EPRO | MMS 6410 | MMS6410 | Dual Channel Measuring Amplifier

EPRO | MMS 6410 | MMS6410 | Dual Channel Measuring Amplifier
EPRO | MMS 6410 | MMS6410 | Dual Channel Measuring Amplifier
EPRO | MMS 6410 | MMS6410 | Dual Channel Measuring Amplifier
EPRO | MMS 6410 | MMS6410 | Dual Channel Measuring Amplifier

EPRO | MMS 6410 | MMS6410 | Dual Channel Measuring Amplifier

This MMS 6410 Dual Channel Measuring Amplifier was manufactured by EPRO, In Stock, 100% Guaranteed Brand New and Authentic. Link to More Information

 
Manufacturer:
EPRO
Part Number:
MMS 6410
Country of Origin:
Germany
Condition:
New With Original Package
Shipping Port:
ShangHai, Xiamen
Warranty:
12 Months
 

Overview

The MMS 6410 is a Dual Channel Measuring Amplifier for inductive displacement sensors, designed for precise measurements in various industrial applications.

Technical Specifications

  • Sensor Inputs:

    • Two independent inputs for inductive sensors in half- or full bridge configuration and for differential transformers.
    • The signal inputs are differential inputs, galvanically isolated from the system supply, open circuit and short circuit proof.
  • Max. Input Voltage:

    • 3.6 V (protected against over voltages)
  • Nominal Input Voltage Range:

    • 2.5 V rms
  • Input Impedance:

    • 200 kOhm
  • Measuring Ranges:

    • Measuring frequency range: 0....100 Hz -3dB
    • Measuring range displacement measurement: Depending on transducer measuring range; one or both outputs may be inverted.
  • Sensor Supply:

    • Each input includes a separate, buffered output to supply inductive sensors.
    • Carrier Frequency: 4.75 kHz
    • Nominal Supply Voltage: 4 Vrms
    • Permissible Load: 120....600 Ohm
    • The outputs are balanced to ground, open-circuit and short-circuit proof.
  • Control Inputs:

    • Common logical binary inputs for the two channels.
    • Optocoupler Mode:
      • "Pre-alarm (ALERT)", open circuit or closed circuit mode
      • "Main alarm (DANGER)", open circuit or closed circuit mode
      • Channel or module inhibit
      • Limit value multiplier for changing alarm limits during run-up and run-down of the machine, adjustable in the range: 1.000....4.999
      • 24 V Logic
      • Input Resistance: > 10 kOhm
  • Key Pulse Input:

    • 1 pulse per revolution for analysis purposes of the system.
    • 24 V Logic
    • Input Resistance: > 30 kOhm
    • Pulse Duration: min. 10 µs (edge-triggered)

Signal Outputs at the Connecting Strip

  • Connecting Strip: according to type F48M, DIN41612
  • Communication Interface: RS485
  • Outputs:
    • Current Output per Channel:
      • Nominal range: 0/4...20 mA
      • Open circuit and short-circuit proof
      • Permissible Burden: ≤500 Ohm
      • Resolution: 16 Bit
      • Accuracy: ±1% of f.s.d.
    • Voltage Output per Channel:
      • Nominal range: 0...+10 V
      • Open circuit and short-circuit proof
      • Load Resistance: ≥10 kOhm
      • Resolution: 8 Bit
      • Accuracy: ±1 % of f.s.d
    • Voltage Output per Channel (Sensor Signal):
      • Nominal range: 0...12 Vpp
      • Open circuit and short-circuit proof
      • Load Resistance: ≥100 kOhm
      • Frequency Range: 0 Hz...20 kHz (±20 % -3 dB)
      • Accuracy: ±1 % of f.s.d

Operating Elements at the Module Front

  • Two sensor signal outputs, independently from each other, one for each channel.
  • The signals are proportional to the sensor signals and can be tapped at the SMB sockets on the module front.
  • Range: ±12 V
  • Load Resistance: 100 kOhm
  • Internal Resistance: 1 kOhm
  • Frequency Range: Dynamic carrier frequency output with superimposed displacement signal.
  • LED Indicators:
    • 2 green LEDs for "Channel Clear" separately for channel 1 and channel 2.
    • 4 red LEDs for pre and main alarm separately for both channels.
  • Mini DIN Diode Socket: RS232 interface for connection of a computer for configuration and data interchange with the module.
  • Handle: To pull out and insert the module and for labeling purposes.

Power Supply

  • System Design: Redundant supply input via two supply inputs, decoupled via diodes. At least one supply input is required for the supply of the module.
  • Supply Voltage: 18....24....31.2 V DC according to IEC 654-2, class DC4
  • Power Consumption: max. 8 W (max. 300 mA at 24 V)
  • Other supply voltages can be realized with additional system power supplies.
  • At standalone operation, an unlimited number of modules.
  • Max. 31 modules / 62 channels may be operated at one RS 485 bus.
  • If more modules / channels are necessary, e.g. with an MMS 6815, another RS 485 bus must be installed.

Environmental Conditions

  • Protection Class:
    • Module: IP 00 according to DIN 40050
    • Front Plate: IP21 according to DIN 40050
  • Climate Conditions: according to DIN 40040 class KTF
  • Operating Temperature Range: 0....+65°C
  • Temperature Range for Storage and Transport: -30....+85°C
  • Permissible Relative Humidity: 5....95%, non-condensing
  • Permissible Vibration: according to IEC 68-2, part 6
    • Vibration Amplitude: 0.15 mm in range 10...55 Hz
    • Vibration Acceleration: 16.6 m/s² in range 55...150 Hz
  • Permissible Shock: according to IEC 68-2, part 29
    • Peak Value of Acceleration: 98 m/s²
    • Nominal Shock Duration: 16 ms
  • EMC Resistance: according to EN50081-1 / EN50082-2

Dimensions

  • PCB/EURO Card Format: acc. to DIN 41494 (100 x 160 mm)
  • Width: 30.0 mm (6 TE)
  • Height: 128.4 mm (3 HE)
  • Length: 160.0 mm
  • Net Weight: approx. 320 g
  • Space Requirements: 14 modules (28 channels) fit into each 19“ rack
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