Material number:
X20CM0985
Description:
• Energy measurement for 120 to 480 VAC
• Simultaneous measurement of 2 AC mains networks plus 2 additional voltages
• For multifunctional measurement tasks
• Intelligent mains synchronization unit

The module has a compact size and combines a power measurement module that has
special features with a synchronization unit that is able to meet all demands.
The measurement unit's 3 current inputs are suitable for both X: 1 A and X: 5 A current
transformers. Overcurrent resistance and the high resolution of the measurement unit
round off its features. For the voltage inputs, the value range can be configured between
480 VAC and 120 VAC.
The area of use includes 4-wire AC networks with a phase voltage up to 480 VAC and
3-wire systems, whereas L2 can be grounded (V-connection). The module can also handle
Aron measuring circuits.
The resulting measured values include the pure phase current; line-to-line voltage or phase
voltage; the effective, reactive and apparent power parts; the mains frequency; the power
factor and much more. In addition, peak values and energy meters are stored on the module
in nonvolatile memory. Depending on the configuration, it is also possible to use a digital
output as a pulse encoder for an external energy meter.
The synchronization unit doesn't just take the phasing and phase voltage into consideration;
integrated intelligence also monitors the rate of change and other parameters, allowing them
to influence when the synchronization output is switched. It is also possible to monitor a
generator using a large number of additional conditions. A total of 4 voltage inputs provide
substantial overall flexibility.
Monitoring functions expand the features of the module. Dependent overcurrent monitoring is
included, which utilizes the thermal capacity of the motor/generator to allow short overloads
while still providing full protection. The dependent, delayed imbalanced load monitoring used
to protect three-phase generator and three-phase networks from imbalanced load can be
adapted to the characteristics of different generator types using parameters while taking their
special thermal time constants into account.
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