

The Burkert Type 8745 is a high-accuracy mass flow controller (MFC) and meter (MFM) for large gas quantities. Features nominal flow ranges up to 2500 lN/min, proportional valves, and digital communication.

The Burkert Type 8745 is a high-performance mass flow controller (MFC) and mass flow meter (MFM) designed to control the mass flow of large gas quantities. It can be configured as an MFM or MFC according to demand, with the option to store up to four calibration curves in the device. The thermal inline sensor, located directly in the main gas stream, achieves very fast response times with minimal pressure loss. As an actuator, a Burkert direct-acting proportional valve guarantees high response sensitivity. The Type 8745 is available with either an electromagnetic or electromotive proportional valve, and supports Analogue, Industrial Ethernet, and Modbus RTU communication interfaces.

| Property | Value |
|---|---|
| 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% |
| 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) |
| Environment and installation | |
| Installation position | Horizontal or vertical |
| Degree of protection | IP20 |
Type 8745 can be configured as MFM or MFC as required. The MFC variant uses direct-acting proportional valves of the 287x series (including Type 2836). 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.
| Performance data | Value |
|---|---|
| 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 (depends on medium and nominal valve size) |
| Measuring accuracy | ±1.5% MV, ±0.3% FS |
| Repeatability | ±0.1% FS |
| Turndown ratio | 1:50 |
| Settling time (MFC) / Response time (MFM) | < 500 ms |
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. Without electrical power, the valve remains in its current position.
| Performance data | Value |
|---|---|
| Nominal flow range (QN) | 20...2500 lN/min (N2) |
| Operating pressure | MFM: max. 22 bar MFC: depends on medium and nominal valve size |
| Measuring accuracy | ± 2% MV, ± 0.5% FS |
| Repeatability | ± 0.5% FS |
| Turndown ratio | 1:50 |
| Settling time (MFC) / Response time (MFM) | < 5 s |
Variant with base block 00 or A1 for small nominal flow rates.
Note
Dimensions in mm.

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.

Electric shock due to electrical components
Touching live parts can result in severe electric shock. This can lead to serious personal injury or death.
Medium under pressure
Medium under pressure can seriously injure people. In the event of overpressure or pressure surges, the device or lines can burst. Pneumatic lines that are defective or not securely fastened can come loose and swing around.
Hot surfaces and fire hazard
The surface of the device can become hot with fast-switching actuators or with hot media.
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