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T481010A Datasheet, PDF (1/8 Pages) Red Lion Controls. Inc – MODEL T48 - 1/16 DIN TEMPERATURE CONTROLLER
Bulletin No. T48-H
Drawing No. LP0332
Released 08/13
Tel +1 (717) 767-6511
Fax +1 (717) 764-0839
www.redlion.net
MODEL T48 - 1/16 DIN TEMPERATURE CONTROLLER
 PID CONTROL WITH REDUCED OVERSHOOT
 ON DEMAND AUTO-TUNING OF PID CONTROL SETTINGS
 NEMA 4X/IP65 BEZEL
 DUAL LED DISPLAYS FOR SIMULTANEOUS INDICATION OF
TEMPERATURE AND SETPOINT
 STATUS INDICATORS FOR OUTPUTS AND CONTROL MODES
 ACCEPTS 10 TYPES OF SENSOR INPUTS (Thermocouple or RTD)
 OPTIONAL HEATER CURRENT MONITOR AND HEATER BREAK
ALARM
 OPTIONAL DUAL ALARM OUTPUTS
 OPTIONAL TWO LINEAR DC OUTPUTS (0 to 10 V, 0/4 to 20 mA)
 MANUAL/AUTOMATIC CONTROL MODES
 SETPOINT RAMPING FOR PROCESS STARTUP
 PROGRAMMABLE USER INPUT (Digital) FOR ADDED FLEXIBILITY
 SENSOR ERROR COMPENSATION (Offset) AND BREAK
DETECTION
 HEATING AND OPTIONAL COOLING OUTPUTS
 PARAMETER SECURITY VIA PROGRAMMABLE LOCKOUTS
 FIELD REPLACEABLE OUTPUT BOARD
(Relay or Logic/SSR Drive)
 OPTIONAL TRIAC OUTPUT
 SECOND SETPOINT SETTING
 OPTIONAL REMOTE SETPOINT INPUT (0/4 to 20 mA)
 OPTIONAL RS485 SERIAL COMMUNICATIONS
 PC SOFTWARE AVAILABLE FOR CONTROLLER CONFIGURATION
UL Recognized Component,
File # E156876
DESCRIPTION
The T48 Controller accepts signals from a variety of temperature sensors
(thermocouple or RTD elements), precisely displays the process temperature,
and provides an accurate output control signal (time proportional or linear DC)
to maintain the process at the desired temperature. The controller’s
comprehensive yet simple programming allows it to meet a wide variety of
application requirements.
The controller operates in the PID control mode for both heating and cooling,
with on-demand auto-tune, which will establish the tuning constants. The PID
tuning constants may be fine-tuned by the operator at any time and then locked
out from further modification. The controller employs a unique overshoot
suppression feature, which allows the quickest response without excessive
overshoot. The unit can be transferred to operate in the manual mode, providing
the operator with direct control of the output. The controller may also be
programmed to operate in the ON/OFF control mode with adjustable hysteresis.
A second setpoint is available on select models to allow quick selection of a
different setpoint setting.
CAUTION: Risk of Danger.
Read complete instructions prior to
installation and operation of the unit.
CAUTION: Risk of electric shock.
DIMENSIONS In inches (mm)
%P DV MN O1 A1 A2
DP
1.95
(49.5)
1.95
(49.5)
0.37
(9.4)
4.17 (105.9)
Dual 4-digit displays allow viewing of the process temperature and setpoint
simultaneously. Front panel indicators inform the operator of the controller and
output status. On many models the main control output and the alarm outputs
are field replaceable.
Optional alarm(s) can be configured to activate according to a variety of actions
(Absolute HI or LO, Deviation HI or LO, Band IN or OUT, and Heater Current
Break) with adjustable hysteresis. A standby feature suppresses the alarm during
power-up until the temperature stabilizes outside the alarm region. The second
alarm can be configured as a secondary PID output (heat/cool applications).
Optional Main Linear DC output (10 V or 20 mA) can be used for control or
temperature re-transmission purposes. Programmable output update time
reduces valve or actuator activity. The output range can be scaled independent
of the input range.
Optional Second Linear DC output (10 V or 20 mA) provides an independent
temperature re-transmission, while the main Linear DC output is being used for
control. The output range can be scaled independent of the input range.
Optional Heater Current Monitor provides a direct readout of process heater
current. An alarm can be programmed to signal when the heater has failed. This
provides early warning of system failure before product quality is affected.
13 14
1
6
2
7
1.76
(44.7) 3
8
4
9
5
10
11 12
1.76 (44.7)
PANEL CUT-OUT
1.772
+0.024
-0.000
(45
+0.6
-0.0
)
1.772
+0.024
-0.000
(45
+0.6
-0.0
)
1