beko RDNE455E40DXBN Mount Freezer Stainless
Electrical Schematic
Load cells excitation: 5 V.
Load cells output: 6 mV/V max.INPUT: 12 to 48 Vdc,
OUTPUT: 48Vac or 60Vdc, 0.5 A maxFor UL approved models: equipment to be powered by 12 to 24 Vdc LPS or Class 2 power source.
CONSUMPTION: 4 W max. (without load cells).
Manuals are available from Rice Lake Weighing Systems at www.ricelake.com/manuals
Warranty information is available at www.ricelake.com/warranties
Key Functions
Configuration menu | |
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Decreases digit / Scrolls down. |
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Increases digit / Scrolls up. |
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Enters the setup. Selects digit to modify. |
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Enters a step / Confirms. |
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Clears / Exits a step (no save). |
Weighing mode | |
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Clears the displayed gross weight. |
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Short press: executes semiautomatic tare. Long press: allows to enter known tare. |
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Activates / deactivates the function. |
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Short press executes data transmission on the printer serial port.
Long press: Setpoint configuration. |
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ON/Standby of the instrument. |
Indicator Light Descriptions
1 | Weight on zero. |
2 | Unstable weight. |
3 | A tare is active. |
4 | A function is active. |
5 | Digital output 1 is active. |
6 | Digital output 2 is active. |
- Reboot the weight transmitter
- Press the
key when display shows the 888888 message:
HOW TO EXIT THE MENU AND SAVE YOUR CONFIGURATION
- Press
C
key repeatedly until save? appears; pressto save or press C to exit without saving
Maximum Scale Capacity, Increment and Decimal Point Settings
Set the decimal point position and the minimum scale increment*1
( 0,001 - 0,002 - 0,005 - 0,01 - 0,02 - 0,05 - 0,1 - 0,2 - 0,5 - 1 - 2 - 5 - 10 - 20 - 50 ).
Set the maximum scale capacity*2 (max 999999 ).
Examples:
For a 60000 lb scale, with 2 lb
increment: div.deC = 2
CapaC = 60000
For a 10000 g scale, with 0.1 g increment:
div.deC
= 0,1
CapaC = 10000,0
For a 3000 lb scale, with 0.05 lb increment:
div.deC = 0,05
CapaC = 3000,00
*1 Increment = the amount that the scale will increment by as weight is added or removed.
*2 Maximum capacity = the maximum weight that can be measured using the scale you are creating.
Theoretical Calibration
Set the total load cells capacity (up to 999999).
Set the load cells sensitivity (up to 999999).
Dead load weight (from -9999.9 to 99999.9)
Zeroi Mechanic Tare (pre-tare zeroing)
Zeroing of the pre-tare (or mechanical tare).
This functionality allows to zero the weigh of the scale structure (e.g. empty silo, conveyor, etc.) without changing the calibration in memory
Calibration with Sample Weight
Zero point acquisition.
Sample weight acquisition.
Load Cell Diagnostics (µV/V)
It allows to verify signal of each channel. It must be included into the range 0 to 3 mV/V.
Signal have to be stable and it have to increase by increasing the weight on the scale.
Input Setting
Output Settings
HOW TO PROGRAM SETPOINTS
Fieldbus Settings
Set the IP address:
Weight Filter
The active weight filter is displayed, alternating with the weight value.
Press keys to scroll through the available filters (from slowest to fastest, F1 to F11).
Programming Errors
MESSAGE | DESCRIPTION | SOLUTION |
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Calibration error | First calibrate the zero point (zero), then proceed with sample weight acquisition (span) (section 9). |
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Calibration error | Check the connection of the load cell. Verify the load cell signal is stable, valid and greater than the previously acquired point. |
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Calibration error | Increase the calibration weight. |
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Calibration error | Check the signal from the load cell increases when weight is incremented on the scale. |
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Calibration error | Repeat calibration and verify capacity and division have been correctly set. |
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Instrument not configured | Transmitter needs to be configurated. |
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Calibration error | Verify the signal from the load cell is not negative. |
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Calibration error | Verify the signal from the load cell is not negative. |
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Weight unstable | Check in ![]() If the connection of the cells is with 4 wires, check that the sense jumpers are inserted. |
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A/D converter error | Converter failure. Reboot the instrument. |
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Global load cell error | Signal anomaly: check the load cells connection. |
Profinet
PROFINET REGISTERS
Data | Byte | DESCRIPTION | ||||||||||||||||
Gross weight | 0(MSB) | Bytes 1, 2, 3 and 4 contain the Gross Weight value. | ||||||||||||||||
1 | ||||||||||||||||||
2 | ||||||||||||||||||
3 (LSB) | ||||||||||||||||||
Net weight | 4(MSB) | Bytes 5, 6, 7 and 8 contain the Net Weight value. | ||||||||||||||||
5 | ||||||||||||||||||
6 | ||||||||||||||||||
7 (LSB) | ||||||||||||||||||
Input status register | 8 (MSB) | Bit 15(MSB) Bit 14 Bit 13 Bit 12 Bit 11 Bit 10 Bit 9 Bit 8(LSB) |
Bit 15(MSB) Active channel. Bit 14 Active Channel Bit 13 No function. Bit 12 No function. Bit 11 No function. Bit 10 No function. Bit 9 Status of input n. 2. Bit 8 (LSB) Status of input n. 1.
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9(LSB) | Bit 7(MSB) Bit 6 Bit 5 Bit 4 Bit 3 Bit 2 Bit 1 Bit 0(LSB) |
1 = Scale unloaded (gross weight = 0). Tare PT (1 = PT tare is active). Tare (1 = Tare is active). Overload condition (0 = No; 1 = Overload). Underload condition (0 = No; 1 = Underload). Weight Stability (0 = Unstable; 1 = Stable). Gross Weight Polarity (0 = “+”; 1 = “-”). Net Weight Polarity (0 = “+”; 1 = “-”). |
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Command status register | 10(MSB) | Last received command. | ||||||||||||||||
11 (LSB) | Bit 7(MSB) Bit 6 Bit 5 Bit 4 Bit 3 Bit 2 Bit 1 Bit 0(LSB) |
Last command result. Last command result. Last command result. Last command result. Counting of processed commands. Counting of processed commands. Counting of processed commands. Counting of processed commands. |
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Output status register | 12 (MSB) | No Function. | ||||||||||||||||
13(LSB) | Bit 7(MSB) … Bit 2 Bit 1 Bit 0(LSB) |
No function. … No function. Digital output 2 status (0 = OFF; 1 = ON). Digital output 1 status (0 = OFF; 1 = ON). |
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Selected page | 14 (MSB) | Shows the value of the selected page (3001). | ||||||||||||||||
15 (LSB) | ||||||||||||||||||
µV | 16 (MSB) | µV value. | ||||||||||||||||
17(LSB) |
PROFINET REGISTERS FOR COMMAND SENDING
Data | Byte | DESCRIPTION |
Not used | 0 | Always 0. |
Command | 1 | Main available commands: |
Parameter 1 | 2 (MSB) | First parameter of the command. Parameter is always expressed in absolute mode (no decimals, no sign). |
3 | ||
4 | ||
5 (LSB) | ||
Parameter 2 | 6 (MSB) | Second parameter of the command. Parameter is always expressed in absolute mode (no decimals, no sign). |
7 | ||
8 | ||
9(LSB) | ||
10(MSB) | Used in advanced configuration, refer to the complete Fieldbus manual for further information. | |
… | ||
31 (LSB) |
EXAMPLE 1
For zeroing the weight on the scale:
2. Set the command in byte 2
Byte | Value |
1 | 00 Hex |
2 | 01 Hex |
EXAMPLE 2
For setting a preset tare of 1000 lb:
- Set the tare value in parameter 1 (byte 3, 4, 5, 6)
- Set the command in byte 2
Byte | Value |
1 | 00 Hex |
2 | 03 Hex |
3(MSB) | 00 Hex |
4 | 00 Hex |
5 | 03 Hex |
6(LSB) | E8 Hex |
CUSTOMER SERVICES
Visit our website www.RiceLake.com
© Rice Lake Weighing Systems Content subject to change without notice
230 W. Coleman St.
• Rice Lake, WI 54868 • USA USA: 800-472-6703 •
International: +1-715-234-9171
September 29, 2023 www.ricelake.com PN 219720 Rev A
Documents / Resources
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RICE LAKE WEIGHING SYSTEMS SCT-1SX-PROFINET Indicators and Controller [pdf] User Guide SCT-1SX-PROFINET, SCT-1SX-PROFINET Indicators and Controller, Indicators and Controller, Controller |