tecting the SSR: the user does not
have to do any additional wiring.
PID
The control algorithm adapts to every
type of heat process.
Up to 14 different control modes are
available: from simple ON/OFF control to single or double action
heat/cool PID; for cooling, simply
indicate the fluid being used.
Sophisticated and efficient algorithms
for automatic tuning of control parameters provide precise process control without user intervention.
Outputs and digital input
The instrument can have up to 3 outputs: a cooling relay (3A, 250V), logic
(24Vdc, 35mA) or continuous
(0/4...20mA, 0...10V) and two optional alarm relay outputs (3A, 250V).
The outputs are freely configurable
via software.
By means of internal bus, each
"slave" can activate the two relay outputs on the "master" following alarm
conditions to create electrical clearance or block signals set to assure
safe operation of technological
systems.
This further reduces electromechanical wiring.
At the logic level, there are 4 generic
alarms configurable as: absolute,
deviation, direct, reverse, window, in
latching or non-latching mode, disabled at power-up.
With the isolated digital input always
available, you can select one of the
two pre-settable set points select
Manual-Automatic mode, reset the
alarms memory, or enable the hold
function.
Safety, diagnostics
At the logic level, there are 4 completely configurable generic alarms.
Efficient diagnosis of the control loop
prevents breakdowns and lets the
user take timely action (for example,
in case of broken probe or load failure).
The LBA alarm carefully controls the
control loop, while the current transformer (option) lets you directly
monitor the load and activate the HB
alarm in case of current failure or
SSR in short.
In addition, the voltage transformer
lets the user monitor line voltage,
power, and energy, with important
benefits for safety and plant efficiency.
Software can be used to define the
state of the alarm outputs or a preset
power level to be supplied in case of
a broken probe, thereby assuring
continuous service of the individual
module.
LEDs signal any fault in real time,
and powerful diagnostics is available
via serial.
A simple command from the digital
input deactivates the control zone by
"software shutdown" of the instrument.
Programming
The Geflex modules can be programmed via a supervisor (industrial PC,
HMI) or via the GFX_OP terminal
(see accessories). Both solutions provide complete configurability and diagnostics for every Geflex
(Master/Slave).
For even simpler configuration, a programming kit (from notebook PC or
palm PC) is available, composed of
an IRDA interface unit and WINSTRUM (a guided program for Windows environment - see technical
sheet).
TECHNICAL DATA
INPUTS
Input range: 0...60mV.
Sampling time: 120msec.
Accuracy: 0,2%fs ±1 scale points at
25°C.
Resolution : < 2µV for range 60mV.
Input filter: 0...20,0sec.
Zero offset adjustable in range:
-999...+999 scale points.
Main input
Thermocouple, Resistance Thermometer, Linear.
Application: process variable.
Thermocouples:
ITS90: J, K, R, S, T, custom.
Cold junction compensation: internal,
with automatic compensation.
Resistance Thermometer:
Pt100 DIN 43710, J Pt100, custom.
Linears/T
ransmitters:
range 0...60mV, 0...20mA, 0...1Vdc
(configurable within limits).
Possible 32 segment custom linearization.
Load control with option
TA, TV internal:
Ammeter :
range 0...5/10/15Aac
Applications: control of current absorbed by load.
Line tension:
range 0...480Vac.
Applications: control line tension,
power.
Digital input
PNP 24V, 8mA (isol. 3500V)
Applications: Man/Auto, Loc/Rem,
Hold, Reset alarms, Select setpoint,
shut down software.
Auxiliary input (option)
Potentiometers ≥ 1KΩ
0/2...10V (Ri > 100KΩ)
0/4...20mA (Ri > 500Ω).
OUTPUTS
Max 3 Relays / 1 Logic + 2 Relays.
- Relay
(Up to 3), NO, max 3A, 250V resistive load.
Application: cooling, alarms.
- Logic
24Vdc, 35mA.
Application: cooling, alarms.