Arteco

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Revision as of 15:36, 14 January 2014 by Hsyco (talk | contribs) (→‎Datapoints)
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Arteco Everywhere is a general purpose digital input-output Ethernet controller. It is available in two versions, a 4 inputs, 4 outputs module, and an 8 inputs 8 outputs module. The ARTECOIO I/O Server in HSYCO creates a data point representation that you can use in the EVENTS language and Java to read the input pins and control the outputs. It also automatically allows you to create control objects for the Web user interface.

Communication

Use the Aritech CS590 RS232 cable to connect the panel directly to HSYCO or to an Ethernet/RS-232 gateway.

RS-232 parameters:

Baud rate same as configured on panel (default 9600)
Data bits 8
Stop bit 1
Parity none
Flow control none

Arteco Configuration

The IP address must correspond to the IP address of the Arteco module. The port number is optional and can be omitted if the module is configured to the 80 default HTTP port number. The user and password parameters are also optional, and can be omitted if the module is configured with the default “admin” user and “arteco” password.


HSYCO Configuration

Options

ID Default Values Description
startupevents false true generate IO events also during the driver’s start-up phase
false start generating events only after HSYCO is aligned with the current status of the system
inputdiscovery false true automatically creates the list of all inputs in the systemtopo.txt file. Should be enabled to allow the automatic update of (button) objects’ states
false auto-detect for input devices is disabled
outputdiscovery false true automatically creates the list of all outputs in the systemtopo.txt file. Should be enabled to allow the automatic update of (button) objects’ states
false auto-detect for output devices is disabled
inputs 8 0...8 use input pins from 0 to 8
outputs 8 0...8 use output pins from 0 to 8

Datapoints

ID Value R/W Description
connection online R connection established
offline R HSYCO can't connect to the panel
i<n> 0 R input <n> is low
1 R input <n> is high
o<n> 0 R output <n> is low
W set output <n> to off
1 R output <n> is high
W set output N to on
flip W invert the status of output <n>
blink W continuously blink output <n>
pulse W set output <n> to on, then off after 1 sec.