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AUBER INSTRUMENTS
Instruction Manual
EZboil, Power Regulator for Boiling Process Automation DSPR300
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.
• This controller carries a 90-day warranty. This warranty is limited to the
controller only.
1. Specifications
Input type
RTD (Resistance Temperature Detector): Pt100
Accuracy
± 0.2% full scale
Temperature
-328° F ~ +932° F, -200° C ~ +500° C
range
Response time
≤ 0.5s
Display
1° C or ° F
resolution
Control mode
Mashing, Boiling
Process/derivation high/low alarm, Acceleration and
Alarm function
timer alarm, Latching/pulse action
Relay contact: 3A for resistive load. 1A for inductive
Alarm output
load
Power supply
85~260 VAC/50~60 Hz
Power
≤ 5 Watt
consumption
Working Ambient
0~50ºC, 32~122ºF
temperature
48 x 48 x 100 mm (W x H x D, from the front panel to
Dimension
the back)
Mounting cutout
45 x 45 mm
2. Front Panel
4
5
6
7
8
9
Figure 1. The front panel of DSPR300.
2021.05
Version 1.3 (May, 2021)
1). Top display. This display indicates the temperature sensor read out value.
When timer is activated, it will show time and temperature alternately.
2). Bottom display. In boiling mode, this display will show the percentage of
power being sent to the external SSR after the initial heat up phase. In mashing
control mode, this display will show the set temperature.
3). Temperature setting adjusting indicator. This is the small dot at the lower
right corner. In mashing mode, when temperature set point is adjusted, it will
start to flash. It reminds you that you need to press the knob to confirm the
change. Otherwise, the temperature setting will return back in 2 seconds after
you stop the adjustment.
4). AL1 indicator. This red LED indicates the status of Relay 1 (AL1). When it
is on, the relay is closed; when it is off, the relay is open.
5). AL2 indicator. This red LED indicates the status of Relay 2 (AL2). When it
is on, the relay is closed; when it is off, the relay is open.
6). Mashing mode indicator (MASH). This yellow LED light indicates the
operation mode of the controller. When it is on, controller is in mashing mode;
when it is off, controller is in boiling mode.
7). Output indicator (OUT). This green LED light is synchronized with output. It
shows how much power the regulator is sending out (as a 12VDC control signal
pulse through terminal 6 and 7). When it is on solid, the output is 100% on. When
it is off, there should be no output. When it is flashing, the frequency of the
flashing is an indication of high or low power output. Higher frequency means
higher power output.
8). Rotary switch (knob). Turn it clockwise to increase the output power (or
selected parameter value); turn it counter-clockwise to reduce the output power
(or selected parameter value). Press it briefly to reset the timer (if enabled) and
to switch between mashing and boiling mode. Press and hold it for 5 seconds to
enter parameter settings menu. Please see section 6 for details.
9). Function key A & B. There are two Function Keys named "A" and "B" can
be used to reset/cancel relays. Key "A" is for Relay 1, Key "B" is for Relay 2.
Please check note 20.
3. Wiring Terminals
The pin assignment of the back terminals of DSPR300 is shown in Figure 2.
3.1 Sensor connection
DSPR300 only accepts Pt100 RTD temperature sensor. For a three-wire RTD
with standard DIN color code, the two red wires should be connected to the
1
terminals 3 and 4. The white wire should be connected to terminal 5. For a two-
wire RTD, the wires should be connected to terminals 4 and 5. Jump a wire
between terminals 3 and 4.
2
3.2 Power to the controller
3
The power cables should be connected to terminals 9 and 10. Polarity does not
matter. It can be powered by 85-260 VAC power source. Neither a transformer
nor jumper is needed to wire it up. For the consistent with the wiring example
described later, we suggest you connect the hot wire to terminal 10 and neutral
to 9.
WWW.AUBERINS.COM
AL2
-
1
13 14
6
AL1
2
7
+
3
8
R
4
9
RTD
R
5
10
W
Figure 2. Terminal assignments of DSPR300.
SSR
AC
85~260V
P1/9

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Summary of Contents for Auber Instruments DSPR300

  • Page 1 Alarm output Please check note 20. load Power supply 85~260 VAC/50~60 Hz 3. Wiring Terminals The pin assignment of the back terminals of DSPR300 is shown in Figure 2. Power ≤ 5 Watt consumption Working Ambient 0~50ºC, 32~122ºF 13 14...
  • Page 2 3.3 SSR output connection 5. Operation The SSR control output of the DSPR300 provides a 12 VDC signal that can 5.1 Operation mode selection control up to 5 SSRs in parallel. Connect terminal 7 to the positive pole of the This controller offers two operation modes, mashing and boiling.
  • Page 3 AUBER INSTRUMENTS WWW.AUBERINS.COM The Output indicator will stay on solid right after powered up. This mean the controller is heating up the kettle at maximum speed. Once the temperature is getting close to the set point, the output indicator will start to flash at slower rate or take a pause.
  • Page 4 AUBER INSTRUMENTS WWW.AUBERINS.COM Note 3. Temperature unit setting: C-F C-F determines the temperature unit. It can be set to C (Celsius, ˚C) or F (Fahrenheit, ˚F). goto syst Press Knob Timer function Knob Press Knob Press Timer tdir Function Key...
  • Page 5 AUBER INSTRUMENTS WWW.AUBERINS.COM If you want to use the timer as a regular timer without correlating to the rise to the bAST, the output will automatically reduce to a lower level to prevent temperature setting, you can set the tSP below the ambient temperature (or a messy boiling over.
  • Page 6 AUBER INSTRUMENTS WWW.AUBERINS.COM 7.2 Relay related parameters in system settings goto In the menu for system settings, there are five pairs of parameters for configuring boil relays. Knob Press Table 4. Alarm Parameters in System Configuration. System Configuration (Alarm parameters part 1)
  • Page 7 AUBER INSTRUMENTS WWW.AUBERINS.COM Table 5. Conditions of Relays Become Active or Inactive. Relay Mode Mashing Mode Boiling Mode Mashing Mode Boiling/Distilling Mode Relay Process Alarm PV ≥ SV PV ≥ btSP Mode Active Inactive Active Inactive Deviation Alarm PV ≥ SV PV <...
  • Page 8 200˚F, Figure 10. Wiring examples of controlling a heater with SSR and DSPR300 in a the relay will pull in; and when process temperature is less than 197˚F, relay will 120VAC system (upper) and in a 240VAC system (lower).
  • Page 9 Copyright © 2021 Auber Instruments Inc. All rights reserved. No part of this datasheet 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.
  • Page 10 AUBER INSTRUMENTS WWW.AUBERINS.COM Appendix Technical Talk -- How does it Work? v1.1 There are three commonly used methods for AC power control. 1) Phase angle firing. In this method, the AC power control is achieved by firing the SCR at different phase angle. This is how our SSVR works. This method offer the most uniform power output.
  • Page 11 AUBER INSTRUMENTS WWW.AUBERINS.COM Figure 6. A 25% output control signal from a PID controller in the time proportional firing mode. Cycle time is 1 second. The output signal is 250 millisecond (ms) on, and 750 ms off during each cycle period.
  • Page 12 Copyright © 2021 Auber Instruments Inc. All rights reserved. No part of this datasheet 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.