

Burkert 20051786 (Type 8745) thermal mass flow controller for N2 nitrogen. Features 15.00 Nm3/h flow rate, G1/2" internal thread, 4-20 mA output, and aluminium body.

BURKERT 20051786 (Type 8745) is a mass flow controller (MFC) suitable for controlling the mass flow of large gas quantities, specifically configured for N2 nitrogen with a nominal flow rate of 15.00 Nm3/h. The thermal inline sensor located directly in the main gas stream achieves very fast response times with minimal pressure loss. As the actuator, a Bürkert direct-acting proportional valve guarantees high response sensitivity. This specific model features an aluminium body, FKM seals, a G 1/2" internal thread connection, and operates on 24 V DC with a 4-20 mA analogue interface.
| Property | Description |
|---|---|
| Seal Material | FKM (Fluor rubber) |
| Housing Material | PC (polycarbonate) |
| Base Block Material | Aluminium |
| Wetted Parts (Sensor) | Stainless steel 1.4404/316L, Al2O3, PPS GF40, epoxy resin, silicon, silicon nitride |
| Operating Voltage | 24 V DC (±10% voltage tolerance, ±2% residual ripple) |
| Operating Medium | N2 nitrogen (Neutral, pure gases) |
| Medium Temperature | -10 °C to +70 °C |
| Ambient Temperature | -10 °C to +50 °C |
| Installation Position | Horizontal or vertical (vertical, flow upwards recommended) |
| Degree of Protection | IP20 |
The MFC variant uses direct-acting proportional valves of the 287x series. These electromagnetic proportional valves are normally closed and stand for highest measuring accuracy and repeatability with settling times of a few hundred milliseconds.
| Performance Data | Specification |
|---|---|
| Valve Position | Normally closed |
| Measuring Accuracy | ±1.5% MV, ±0.3% FS (under calibration conditions) |
| Repeatability | ±0.1% FS |
| Turndown Ratio | 1:50 |
| Settling Time (t95) | < 500 ms |
Type 8745 with electromotive proportional valve is especially suitable for applications with high inlet pressures or high flow rates at a low pressure drop. The motor’s power consumption to hold a specific opening position is nearly zero. Without electrical power, the valve remains in its current position.
| Performance Data | Specification |
|---|---|
| Valve Position | Normally closed |
| Measuring Accuracy | ± 2% MV, ± 0.5% FS (under calibration conditions) |
| Repeatability | ± 0.5% FS |
| Turndown Ratio | 1:50 |
| Settling Time (t95) | < 5 s |
This sensor works as a hot-film anemometer in the CTA operational mode (Constant Temperature Anemometer). Two resistors with a precisely specified temperature coefficient located directly in the media flow and three further resistors are connected to form a measuring bridge. The first resistor in the gas flow measures the fluid temperature, while the second is heated just enough to keep it at a fixed excess temperature. The heating current required is a measure of the heat dissipation and represents the primary measured variable.

The diagram shows an example of the pressure loss curves with air flowing through. To determine the pressure loss of other gases, the corresponding air equivalent must first be calculated.


| Pin | Assignment |
|---|---|
| 1 | Digital input |
| 2 | GND (for supply voltage and digital input) |
| 3 | 24 V |
| 4 | Relay, normally closed contact |
| 5 | Relay, reference contact |
| 6 | Set-point value input + |
| 7 | Set-point value input GND |
| 8 | Actual value output |
| 9 | Actual value output GND |
| Housing | Shielding |
| Pin | Assignment |
|---|---|
| 1 | 24 V |
| 2 | GND |
| 3 | Set-point value input + |
| 4 | Set-point value input GND |
| 5 | Actual value output + |
| 6 | Actual value output GND |
Safety Information
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