What is the difference between the Enercept meters?
Issue
The customer may ask the or the similarity or difference the between Entercept meters.
Product Line
3020B0xx-x
3020E0xx-x
EM4235xx-x
EM4236xx-x
Environment
Enercept meters characteristics
Cause
Differentiate each of the Enercept meter for easy selection.
Resolution
There are two generations of Enercept meters, the 3020 series Enercept meters obsolete and its recommended replacement EM4200 series Enercept meters.
The Enercept series meters are serial devices speak Modbus RTU Protocol for 3020 series and Modbus RTU/BACnet MS/TP protocols for EM4200 series, 2-Wire RS-485, no display,
use low voltage current transformer (LVCT) split-core and/or Rogowski Coil - only on EM4200 series, and the current transformer are small, medium, or large size.
the demand interval configuration.
The EM4200 speaks Modbus RTU and BACnet MS/TP and uses LVCT split-core as well as Rogowski coil with full Data set measurement capability.
Other useful information on the Enercept meters can be found in the following links, FA211870, FA211913, FA270750, FA279387, and FA211869.
The customer may ask the or the similarity or difference the between Entercept meters.
Product Line
3020B0xx-x
3020E0xx-x
EM4235xx-x
EM4236xx-x
Environment
Enercept meters characteristics
Cause
Differentiate each of the Enercept meter for easy selection.
Resolution
There are two generations of Enercept meters, the 3020 series Enercept meters obsolete and its recommended replacement EM4200 series Enercept meters.
The Enercept series meters are serial devices speak Modbus RTU Protocol for 3020 series and Modbus RTU/BACnet MS/TP protocols for EM4200 series, 2-Wire RS-485, no display,
use low voltage current transformer (LVCT) split-core and/or Rogowski Coil - only on EM4200 series, and the current transformer are small, medium, or large size.
- 3020 Series Enercept Meters
- The letter “B” stands for Basic meter; data output only for Active Energy (kWh) and Real Power (kW total).
- The letter “E” stands for Enhanced meter; data output for Active Energy (kWh), Real Power (kW) per phase and total, Demand (kW),
Reactive Power (kVAR), Apparent Power (kVA), Power Factor per phase and total, Current (A) per phase and average,
Reactive Power (kVAR), Apparent Power (kVA), Power Factor per phase and total, Current (A) per phase and average,
Voltage (V) line-to-neutral, per phase and average, and Voltage (V) line-to-line, per phase and average. The “xxx”, the three
last digits for the CT rating and size.
This is an example of part number:
last digits for the CT rating and size.
This is an example of part number:
- 3020B032(S): for a basic Enercept meter 3 phase and 300 A CTs.
- 3020E032(S): for an Enhanced Enercept meter 3 phase and 300 A CTs.
- EM4200 Series Enercept Meters
the demand interval configuration.
The EM4200 speaks Modbus RTU and BACnet MS/TP and uses LVCT split-core as well as Rogowski coil with full Data set measurement capability.
- The EM4235 model is IEC for wiring coded (L1-Brown, L2-Black, L3-Gray, and N-White) and allows demand interval configuration fixed or
rolling block, but not external sync to communication.
- The EM4236 model is ANSI (North America) for wiring coded (L1-Red, L2- Black, L3-Yellow, and N-Bleu) and allows demand interval configuration fixed or
rolling block, and external sync to communication.
Look at the EM4200 Technical Datasheet PDF attached on pages 2, 3, and 4 respectively wiring code, demand interval configuration, and for CTs part numbers.rolling block, but not external sync to communication.
- The EM4236 model is ANSI (North America) for wiring coded (L1-Red, L2- Black, L3-Yellow, and N-Bleu) and allows demand interval configuration fixed or
rolling block, and external sync to communication.
Other useful information on the Enercept meters can be found in the following links, FA211870, FA211913, FA270750, FA279387, and FA211869.
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