Micromod Micro-DCI: 53SL5100B Single Loop Controller Bedienungsanleitung Seite 34

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53SL5100B Single-Loop Controller
INSTRUCTION MANUAL
If the state of the database is unknown, the instrument can be returned to the factory standard configuration
with two datapoint entries:
1. Set B00 to 98 to default the database.
2. Set B00 to 1 to start functioning as a Single Loop Controller.
If the unit is to be operated online, it must be installed as described in Section 2, Installation. ANI0 (PV Input)
and ANO0 (Output) must be connected, and the unit must have power applied.
4.3 Configuring the Database Modules
The datapoints in the database modules must be changed to reflect required alterations in the factory
standard configuration or when the instrument is re-configured. There are generally four datapoint parameter
types contained in the eight database modules. The parameter types affect Datalink communications, display
indications, input-output signals, and alarm conditions. The eight database modules are described in Table 4-
2. Although it is not an absolute criterion, it is assumed the modules will be configured in the table Item order;
however, if the instrument is to be connected to a Datalink network, item 7, Communication Module, should
be configured first. By configuring the Communication Module first, the instrument can function on the
Datalink and the remaining datapoint values can be entered via the Datalink interrogator (master). Reference
the applicable instruction bulletin IB 53SU5000 for the procedure.
Table 4-2 is also a pointer to the descriptions of the database modules; the descriptions are presented
as Tables 4-3 through 4-10. (The gray tone shading in the default cell of a datapoint indicates the datapoint
contents are left unchanged after default. See Section 5.5 for the default procedure.)
Table 4-3. Database Modules
Item Title Purpose See
Table
1 Analog Input Module This module is used to configure the voltage input
characteristics (e.g., input voltage range) and how the input
signal is interpreted (linear or square root representation).
4-4
2
Analog Output Module
The primary purpose of this module is to set the 0 - 20 mA
output signal relative to the displayed percent output.
4-5
3 Contact Input Module This module allows the action of the CCIs to be reversed
(normally a closed contact = 1, but can be change to = 0).
4-6
4 Contact Output
Module
This module allows the action of a CCOs to be reversed
(normally a closed contact = 1, but can be changed to = 0).
4-7
5 Controller
Module
The primary purpose of this module is to set the instrument’s
responsiveness, Alarm Limits t & 2, Alarm Dead Band, and
the range limits (e.g., 0 - 100, -20 - 80, etc.).
4-8
6 Parameter
Display Module
This module provides quick pushbutton display access to
any
three selected datapoints for viewing or modifying (e.g.,
Alarm Limits 1 & 2 and Alarm Dead Band) without the
necessity of entering Engineering mode and addressing the
datapoints.
4-9
7 Communication
Module
This module is used to configure the Datalink port
parameters (e.g., baud rate, parity selection, etc.).
4-10
8 System Module This module is used to set the instrument tag name and the
display brightness.
4-11
28
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