3C0000407 CAL CONTROLS, 3C0000407 Datasheet - Page 2

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3C0000407

Manufacturer Part Number
3C0000407
Description
COMMUNICATION BOARD, RS485
Manufacturer
CAL CONTROLS
Datasheet

Specifications of 3C0000407

Accessory Type
Communication Board
Communication Option
RS485 Modbus Protocol
Power Connection Type
CALCOMMS 128 CAL Controll
For Use With
9500P Programmable Temperature And Process Controller
CAL innovators in control
Established in 1963, CAL is a dynamic and
strong company leading the industry in
single-loop controllers. CAL’s pioneering
spirit established many of today’s world
standards for controllers such as the first
48mm x 48mm (
followed by the first digital controller of the
same size and then the first 24mm x 48mm
(
CAL’s range of easy-to-use controllers are
complemented by a suite of software
products for communications, data-logging
and supervisory control.
CAL has developed a reputation based on
product support, innovation and attractively-
styled controllers that enhance our
customers’ equipment, panels and machines.
Note:
Standard colour is Jade
Green, other colours
are subject to minimum
order quantities.
The CAL 9500P Programmable Temperature / Process Controller with Communications & Software Support
1
/
32
ND
DIN) controller.
1
/
16
TH
DIN) analogue controller,
www.cal-controls.com
The CAL 9500P programmable process
controller
The CAL 9500P is a versatile programmable controller
for temperature and process control applications. It is
designed to offer the highest functionality in a 48mm
x 48mm (1/16
The 9500P can be factory configured in a range of
process control or temperature control options
making the controller dedicated to the application,
ideal for both OEM and manufacturing process
applications.
This combination of programmable ramp/soak profiles,
process control inputs and 3 outputs, together with
RS232 or RS485 comms makes the CAL 9500P a
unique and affordable package.
Controller functionality
Inputs
Outputs (total of three outputs)
Easy to scale input signals
CAL has made the task of scaling inputs very simple:
example: 4-20mA = 60–260 units, where 4mA = 60 units
note: 4-20mA corresponds to an input range of 10-50mV
Step 1, enter scale max’ = 260,
Step 2, enter scale min’ = 60,
Step 3, enter input max’ = 50 (i.e. 50mV = 20mA)
Step 4, enter input min’ = 10 (i.e. 10mV = 4mA).
Full P.I.D. operation
Autotune at 75% of set-point or at set-point
Heat-cool operation
RS232 or RS485 communications options
CE, UL & CSA compliant
Thermocouples & RTD (PT100, 2 or 3 wire)
Analogue – 0-20mA, 4-20mA, 0-50mV, 0-5V, 0-10V
Solid state relay drive (SSD) and Relays (2 amp)
Analogue – 4-20mA, 0-5V, 0-10V
Visit our website for - pdf technical manuals, application notes, tutorials and much more
TH
DIN) package.
Set-point
Programmer functionality
Profile of a single program
(note: program capacity is a memory function and
different types of segment use more/less memory).
Subset of the functions list:
Power failure modes
Segment types
Hold back function
Up to 31 programs (profiles)
Up to 126 segments
Unlimited use of event outputs via the 2nd and 3rd
outputs
Copy/Paste/Edit/Delete functions to simplify program
building
Call another program as a sub-program segment
Up to 999 program loop cycles, or continuous loop
cycling
Hold back function, to ensure the next segment is not
started until the last segment reaches the set-point
3 power fail recovery options, (Hold, Continue or
Reset)
Front panel interrogation of the program position
Memory usage indication during programming.
hoLd Suspends program until run
on
Edit
rSEt
Cont Continue from interruption
hoLd Hold at interruption
SPr
SoAK Hold set-point for set time
StEP
LooP Repeat the program
CALL Call up another program
E.oP
Edit
hb.u Hold back, this function ‘holds back’ the
Segment 1
RAMP
Run program
Insert, delete or copy programs
Reset to program start
Ramp to next set-point
Step to new set-point
Generate an event output at end of segment
Delete or insert a segment
ramping set-point until the measured value
catches up with the ramping set-point. This
function ensures that the time taken to ramp
does not reduce the next segment.
Segment 2
SOAK
Segment 4
SOAK
Segment 3
STEP
Segment 5
RAMP
www.cal-controls.com
Segment 6
SOAK
Time
Segment 7
OUTPUT
EVENT
Examples:
Maximum capacity; 351 Bytes, 126 segments per
program, 31 programs
Example 1 (349 Bytes)
One program of 116 segments
(58 ramps, 58 soaks)
Example 2 (340 Bytes)
4 programs of 28 segments
(14 ramps, 14 soaks)
Example 3 (341 Bytes)
31 programs of (ramp-soak-ramp)
The above ramps are without hold-back option
Set-point
The CAL 9500P is potentially the most versatile and
flexible controller in its size and price range. The
above program shows what is possible from this
unique controller.
Memory Allocation Table
Function
Ramp
Ramp with Holdback
Soak
Step
Loops (1-3)
Loop (4+)
Call
Event Output
Program Header
e.g. loop for 25 cycles
from 1 to 999 cycles
Seg. 1
RAMP
Program LooP
Segment 4
Seg. 2
SOAK
Seg. 3
RAMP
to call another program
e.g. Call Prog 5
Program CALL,
Then go to 7
Segment 6
Seg. 5
RAMP
Memory Usage
4 Bytes
5 Bytes
2 Bytes
3 Bytes
1 Byte
2 Bytes
1 Byte
1 Byte
1 Byte
Seg. 7
SOAK
e.g. Trigger alarm on SP2
Seg. 8
E.oP Event Output
RAMP
Segment 9
CONTIN-
Seg. 10
SOAK
UOUS
Time

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