Operating frequency |
Transmitted power |
Receive sensitivity |
|
Lora |
20μA |
Hall\Reed switch |
470-510MHz |
≤20dBm |
-136+1dBm |
|
NB-lot |
10μA |
Hall\Reed switch |
B1,B2,B5,B8,NB-lot |
≤23dBm |
-131+1dBm |
3. Head Loss Curve

4. Accuracy Error Curve
5. Installation Dimension 
|
Item No |
LXSGW-15 |
LXSGW-20 |
|
|
|
L1 |
mm |
260 |
295 |
346 |
|
L |
mm |
165 |
195 |
225 |
|
H |
mm |
150 |
150 |
150 |
|
W |
mm |
90 |
90 |
100 |
|
Connection Thread |
D(mm) |
G3/4" |
G1" |
G1 1/4" |
|
d(mm) |
R1/2 |
R3/4 |
R1 |
|
|
Weight |
with unions(kg) |
|
|
|
|
without unions(kg) |
1 |
1.2 |
|
|
6. Main Technical Parameter
|
Model number |
LXSGW-15 |
LXSGW-20 |
|
|
|
|||||
|
Nominal diameter (DN)[mm] |
15 |
20 |
25 |
32 |
40 |
|||||
|
Ratio Q3/Q1 |
R80 |
R100 |
R80 |
R100 |
R80 |
R100 |
R80 |
R100 |
R80 |
R100 |
|
Overload flow rate (Q4) [m³/h] |
3.125 |
3.125 |
5 |
5 |
7.875 |
7.875 |
12.5 |
12.5 |
20 |
20 |
|
Permanent flow rate (Q3) [m³/h] |
2.5 |
2.5 |
4 |
4 |
6.3 |
6.3 |
10 |
10 |
16 |
16 |
|
Transitional flow rate (Q2) [m³/h] |
0.05 |
0.04 |
0.08 |
0.064 |
0.126 |
0.1 |
0.2 |
0.16 |
0.32 |
0.256 |
|
Minimum flow rate (Q1) [m³/h] |
0.032 |
0.025 |
0.05 |
0.04 |
0.08 |
0.063 |
0.125 |
0.1 |
0.2 |
0.16 |
|
Accuracy class |
2 |
|||||||||
|
Maximum permissible error for the lower flow rate zone (MPEι) |
±5% |
|||||||||
|
Maximum permissible error for the upper flow rate zone (MPEμ) |
±2% for water having a temperature ≤30℃ |
|||||||||
|
Temperature class |
T30,T50 |
|||||||||
|
Water pressure classes |
MAP 16 |
|||||||||
|
Pressure-loss classes |
△P63 |
|||||||||
|
Indicating range[m³] |
99 999 |
|||||||||
|
Resolution of the indicating device[m³] |
0.00005 |
|||||||||
|
Flow profile sensitivity classes |
U10 D5 |
|||||||||
|
Orientation limitation |
HORIZONTAL |
|||||||||
Drinkable water meters play a critical role in accurately measuring water consumption for billing and resource management. After a long period of inac...
Drinkable water meters are critical components in water supply systems. Their accuracy directly affects billing, resource management, and operational ...
International Standards: The Foundation of Metering — OIML R49 As crucial measuring instruments for trade settlement, the accuracy of prepaid water me...
Precision Engineering for Anti-Magnetic Attack Protection Anti-magnetic attack capability is paramount for ensuring the accuracy and integrity of wat...