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  • PFEA113-65 3BSE050092R65 controller
  • PFEA113-65 3BSE050092R65 controller
  • PFEA113-65 3BSE050092R65 controller
PFEA113-65 3BSE050092R65 controller PFEA113-65 3BSE050092R65 controller PFEA113-65 3BSE050092R65 controller

PFEA113-65 3BSE050092R65 controller

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Spare parts spare parts, the DCS control system of PLC system and the robot system spare parts,

Brand advantage: Allen Bradley, BentlyNevada, ABB, Emerson Ovation, Honeywell DCS, Rockwell ICS Triplex, FOXBORO, Schneider PLC, GE Fanuc, Motorola, HIMA, TRICONEX, Prosoft etc. Various kinds of imported industrial parts

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PFEA113-65 3BSE050092R65 controller

The SINUMERIK 840D and the HLA module are supplied from the SIMODRIVE line supply infeed or from the SIMODRIVE monitoring module via the equipment bus. There must be at least one NE module in the equipment group when an HLA module is used. No provision has been made for any other type of voltage supply and failure to use the supply provided could damage the unit.The inputs are differential with 40 kΩ input resistance. The input voltage range is 0...+10 V. The supply output has an electronic short–circuit protection function. The supply output is dimensioned for a total current (4 sensors) of 200 mA. Supply for pressure sensors with 26.5 V 2% according to the external infeed at X431.The analog valve actual value inputs are differential with 100 kΩ input resistance. The current ratings of the 24 V outputs of the control valves are for an ambient temperature of 40 °C 2.0 A for an ambient temperature of 55 °C 1.5 A for the mean current value with a load cycle of 10 s duration. The temperature corner points may be interpolated linearly. The short–term current rating of the control valve outputs is 3.0 A (200 ms). In the event of an overload, the F1900 or F1901 fuse on the HLA control unit blow.

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”HLA module” control board

Each of the shut–off valves must be connected directly using two conductors connected to pins 2/3 of X431 or X432! A current–compensated interference suppression coil is inserted at the input for the external incoming supply terminal P24, terminal M24 (pins 5 and 6 of X431). Terminal M24 and terminal MV1/MV2 may therefore not be reversed or short–circuited. The internal enable voltage (FRP/9) is provided in order to supply the BEROs, and terminals 663 may not be used to supply the hydraulics components. The hydraulic components must be supplied via incoming supply P24. The voltages may not be connected in parallel.Module–specific enabling commands are issued by terminal 663. As no power section is installed, no relay is available. The input is therefore evaluated via optocouplers in the HLA module and also acts on the shut–off valves. The enable voltage can be taken from terminal 9. Terminal 663 is referenced to the internal enable voltage (ground, terminal 19).

Measuring sockets

The start–up tool or an MMC102/103 can be used to assign internal signals to the test sockets on the 611D drive (in conjunction with SINUMERIK 840D), where the signals are then available as analog values.Three 8–bit digital/analog converter (DAC) channels are available on the 611D hydraulics module. An analog image of various drive signals can be connected through to a test socket via these converters. Only a window of the 24–bit wide drive signals can be displayed with the 8 bits (=1 byte) of the DAC. For this reason, the shift factor must be set to determine how fine the quantization of the selected signal must be. The normalization factor is determined when parameterizing and displayed to the user.The ANA module has the following features: Software and data The communications interface is compatible with SIMODRIVE 611 SRM(FD)/ARM(MSD) for supported services. Code and data structure is analogous to SIMODRIVE 611 SRM(FD)/ARM(MSD). Hardware Integration into the SIMODRIVE 611 system is compatible with SIMODRIVE 611 digital SRM(FD)/ARM(MSD). Essentially, this involves the following interfaces: – Drive bus – Equipment bus – Power supply concept

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