Grossenbacher Systeme SmartPanel SP-240 Operating and installation instructions

DEVICE DESCRIPTION
SmartPanel
Hardware
Grossenbacher Systeme AG
Spinnereistrasse 10, CH-9008 St. Gallen
Phone +41 (0)71 243 29 29 / Fax +41 (0)71 243 29 28
info@gesys.ch / www.gesys.ch
Grossenbacher Systeme GmbH
Ruhrstrasse 15, DE-63452 Hanau
Phone +49 (0)6181 6751 999/ Fax +49 (0)6181 6751 998
SP-240
DVS 63067-V3.0

SmartPanel
Hardware
DVS 63067 V2.0 © 2011 by Grossenbacher Systeme AG
Copyright
Keep documentation for future use!
This documentation is the intellectual property of Grossenbacher Systeme AG, which also has
the exclusive copyright. Any modification of the content, duplication or reprinting of this
documentation, as well as any distribution to third parties can only be made with the express
permission of Grossenbacher Systeme AG.
Grossenbacher Systeme AG does not accept any liability for damages arising from the use of
any incorrect or incomplete information contained in this documentation or any information missing
therefrom.
Grossenbacher Systeme AG reserves the right to make complete or partial modifications to this
document.
All brand and product names are trademarks or registered trademarks of the owner concerned
DVS 63067-V3.0

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Hardware
© 2011 by Grossenbacher Systeme AG DVS 63067 V2.0 3
Proper use
The device must only be used for the applications specified in the
device description and only in conjunction with the components
recommended by Moeller GmbH.
Warning
Trouble-free and safe operation of the product can only be ensured if
the measures relating to proper transport, storage, assembly,
installation and careful operation are strictly observed.
The device must not be switched on when it is covered with
condensation. When changing its location from cold to warm allow the
device to acclimatize to the new conditions before commissioning.
No warranty claims will be recognized for faults arising from the
improper handling of the device.
The device should not be used for the implementation of any safety
functions relating to the protection of personnel and machinery.
No liability is accepted for claims for damages arising from a failure or
functional defect in the device.
All data specified in this document does not represent guaranteed
specifications in the legal sense.
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4 DVS 63067 V2.0 © 2011 by Grossenbacher Systeme AG
Safety instructions for the user
This device description contains the information required for the
proper use of the products described therein. Sections 1 to 10 address
technically qualified personnel and Section onwards addresses
personnel not requiring any technical knowledge.
Qualified personnel in the sense of the safety instructions given in this
device description or on the product itself are persons who:
as engineering personnel are either familiar with the safety concepts of
automation,
or as operating personnel, are instructed in the use of automation
components and are familiar with the contents of this device
description relating to the operation of the device,
or as commissioning or service personnel are suitably trained for the
repair of automation devices and are authorized to commission circuits
and devices/systems in accordance with standard safety engineering
principles.
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© 2011 by Grossenbacher Systeme AG DVS 63067 V2.0 5
Contents
1
Explanation of symbols................................................. 7
2
Introduction.................................................................... 9
3
Device Versions ........................................................... 11
3.1 Specification ......................................................................... 11
3.2 Accessories ..........................................................................12
4
Features........................................................................ 13
5
Commissioning............................................................ 15
5.1 Overview of connections ......................................................15
5.2 Connecting the power supply ...............................................15
5.3 Power Fail and UPS .............................................................16
5.4 Fuse .....................................................................................16
5.5 Setup of RTC.......................................................................16
5.6 Preparing the shield connections .........................................17
5.7 Connecting the Ethernet.......................................................18
5.8 Connecting the USB-Interface..............................................18
5.9 Connection for COM1 serial interface ..................................19
5.10 CAN interface...................................................................19
5.11 Inserting / Removing the Micro-SDCARD™.....................22
5.12 Temperature sensor connector ........................................22
6
Operation...................................................................... 23
6.1 Startup / Shutdown behaviour ..............................................23
7
Mounting instructions ................................................. 23
7.1 General mounting instructions..............................................23
7.2 Mounting in the front panel - General...................................23
7.3 Front panel cutout 3,5“ to 7“ ................................................24
7.4 Mechanical dimensions - Frontside 3,5“ to 7“......................25
8
Notes on the touch-screen.......................................... 29
8.1 Basic touch-screen function .................................................29
9
Backlight, contrast....................................................... 31
9.1 Contrast................................................................................31
9.2 Backlight...............................................................................31
9.3 Diagnostics...........................................................................31
10
Maintenance and repair............................................... 33
11
Technical data.............................................................. 35
12
Disposal........................................................................ 37
13
EU Conformity and Standards.................................... 39
14
Revision history........................................................... 41
15
Alphabetical index ....................................................... 43
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© 2011 by Grossenbacher Systeme AG DVS 63067 V2.0 7
1 Explanation of symbols
Danger warnings
The following information is for your personal safety and the prevention of
damage to the device described or connected devices.
Safety instructions and warnings for the prevention of danger to the life and
health of users or service personnel, and for the prevention of damage are
highlighted in this document by the following pictograms. “Warning” and
“Information” pictograms are shown in this document.
Warnings indicate the following:
Death, serious injury or substantial material damage may occur if the related
safety measures are not implemented.
The individual “Warning” pictograms have the following meaning:
Caution! General!
An instruction to be observed in order to ensure protection
against hazards and the safe operation of the device. The
specified procedure should be observed.
Caution! Electric shock!
Persons may be exposed to dangerous voltages that occur
in electrical systems. There is a danger of electric shock if a
live part is touched.
Caution! Observe ESD measures!
Electrostatic discharge may destroy electronic components.
Information pictograms indicate the following:
Important information about the product or the relevant section of the
document, requiring the particular attention of the reader.
The “Information” pictogram has the following meaning:
Indicates important and instructional information.
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8 DVS 63067 V2.0 © 2011 by Grossenbacher Systeme AG
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SmartPanel
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© 2011 by Grossenbacher Systeme AG DVS 63067 V2.0 9
2 Introduction
The new SmartPanels enhances the openAutomation concept of
Grossenbacher System AG in the range of small and medium applications.
So price and performance can be optimized to the requirements of the
application.
Based on a powerful 400MHz ARM processor with WindowsCE or Linux,
3,5“, 4,3“, 5,7“ or 7“ TFT display with LED backlight and touch screen,
Ethernet, USB-Host and CAN on-board, the devices perfectly fits together
with the openAutomation software solutions of Grossenbacher Systeme
AG.
In the basic configuration the device can be used as „HMI“ or as a user
programmable „HMI-Open“ with Ethernet, USB and CAN onboard.
With CoDeSys IEC-61131 Soft-PLC the device can be used as "HMI-
Control" with Codesys including integrated TargetVisu and WebVisu.
Without moving parts the devices are “at home” in rugged environment!
The seamless resistive touch-screen provides a fast, intuitive and
ergonomic operation.
Unique is the mechanical concept with one equal mounting cutout for all
devices! So it is possible to change the display size at any time very easy
without mechanical changes!
Features:
• 3,5”, 4,3”, 5,7” or 7” TFT
• One mounting cutout for all sizes
• Resistive Touch-screen
• Powerful 400MHz ARM CPU
• WindowsCE or Linux
• Fanless
• Ethernet
• Exchangeable micro SD-Card
• CANopen
• CoDeSys Soft-PLC (Option)
The devices can be installed in control panels or control desks without any
problem. The devices are not designed for mobile use.
This device description is a reference for the technical data, installation,
terminals, commissioning, operation, and maintenance of all SmartPanel
versions.
Additional documentation:
System description WindowsCE DVS 49631
System description CoDeSys Soft-PLC DVS 49634
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10 DVS 63067 V2.0 © 2011 by Grossenbacher Systeme AG
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© 2011 by Grossenbacher Systeme AG DVS 63067 V2.0 11
3 Device Versions
In this chapter all device versions of the SmartPanels and available
accessories are specified.
3.1 S
PECIFICATION
General features of all device versions:
Processor: 400MHz
ARM CPU
Memory:
64MB
Mass storage: 128MB onboard NAND-Flash, MicroSD-Slot
Interfaces: 1 x Ethernet
2 x USB Master
1 x RS232/485/422
1 x CAN
Stromversorgung: 24VDC
SP-240-03R-000
Ord.No.: 50 81 862
SmartPanel 3,5” TFT 320x240 64k colours
Resistive-Touchscreen
SP-240-04R-000
Ord.No.: 50 81 863
SmartPanel 4,3” TFT 480x272 64k colours
Resistive-Touchscreen
SP-240-05R-000
Ord.No.: 50 81 864
SmartPanel 5,7” TFT 640x480 64k colours
Resistive-Touchscreen
SP-240-07R-000
Ord.No.: 50 81 865
SmartPanel 7” TFT 800x480 64k colours
Resistive-Touchscreen
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3.2 A
CCESSORIES
Runtime-System
Ord.No: 5055014
RTS HMI CEARM SPi25
WindowsCE6 Professional and EPAM-RTS
preinstalled on Onboard Flash
Ord.No: 5055015
RTS HMI-Control CEARM SPi25 3S
WindowsCE6 Professional, EPAM-RTS and
Codesys-RTS V2.3 preinstalled on Onboard Flash
Ord.No: 5055030
RTS HMI ThinClient SPi25
WindowsCE6 Professional ThinClient
preinstalled on Onboard Flash
Ord.No: 5055033
RTS HMI-open .NET SPi25
WindowsCE6 Professional, .NET Framework
preinstalled on Onboard Flash
Micro-SDCARD
Ord.No: 32 01 381
Micro-SDCARD 1GB, INDUSTRIAL
Ord.No: 32 01 382
Micro-SDCARD 2GB, INDUSTRIAL
Stecker für
Stromversorgung
Ord.No: 12 17 013
3pol Phoenix Contact, MSTB2.5/3-STF-5.08
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© 2011 by Grossenbacher Systeme AG DVS 63067 V2.0 13
4 Features
Feature Comment
Display
Display Size
3,5“/4,3“/5,7“/7“
Type TFT
64k Colours (16Bit)
Touch-screen Resistive touch-
screen
Resolution 12 Bit (0-4096)
Realtime clock Yes Capacitor-backed (ca. 1 week)
Processor Type
ARM9 iMX25
Clock
400MHz
Mass storage Onboard Flash Type 128MB NAND Flash
Memory SDRAM MB 64MB
Retain memory kB 256kB1
Exchangeable
memory
Micro-SDCARD
Memorystick
Type Micro SD-Card-Slot or Memorystick (optional via
USB)
Interfaces COM1 Type RS232/485/422, max. 115 kBit/s
Ethernet 1 Type 10 / 100 MBit/s
USB 1-2 (2.0) Type 1.5 / 12 / 480 MBit/s
Keyboard Type Optional via USB
Mouse Type Optional via USB
CAN Type CiA V2.0 Part B; max. 1MBaud; not isolated
Power supply Type
8,5VDC to 30VDC, NOT isolated
1Retain data will be saved on power fail to Flash
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© 2011 by Grossenbacher Systeme AG DVS 63067 V2.0 15
5 Commissioning
5.1 O
VERVIEW OF CONNECTIONS
62528-V1.0
No. Element Description
1 Function earth
2 24VDC power supply ÎChap. 5.2
3 COM1 ÎChap. 5.9
4 CAN ÎChap. 5.10
5 2xUSB ÎChap. 5.8
6 1xEthernet ÎChap. 5.7
7 Micro-SDCARD-Slot ÎChap. 5.11
8 Temp.sensor connector ÎChap. 5.12
5.2 C
ONNECTING THE POWER SUPPLY
The SmartPanel devices belongs to protection class 3. The system power
supply must be provided with a 24VDC SELV voltage (ÎSection 11). The
power supply is NOT isolated. The GND connection is directly connected to
the housing potential. The device is protected with a fuse (note
disconnection capacity ÎSection 11). A reverse polarity protective device is
used to protect the device in the event of reversed poles. Operation,
however, is only possible if the connection was made correctly.
Connections for the SmartPanel must comply with specific, local regulations.
1
234
5
6
8
7
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The connection must be made as follows:
1.
The cross-section of the power supply cable must be at least 0.75 mm²
and a maximum of 2.5 mm².
2. A flexible lead or wire can be used for the connection.
3. The current consumption (ÎSection 11) must be taken into account
when implementing the power supply.
4. The functional earth is not compulsory for operation. But it can help to
avoid disturbance caused by potential differences.
5. The GND connection is directly connected to the housing potential
6. For safety reasons the wires should be fixed together near by the
connector
The plug connector (socket connector with screw terminals) is supplied with
the device for connection.
Connector assignment
In the event of reverse connection and simultaneous
connection of a further 0V connection, e.g. GND
connection of the COM1 interface, the fault current flows
via this 0V connection. If the housing is not lying well set
on the 0V potential, the result can be destruction of the
device or of the external components!
For safety reasons the wires should be fixed together
near by the connector.
5.3
P
OWER
F
AIL AND
UPS
The device includes a power fail functionality. The power fail mechanism
prevents the loss of retain data if a Soft-PLC is used. The retain data are
stored on Flash when the PLC is shutting down and are read out again when
the PLC starts up. (for details s.a. System description Soft-PLC)
The standard integrated UPS-solution can bridge brownouts up to 5s.
5.4 F
USE
The device is protected with a fuse internally. The fuse can not be changed
by the user.
5.5 S
ETUP OF
RTC
If the device is powerless for a long time (more than 1 week), it may
be necessary to setup the Time and Date again.
(plug connector: 3pol Phoenix MSTB2.5/3-ST-
5.08, RM 5.08mm, Phönix Ord.Nr 1757022)
Designation Function
+24 VDC +24VDC power supply
reserved
0 V 0V power supply
24VDC 0VDC
reserved !
DVS 63067-V3.0

SmartPanel
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© 2011 by Grossenbacher Systeme AG DVS 63067 V2.0 17
5.6 P
REPARING THE SHIELD CONNECTIONS
The preparation of the data and signal cables is an important factor for the
electromagnetic compatibility (EMC) of the SmartPanel, both in terms of
interference immunity and emission.
The RS232 and CAN interface are connected via D-Subminiature plug
connectors in accordance with DIN 41652. Only use metal or metallised
connector casings with a cable clamp for strain relief fastened or clamped
on the connector. The clamping of the cable shield ensures an optimum
contact area and a low impedance connection with the connector casing of
the SmartPanel.
The following procedure is recommended for making the low-impedance
connection for the cable shield:
1. Strip the cable.
2. Shorten the exposed shield braid by approx. 3 cm.
3. Turn back the braid over the cable sheath.
4. Use a heat shrinkable tubing or rubber grommet to cover the exposed
cable sheath with the folded back shield braid so that 5 to 8 mm of
exposed cable shield is left at the sheath end and is cleanly covered at
the back.
5. Fit the connector
6. The cable is then fastened at the exposed shield braid and the cable
sheath below it directly underneath the cable clamp strap of the
connector casing.
Connection work should be carried out with special care
in order to ensure trouble-free operation.
The EMC values stated in the technical data can only be
guaranteed if the cables are prepared according to the
following specifications.
Metal or metallised
D-subminiature connector
Metallic
connector shroud
Fastening
screws
connector casing
Heat shrinkable
tubing for covering
the shield braid
Shield braid pulled
back over the
cable sheath
Strap for cable clamp
and contacting of the
cable shield with the
connector casing
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5.7 C
ONNECTING THE
E
THERNET
The Ethernet-Interface is compatible with standard IEEE 802.3
(10/100BASE-T).
The network connection is implemented via a Cat 5e cable with shield and
RJ45 connectors. The maximum cable length and transfer speed is limited
by the cable quality in EIA/TIA 568 TSB-36. Cable lengths up to 100m are
possible.
Two diagnosis LEDs are available:
Orange: LINK (connection to HUB or to another device)
Green: ACT (sending or receiving)
Cables connected to the Ethernet must be laid separately from the low-
voltage cables.
To ensure disturbance-free operation, it is strongly
recommended to use network cables with shield.
Connector assignment
RJ45
connector
Pin No. Signal Description
1 TXD+
2 TXD-
3 RXD+
4 -
5 -
6 RXD-
Socket, 8pole
7 -
RJ45
8 -
5.8 C
ONNECTING THE
USB-I
NTERFACE
The USB Interface is compatible to USB-standard Version 2.0
The use of the USB-Interface requires support by the operating system.
Cables connected to the USB must be laid separately from the low-voltage
cables.
LINK
A
CT
3
1
2
3
4
5
6
7
8
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5.9 C
ONNECTION FOR
COM1
SERIAL INTERFACE
The serial Interface COM1 is PC-compatible. This interface is not isolated.
The GND connection is implemented directly on the housing potential (Î
Section 11).
Connector Pin No. Signal Description
1 -
n.c.
2 RXD
RS232
3 TXD/TXB(+)/485-
B(+)
RS232/ 485/ 422
4 TXA(-)/485-A(-)
RS422/ 485
5 GND
direct on housing potential
6 -
n.c.
7 RTS
Connector
9pole
8 CTS/RXA(-)
RS232/422
SubD
9 RXB(+)
RS422
Cables connected to the serial COM interface must be laid separately from
the low-voltage cables.
To ensure disturbance-free operation, it is strongly
recommended to use cables with shield.
The COM1 interface can be configured as RS232/485 or 422. In case of
RS485 the configuration for send or receive is done automatically.
Dip-Switch:
5.10 CAN
INTERFACE
The communication interface is defined in accordance with the CiA CAN
Specification V2.0 part B. The fully-integrated CAN unit supports the sending
and receiving of frames with an 11-bit identifier. The type of configuration
selected depends on the software protocol. The baud rate can be selected in
a wide range, and only the standard CiA baud rates are implemented.
1 2 3 4 5
6 7 8 9
5
5
94
83
72
61
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20 DVS 63067 V2.0 © 2011 by Grossenbacher Systeme AG
CAN connector
Sub-D 9 Pole male
Connect
or
Pin No. Assignme
nt
Function
1 -
2 CAN
LOW
Negative data signal
3 GND Signal Ground (ground potential)
4 -
5 -
6 GND Signal Ground (ground potential)
7 CAN
HIGH
Positive data signal
8 -
9
CAN_V+
Internally connected with +24VDC;
optional power supply via CAN-cable
Case Case Cable shield
The CAN interface is NOT isolated.
The max. baud rate is 1MBit/s.
The terminating resistor must be implemented externally,
e.g. in the connector, and is not part of the device.
Pin 9 (CAN-V+) is connected with +24VDC internally to
provide optional power supply of the device via the CAN-
cable.
A detailed description of the wiring is provided in the
“Codesys Soft-PLC” system description
Wiring instructions
The stations on the bus system are connected via fieldbus lines complying
with ISO 11898. The cables must accordingly have the following electrical
characteristics:
Parameter Abbreviation Unit Value Value Value Note
min. nom. max.
Impedance Z Ω108 120 132 Measured between two
signal lines
Specific
resistance
mΩ/m 70 For the receiver
module, the differential
voltage on the bus
cable depends on cable
resistance between it
and the sender
Cable delay ns/m 5 The mininum delay
between to points on
the bus is 0. The
maximum delay is
determined by the bit
timing and the delays of
the sender and receiver
circuits
The figure shows the minimum wiring with shielding between two bus
stations with the Sub-D connector as an example. A bus terminating
5
94
83
72
61
1 2 3 4 5
6 7 8 9
6
DVS 63067-V3.0
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