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Electromagnetic Energy Meter

Electromagnetic Energy Meter

  • When the heat meter is used with a sensor, for fluids with conductivity greater than 50 μS/cm, the flow signal transmission cable can use a PVC-sheathed metal mesh shielded signal cable with the model number RVVPB2*0.12*280 mm². The length should not exceed 100m. The signal wire is supplied with the sensor.

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Detail

1. Signal and Excitation Wires
1.1 Signal Wire Processing
This heat meter provides equipotential excitation shielded signal output voltage to reduce the influence of distributed capacitance of the cable transmission on flow signal measurement. When the measured conductivity is less than 50 μS/cm or for long-distance transmission, a dual-core double-shielded signal cable with equipotential shielding can be used. For example, the STT3200 special cable or the BTS type triple-shielded signal cable.
1.2 Excitation Current Wires
The excitation current wires can use a two-core insulated rubber flexible cable, with the recommended model number RVVP2*0.12*250mm². The length of the excitation current wires is the same as the length of the signal cable.
When using the STT3200 special cable, the excitation cable and the signal cable are combined into one cable.

2. Instrument Terminal Wiring

Electromagnetic Energy Meter

Figure 1.1 M8RBF15/16 Mainboard Wiring Terminal Diagram

Electromagnetic Energy Meter1

Figure 1.2 M8RBF20 Mainboard Wiring Terminal Diagram

 

Electromagnetic Energy Meter2

Figure 1.3 M8RBF22/25 Mainboard Wiring Terminal Diagram

TRA1

Inlet Temperature Input

TRA2

Inlet Temperature Input

TRA3

Inlet Temperature Input

TRB1

Outlet Temperature Input

height="35" >

TRB2

Outlet temperature input

TRB3

Outlet temperature input

TRA4

Reserved

TRB4

Reserved

SIG﹢

Signal 1

SGND

Signal ground

SIG-

Signal 2

DRS﹢

Incentive shielding 1

DRS-

Incentive shielding 2

MTDR

Reserved

EXT+

Excitation Current +

EXT-

Excitation Current -

POUT

Frequency Output Positive

PCOM

Frequency Output Ground

IOUT

Current Output Positive

ICOM

Current Output Ground

TRX-

Communication Interface (RS485-B)

TRX+

Communication Interface (RS485-A)

LN-

Power Input

>LN+

220VAC/24VDC Optional

Switch A

Thermistor Selection

DIOP

Reserved

Note: Figure 1.3 Switch A is the selection switch for Pt1000 and Pt100 thermistors. The factory default is Pt1000 thermistor, with switches 1 and 2 both set to OFF. If the user uses a Pt100 thermistor, switches 1 and 2 must both be set to ON.

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