ZIEHL-ABEGG 308214, 308216, iControl FSDM3.6, iControl FSDM5, iControl FSDM7 Operating Instructions Manual

...
Icontrol Basic
FSDM2.6...62
Frequency inverter for 3 ~ fans
Speed controller with 0...10 V input for presetting the fan speed
Operating Instructions
Keep for reference!
Software version: D2732A from Version 1.03
english
CZ|D|E|F|GB|I|PL|RU|S|
www.ziehlabegg.com
Content
1 General notes . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
1.1 Structure of the operating instructions . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
1.2 Target group . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
1.3 Exclusion of liability . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
1.4 Copyright . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
2 Safety instructions . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
2.1 Intended use . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
2.2 Explanations of symbols . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4
2.3 Product safety . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5
2.4 Requirements placed on the personnel / due diligence . . . . . . . . . . . . . . . . . . . . . . . . 5
2.5 Start-up and during operation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5
2.6 Work on the device . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 5
2.7 Modications / interventions in the device . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
2.8 Operators obligation of diligence . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
2.9 Employment of external personnel . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 6
3 Product overview . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
3.1 Operational area . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
3.2 Functional description . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
3.3 Maintenance . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
3.4 Transport . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
3.5 Storage . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
3.6 Disposal / recycling . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 7
4 Mounting . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8
4.1 General notes . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8
4.2 Minimum space requirement . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8
4.3 Fastening the device . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 9
4.4 Outdoor installation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11
4.5 Installation location for agriculture . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11
4.6 Temperature inuences during commissioning . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11
5 Electrical installation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11
5.1 Safety precautions . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11
5.2 EMC-compatible installation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 11
5.2.1 Interference emission and installation of cables . . . . . . . . . . . . . . . . . . . . . . . . . . 11
5.2.2 Motor cable . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12
5.2.3 Control cables . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12
5.2.4 Harmonics current for devices 16 A . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12
5.2.5 Harmonics current and line impedance for devices > 16 A and 75 A . . . . . . . . . 12
5.3 Mains connection . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12
5.3.1 Line voltage . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 12
5.3.2 Required quality attributes for the mains voltage . . . . . . . . . . . . . . . . . . . . . . . . . . 12
5.3.3 Leakage current, securely attached, protective earth conductor . . . . . . . . . . . . . . 13
5.4 Residual-current-operated protective device . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13
5.5 Inverter output . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13
5.5.1 Motor connection . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13
5.5.2 Disconnection between controller and motor (repair switch) . . . . . . . . . . . . . . . . . 13
5.5.3 U/f-characteristic curve . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14
5.6 Motor protection . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 14
5.7 Analog input E1 for setting fan speed . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 15
5.8 Output voltage 10 V . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 16
5.9 Voltage supply for external devices (+24V, GND) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 16
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5.10 Digital input D1 for enable (device ON / OFF) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17
5.11 Relay outputs K1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17
5.12 Bypass circuit . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17
5.13 Manual Bypass-Switch type S-D-25 and S-D-50 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 17
5.14 Potential at control voltage connections . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18
5.15 Option add-on modules . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18
6 Start-up . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18
6.1 Prerequisites for commissioning . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 18
7 Diagnostics / Faults . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19
8 Enclosure . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22
8.1 Technical data . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 22
8.1.1 Maximum loading dependent on switching frequency, line voltage and ambient
temperature . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 24
8.2 Connection diagram . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 26
8.3 Dimensions [mm] . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 26
8.4 Manufacturer reference . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 28
8.5 Service information . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 28
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1 General notes
1.1 Structure of the operating instructions
Before installation and start-up, read this manual carefully to ensure correct use! We emphasize that these operating instructions apply to specic units only, and are in no way valid for the complete system! Use these operating instructions to work safely with and on the device. They contain safety instruc­tions that must be complied with as well as information that is required for failure-free operation of the device. Keep these operating instructions together with the device. It must be ensured that all persons that are to work on the device can refer to the operating instructions at any time. Keep the operating instructions for continued use. They must be passed-on to all successive owners, users and nal customers.
1.2 Target group
The operating instructions address persons entrusted with planning, installation, commissioning and maintenance and servicing and who have the corresponding qualications and skills for their job.
1.3 Exclusion of liability
Concurrence between the contents of these operating instructions and the described hardware and software in the device has been examined. It is still possible that non-compliances exist; no guarantee is assumed for complete conformity. To allow for future developments, construction methods and technical data given are subject to alteration. We do not accept any liability for possible errors or omissions in the information contained in data, illustrations or drawings provided. ZIEHL-ABEGG SE is not liable for damage due to misuse, incorrect use, improper use or as a consequence of unauthorized repairs or modications.
1.4 Copyright
These operating instructions contain copyright protected information. The operating instructions may be neither completely nor partially photocopied, reproduced, translated or put on data medium without previous explicit consent from ZIEHL-ABEGG SE. Infringements are liable for damages. All rights reserved, including those that arise through patent issue or registration on a utility model.
2 Safety instructions
This chapter contains instructions to prevent personal injury and property damage. These instructions do not lay claim to completeness. In case of questions and problems, please consult our company technicians.
2.1 Intended use
The equipment is to be used solely for the purposes specied and conrmed in the order. Any other use above and beyond this is considered not for the intended purpose unless agreed otherwise by contract. The manufacturer will not be liable for any damage resulting from this. The individual or company using it bears the sole risk. Reading these operating instructions and complying with all contained instructions - especially the safety notications contained therein - are considered part of intended use. To consider is also the manual of attached components. Not the manufacturer, rather the operator of the device is liable for any personal harm or material damage arising from non-intended use!
2.2 Explanations of symbols
Safety instructions are highlighted with warning triangles and are depicted according to the degree of hazard as follows.
Attention!
General hazardous area. Death or severe injury or signicant property damage can occur if the corresponding precautions are not taken!
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Danger due to electric current
Danger by dangerous, electric voltage! Death or severe injury can occur if the corresponding precautions are not taken!
Information
Important additional information and advice for user.
2.3 Product safety
The device conforms to the state of the art at the time of delivery and is fundamentally considered to be reliable. The device and its accessories must only be used in a flawless condition and installed and operated in compliance with the assembly instructions and/or operating instructions. Operating out­side the device's technical specications (
name plate and attachment / technical data) can lead to
a defect in the device and additional damage!
Information
In the case of a malfunction or a failure of the equipment check all functions with alarms in order to prevent injury to persons or property. Note possibility of back-up operation. If used in intensive animal environments, any malfunctions in the air supply must be detected as soon as possible to prevent the development of a life-threatening situation for the animals. The design and installation of the system must comply with local regulations and directives. In Germany these include DIN VDE 0100, the animal protection and the keeping of working animals ordinance and the pig-keeping ordinance etc. Also note the instructions of AEL, DLG, VdS.
2.4 Requirements placed on the personnel / due diligence
Persons entrusted with the planning, installation, commissioning and maintenance and servicing in connection with the frequency inverter must have the corresponding qualications and skills for these jobs. In addition, they must be knowledgeable about the safety regulations, EU/EC directives, rules for the prevention of accidents and the corresponding national as well as regional and in-house regulations. Personnel to be trained or instructed and apprentices are only permitted to work on the device under the supervision of an experienced person. This also applies to personnel undergoing general training. Comply with the legal minimum age.
2.5 Start-up and during operation
Attention!
During commissioning, unexpected and hazardous conditions can arise in the entire installation due to defective adjustments, defective components or incorrect electrical connections. Remove all persons and objects from the hazardous area.
During operation, the device must be closed or installed in a control cabinet. Fuses may only be replaced by new ones and must not be repaired or bypassed. The data for the maximum line fuse are to be considered absolutely (see Technical data). Use only fuses specied in schematic diagrams.
Any faults detected in the electric system/modules/operating equipment must be corrected immediately. If these faults are not corrected, the device/system is potentially very dangerous. The device/system must therefore not be operated when it is faulty.
Pay attention to smooth, low vibration running of the motor/fan, the appropriate instructions in the drive documentation must be observed!
2.6 Work on the device
Information
Mounting, electrical connection, and start-up operation may only be carried out by an electrical specialist in accordance with electrotechnical regulations (e.g. EN 50110 or EN 60204)!
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Danger due to electric current
It is generally forbidden to carry out work on electrical live parts. Protection class of the device when open is IP00! It is possible to touch hazardous voltages directly.
The safe isolation from the supply must be checked using a two-pole voltage detector.
Even after disconnecting the mains voltage, life-threatening charges can appear between the protective ground PE and the mains connection.
The protective earth is conducting high discharge currents (dependent on the switching frequency, current-source voltage and motor capacity). Earthing in compliance with EN specications shall therefore be observed even for testing and trial conditions (EN 50 178, Art. 5.2.11). Without earthing, dangerous voltages can be present on the motor housing.
Waiting period at least 3 minutes!
Through use of capacitors, danger of death exists even after switching off the device through directly touching the energized parts or due to parts that have become energized due to faults.
It is only permitted to remove the housing cover after waiting for 3 minutes once the line supply cable has been shut down. Should measurement or adjustment work be unavoidable on the opened unit while still powered, then this may only be performed by qualied personnel acquainted with the thereby associated hazards.
Attention!
Even after switching off, dangerous temperatures can still occur in and on the device.
Attention!
Automatically restart after a power failure or mains disconnection!
2.7 Modications / interventions in the device
Attention!
For reasons of safety, no unauthorized interventions or modications may be made on the device. All planned modications must be authorized by the manufacturer in writing.
Use only genuine spare parts / genuine wearing parts / genuine accessories from ZIEHL-ABEGG.Th­ese parts were specically designed for the device. There is no guarantee that parts from non-original sources are designed and manufactured in correspondence with load and safety requirements. Parts and optional equipment not supplied by ZIEHL-ABEGG are not approved by ZIEHL-ABEGG for use.
2.8 Operators obligation of diligence
The contractor or owner must also ensure that the electric systems and equipment are operated and maintained in accordance with electro-technical regulations.
The owner is obliged to ensure that the device is operated in perfect working order only.
The device may only be used as intended (see Application”).
You must periodically examine the safety equipment for their properly functioning condition.
The assembly instructions and/or operating instructions are always readily available at the location where the device is being used, are complete and are in legible condition.
These persons are regularly instructed in all applicable questions regarding occupational safety and environmental protection and are knowledgeable regarding the assembly instructions and/or operating instructions and, especially, are familiar with the safety instructions contained therein.
All safety and warning notices attached to the device are never removed and remain legible.
2.9 Employment of external personnel
Maintenance and service work are frequently carried out by external employees who often do not recognize the specic situations and the thus resulting dangers.These persons must be comprehen­sively informed about the hazards in their area of activity. You must monitor their working methods in order to intervene in good time if necessary.
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3 Product overview
3.1 Operational area
Icontrolis the type-line of ZIEHL-ABEGG frequency inverters for controlling one motor with for
frequency innverter suitable isolation system and bearings. Only suitable for drives with low set-off torque (e.g.: fans or pumps). We expressly point out that controlling ZIEHL-ABEGG fans in parallel operation is not possible in this series without endangering the motors. For trouble free operation of several motors we recommend using our Fcontrol series frequency converters with integrated sinusoidal lter.
3.2 Functional description
The frequency inverters generate their 3~ output with variable voltage and frequency from the three­phase mains on the input. The devices are constructed in accordance with the general requirement in EN 61800-2 for adjustable speed electrical power systems and is intended for one-quadrantdrives. The output frequency is set by an external signal (0 - 10 V, 0 - 20 mA, PWM).
3.3 Maintenance
The device must be checked for soiling and, if necessary, cleaned in periodic intervals.
3.4 Transport
The device is packed ex factory to suit the transport method previously agreed.
Always use the original packaging materials when transporting the device.
Avoid shocks and impacts to the device during the transport.
During manual handling the human lifting and carrying restrictions must be observed and adhered to.
3.5 Storage
The device must be stored in its original packaging in a dry and weather-proof room.
Avoid exposure to extreme heat and cold.
Avoid prolonged storage; we recommend a maximum of one year (consult the manufacturer before starting if stored for longer).
3.6 Disposal / recycling
Disposal must be carried out professionally and in an environmentally friendly way in accordance with the respective national legal stipulations.
" Separate the materials by type and in an environmentally friendly way. " If necessary, commission a specialist company with the waste disposal.
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4 Mounting
4.1 General notes
Attention!
The following points must be complied with during the mechanical installation to avoid causing a defect in the device due to assembly errors or environmental inuences:
Before installation remove the device from the packing and check for any possible shipping damage! Start-up is not allowed in the case of transport damage!
At a weight greater than 25 kg for men / 10 kg for women, the device should be lifted out by two persons (according to REFA). The values may differ from country to country.
Wear safety shoes and gloves for handling!
Assemble the device on a clean and stable base. Do not distort during assembly! Use the appropriate mounting devices for proper installation of the unit!
When mounted onto lightweight walls, there must be no impermissibly high vibrations or shock loads. Any banging shut of doors that are integrated into these lightweight walls, can result in extremely high shock loads. Therefore, we advise you to decouple the devices from the wall.
Do not allow drilling chips, screws and other foreign bodies to reach the device interior!
Maintain the stated minimum clearances to ensure unobstructed cooling- air feed as well as unobstructed outgoing air discharge (
minimum space requirement)!
The device should be installed in a location where it will not be disturbed, but at the same time can be easily accessed!
Use tted plugs or alternatively screw glands for the cable inlets. Seal inlets which are not required!
Care must be taken to avoid direct radiation from the sun!
The device is designed for vertical installation (cable inlet down). A horizontal or reclined installation is only permissible after technical release of the manufacturer!
Be sure to observe proper heat dissipation (
Technical data, heat dissipation).
4.2 Minimum space requirement
In order to ensure sufcient ventilation of the device, clearance on all sides of at least 50 mm has to be maintained to the housing walls, switch cabinet doors, wiring ducts, etc. The same clearance applies to the installation of several devices next to each other. When installing several devices on top of each other, the danger of reciprocal heating exists. This layout is only then permissible when the air suctioned from the upper unit does not become warmer than the permissible ambient temperature (see Technical data). I.e., a correspondingly larger clear­ance or thermal shielding is required.
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4.3 Fastening the device
The type of fastening and the number of fastening points are dependent on the housing design. All the fastening points available must be used for safe fastening.
Proceed as follows:
Type FSDM2.6, FSDM3.6
Fastening at 3 points
GM00006C_M
29.01.2016
1
3
2
" Drill fastening point 1. " Screw in at-head screw up to a distance of approx. 2 mm and mount the device. " Remove the terminal compartment cover. " Align the device and mark the position of both lower fastening points 2 + 3. " Remove the device and drill the fastening points 2 + 3”. " Remount the device and tighten the fastening point screws 2 + 3.
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Type FSDM5...17 (FSDM25)
Fastening at 4 points
GM00005C_M
28.01.2016
1 2
4
3
" Drill fastening points 1 - 4”. " Fasten device with screws.
Type FSDM32...62
Fastening at 8 points
GM00002B_M
28.01.2016
1
2
34
5
6
8
7
" Drill 8 fastening points. " Screw in fastening point screws 1 - 4 up to a distance of approx. 5 mm and mount the device. " Tighten fastening point screws 1 - 4 " Screw in fastening point screws 5 - 8 and tighten.
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4.4 Outdoor installation
Outdoor installation is possible up to -20 °C when the controller supply is not switched off. Installation must be protected from the effects of weather as much as possible, including protection from direct sunlight!
4.5 Installation location for agriculture
When using for animal keeping, do not install the device directly in the stable but in a separate room with a lower pollutant load. This helps to avoid damages caused by pollutant gases (e.g. ammonia fumes, hydrogen sulphide fumes).
4.6 Temperature inuences during commissioning
Avoid condensation in the controller and functional faults attributable to condensation by storing the controller at room temperature!
5 Electrical installation
5.1 Safety precautions
Danger due to electric current
Work on electric components may only be carried out by trained electricians or by persons instructed in electricity under the supervision of an electrician in accordance with electrical engineering regulations.
The 5 electrical safety rules must be observed!
It is forbidden to carry out work on electrically live parts. Even after disconnection, the dc-link is still live. Always wait at least 3 minutes.
Cover neighbouring electrical equipment during installation work.
Other measures may be necessary to achieve safe electrical isolation.
A second person must always be present when working on energized parts or lines who disconnects in case of emergency.
Inspect electrical equipment periodically: retighten loose connections – immediately replace damaged lines and cables.
Always keep switch cabinets and all electrical supply facilities locked. Access is only allowed for authorized persons using a key or special tool.
Operating the device with the housing cover removed is prohibited because energized, exposed parts are present inside the device. Disregarding this regulation can lead to severe personal injury.
For metal cable inlets the necessary protective earth connection to the bottom of the housing is made by screws. The device may only be started up when these screws are tted properly.
The device owner is responsible for the EMC of the entire plant according to the locally applicable standards.
Never clean electrical equipment with water or similar liquids.
Information
The respective connections are represented in the enclosure of this manual ( Connection diagram)!
5.2 EMC-compatible installation
5.2.1 Interference emission and installation of cables
In order to prevent faults attributable to interference and to ensure compliance with the radio interfer­ence level, the connecting leads must be kept as short as possible both in the motor terminal box as well as in the controller. Spacing between supply cables, motor cable and signal cable should thereby be kept as large as possible. The so-called pig-tails of the screen are to be avoided when connecting screened cables. The screen shall be laid close up to the terminals and taken from here to the protective conductor connection by the shortest possible route, laid at (low induction) and without loops. When installing the controller in a switching cabinet, attention shall be paid that “live” (interference) cables and interference-suppressed cables are not routed in the duct.
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5.2.2 Motor cable
The screening of the motor cables (U1, V1, W1, PE) must be two-fold (both ends), i.e. connected to the protective conductor at the controller and at the motor. The use of a screened motor cable of max. 10 m in length will ensure compliance with the limiting value class B in accordance with EN 55011. The screening of the thermostats TB or thermistor “TP” connection cable for motor protection may only be connected to the protective conductor at one end at the controller. Because of possible coupling unbalances they may not be routed in the same cable harness as the motor cables.
5.2.3 Control cables
Pay attention to sufcient distance from powerlines and motor wires to prevent interferences. The control cable may not be longer than 30 m. Screened control cables must be used when the cable length is longer than 20 m. When using a shielded cable connect the shielding to one side only, i.e. only to the control unit with the protective ground (keep cable short and with as little inductance as possible!).
5.2.4 Harmonics current for devices 16 A
According to EN 61000-3-2 these devices are to be classied as professional devices. Connection to a low voltage supply (public networks) is allowed insofar as this has been claried with the respective energy supply company responsible.
5.2.5 Harmonics current and line impedance for devices > 16 A and 75 A
Extract from EN 61000-3-12, valid for equipments with rated current > 16 A and 75 A, connected to public low-voltage systems.
This equipment complies with IEC 61000-3-12 provided that the short-circuit power S
SC
is greater than or equal
to R
SCE
x S
equ
at the interface point between the user's supply and the public system.
It is the responsibility of the installer or user of the equipment to ensure, by consultation with the distribution network operator if necessary, that the equipment is connected only to a supply with a short-circuit power S
SC
greater than or equal to R
SCE
x S
equ
.
S
SC
Short-circuit power from line at the interface point between the user's supply and the public system
S
equ
Rated - apparent power for three phase devices: S
equ
= 3 x UI x I
equ
(UI = phase to phase voltage Technical data Line voltage) (I
equ
= rated current of the device Technical data Rated current input)
R
SCE
Short-circuit ratio For this devices: R
SCE
120
5.3 Mains connection
5.3.1 Line voltage
Power from the mains is connected to terminals: PE, L1, L2, L3. Here, it must be strictly observed that the mains voltage lies within the allowable tolerance specications (
Technical data and nameplate
afxed to the side).
Danger due to electric current
Not suitable for IT system!
5.3.2 Required quality attributes for the mains voltage
Danger due to electric current
The mains voltage must comply with the EN 50160 quality characteristics and the dened standard voltages in IEC 60038!
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5.3.3 Leakage current, securely attached, protective earth conductor
Danger due to electric current
The maximum leakage current depends on the type of device and the connected mains voltage ( Technical Data). With regard to xed connection and the type of PE conductor connection, the specication for the leakage current must be observed under consideration of the locally valid standards (for Europe EN 50178 Section 5.2.11 or 5.3.2.1 etc.). Minimum cross-section for PE conductor for xed connection = 1.5 mm
2
!
5.4 Residual-current-operated protective device
Danger due to electric current
For an installation of r.c.d. protection, it shall be observed that this must be of universal-current sensitivity (Type B). In accordance with EN 50 178, Section. 5.2. other types of current-operated protective devices may not be used. To ensure as high a degree of reliability as possible , we recommend a tripping current of 300 mA.
5.5 Inverter output
5.5.1 Motor connection
The motor leads are connected to the terminals: PE, U, V, W. Comply with the motor data (rating plate) regarding the type of connection (Y or D) (
U / f-characteristic curve and technical data).
Information
For each Controller can be attached only one motor, parallel operation of several motors is not allowed!
The maximum length of the screened motor cable is 10 m, a longer cable is not permissible!
5.5.2 Disconnection between controller and motor (repair switch)
Ideally, a repair switch should be installed before the controller (supply line disconnect). In the case of complete disconnection (entire load) after the controller, the enable (controller OFF / ON) must be disconnected simultaneously. I.e., an additional control contact is needed. Switching on the motor while simultaneously issuing the enable (ON) achieves secure energizing with low saturation of the controller.
Attention!
When switching on the motor plus existing release: under certain circumstances, this can occur under full modulation of the controller.
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5.5.3 U/f-characteristic curve
Diagram setting signal and U/f curve (linear)
F
out
[Hz]
F
edge
= F
max
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v_u_f_dia_icontr_0_10v_fix.vsd
1 2
3
4 5
6 7 8
9
10
Analog In 1
0
45
50
403530
25
2015
10
5
2 4
6
8 10
12 14 16
18
20
0...10 V
0...20 mA
10 20
30
40 50
60 70 80
90
100
0...100 % PWM
U
out
100 %
0.5 1 5
F
off
F
on
U
start
= 0 %
Analog In: Speed setting signal (0 - 10 V, 0...20 mA, 0...100 % PWM) Fout: Output frequency Uout: Output voltage Ustart: Start-up voltage Foff: Shutdown Freq. Fon: Switch on Freq. Fedge: Edgefrequency Fmax: Maximum frequency
5.6 Motor protection
Motor protection is possible by connecting thermostats TB (thermal contacts) or thermistors TP (PTC).
The jumper J1 in the connection space must be plugged according to the used thermal protectors.
Motor with thermistors TP
For motor with thermistors “TP” jumper plugged at top (factory setting). A maximum of six individual thermistors (DIN 44081 or DIN 44082) may be connected in series to
a single device.
J1
TP
Motor with thermostats TB
For motor with thermostats “TB” the jumper “J1” must be plugged at the bottom.
J1
TB
When a connected thermostat or thermistor responds (interruption between the two terminals TB/TP) the device switches off and does not switch back on. Relais K1 is de-energized, terminals 13 - “14 interrupted. The signal lamp ashes in code
|15|
(
Diagnostics / faults).
Possibilities for re-starting after the drive has cooled down (terminals TB/TP bridged) by:
By switching the mains voltage off and then on again.
Via a digital input for remote control (ON/OFF enable).
Danger due to electric current
Use a separate screend connection cable for temperature monitoring.
An outside voltage may never be connected to the terminals TB/TP and/or!
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5.7 Analog input E1 for setting fan speed
The device has an analog input for setting the fan speed. Connection E1 / GND (Analog In 1). The internal jumpers E1.1 and E1.2 are factory set in the position for a 0...10 V speed setting signal. The appropriate jumper positions must be observed for a 0...20 mA signal or a PWM signal.
Possibilities for speed setting
0...10 V (factory setting)
Control via external setting signal 0...10 V
or
Speed setting by external potenziometer (10 kΩ) at terminals +10 V and “GND” pick of-off at terminal E1.
E1 D1 GND
0...10 V
+
Analog In 1
E1,1 E1,2
V
E1 D1 GND 10V
Analog In 1
10 V DC Out
10 kΩ
30.08.11 i_jumper_if_basic_0_10v.eps
0...20 mA
Control via external setting signal 0...20 mA
E1
D1 GND
0...20 mA
+
Analog In 1
E1,1 E1,2
mA
31.01.12 i_jumper_if_basic_0_20
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0...100 % PWM
Control via external setting signal PWM
E1,1
E1,2
PWM
E1 D1 GND 10V
Analog In 1
10 V DC Out
31.01.12 i_jumper_if_basic_pwm.eps
24V
24 V DC Out
24 V
15...28 V
+
-
GND
E1
E1,1
E1,2
PWM (10 V)
E1
D1 GND
10V
Analog In 1
10 V DC Out
24V
24 V DC Out
PWM
f = 1...10 kHz
10 kΩ
Danger due to electric current
Do not replug the jumper under voltage, observe the safety instructions!
Make sure the signal has the correct polarity!
Never apply line voltage to analog inputs!
5.8 Output voltage 10 V
Voltage supply e.g. for speed setting by external potentiometer. Connection: 10 V - GND (max. load
Technical data und connection diagram).
It is not permissible to connect voltage outputs of several devices to each other!
It is not permissible to connect voltage outputs in the device to each other!
5.9 Voltage supply for external devices (+24V, GND)
A voltage supply is integrated for external devices e.g. a sensor (max. current load see technical data). In case of overload or short circuit (24 V – GND), the external power supply is shut down (multi-fuse). The device performs a Reset and continues operation.
It is not permissible to connect voltage outputs of several devices to each other!
It is not permissible to connect voltage outputs in the device to each other!
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5.10 Digital input D1 for enable (device ON / OFF)
Electronic disconnection and Reset after motor fault via oating contact at terminals D1- 24V (input resistance and voltage range
Technical data).
Function factory setting for D1:
Device ON for closed contact.
Device OFF with opened contact.
Activation via oating contacts, a low voltage of approx. 24 V DC is connected.
Danger due to electric current
No disconnection (no potential isolation in accordance with VBG4 §6) in remote control of the device!
Never apply line voltage to the digital input!
5.11 Relay outputs K1
An external fault indicator is available over the potential-free contact of the built-in relays (max. contact rating
Technical data and connection diagram).
Function factory setting for K1:
For operation the relay is energized, connections 13 and 14 are bridged. For fault the relay is de­energized (
Diagnostics / faults).
When switching off via enable (D1 = Digital In 1), the relay remains energized.
5.12 Bypass circuit
Please observe the following during bypass switching (controller shunt with mains voltage):
Mutual locking of mains contactor and bypass protection.
Time delay of at least 1 second during switching.
When the contactor is switched off at the inverter output, the enable (ON / OFF) must also be opened and closed again when it is switched back on. When switching off, wait at least 90 seconds before switching back on!
Never apply line voltage to the inverter output!
5.13 Manual Bypass-Switch type S-D-25 and S-D-50
As accessories are manual main switches with bypass function available. By switching OFF Frequency inverters necessary waiting period before renewed switching on amounts minimum 90 seconds!
Switch position
|0|
= Switch OFF supply line (lockable)
|
AUTO| = Operation Control
|
100 %| = Operation Bypass (controller without supply)
Technical data
Line voltage max. 690 V, 50/60 Hz
Rated current
Type S-D-25 Part.-No. 349035: 25 AType S-D-50 Part.-No. 349040: 50 A
Dimensions w x h x d [mm]
Type S-D-25: 115 x 115 x 163Type S-D-50: 135 x 135 x 188
Protection class IP65
S-D-25
AUTO
0
100 %
3 ~ 400 V
Controller
S-D-25
04.12.2007 v_sd25.vsd
Manual Bypass-Switch type S-D-25 / S-D-50
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5.14 Potential at control voltage connections
The control voltage connections (< 50 V) relate to the joint GND potential (Exception: Relay contacts are potential free). There is a potential separation between the control voltage connections and the protective earth. It must be ensured that the maximum external voltage at the control voltage connections cannot exceed 50 V (between GND terminals and PE protective earth). If necessary, a connection to the protective earth potential can be established, install bridge between GND terminal and the PE connection (terminal for screening).
5.15 Option add-on modules
An additional module can be retrotted in the slot provided if required (mounting operating instructions of the additional modules).
The range of additional modules is constantly being extended and adapted to market requirements. The currently available additional modules can be requested from ZIEHL-ABEGG.
Examples for currently available additional modules
Type Part-No. Function
AM-MODBUS AM-MODBUS-W
349045 349050
Communication module
To integrate the device into a MODBUS network. The members can be addressed automatically by an additional connection.
The device can be communicated with using the hand-held terminal type A­G-247NW. Connection by cable via the MODBUS interface or wirelessly by radio (AM-MODBUS- W).
AM-PREMIUM AM-PREMIUM-W
349046 349051
Universal control module
By plugging on the AM-PREMIUM module, the device becomes a universal controller, sensors can be connected directly.
The device can be communicated with using the hand-held terminal type A­G-247NW. Connection by cable via the MODBUS interface or wirelessly by radio (AM-MODBUS- W).
AM-CAN-OPEN 349064 CANOPEN module
To integrate the device into a CANOPEN network.
AM-LON 349049 LON module
To integrate the device into a LON network.
AM-PROFIBUS 349063 PROFIBUS module
To integrate the device into a PROFIBUS network.
6 Start-up
6.1 Prerequisites for commissioning
Attention!
1. You must mount and connect the device in accordance with the operating instructions.
2. Double check that all connections are correct.
3. The mains voltage must match the information on the rating plate.
4. The rated current on the rating plate will not be exceeded.
5. Make sure that no persons or objects are in the hazardous area.
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7 Diagnostics / Faults
Operating conditions are indicated by the status LED with ashing code.
10.01.2014
v_flash_explain_1_17.vsd
ON
OFF
1 x
16 x
15 x
14 x
13 x
12 x
11 x
10 x
9 x
8 x
7 x
6 x
5 x
4 x
3 x
2 x
17 x
Code
Relay
K1
Explanation
Reaction of device
Adjustment
OFF
de-energized, 13 ­14 interrupted
No line voltage
In the event of a mains interruption the unit switches OFF and automatically ON when the voltage has been re­stored.
Check line voltage and pre-fusing.
ON
energized 13 - 14 bridged
Normal operation without fault
1
energized 13 - 14 bridged
No enable = OFF
Terminals “D1” - “24 V” (Digital In 1) not bridged.
Switch off by external contact (
ena-
ble, device ON / OFF).
2
energized 13 - 14 bridged
Temperature management active
The device has an active temperature management to protect it from damage due to too high inside temperatures. In case of a temperature rise above the xed limits, the modulation is reduced linearly. To prevent the complete system being switched off externally (in this op­eration permissible for the controller) in case of reduced operation due to too high an internal temperature, no fault message is sent via the relay.
With a drop in temperature the modula­tion rises again llinear.
Check cooling of the controller.
4
de-energized, 13 ­14 interrupted
line failure
The device is provided with a built-in phase-monitoring function for the mains supply. In the event of a mains interrup­tion (failure of a fuse or mains phase) the unit switches off after a delay (approx. 15 s).
Only functioning with an adequate load for the controller.
Following a shutoff, a startup attempt is made after approximately 5 seconds, if the voltage supply is high enough. This keeps occurring until all 3 supply phases are available again.
Check line voltage.
6
de-energized, 13 ­14 interrupted
IGBT Fault
Earth fault or short-circuit at inverter out­put.
The device switches off, renewed at­tempt to start after about 60 s
Code 9.
Final switch off when error is detected after the third start attempt at an interval < 60 s.
Reset by enable or line voltage ON/OFF.
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Code
Relay
K1
Explanation
Reaction of device
Adjustment
7
de-energized, 13 ­14 interrupted
ZK undervoltage
Intermediate circuit voltage below a xed limit for longer than 75 s.
The modulation is switched off immedi­ately at undervoltage, error message after 75 s.
Automatic switching back on and switch­ing off of error message when the volt­age exceeds the xed limit for at least 5 s.
Check line voltage.
8
de-energized, 13 ­14 interrupted
ZK overvoltage
Intermediate circuit voltage above xed limit for longer than 75s.
Reason for excessively high line voltage or alternator motor operation.
The modulation is switched off immedi­ately at overvoltage, error message after 75 s.
Automatic switching back on and switch­ing off of error message when the volt­age drops below the xed limit for at least 15 s.
Check line voltage. Prevent generator motor operation.
9
energized 13 - 14 bridged
IGBT cooling down period
IGBT cooling down period for approx. 60 sec.
Final shutoff after 2 cooling-off intervals
Code 6.
10
de-energized, 13 ­14 interrupted
Communication fault
MODBUS communication interrupted
description MODBUS communica-
tion
12
de-energized, 13 ­14 interrupted
Line voltage too low
Line voltage below a xed limit for longer than 75 s.
The modulation is switched off immedi­ately at undervoltage, error message after 75 s.
Automatic switching back on and switch­ing off of error message when the volt­age exceeds the xed limit for at least 5 s.
Check line voltage.
13
de-energized, 13 ­14 interrupted
Line voltage too high
Line voltage above xed limit for longer than 75 s.
The modulation is switched off immedi­ately at overvoltage, error message after 75 s.
Automatic switching back on and switch­ing off of error message when the volt­age drops below the xed limit for at least 15 s.
Check line voltage.
14
de-energized, 13 ­14 interrupted
Error Peak current
If the output current increases above the specied limit (even in a short time­frame) the device will switch-off.
After a switch off the controller waits for 30 seconds then the controller attempt a start.
If 10 switch offs take place consecutively within 60 s (time to next respective error), nal switch off takes place with an error message.
Should no further switch off be exceeded in 90 sec. the counter will be reset.
15
de-energized, 13 ­14 interrupted
Motor fault
A connected thermostat or thermistor has tripped the circuit or interruption be­tween both terminals TB / TP.
Plug for TB or “TP” in wrong position.
The unit cuts out and does not switch on again.
Check motor and connection then reset (
Motor protection).
16
de-energized, 13 ­14 interrupted
Sine lter to hot
(only in version with integrated sine lter)
Switch off at to high temperature, restart­ing after cooling down.
Check temperature in controller, Check cooling of the controller.
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Code
Relay
K1
Explanation
Reaction of device
Adjustment
17
de-energized, 13 ­14 interrupted
Overload fault
The controller was switched off by the current limitation.
The error is set after detecting 4 times (I
2
t-process; maximum overload applied
for 60 s). After every detection (IGTB Recovery
Flag is set) there is a 30 s wait until a new attempt is started.
The respective errors must alway have a shorter interval than 5 minutes (started after restart). The modulation is switched off immediately after every detection.
Check load of the device. Reset by enable or line voltage ON/OFF.
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8 Enclosure
8.1 Technical data
Type
(Part-No.)
Rated cur-
rent
Output
{1}
[A]
Rated cur-
rent
(I fundamen-
tal compo-
nent @ 50 Hz)
Input
{2}
[A]
Recommen-
ded motor
output
{3}
[kW]
Rated tem-
perature
[°C]
max. line
fuse
{4}
[A]
max. heat
dissipation
{2}
[W]
Weight
[kg]
FSDM2.6 (308214)
2.6
2.6
(2.4)
1.1 50 6 40 2.5
FSDM3.6 (308215)
3.6
3.4
(3.1)
1.5, 40 6 55 2.6
FSDM5 (308216)
5.0
4.8
(4.5)
2.2 55 10 80 4.6
FSDM7 (308217)
7.0
6.4
(6.0)
3.0 50 10 105 4.7
FSDM8.5 (308218)
8.5
7.8
(7.2)
4.0 55 10 130 5.6
FSDM12 (308264)
12.0
11.0
(9.9)
5.5 55 16 175 5.7
FSDM17 (308269)
17.0
15.3
(14.1)
7.5 50 20 260 5.9
FSDM25 (308322)
25.0
25.0 (-)
11 40 35 480 12.3
FSDM32 (308324)
32.0
27.6
(25.7)
15 50 35 750 24.3
FSDM39 (308326)
39.0
34.0
(31.5)
18.5 55 50 900 26.1
FSDM46 (308328)
46.0
46.0 (-)
22,0 50 50 1050 26.1
FSDM62 (308330)
62.0
62.0 (-)
30,0 40 63 1250 26.1
{1} Rated current output
current indication rating plate @ rated voltage, @ rated temperature (cos φ 0.8 at the output). {2} At rated voltage (cos φ 0.8 at the output), values for different specications on request. {3} Example for power of a 4 pole motor. For the dimension of the frequency inverter size the rated current of the motor is
crucial!
{4} Max. line fuse on site (line protection fuse) according to EN 60204-1 Classication VDE0113 Part 1 (see also Assembly
instructions / Electrical installation / Mains connection / Line protection fuse).
Line voltage* 3 ~ 208...480 V (-15 up to +10 %), 50/60 Hz
Nominal voltage 400 V
Maximal output voltage approx. 95 % from U
Line
Maximal output frequency 50 Hz (1 - 120 Hz) **
Edgefrequency 50 Hz (1 - 120 Hz) **
U/f-characteristic curve linear (quadratic) **
Switching frequency 8 kHz (10 / 16 kHz) **
Rating switching frequency FSDM2.6...25: 8 kHz
FSDM32...62: 6 kHz
Rampup time 20 sec (1 - 250 sec) **
Rampdown time 20 sec (1 - 250 sec) **
Current limit 120 % (100 - 130 %) **
Power factor > 0.9
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Input resistance for speed setting signal
for 0...10 V input: Ri > 100 k for 0...20 mA input: R
i
= 100
Voltage supply for external devices +24 V ± 20 %, I
max
70 mA
Heat dissipation in standby opera­tion
approx. 3 W
Output 10 V I
max
10 mA (short-circuit-proof)
Digital input D1 Input resistance: R
i
approx. 4 k
Voltage range high level: 10....30 V DC
Voltage range low level: 0....4 V DC
Max. contact rating of the relay 2 A / 250 VAC
Max. permissible ambient tempera­ture
55 °C
Min. permissible ambient tempera­ture
0 °C (if mains voltage is not switched off up to -20 °C) To avoid condensation the device must be continuously energized due to
the application of heat, with interruptions such that cooling to the point of condensation does not occur.
Permissible temperature range for storage and transport
-30...+80 °C
Max. permissible installation height 0...4000 m amsl
above 1000 m amsl the rated current is to be reduced by 5 % / 1000 m
Permissible rel. humidity 85 % no condensation
Electromagnetic compatibility for the standard voltage 230 / 400 V ac­cording to DIN IEC 60038
Interference emission EN 61000-6-3 (domestic household applications)
Interference immunity EN 61000-6-2 (industrial applications)
Harmonics current For devices 16A according to EN 61000-3-2 (see Electrical Installation /
Harmonics current for devices 16A) For devices > 16 A and ≤ 75 A according to EN 61000-3-12 (see Electrical
Installation / Harmonics current and line impedance)
Max. leakage current according to the dened networks of DIN EN 60990
FSDM2.6/3.6/5/7/8.5 < 3.5 mA FSDM12/17/25/32/39/46/62 > 3.5 mA
Vibratory strength (for vertical installation, i.e. cable
inlet down).
Broadband noise (simulated life-endurance test) in accordance with EN 61373, category 1 class B.
Shock test according to EN 61373, category 1
Max. cross section/diameter of the conductors for line and motor con­nection
Conductor cross section single-wire 4 mm
2
Conductor cross-section ne-wire: 4 mm2, with wire end ferrule 2.5 mm
2
Conductor (AWG): 12
Housing protection
IP54
* Regarding the mains connection, these devices are to be classied as category C2 devices according to the relevant
EN 61800-3. The increased requirements placed on electrical interference > 2 kHz for category C1 devices are complied with in addition.
** Factory setting (possible setting by add-on module for communication).
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8.1.1 Maximum loading dependent on switching frequency, line voltage and ambient temperature
The maximum permissible temperature for the rated current at rated voltage and rated clock frequency is specied as rated temperature. Since the dissipation of the power loss (heat development) in the device is decisively dependent on the ambient temperature, the max. load must be reduced at an ambient temperature above the rated temperature (
following table)!
The average value measured during a 24 h period must be 5 K under the max. ambient temperature. For installation in a switch cabinet, the devices dissipation and its possible affect on the ambient temperature must be taken into consideration! Since the power loss in the device increases with rising line voltage, the following table must be observed.
Maximal motor current for
|
6 kHz| depending on line input voltage and ambient temperature
(only FSDM32...62)
Type 208 V (-15 %)...415 V (+6 %)
over 415 V (+6 %)...480 V (+10 %)
40 °C 50 °C 55 °C
40 °C 50 °C 55 °C
F(S)DM32A(Q) 32.0 A 32.0 A 28.0 A
32.0 A 30.0 A 26.0 A
F(S)DM39A(Q) 39.0 A 39.0 A 39.0 A
39.0 A 39.0 A 37.0 A
F(S)DM46A(Q) 46.0 A 46.0 A 42.0 A
46.0 A 43.0 A 39.0 A
F(S)DM62A(Q) 62.0 A 55.0 A 50.0 A
62.0 A 55.0 A 48.0 A
Maximum motor current for
|
16 kHz| depending on line voltage and ambient temperature
Type
208 V (-15 %)...415 V (+6 %)
over 415 V (+6 %)...480 V (+10 %)
40 °C 50 °C 55 °C
40 °C 50 °C 55 °C
F(S)DM2.6(A)(Q) 2.6 A 2.6 A 2.2 A
2.6 A 2.5 A 2.0 A
F(S)DM3.6(A)(Q)
3.6 A 3.2 A 2.8 A
3.4 A 3.0 A 2.6 A
F(S)DM5(A)(Q)
5.0 A 5.0 A 5.0 A
5.0 A 5.0 A 5.0 A
F(S)DM7(A)(Q)
7.0 A 7.0 A 6.4 A
7.0 A 6.8 A 6.2 A
F(S)DM8.5(A)(Q)
8.5 A 8.5 A 8.5 A
8.5 A 8.5 A 8.5 A
F(S)DM12(A)(Q)
12.0 A 12.0 A 12.0 A
12.0 A 12.0 A 12.0 A
F(S)DM17(A)(Q)
17.0 A 17.0 A 16.5 A
17.0 A 16.8 A 16.2 A
F(S)DM25(A)(Q)
25.0 A 23.0 A 20.0 A
24.0 A 20.0 A 18.0 A
F(S)DM32(A)(Q)
30.4 A 30.4 A 26.6 A
30.4 A 28.5 A 24.7 A
F(S)DM39(A)(Q)
37.1 A 37.1 A 37.1 A
37.5 A 37.5 A 35.0 A
F(S)DM46(A)(Q)
44.0 A 44.0 A 40.0 A
44.0 A 40.8 A 37.1 A
F(S)DM62(A)(Q)
58.8 A 52.2 A 47.5 A
58.8 A 52.2 A 45.6 A
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Maximum motor current for |10 kHz| depending on line voltage and ambient temperature
Type
208 V (-15 %)...415 V (+6 %)
over 415 V (+6 %)...480 V (+10 %)
40 °C 50 °C 55 °C
40 °C 50 °C 55 °C
F(S)DM2.6(A)(Q) 2.6 A 2.3 A 2.0 A
2.4 A 2.0 A 1.7 A
F(S)DM3.6(A)(Q)
3.6 A 3.0 A 2.6 A
3.4 A 2.8 A 2.4 A
F(S)DM5(A)(Q)
5.0 A 5.0 A 5.0 A
5.0 A 5.0 A 5.0 A
F(S)DM7(A)(Q)
7.0 A 6.5 A 6.0 A
6.8 A 6.3 A 5.8 A
F(S)DM8.5(A)(Q)
8.5 A 8.5 A 8.5 A
8.5 A 8.5 A 8.5 A
F(S)DM12(A)(Q)
12.0 A 12.0 A 12.0 A
12.0 A 12.0 A 12.0 A
F(S)DM17(A)(Q)
17.0 A 16.5 A 15.5 A
16.8 A 16.2 A 15.2 A
F(S)DM25(A)(Q) 21.3 A 19.5 A 17.0 A
20.4 A 17.0 A 15.3 A
F(S)DM32(A)(Q) 27.2 A 27.2 A 23.8 A
27.2 A 25.5 A 22.1 A
F(S)DM39(A)(Q) 33.1 A 33.1 A 33.1 A
33.1 A 33.1 A 31.4 A
F(S)DM46(A)(Q) 39.1 A 39.1 A 35.7 A
39.1 A 36.5 A 33.1 A
F(S)DM62(A)(Q) 52.7 A 46.7 A 42.5 A
52.7 A 46.7 A 40.8 A
Maximum motor current for
|
16 kHz| depending on line voltage and ambient temperature
Type
208 V (-15 %)...415 V (+6 %)
over 415 V (+6 %)...480 V (+10 %)
40 °C 50 °C 55 °C
40 °C 50 °C 55 °C
F(S)DM2.6(A)(Q) 2.4 A 2.0 A 1.7 A
2.2 A 1.8 A 1.5 A
F(S)DM3.6(A)(Q)
3.4 A 2.6 A 2.0 A
3.2 A 2.4 A 1.8 A
F(S)DM5(A)(Q)
5.0 A 5.0 A 4.8 A
5.0 A 4.8 A 4.6 A
F(S)DM7(A)(Q)
6.5 A 5.7 A 5.2 A
6.3 A 5.5 A 5.0 A
F(S)DM8.5(A)(Q)
8.5 A 8.0 A 7.7 A
8.2 A 7.8 A 7.5 A
F(S)DM12(A)(Q)
12.0 A 12.0 A 12.0 A
12.0 A 12.0 A 12.0 A
F(S)DM17(A)(Q)
16.0 A 14.2 A 13.0 A
15.8 A 14.0 A 12.8 A
F(S)DM25(A)(Q) 17.0 A 15.6 A 13.6 A
16.3 A 13.6 A 12.2 A
F(S)DM32(A)(Q) 21.8 A 21.8 A 19.0 A
21.8 A 20.4 A 17.7 A
F(S)DM39(A)(Q) 26.5 A 26.5 A 26.5 A
26.5 A 26.5 A 25.2 A
F(S)DM46(A)(Q) 31.3 A 31.3 A 28.6 A
31.3 A 29.2 A 26.5 A
F(S)DM62(A)(Q) 42.2 A 37.4 A 34.0 A
42.4 A 37.4 A 32.6 A
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8.2 Connection diagram
Icontrol Basic FSDM...(A)(Q)
L3L2L1
PE
Netz
Line
3 ~ 208...480 V 50/60 Hz
L1 L2 L3
M
3 ~
U
V W PE TP
Y/Δ
TP
U
V W
TB/TPTB/
TP
E1 D1 GND 10V 24V
Eingang
Input
0...10 V
0...20 mA
0...100 % PWM
+
4
Digital In 1
Analog In 1
24 V DC Out
10 V DC Out
01
Aus / Ein
Off / On
TB/TP In
10V
+
q
Motorzuleitung
Motor cable
max. 10 m
3 ~ Motor
mit eingebauten Temperaturfühlern
with internal thermistors
3
13 14
K1
Kontaktbelastung
Contact rating
max. AC 250 V 2 A
7
3433
Kontaktbelastung
Contact rating
max. AC 400 V 4 A
8
10
Hauptschalter nur bei „Q“ in Typ!
Main switch only at „Q“ in type!
9
1
J1 E1,1 E1,2
TB
TP
0...20 mA
0...10 V (10 V PWM)
15...28 V PWM
5
6
Temperaturfühler
Thermistors
TP =
Thermostatschalter
Thermostats
TB =
UMUN11K2
14.01.2016
2
Nicht für IT-System geeignet!
Not suitable for IT-System!
N
N
1 Line 3 ~ 208 V...480 V, 50/60 Hz 2 Not suitable for IT system! 3 3 ~ Motor with internal thermistors 4 Input: 0...10 V, 0...20 mA, 0...100 % PWM 5 Enable Device Off / On 6 TP = thermistors, TB = thermostats 7 Contact rating max. 2A / 250 V AC 8 Only in "Q" devices: contact rating max. 4 A / 400 V AC 9 Only in "Q" devices = types with integrated main switch!
8.3 Dimensions [mm]
FSDM2.6, FSDM3.6
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L-BAL-E160-GB 1701 Index 004 Part.-No.
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FSDM5...FSDM17 (FSDM25)
FSDM32...FSDM62
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8.4 Manufacturer reference
Our products are manufactured in accordance with the relevant international regulations. If you have any questions concerning the use of our products or plan special uses, please contact:
ZIEHL-ABEGG SE Heinz-Ziehl-Straße 74653 Künzelsau Telephone: +49 (0) 7940 16-0 Telefax: +49 (0) 7940 16-504 info@ziehl-abegg.de http://www.ziehl-abegg.de
8.5 Service information
If you have any technical questions while commissioning or regarding malfunctions, please contact our technical support for control systems - ventilation technology.
phone: +49 (0) 7940 16-800 Email: fan-controls-service@ziehl-abegg.de
Our worldwide contacts are available in our subsidiaries for deliveries outside of Germany, see www.ziehl-abegg.com. If you make returns for inspections or repairs we need certain information in order to facilitate focused trouble shooting and fast repair. Please use our repair ticket for this. It is provided to you after you have consulted our support department. In addition, you can download it from our homepage. Support - Downloads - General documents.
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