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Hydac Electronic Flow Rate Transmitter with HSI-Sensor Recognition

The HYDAC EVS 3100-H / 3110-H Flow Rate Transmitter features HSI sensor recognition for seamless integration with HYDAC instruments, enabling automatic setup and data transfer. Suitable for viscosities from 1–100 cSt and pressures up to 400 bar, it also allows connection of temperature and pressure sensors for enhanced monitoring.

Key Features:

  • Fully automatic recognition by, and voltage supply from, HYDAC measuring instruments HMG 500, HMG 510, HMG 3000, HMG 3010 or CMU 1000

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HYDAC Electronic Flow Rate Transmitter with HSI-Sensor Recognition

  • Fully automatic recognition by, and voltage supply from, HYDAC measuring instruments HMG 500, HMG 510, HMG 3000, HMG 3010 or CMU 1000
  • Automatic transfer of measuring range, measured value and measurement unit
  • Viscosities of 1 .. 100 cSt
  • Additional connection of temperature and / or pressure transmitters possible

Model Features:

Part Number
Measuring range
Torque value
Operating pressure
EVS 3108X-H-0020
EVS 3118X-H-0020
1.2 .. 20.0 l/min
60 Nm
400 bar
EVS 3108X-H-0060
EVS 3118X-H-0060
6.0 .. 60.0 l/min
130 Nm
400 bar
EVS 3108X-H-0300
EVS 3118X-H-0300
15.0 .. 300.0 l/min
500 Nm
400 bar
EVS 3108X-A-0600
40.0 .. 600.0 l/min
600 Nm
315 bar
EVS 3118X-A-0600 
400 bar 


General Function:

The flow rate transmitters in the series EVS 3100-H and EVS 3110-H with HSI sensor recognition have been specially developed for use in conjunction with HYDAC measuring instruments HMG 500, HMG 510, HMG 3000, HMG 3010 and CMU 1000. For data transmission, the EVS 31x0-H has an HSI interface (HYDAC Sensor Interface). The HSI sensors are recognised automatically via the HSI interface by the above-mentioned HYDAC measuring instruments, and all the necessary basic settings are taken from each instrument. As with all flow rate transmitters in the series EVS 3100 and EVS 3110, the EVS 31x0-H also operates according to the turbine principle. The speed of an impeller turning in the fluid flow is measured and converted into an electronic signal.

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