LS Control SpeedControl E 1045 User manual

Frequency Converter
SpeedControl E 1045
For use with specific motors
Date: 19/11-2018
Revision: 9
Drawn by: FS and DF
Manufactured by: LS Control A/S
http://www.lscontrol.com
Phone: +45 5550 5550
Drawing: 949-206095_HIGHLY_vejledning_ES1045_rev9_UK

User Guide for SpeedControl E 1045
• LS Control A/S • Industrivej 12 • DK –4160 Herlufmagle Page 2
• Tel: +45 5550 5550 • Fax:+45 5550 2265 • www.lscontrol.com • lsc@lscontrol.dk
Table of Content
Product Description................................................................................ 3
Considerations if used with compressors............................................... 3
Application considerations with compressors ....................................... 3
Technical Specifications.......................................................................... 4
EMC......................................................................................................... 4
Warnings................................................................................................. 4
Description of Functions......................................................................... 6
Supply....................................................................................................................................................... 6
Control Voltage......................................................................................................................................... 6
RUN input................................................................................................................................................. 6
DIR Input................................................................................................................................................... 6
LSC Input................................................................................................................................................... 6
Thermistor................................................................................................................................................ 6
Alarm Relay .............................................................................................................................................. 6
HW Stop switch ........................................................................................................................................ 7
Current Limits........................................................................................................................................... 7
Temperature............................................................................................................................................. 7
Skip areas ................................................................................................................................................. 7
Electrical / Mechanical Installation ........................................................ 8
Important ................................................................................................................................................. 8
Location.................................................................................................................................................... 8
Operating temperature ............................................................................................................................ 8
Supply....................................................................................................................................................... 9
Motor ....................................................................................................................................................... 9
Signal Cables............................................................................................................................................. 9
Mounting................................................................................................................................................ 10
Indicator Lights ..................................................................................... 11
Modbus LED lights.................................................................................................................................. 11
Motor LED lights..................................................................................................................................... 11
HW Stop Function LED lights .................................................................................................................. 11
Controller LED’s...................................................................................................................................... 12
FAQ ....................................................................................................... 13
WEEE..................................................................................................... 13

User Guide for SpeedControl E 1045
• LS Control A/S • Industrivej 12 • DK –4160 Herlufmagle Page 3
• Tel: +45 5550 5550 • Fax:+45 5550 2265 • www.lscontrol.com • lsc@lscontrol.dk
Product Description
SpeedControl E 1045 is a frequency converter for control of EC, PMSM, BLDC and standard asynchronous
motors up to 1500W/5.5A or 2000W/6.5A for 3 phase motors with single phase supply. SpeedControl E
1045 is enclosed in an IP 54 metal housing for demanding environments. The compact construction offers
many mounting options. The construction is not equipped with active cooling, the sound level is very low
and the frequency converter is maintenance free.
•Descrete light grey color for reduction of heat absorption.
•Silent and reliable with an advanced self protection feature.
•Provided with a user-friendly interface for quick and easy installation.
•Designed for use in many different applications, including pump, ventilator and compressor
applications. Depending on motor profile.
•For special applications, please contact us for further information.
Considerations if used with compressors
For each compressor, the compressor data from the manufacturer datasheet are hard wired into the
frequency converter software by LS Control. The specific compressor is selected by means of dip switches.
Since the compressor parameters change with changing loads, LS Control must carry out a perform test on
each individual compressor to select the best parameters covering the widest range of operating patterns
ensuring that the compressor will be able to operate at high loads as well as low loads. The result of the
performance test will give a new max. current and new max. RPM for correct operation of the compressor
in question.
Rule of thumb! When using a compressor with a frequency converter, make sure that the input power to
the compressor is below the maximum power of the frequency converter and that the frequency converter
can deliver the required current for the compressor.
Application considerations with compressors
To choose the right compressor for your specific application, it is important to compare the compressor
data with the frequency converter data. Make sure that both the frequency converter and the compressor
can supply the required power and current for your application.
At high loads the frequency converter may be become extremely warm. Therefore, if the compressor is
operated at high loads and high ambient temperatures, active cooling might be necessary. Please refer to
chapter Electrical / Mechanical installation.
NB! It is your responsibility to ensure that the installation as a whole meets the EMC standards applying for
your specific installation and the environment in which it is installed.

User Guide for SpeedControl E 1045
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• Tel: +45 5550 5550 • Fax:+45 5550 2265 • www.lscontrol.com • lsc@lscontrol.dk
Technical Specifications
E1045-1500W-5.5A
E1045-2000W-6.5A
Supply Voltage
Uin = 230VAC ±10% - 50Hz
Uin = 230VAC ±10% - 50Hz
Supply Current
Max. Iin = 10A
Max. Iin = 16A
Supply Power
Max. 1500W
Max. 2000W
Motor Voltage
3 x AC - 0 - Uin
3 x AC - 0 –Uin
Motor Current
Max. 5,5A
Max. 6,5A
Motor Frequency
0 –300 Hz
0 –300 Hz
16Vdc output
100mA
100mA
10Vdc output
30mA
30mA
0 –10V input
0 –10V, Ri = 7 kOhm.
0 –10V, Ri = 7 kOhm.
Alarm Relay
Max. 30Vdc/3A & 230VAC/3A
Max. 30Vdc/3A & 230VAC/3A
Operating Temperature
0 –40°C
0 –40°C (active cooling over 1650W)
Modbus A
Net plus
Net plus
Modbus B
Net minus
Net minus
Modbus C
Net GND
Net GND
EMC
The frequency converter (IP54) complies with the standard of electrical Power Drive Systems. The
frequency converter is classified as a Power Drive System (PDS) of ”category C2” (EN 61800 – 3).
•EN 61800 –3:2005 –Adjustable speed electrical power drive systems - Part 3: EMC requirements
and specific test methods.
•EN 61800 –3/A1:2012 –Adjustable speed electrical power drive systems - Part 3: EMC
requirements and specific test methods.
•EN 61800 –5 –1:2007 –Adjustable speed electrical power drive systems - Part 5-1: Safety
requirements - Electrical, thermal and energy.
If a frequency converter is purchased in no enclosure (IP00), LS Control can’t ensure that the frequency
converter complies with the above standards.
Warnings
Before the frequency converter is taken into use, verify that the frequency converter specifications are
compatible with the mains to which it is going to be connected. Furthermore verify that the motor is
suitable for frequency converter connection and that it is in compliance with the frequency converter
specifications.
Check the place of installation for any special requirements and precautions which must be observed during
installation, commissioning or operation. The frequency converter must be supplied through a mains switch
with at least 3mm breaker space between all conductors according to IEC364. The fuse installed in the
electrical switchboard must be 13A or less for E1045-1500 and 16A or less for E1045-2000. The frequency
converter must always be connected to yellow/green grounding conductor (PE) in supply.

User Guide for SpeedControl E 1045
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• Tel: +45 5550 5550 • Fax:+45 5550 2265 • www.lscontrol.com • lsc@lscontrol.dk
If the frequency converter is connected to an installation with a residual current device as an extra
protection, the device must be marked with the following symbol: HPFI/PFI
The components of the power unit of the frequency converter are live when it is connected
to mains. Coming into contact with this voltage is extremely dangerous and may cause death
or severe injury. The control unit (connection 1-15) is isolated from the mains potential.
The motor terminals U, V and W are live when the frequency converter is connected to
mains, even when the motor is not running.
The control I / O terminals are isolated from the mains potential (clamps 1 –15). However,
dangerous control voltage may be present at the relay output terminals (9, 10 and 11) even
when the frequency converter is disconnected from mains.
The earth leakage current may exceed 3.5 mA AC when the frequency converter is
connected to a motor. According to standard EN61800-5-1 a reinforced protective ground
connection must be mounted.
If the frequency converter is part of a machine solution, the machine manufacturer is
responsible for providing the machine with a main switch. (EN60204-1).
If the frequency converter is disconnected from mains while the motor is running, high and
dangerous voltage may still be present on the frequency converter power unit. In this case
the motor is operating as a generator supplying the frequency converter with power.
After disconnecting the frequency converter from mains, wait a minimum of 5 minutes
before handling the frequency converter.
The frequency converter may automatically start the motor after a fault situation or after
reconnection of mains. Note that there might be a minimum downtime during which the
motor cannot be stopped.
In a domestic environment this product may cause radio interference in which case
supplementary mitigation measures may be required.
Intended for use in first environment, that includes domestic premises, it also includes
establishments directly connected without intermediate transformers to a low-voltage
power supply network which supplies buildings used for domestic purpose.
Note! The frequency converter is only EMC compliant when supplied in IP54 model. If the
frequency converter is supplied in IP00 model, the customer will be responsible for EMC
compliance.
The frequency converter is sensitive to ESD (ElectroStatic Discharge). Handle with care. ESD
may cause damage to the frequency converter.

User Guide for SpeedControl E 1045
• LS Control A/S • Industrivej 12 • DK –4160 Herlufmagle Page 6
• Tel: +45 5550 5550 • Fax:+45 5550 2265 • www.lscontrol.com • lsc@lscontrol.dk
Description of Functions
Supply
The frequency converter is supplied by 230VAC ±10%. However it is possible to lower the voltage, but it
must be noted, that the power of the asynchronous motor will be lowered as the main supply voltage
decreases. It is not recommended to use a supply less than 200VAC.
Control Voltage
1 –10 Vdc = min. rpm –max. rpm (6 phase motor => 200rpm –1000rpm => 10 –50 Hz). If control voltage
gets lower than 1 Vdc the frequency converter will run min. rpm. The control voltage levels can be adjusted
via the Modbus-interface. (See chapter on Modbus).
RUN input
If the RUN input is activated (added to GND from internal supply) the frequency converter will start the
motor. The RUN input can be disabled through the Modbus-interface. (See chapter on Modbus).
DIR Input
DIR controls which way the motor will run and it can only be updated/changed when the motor is not
running. If the DIR input is activated (added to GND from internal supply) the frequency converter will
change direction, but only when the motor is at a stand still.
LSC Input
The LSC input can be used with a thermal switch (e.g. a Klixon) or a thermistor. By default it is setup for use
with a thermal switch. This can be changed via the ModBus-interface. (See chapter on Modbus).
Thermal switch
If LSC input is used with a thermal switch (e.g. a Klixon), connect thermal switch between connector 1 & 2.
When the thermal switch is closed = all is okay. If thermal switch is open for more than 6 seconds a thermal
Error is indicated, and motor is stopped. If thermal switch is not used, connector 1 & 2 must be shortened.
Thermistor
If the LSC input is used with a thermistor, connect the thermistor between connector 1 and 2. The function
of the thermister is setup via the ModBus-interface (see chapter on Modbus). When the thermistor exceeds
the setup temperature for more than 6 seconds, a thermal error is indicated, and the motor will stop. The
E1045 will try to restart, when the thermistor has fallen below the setup temperature minus the hysterese
value for more than 6 seconds. The thermistor function can be setup for a NTC thermistor or a PTC
thermistor via ModBus interface. See the ModBus chapter for setup details.
Alarm Relay
The frequency converter is supplied with an alarm relay which is activated when there are no faults. If the
frequency converter must stop due to severe error, the relay will be deactivated (it changes position). The
alarm relay is deactivated when supply is disconnected. The function of the alarm relay can be changed via
the Modbus-interface. (See chapter on Modbus).

User Guide for SpeedControl E 1045
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• Tel: +45 5550 5550 • Fax:+45 5550 2265 • www.lscontrol.com • lsc@lscontrol.dk
HW Stop switch
The frequency converter is supplied with a Hardware (HW) Stop switch function. This HW Stop Function can
be used with a switch (e.g. a pressure switch or a thermal switch). The Switch must be connected between
connector 16 and 17, and it must be closed for the frequency converter to run the motor. If the switch is
open, the frequency converter is stopped, and it will not be able to restart, until the supply voltage has
been disconnected long enough for the frequency converter to come to a complete stand still.
If not used, connector 16 and 17 must be shortend.
Current Limits
Current limits can only be adjusted via the Modbus-interface. (See chapter on Modbus). The current limits
are as standard set to the current printed on the motor plate. When the frequency converter registers that
the current limit is exceeded, it will automatically reduce the speed of the motor. However, the speed will
never be reduced further than minimum speed. In ACIM the down regulation function can be deactivated,
and the motor will stop if the current exceeds the current limit. The time delay before the motor stops
depends on the current and the overrun time which are integrated into the intelligent protection algorithm
in the control.
Temperature
The temperature function is set to ensure that if the frequency converter power unit registers an excess
temperature it will reduce the motor speed. However, the speed will never be reduced further than the minimum
speed. The motor speed reduction will be slow. Should the temperature continue to increase, despite the speed
reduction, the frequency converter will stop and indicate error. The temperature reduction function is part of the
intelligent protection algorithm. The temperature setting for where the frequency converter should start to reduce
the speed can be lowered by means of the Modbus-interface. (See chapter on Modbus).
Skip areas
It is possible to enter up to 5 skip areas via the ModBus-interface. These skip areas may be used to avoid RPMs
where the application generates excessive noise or vibration. These areas are avoided in that the skip frequencies
in a given area automatically will be passed by the frequency converter, and in that way avoiding noisy and
vibrating operating frequencies. All skip areas is equipped with the same hysteresis value defined by a preset
distance from the RPM center. This distance determines how far away the frequency converter needs to adjust the
speed from the entered center RPM. See chapter on ModBus for detailed description on how to adjust these skip
areas. By default, they are all disabled.

User Guide for SpeedControl E 1045
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• Tel: +45 5550 5550 • Fax:+45 5550 2265 • www.lscontrol.com • lsc@lscontrol.dk
Electrical / Mechanical Installation
Important
A time delay of approx. 3 - 30 sec will occur at start up. If the PCB is dismounted from the metal housing,
the warranty will be void. Before handling the frequency converter, it must have been disconnected from
supply power for at least 5 min.
Location
The frequency converter is cooled by passive air circulation. To avoid reduced operation or operating stops
due to overheating of the frequency converter, the frequency converter must be mounted vertically on a
metal plated wall with the glands facing downwards. The frequency converter must be mounted with space
around it to ensure sufficient cooling by allowing free circulation of air. Make sure that the mounting
surface can withstand the temperature of the surface of the frequency converter.
Operating temperature
The frequency converter must be installed in a well ventilated enviroment. The surrounding temperature
must not exceed 40°C and the frequency converter must never be mounted in a location where it is
exposed to direct sun light.
The E1045-1500 will be able to run at maximum supply power without additional cooling at 40°C ambient
temperature.
The E1045-2000 will be able to run up to 1650W supply power without additional cooling at 40°C ambient
temperature. When running at more than 1650W power supply the E1045-2000 will need additional
cooling. This should be done by making sure that there is a sufficient airflow through the cooling fins of the
heat sink.
The frequency converter will reduce performance of the motor, if a too high temperature is measured. By
default, this temperature is set at maximum, but it can be adjusted down through the ModBus –interface.

User Guide for SpeedControl E 1045
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• Tel: +45 5550 5550 • Fax:+45 5550 2265 • www.lscontrol.com • lsc@lscontrol.dk
Supply
The frequency converter is supplied by mains (230VAC ±10%) with minimum 3 x 1.5 mm2 cable. The
distance between supply cable and motor cable must be as long as possible (> 30 cm). If it is neccessary to
cross the power cable and the motor cable, this must be done at an angle of 90°. The PE-conducter from the
motor, which is screwed into the terminal block, must be longer than L and N. The fuse installed in the
electrical switchboard must be 13A or less for E1045-1500 and 16A or less for E1045-2000.
Due to relatively high leakage currents in the frequency converter and the motor, the frequency converter
and the motor must always be properly grounded in accordance with national and local regulations. The
ground conducter should be as short as possible to avoid high frequency radiation.
Supply Connection
PE Protective grounding (supply)
N Neutral (supply)
L Live (230VAC) (supply)
Motor
The motor is connected to the frequency converter by minimum 4 x 1.5 mm2 shielded cable. The total cable
length must not exceed 20 m, keep it as short as possible. Long cables may cause function failure. The
motor cable must be shielded and be mounted correctly in the metal gland or to the PCB with a cabel clamp
to minimize electrical noise from the motor. PE conductors must be longer than U, V and W.
Motor Connection
PE Protective Earthing conductor for motor
U Motor Conductor U
V Motor Conductor V
W Motor Conductor W
Shield Grounding from gland
Signal Cables
The distance between the signal cable and the motor cable and supply cable must be as long as possible (>
30 cm). If the signal cable crosses the motor cable, it must be done at an angle of 90°. The cable must be
shielded to GND.
Signals Alarm Modbus
1 GND 9 NO 12 GND
2 LSC –Thermo switch/thermistor 10 Common 13 Modbus B
3 DIR 11 NC 14 Modbus A
4 RUN 15 16,5Vdc out
5 GND HW Stop Switch
6 0 - 10V in 16 Switch
7 10Vdc out 17 Switch
8 16 to 16,5Vdc out

User Guide for SpeedControl E 1045
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Mounting
Mounting instruction for ES1045D PCB
Note:
If thermal switch is not used
shorten connector 1 & 2.
If the thermistor is needed
connect to connector 1 & 2 and
setup through ModBus for
thermistor use.
If HW Stop Switch not needed
shorten connector 16 & 17.

User Guide for SpeedControl E 1045
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Indicator Lights
The PCB is equipped with LED lights. LED1 to LED7.
Modbus LED lights
LED5 (red) and LED6 (green) are modbus LED lights. See page ”10”for LED locations.
LED6 flashes fast when communicating.
LED5 has no function.
Motor LED lights
LED1 (red) and LED2 (green) are controlled by the circuit regulating the motor.
See page ”10”for LED locations.
Start
When the frequency converter is connected to mains, the following pattern is shown:
1. LED1 is turned off and LED2 is lit constantly => processor initialization
2. After 5 –10 seconds LED1 flashes a number of times to indicate the motor selected by the DIP
switches. This also indicates that the motor in questions has been initialized in the processor.
3. At last LED1 turns off and LED2 starts flashing.
Operation
When there are no errors LED2 will be flashing. LED2 flashes when the motor is running and when it is
stopped. This indicates that everything is running normally.
Errors
If an error is detected, the frequency converter will stop the motor, turn on LED1 and turn off LED2.
HW Stop Function LED lights
LED7 (red) is controlled by the HW Stop function. When it flashes it is indicating that the switch is closed
and the HW Stop Function is not blocking the Frequency Converter.
If LED7 (red) is on constantly, it is indicating that the Frequency Converter has been blocked by the HW Stop
Function, and that it will not be able to continue until the Supply Voltage has been removed long enough
for the Frequency Converter to completely turn off and on again.

User Guide for SpeedControl E 1045
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Controller LED’s
LED3 (red) and LED4 (green) are controlled by the interface circuit controlling the I/O’s.
See page ”10”for LED locations.
Start
When the frequency converter is connected to mains, the following pattern is shown:
1. LED3 turns on and LED4 flashes fast.
2. After 5 –30 seconds (when the power electronics has been initialized and indicated the motor
choice), LED3 will turn off and LED4 will flash slowly.
Operation
When there are no errors LED4 flashes slowly and LED3 is turned off. This pattern is shown both when the
motor is stopped or running. It indicates that everything is running normally.
Restart
When an error is detected, and the frequency converter is waiting to restart, LED3 and LED4 will be flashing
at the same frequency. When restart is activated, a new start is initialized.
Errors
If an error is detected, the circuit will indicate the error by flashing LED3 and turn off LED4. At the same
time the modbus registers 03x0009 and 03x0010 will be set to a value corresponding to the error. Modbus-
register 03x0011 will be set, if the frequency converter is unable to restart and resume operation.
The following errors will be indicated by LED3 and the modbus registers 03x0009 and 03x0010:
Flash
LED3
03x0009
Error code
03x0010
Error code2
Error type
Description
1
0
1
Maximum Temperature error. Have not been able to adjust motor, to prevent over temperature.
2
0
2
Motor Start Error. Have not been able to start motor.
3
0
4
Motor current error 1. Current limit exceeded for more than 4 minutes.
4
0
8
Motor current error 2. Current limit x 1,25 exceeded for more than 2 minutes.
5
0
16
Motor current error 3. Current limit x 1,50 exceeded for more than 1 minutes.
6
0
32
Motor current error 4. Current limit x 2,00 exceeded for more than 10 seconds.
7
256
0
Motor gate kill error. High current peak detected.
8
1024
0
Motor phase loss error.
9
2048
0
Motor zero speed error.
10
4096
0
MCE error. This includes: over voltage, undervoltage, regulating error, etc.
11
32768
0
Thermal error. Thermal switch is open or thermister is indicating too high a temperature.
12
16384
0
Modbus Heartbeat Error
13
14
15
16
17
18
19
20

User Guide for SpeedControl E 1045
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• Tel: +45 5550 5550 • Fax:+45 5550 2265 • www.lscontrol.com • lsc@lscontrol.dk
FAQ
No LEDs are on and the motor will not start.
1.) Check if the frequency converter is connected to mains
2.) Check if fuse is blown.
The motor will not start and LED7 is on
If hardware stop switch is not in use, terminals 16 and 17 must be shortened.
The motor will not start and LED3 flashes (11
times)
If LSC input is detecting an error. By default, LSC input is setup for connection of a thermal
switch, and if it is not used, terminals 1 and 2 must be shortened.
WEEE
Electrical and electronic equipment contains material which may be hazardous to human health and
environment if it is not handled correctly at disposal.
Electrical and electronic equipment is marked with a crossed-out wheelie bin logo. This logo symbolizes that
electrical and electronic equipment must not be disposed of together with normal household waste but
must be collected separately.
Contact your local authorities for further information on disposal of equipment under the
WEEE directive.
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