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Auber Instruments SYL-5342P-S Instruction Manual

Usb ramp and soak pid temperature controller

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AUBER INSTRUMENTS
Instruction Manual
SYL-5342P-S USB Ramp and Soak PID Temperature Controller
Caution
• This controller is intended to control equipment under normal operating
conditions. Failure or malfunction of the controller may lead to abnormal
operating conditions, which result in personal injury or damage to the
equipment or other property. Devices (limit or safety controls) or systems
(alarm or supervisory) intended to warn of or protect against failure or
malfunction of the controller must be incorporated into and maintained as part
of the control system.
• Installing the rubber gasket supplied will protect the controller front panel from
dust and water splash (IP54 rating). Additional protection is needed for higher
IP rating.
• USB data cable on terminal 11 & 12 must be secured and isolated from
the power input cable on terminal 9 & 10. Otherwise high voltage AC
power from the power input cable may damage your USB adapter and/or
your computer.
• This controller carries a 90-day warranty. This warranty is limited to the
controller only.
1. Features
• By provided software and USB adapter, user can get access to the controller
via Windows computer.
• 32 programmable ramp steps and 32 programmable soak steps (total of 64
steps)
• High flexibility in program and operation. User can use its keypad to change
the running status of program, such as run, hold and stop.
• This controller has two alarm relay outputs. Alarm relay 1 is used for
temperature alarm. Alarm relay 2 is used for program ending alarm, to notify
the operator that the whole program is completed.
• The safety-start feature may allow the program to run more efficiently. Four
power-off/power-on event handling modes are available, which can prevent
the program control from being adversely affected by unexpected power
interruptions.
2. Specifications
Table 1. SYL-5342P-S specifications.
Thermocouple (TC): K, E, J, T, S, R;
Input type
RTD (Resistance Temperature Detector): Pt100, Cu50
Input range
Please see section 5.3.10 for detail.
± 0.5% Full scale: RTD and thermocouple input with ice
point compensation or Cu50 copper compensation.
Accuracy
± 0.5% Full scale or ± 2ºC: Thermocouple input with
internal automatic compensation.
Response time
≤ 0.5 s (when FILt = 0)
Display
1° C, 1° F; or 0.1° C, 0.1° F
resolution
Fuzzy logic enhanced PID control
Control mode
On-off control
Output mode
Relay contact (NO): 250VAC/7A, 120V/10A, 24VDC/10A
Alarm relay
Relay contact (NO): 250VAC/1A, 120VAC/3A, 24V/3A
rating
Process high alarm, process low alarm, deviation high
Alarm function
alarm, and deviation low alarm
Power supply
85 ~ 240 VAC / 50 ~ 60 Hz
2020.06
Version 1.0 (June 2020)
Power
consumption
Ambient
environment
Dimension
Mounting cutout
3. Terminal Wiring
3.1. Sensor connection
Please refer to Table 3 for the input sensor type (Sn) setting codes. The initial
setting for input is for a K type thermocouple. Set Sn to the right sensor code if
another sensor type is used.
3.1.1. Thermocouple
The thermocouple should be connected to terminals 4 and 5. Make sure that the
polarity is correct. There are two commonly used color codes for the K type
thermocouple. US color code uses yellow (positive) and red (negative). Imported
DIN color code uses red (positive) and green/blue (negative). The temperature
reading will decrease as temperature increases if the connection is reversed.
When using ungrounded thermocouple that is in touch with a large conductive
subject, the electromagnetic field picked up by the sensor tip might be too large
for the controller to handle, i.e., the temperature display will change erratically.
In that case, connecting the shield of thermocouple to terminal 5 (circuit ground
of the controller) might solve the problem. Another option is to connect the
conductive subject to terminal 5.
3.1.2. RTD sensor
For a three-wire RTD with standard DIN color code, the two red wires should be
connected to the terminals 4 and 5, and the white wire should be connected to
terminal 3. For a two-wire RTD, the wires should be connected to terminals 4
and 5. Jump a wire between terminals 3 and 4. Set controller input type Sn to
Pt1 or Pt2.
3.2. Power to the controller
The power cables should be connected to terminals 9 and 10. Polarity does not
matter. It can be powered by 85-240V AC power source. Neither a transformer
nor jumper is needed to wire it up. For the sake of consistency with the wiring
example described later, we suggest you connect the hot wire to terminal 9 and
neutral to 10.
WWW.AUBERINS.COM
≤ 5 Watt
0 ~ 50ºC, 32 ~ 122ºF; ≤ 85% RH;
No corrosive gas, no strong EMI
48 x 48 x 100 mm (W x H x D)
45 x 45 mm
Figure 1. Wiring terminals of SYL-5342P-S.
P1/10

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Summary of Contents for Auber Instruments SYL-5342P-S

  • Page 1 AUBER INSTRUMENTS WWW.AUBERINS.COM Instruction Manual SYL-5342P-S USB Ramp and Soak PID Temperature Controller Version 1.0 (June 2020) Power ≤ 5 Watt consumption Caution Ambient 0 ~ 50ºC, 32 ~ 122ºF; ≤ 85% RH; • This controller is intended to control equipment under normal operating...
  • Page 2: Control Output Connection

    AUBER INSTRUMENTS WWW.AUBERINS.COM 3.3. Control output connection The relay output of the controller SYL-5342P can be used to turn on a contactor or a solenoid valve. It can drive a small heater directly if that draws less than 10A at 120V AC power source. For applications needing two control outputs, such as one for heating and another for cooling, relays AL1 can be used for the second output with on/off control mode.
  • Page 3 AUBER INSTRUMENTS WWW.AUBERINS.COM System Parameter Menu Press & Hold SET Key for 3s to Enter Initial Code Description Setting Range Remarks Setting Alarm 1 Setting -1999 ~ +9999 See 5.3.1 Alarm 2 Setting 0 ~ 200 Input offset ± 20.0 See 5.3.2...
  • Page 4 AUBER INSTRUMENTS WWW.AUBERINS.COM Table 3. ALP Definition Alarm ON Alarm OFF Alarm Type Value Condition Condition AL1 is disabled Auto Tuning Absolute high PV > AL1 PV < AL1 – 0.5 Lock lock alarm Absolute low Configuration Privilege Alar m 1 PV <...
  • Page 5 AUBER INSTRUMENTS WWW.AUBERINS.COM the response to change in temperature. FILt = 0 disables the filter. Default FILT is set to 20. SV+Hy When heating, 5.3.6. Hysteresis band “Hy” If PV (SV-Hy), relay on SV-Hy If PV (SV+Hy), relay off The Hysteresis Band parameter Hy is also referred as Dead Band or Differential.
  • Page 6 AUBER INSTRUMENTS WWW.AUBERINS.COM 5.3.11. Temperature Unit Selection, Celsius or Fahrenheit, “C, F” PdE = 2: After power is turned on, this controller will continue the program from the original break point. This mode is suitable for the applications in which power This parameter sets temperature units, C for Celsius, F for Fahrenheit.
  • Page 7 AUBER INSTRUMENTS WWW.AUBERINS.COM For example, step 1 has step segment 1 (ramp segment) and step segment 2 Note 2: To exit the program editing mode, (1) press and hold both SET key and (soak segment). To jump to the soak step of 2 step, change Pro to 4.
  • Page 8 AUBER INSTRUMENTS WWW.AUBERINS.COM For example, a user wants to preheat a small oven from room temperature to DOWN arrow (▲) key to change the step number, and press the SET key to 400˚F and maintain it for 10min before preceding to the next step; the acceptable confirm the change.
  • Page 9: Programming Examples

    AUBER INSTRUMENTS WWW.AUBERINS.COM 7.3. Controlling a 24V valve This example is very similar to example 7.2, but both the controller and the contactor’s coil are drove by 240VAC power. Solenoid valve 1 13 14 6 8. Programming Examples Programs in the SYL-53X2P series controllers (including SYL-5342P and SYL- 24VAC 5342P) have a uniform format of ramp time-soak time-temperature.
  • Page 10 Copyright 2007-2020, Auber Instruments Inc. All Rights Reserved. No part of this manual shall be copied, reproduced, or transmitted in any way without the prior, written consent of Auber Instruments. Auber Instruments retains the exclusive rights to all information included in this document.