User Manual
Table Of Contents
- 06230350_DE
- 1. Allgemeines
- 1.1 Zu diesem Dokument
- 1.2 Symbolerläuterungen
- 1.3 Gewährleistung und Garantie
- 1.4 Haftungsbeschränkungen
- 1.5 Entsorgung des Gerätes
- 1.6 Produktschlüssel
- 1.7 Bestimmungsgemäße Verwendung
- 1.8 Sicherheit
- 1.9 Technische Daten
- 1.10 Aufbau und Funktion
- 1.10.1 Allgemeine Beschreibung
- 1.10.2 Blockdiagramm
- 1.10.3 Lieferumfang
- 1.10.4 Zubehör
- 1.10.5 Optionen
- 1.10.6 Die Bedieneinheit (HMI)
- 1.10.7 USB-Port Typ B (Rückseite)
- 1.10.8 Steckplatz für Schnittstellenmodule
- 1.10.9 Analogschnittstelle
- 1.10.10 Share-Bus-Anschluß
- 1.10.11 Sense-Anschluß (Fernfühlung)
- 1.10.12 Master-Slave-Bus
- 2. Installation & Inbetriebnahme
- 2.1 Transport und Lagerung
- 2.2 Auspacken und Sichtkontrolle
- 2.3 Installation
- 2.3.1 Sicherheitsmaßnahmen vor Installation und Gebrauch
- 2.3.2 Vorbereitung
- 2.3.3 Aufstellung des Gerätes
- 2.3.4 Anschluß an das Stromnetz (AC)
- 2.3.5 Anschluß von DC-Lasten
- 2.3.6 Erdung des DC-Ausgangs
- 2.3.7 Anschluß der Fernfühlung
- 2.3.8 Installation eines AnyBus-Schnittstellenmoduls
- 2.3.9 Anschluß der analogen Schnittstelle
- 2.3.10 Anschließen des „Share-Bus“
- 2.3.11 Anschluß des USB-Ports (Rückseite)
- 2.3.12 Erstinbetriebnahme
- 2.3.13 Erneute Inbetriebnahme nach Firmwareupdates bzw. längerer Nichtbenutzung
- 3. Bedienung und Verwendung
- 3.1 Personenschutz
- 3.2 Regelungsarten
- 3.3 Manuelle Bedienung
- 3.4 Fernsteuerung
- 3.5 Alarme und Überwachung
- 3.6 Bedieneinheit (HMI) sperren
- 3.7 Nutzerprofile laden und speichern
- 3.8 Der Funktionsgenerator
- 3.8.1 Einleitung
- 3.8.2 Allgemeines
- 3.8.3 Arbeitsweise
- 3.8.4 Manuelle Bedienung
- 3.8.5 Sinus-Funktion
- 3.8.6 Dreieck-Funktion
- 3.8.7 Rechteck-Funktion
- 3.8.8 Trapez-Funktion
- 3.8.9 DIN 40839-Funktion
- 3.8.10 Arbiträr-Funktion
- 3.8.11 Rampen-Funktion
- 3.8.12 UI- und IU-Tabellenfunktion (XY-Tabelle)
- 3.8.13 PV-Tabellenfunktion (Photovoltaik)
- 3.8.14 FC-Tabellenfunktion (Brennstoffzelle)
- 3.8.15 Fernsteuerung des Funktionsgenerators
- 3.9 Weitere Anwendungen
- 4. Instandhaltung & Wartung
- 5. Zubehör und Optionen
- 6. Service & Support
- 1. Allgemeines
- 06230350_EN
- 1. General
- 1.1 About this document
- 1.2 Explanation of symbols
- 1.3 Warranty
- 1.4 Limitation of liability
- 1.5 Disposal of equipment
- 1.6 Product key
- 1.7 Intended usage
- 1.8 Safety
- 1.9 Technical Data
- 1.10 Construction and function
- 1.10.1 General description
- 1.10.2 Block diagram
- 1.10.3 Scope of delivery
- 1.10.4 Accessories
- 1.10.5 Options
- 1.10.6 The control panel (HMI)
- 1.10.7 USB port type B (rear side)
- 1.10.8 Interface module slot
- 1.10.9 Analog interface
- 1.10.10 Share Bus-Connection
- 1.10.11 Sense connector (remote sensing)
- 1.10.12 Master-Slave bus
- 2. Installation & commissioning
- 2.1 Transport and storage
- 2.2 Unpacking and visual check
- 2.3 Installation
- 2.3.1 Safety procedures before installation and use
- 2.3.2 Preparation
- 2.3.3 Installing the device
- 2.3.4 Connection to AC supply
- 2.3.5 Connection to DC loads
- 2.3.6 Grounding of the DC output
- 2.3.7 Connecting the “Share” bus
- 2.3.8 Connection of remote sense
- 2.3.9 Installation of an AnyBus interface module
- 2.3.10 Connecting the analog interface
- 2.3.11 Connecting the USB port (rear side)
- 2.3.12 Initial commission
- 2.3.13 Commission after a firmware update or a long period of non-use
- 3. Operation and application
- 3.1 Personal safety
- 3.2 Operating modes
- 3.3 Manual operation
- 3.4 Remote control
- 3.5 Alarms and monitoring
- 3.6 Control panel (HMI) lock
- 3.7 Loading and saving a user profile
- 3.8 The function generator
- 3.8.1 Introduction
- 3.8.2 General
- 3.8.3 Method of operation
- 3.8.4 Manual operation
- 3.8.5 Sine wave function
- 3.8.6 Triangular function
- 3.8.7 Rectangular function
- 3.8.8 Trapezoidal function
- 3.8.9 DIN 40839 function
- 3.8.10 Arbitrary function
- 3.8.11 Ramp Function
- 3.8.12 UI and IU table functions (XY table)
- 3.8.13 PV table function (photovoltaics)
- 3.8.14 FC table function (fuel cell)
- 3.8.15 Remote control of the function generator
- 3.9 Other applications
- 4. Service and maintenance
- 5. Accessories and options
- 6. Service & Support
- 1. General

Page 38
PSI 9000 3U Series
www.elektroautomatik.de
ea1974@elektroautomatik.de
EA Elektro-Automatik GmbH
Helmholtzstr. 31-33 • 41747 Viersen
Germany
Fon: +49 2162 / 3785-0
Fax: +49 2162 / 16230
3.2.5 Alarm conditions
This section only gives an overview about device alarms. What to do in case your device indi-
cates an alarm condition is described in section „3.5. Alarms and monitoring“.
As a basic principle, all alarm conditions are signalled optically (Text + message in the display), acoustically (if
activated) and as a readable status via the digital interface. With any alarm occurring, the DC output of the device
is switched off. In addition, the alarms OT and OVP are reported as signals on the analogue interface.
3.2.5.1 Power Fail
Power Fail (PF) indicates an alarm condition which may have various causes:
• AC input voltage too high (mains overvoltage)
• AC input voltage too low (mains undervoltage, mains failure)
• Defect in the input circuit (PFC)
• Not all required AC input phases are connected (see „2.3.4. Connection to AC supply“ for requirements)
Switching off the device by the mains switch can not be distinguished from a mains blackout
and thus the device will signalise a PF alarm every time the device is switched off. This can
be ignored.
3.2.5.2 Overtemperature
An overtemperature alarm (OT) can occur if an excess temperature inside the device causes to switch off the DC
output. This alarm condition is shown as the message “Alarm: OT” in the display. In addition, the condition will
be passed as a signal to the analog interface where it can also be read as an alarm code, as well as alarm code
which can be read via digital interface.
An OT alarm has a lower priority than an OV alarm (overvoltage). If an OV alarm occurs during
an OT alarm, then the message “OT” will be overwritten by “OV”
3.2.5.3 Overvoltage protection
An overvoltage alarm (OVP) will switch off the DC output and can occur if:
• the power supply itself, as a voltage source, generates an output voltage higher than set for the overvoltage
alarm limit (OVP, 0...110% U
Nenn
) or the connected load somehow returns voltage higher than set for the over-
voltage alarm limit
This function serves to warn the user of the power supply acoustically or optically that the device probably has
generated an excessive voltage which could damage the connected load application.
The device is not tted with protection from external overvoltage.
3.2.5.4 Overcurrent protection
An overcurrent alarm (OCP) will switch off the DC output and can occur if:
• The output current in the DC output exceeds the adjusted OCP limit.
This function serves to protect the connected load application so that this is not overloaded and possibly damaged
due to an excessive current.
3.2.5.5 Overpower protection
An overpower alarm (OPP) will switch off the DC output and can occur if:
• the product of the output voltage and output current in the DC output exceeds the adjusted OPP limit.
This function serves to protect the connected load application so that this is not overloaded and possibly damaged
due to an excessive power consumption.