HIMA ELOP II Programmable Electronic System (PES) Programming System Software

Product name:HIMA ELOP II Programmable Electronic System (PES) Programming System Software

Product model:ELOP II

Quantity: inventory

Warranty: We provide warranty service for ELOP II

Shipping Port:FuJian

Product technical documents: no relevant documents

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Description

ELOP II An short-circuit within the actuator circuitry (including the actuator) results in a high voltage drop

( output voltage of DO) through the shunt, which causes the short-circuit to be detected

(maximum resolution of AI, see Table 7). ELOP II The overvoltage protection of the analog inputs is

activated at approximately 15 V.

A protective circuit consisting of a Z-diode and series resistor must be implemented to avoid an

overload of the internal overvoltage protection.

 

brand Product Name Product model Order No
HIMA modular ELOP II nothing
Place of Origin Marketable land Imported or not defects liability period
Europe and America Nationwide and overseas yes a year
Place of shipment Delivery method How to use Applicable industries
Xiamen Shunfeng Express Commissioning and installation Power Plant Steel Plant Cement Plant Shipboard Papermaking
Service advantages Foreign import, goods preparation and supply Reasonable price and reliable quality Pictures are for reference only
Product features Primary source of goods, supply by model After sales guarantee Chen 1810693-7731

 

ELOP II Normal operation (no short-circuit):

Umax = Usolenoid valve + Ushunt = 26.8 V = 23.65 V + 3.15 V

The voltage Ushunt is also present on the protective circuit consisting of Z-diode and series

resistor.

The Z-diode does not switch on at 3.15 V, i.e., the voltage drop of 3.15 V on the shunt is

present on the analog input.

Short-circuit:

Umax = Usolenoid valve + Ushunt = 26.8 V = 0 V + 26.8 V

If a short-circuit occurs in the external circuit (actuator or line), the voltage from DO is dropped

completely at the shunt.

The switching threshold of the overvoltage protection ELOP II of AI is approximately 15 V.

The Z-diode should become conductive at 12 V such that no more than 12 V is present on AI

and the entire scaling range of AI is available.

The maximum voltage drop Udiode on the series resistor Rdiode of the Z-diode results from:

Udiode = 26.8 V – 12 V = 14.8 V

The current through the Z-diode should be limited to 20 mA (specification of the Z-diode). This

results in a minimum value for the series resistor of:

Rdiode = 14.8 V / 20 mA = 740 

The value for Rdiode can be set to 1 K.

ELOP II This resistance limits the maximum current through the Z-diode to approximately 15 mA.

A short-circuit within the red-colored area (see circuit diagram) can be monitored through the

voltage drop on the shunt Rshunt, i.e., the input value of AI, see Table 7.

To allow short-circuit monitoring, the value of AI must be evaluated in the logic of the user

program.

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Lead time problem
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For the simple purchase procedure of spare parts, ensure that they are delivered to the site in a timely manner, and help users reduce the risk of downtime caused by the shortage of spare parts
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