

BURKERT Type 8745 Mass Flow Controller (MFC) and Meter (MFM) for gases. Features high accuracy, fast response, and Industrial Ethernet or Modbus RTU communication.

BURKERT Type 8745 Mass Flow Controller (MFC) / Mass Flow Meter (MFM) is suitable for controlling the mass flow of large gas quantities. Type 8745 can be configured as MFM or MFC according to demand. Optionally, up to four calibration curves can be stored in the device. 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. As an MFC, type 8745 is available in two variants: with electromagnetic proportional valve and with electromechanical proportional valve. In addition to an analogue and an industrial ethernet variant, a Modbus RTU variant is also available.
| Product properties | |
|---|---|
| Material | |
| Seal | FKM or EPDM (depending on gas) |
| Housing | PC (polycarbonate) |
| Base block | Aluminium or stainless steel 1.4404/316L |
| Wetted parts (sensor) | Stainless steel 1.4404/316L, Al₂O₃, PPS GF40, epoxy resin, silicon, silicon nitride |
| Electrical data | |
| Operating voltage | 24 V DC |
| Residual ripple | ±2% |
| Voltage tolerance | ±10% |
| Electrical connection | |
| Analogue variant | D-Sub plug, 9-pin or terminal strip, 6-pin |
| Industrial Ethernet variant | 2 x RJ45 socket (Switch) |
| Modbus RTU variant | D-Sub plug, 9-pin |
| Medium data | |
| Operating medium | Neutral, pure gases (others on request) |
| Calibration medium | Operating medium or air |
| Medium temperature | -10 °C to +70 °C (-10 °C to +60 °C with oxygen) |
| Product connections | |
| Analogue interface | 4...20 mA, 0...20 mA, 0...10 V or 0...5 V Input impedance: >20 kΩ (voltage) or <300 Ω (current) Maximum current: 10 mA (voltage output) Maximum load: 400 Ω (current output) |
| Digital communication interface | Modbus RS-485/RTU list 0 and list 1, Industrial Ethernet: EtherCAT®, EtherNet/IP, Modbus TCP, PROFINET |
| Port connection | G 1⁄4", NPT 1⁄4, 3⁄8, 1⁄2, 3⁄4, 1, sub-base, clamp connection |
| Environment and installation | |
| Installation position | Horizontal or vertical |
| Storage temperature | -10 °C to +70 °C |
| Relative air humidity | Max. 95 % at +55 °C, non-condensing |
| Degree of protection | IP20 |
| Ambient temperature | -10 °C to +50 °C (higher temperatures on request) |
Note
When using an electromotive proportional valve, the minimum medium temperature is 0 °C.
Type 8745 can be configured as MFM or MFC as required. 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 resp. response times of a few hundred milliseconds.
| Product properties | |
|---|---|
| Total weight | Approx. 1800 g (aluminium, 16 W valve) Approx. 3100 g (stainless steel 1.4404/316L, 16 W valve) |
| LED display | RGB-LED based on NAMUR NE107 |
| Actuator (proportional valve) | |
| Valve position | Normally closed |
| Nominal diameter | 0.8...12 mm |
| Kvs value range | 0.02...2.5 m³/h |
| Performance data | |
| Nominal flow range (QN) | MFC: 20...1500 lN/min (N₂) MFM: ≤ 2500 lN/min (N₂) |
| Operating pressure | MFM: max. 25 bar MFC: max. 25 bar (the maximum operating pressure depends on medium and nominal valve size) |
| Measuring accuracy | ±1.5% MV ±0.3% FS (under calibration conditions and after <1 min warm-up time) |
| Repeatability | ±0.1% FS |
| Turndown ratio | 1:50 |
| Settling time (MFC)/Response time (MFM) (t95) | <500 ms |
| Electrical data | |
| Power consumption | Max. 4 W (as MFM) Max. 12.5...31.5 W (as MFC, depending on proportional valve type) |
Type 8745 with electromotive proportional valve is especially suitable for applications with high inlet pressures of up to 22 bar or high flow rates (at a low pressure drop). The motor’s power consumption to hold a specific opening position is nearly zero. This key feature can reduce the energy consumption of a plant dramatically. Without electrical power the valve remains in its current position.
| Product properties | |
|---|---|
| Total weight | Approx. 1670 g (aluminium, valve Type 3280) Approx. 2940 g (stainless steel 1.4404/316L, valve Type 3280) |
| LED display | With MFM: RGB LED according to NAMUR NE107 With valve: RGB LED to indicate valve opening |
| Actuator (proportional valve) | |
| Valve position | Normally closed |
| Nominal diameter | 2...20 mm |
| Kvs value range | 0.5...7.8 m³/h |
| Performance data | |
| Nominal flow range (QN) | 20...2500 lN/min (N₂) |
| Operating pressure | MFM: max. 22 bar For MFCs, the maximum operating pressure depends on the medium and nominal valve size |
| Measuring accuracy | ± 2% MV ± 0.5% FS (under calibration conditions and after <1 min warm-up time) |
| Repeatability | ± 0.5% FS |
| Turndown ratio | 1:50 |
| Settling time (MFC)/Response time (MFM) (t95) | <5 s |
| Electrical data | |
| Power consumption | Max. 4 W (as MFM) Max. 12 W (as MFC) |
Small nominal flow rates, with internal thread

| Thread (A) | Thread depth [mm] |
|---|---|
| G 1/4 | 12 |
| NPT 1/4 | 11 |
| G 3/8 | 12 |
| NPT 3/8 | 11 |
| G 1/2 | 15 |
| NPT 1/2 | 14 |
| G 3/4 | 16 |
| NPT 3/4 | 15 |
Large nominal flow rates, with internal thread

| Thread (A) | Thread depth [mm] |
|---|---|
| G 1/2 | 15 |
| NPT 1/2 | 14 |
| G 3/4 | 16 |
| NPT 3/4 | 15 |
| G 1 | 18 |
| NPT 1 | 16.8 |

| Pin | Assignment |
|---|---|
| 1 | TX + |
| 2 | TX - |
| 3 | RX + |
| 4 | Not connected |
| 5 | Not connected |
| 6 | RX - |
| 7 | Not connected |
| 8 | Not connected |
| Housing | Shielding |

| 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 | Not connected |
| 2 | GND |
| 3 | 24 V |
| 4 | Not connected |
| 5 | Not connected |
| 6 | RS-485-Y |
| 7 | RS-485-Z |
| 8 | RS-485-B |
| 9 | RS-485-A |
| Housing | Shielding |
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 and the base block used for the other gas must be taken into account.

Note
All values refer to 1013.25 mbar abs and 273.15 K (0 °C) (Index N). Other gases and gas mixtures are possible on request.
| Gas | Min. QN [l/min] | Max. QN [l/min] |
|---|---|---|
| Acetylene | 20 | 320 (from 65 l/min with air calibration) |
| Ammonia | 8 | 1000 |
| Argon | 20 | 1600 |
| Carbon dioxide | 20 | 800 |
| Air | 20 | 2500 |
| Methane | 20 | 1200 |
| Propane | 20 | 200 |
| Oxygen | 20 | 2500 |
| Nitrogen | 20 | 2500 |

This sensor works as a hot-film anemometer in the so called CTA operational mode (Constant Temperature Anemometer). 2 resistors with a precisely specified temperature coefficient located directly in the media flow and 3 further resistors are connected to form a measuring bridge. The first resistor in the gas flow measures the fluid temperature, while the second, low value resistor is always heated just enough to keep it at a fixed, specified excess temperature with respect to the fluid temperature. The heating current required for this is a measure of the heat dissipation and represents the primary measured variable.
Adequate flow conditioning within the MFC and calibration with high-quality flow standards ensure that the amount of gas flowing through per time unit can be derived from the primary signal with a high degree of accuracy.

Warnings and basic safety information
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