Introduction (continued) Altivar 12 variable speed drives

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1 Introduction (continued) Altivar Drive with heatsink ATVH0M Drive on base plate ATVP0M An optimum solution The Altivar range of extends across a range of motor power ratings from 0. kw to kw on three types of power supply: Two standard versions are available: Drive with heatsink for normal environments and fan-cooled enclosure: v 00 to 0 V single-phase, 0. kw to 0. kw (ATVHpppF) v 00 to 0 V single-phase, 0. kw to. kw (ATVHpppM) v 00 to 0 V three-phase, 0. kw to kw (ATVHpppM) Drive on a base plate for mounting on the machine frame; the frame surface area should allow heat to dissipate: v 00 to 0 V single-phase, 0. kw to 0. kw (ATVH0F, P0F) v 00 to 0 V single-phase, 0. kw to 0. kw (ATVH0M, PpppM) v 00 to 0 V three-phase, 0. kw to kw (ATVH0M, PpppM) Note: The Altivar drive output voltage is 00 to 0 V three-phase, regardless of the type of drive line supply. The Altivar drive utilizes standard Modbus communication protocol, and can be accessed via the RJ connector located on the underside of the drive. ATVH0M with door on front panel open The entire range conforms to international standards IEC/EN 00-- and IEC/EN 00-, is UL, CSA, C-Tick, NOM, GOST certified and has been developed to meet the requirements of directives regarding the protection of the environment (RoHS, WEEE) as well as those of European Directives to obtain the e mark. Electromagnetic compatibility (EMC) The integration of a level C EMC filter in ATVppppM drives and the handling of EMC simplify installation and make it very inexpensive to bring the device into conformity to obtain the e mark. This EMC filter can be disconnected via an internal switch. ATVppppF and ATVppppM drives are designed without an EMC filter. Filters are available as an option and can be installed by the customer to reduce the level of emissions (see page ). External accessories and options External accessories and options can be used with Altivar drives: EMC conformity kits, plates for direct mounting on mm DIN rails, etc. Braking units combined with a braking resistor, motor chokes, additional EMC input filters, etc. Dialog and configuration tools Human/Machine Interface (HMI) The -digit display can be used to display states and faults, access parameters and modify them via the navigation button. The RUN and STOP buttons can be made accessible on the front panel by removing the blanking plate from the door; they must be configured in order to be active. Multi-Loader configuration tool Simple Loader and Multi-Loader configuration tools The Simple Loader tool enables one powered-up drive's configuration to be duplicated on another powered-up drive. The Multi-Loader tool enables configurations from a PC or drive to be copied and duplicated on another drive; the drives do not need to be powered up. SoMove setup software The SoMove setup software can be used with the Altivar drive for configuration, adjustment, debugging (using the Oscilloscope function) and maintenance, just as it can for all other Schneider Electric and starters. It can also be used to customize the integrated display terminal menus. It can be used with a direct connection or a Bluetooth wireless connection. Remote terminal with cover closed Remote terminal with cover open: RUN, FWD/REV and STOP buttons accessible Remote display terminal The Altivar drive can be connected to a remote display terminal, available as an option. This terminal can be mounted on an enclosure door with IP or IP degree of protection. The maximum operating temperature is 0 C. It provides access to the same functions as the Human/Machine Interface. 0 page 0 page page page page

2 Specifications Altivar 0 Environmental specifications Conformity to standards e marking EMC immunity Conducted EMC emissions for drives Radiated EMC emissions for drives Product certifications ATVppppF ATVH0M ATVp0M to pum ATVppppM ATVpppppp Degree of protection IP 0 Altivar drives have been developed to conform to the strictest international standards and the recommendations relating to electrical industrial control equipment (IEC, EN), in particular: IEC/EN 00-- (low voltage), IEC/EN 00- (conducted and radiated EMC immunity and emissions). IEC/EN 00-, Environments and (EMC requirements and specific test methods) IEC/EN level (electrostatic discharge immunity test) IEC/EN level (radiated, radio-frequency, electromagnetic field immunity test) IEC/EN level (electrical fast transient/burst immunity test) IEC/EN level (surge immunity test) IEC/EN level (immunity to conducted disturbances, induced by radio-frequency fields) IEC/EN (voltage dips, short interruptions and voltage variations immunity tests) With additional EMC filter: IEC/EN 00-, Environment (public network) in restricted distribution: Category C, from to khz for a shielded motor cable length y m (except ATVp0M to p0m) Category C, from to khz for a shielded motor cable length y 0 m IEC/EN 00-, Environment (industrial network): Category C, from to khz for a shielded motor cable length y 0 m IEC/EN 00-, Environment (public network) in restricted distribution: Category C, at,,, and khz for a shielded motor cable length y m Category C: ATVH0M to p0m, from to khz for a shielded motor cable length y m and at,, khz for a shielded motor cable length y 0 m Category C: ATVHUM to HUM, from to khz for a shielded motor cable length y m and at,,, and khz for a shielded motor cable length y 0 m With additional EMC filter: IEC/EN 00-, Environment (public network) in restricted distribution: Category C, from to khz for a shielded motor cable length y 0 m Category C, from to khz for a shielded motor cable length y 0 m IEC/EN 00-, Environment (industrial network): Category C, from to khz for a shielded motor cable length y 0 m IEC/EN 00-, Environment (public network) in restricted distribution: Category C, from to khz for a shielded motor cable The drives are marked e according to the European low voltage (00//EC) and EMC (00/0/EC) directives UL, CSA, NOM, GOST and C-Tick Vibration resistance Drive not mounted on DIN rail According to IEC/EN 00--:. mm peak from to Hz gn from to 00 Hz Shock resistance gn for ms according to IEC/EN 00-- Maximum ambient pollution Degree according to IEC/EN 00-- Definition of insulation Environmental conditions IEC 0-- classes C and S Use Relative humidity % to non condensing, no dripping water, according to IEC 00-- Ambient air temperature around the device Operation ATVH0F, H0F ATVH0M to H0M ATVH0M to H0M ATVPppppp ATVH0F ATVHUM, HUM ATVHUM to HU0M C - 0 to + 0 without de-rating () Up to + 0, with the protective blanking cover removed () and current de-rating of.% per additional degree () C - 0 to + 0 without de-rating Up to + 0, with the protective blanking cover removed () and current de-rating of.% per additional degree () Storage ATVpppppp C - to + 0 Maximum operating altitude ATVpppppp m 000 without de-rating ATVppppF ATVppppM m Up to 000 for single-phase networks and corner grounded distribution networks, with current de-rating of % per additional 00 m ATVppppM m Up to 000 meters for three-phase networks, with current de-rating of % per additional 00 m Operating position Maximum permanent angle in relation to the normal vertical mounting position () See the possible mounting types on page. () See the de-rating curves in the User Manual, available on our website at " page page page page page 0

3 Specifications (continued) Altivar Drive specifications Output frequency range Hz 0. to 00 Configurable switching frequency khz Nominal switching frequency: khz without de-rating in continuous operation Adjustable during operation from to khz Above khz in continuous operation, apply de-rating to the nominal drive current of: 0% for khz 0% for khz 0% for khz Above khz, the drive will reduce the switching frequency automatically in the event of excessive temperature rise. See the de-rating curves in the User Manual, available on our website at " Speed range to 0 Transient overtorque Braking torque Maximum transient current 0 to 0% of the nominal torque depending on the drive rating and the type of motor Up to 0% of the nominal torque without resistor Up to 0% of the nominal motor torque with braking unit (optional) at high inertia 0% of the nominal drive current for 0 seconds Motor control profiles Standard profile (voltage/frequency ratio) Performance profile (sensorless flux vector control) Pump/fan profile (Kn quadratic ratio) Electrical power specifications Power supply Voltage V 00 - % to 0 + 0% single-phase for ATVppppF 00 - % to 0 + 0% single-phase for ATVppppM 00 - % to 0 + 0% three-phase for ATVppppM Frequency Hz 0 to 0 ± % Isc (short-circuit current) A y 000 (Isc at the connection point) for single-phase power supply y 000 (Isc at the connection point) for three-phase power supply Drive supply and output voltages Drive supply voltage Drive output voltage for motor ATVppppF V 00 to 0 single-phase 00 to 0 three-phase ATVppppM V 00 to 0 single-phase ATVppppM V 00 to 0 three-phase Maximum length of motor Shielded cable m 0 cable (including tap links) Unshielded cable m 00 Drive noise level ATVH0F, H0F dba 0 ATVH0M to H0M ATVH0M to H0M ATVPppppp ATVH0F dba ATVHUM, HUM ATVHUM to HU0M dba 0 Electrical isolation Connection specifications (drive terminals for the line supply, the motor output and the braking unit) Drive terminals Maximum wire size and tightening torque ATVH0F, H0F ATVH0M to H0M ATVH0M to H0M ATVP0F ATVP0M to P0M ATVP0M, P0M ATVH0F ATVHUM, HUM ATVHUM to HU0M ATVPUM to PU0M Electrical isolation between power and control (inputs, outputs, power supplies) R/L, S/L/N, T/L, U/T, V/T, W/T, PA/+, PC/. mm ( AWG) 0. Nm. mm (0 AWG). Nm 0 page page page page page

4 References Altivar Drives with heatsink, drives on a base plate 0 ATVH0M ATVH0M ATVHU0M ATVPUM ATVHUMTQ () Drives with heatsink Motor Line supply Altivar Power indicated on rating plate () Max. line current () Apparent power Max. prospective line Isc Maximum continuous output current (In) () Maximum transient current for 0 s Dissipated power at maximum output current (In) () Reference Weight () at U at U at U at U kw HP A A kva ka A A W kg Single-phase supply voltage: 00 to 0 V 0/0 Hz () ATVH0F () ATVH0F ATVH0F.00 Single-phase supply voltage: 00 to 0 V 0/0 Hz () () ATVH0M () () ATVH0M () ATVH0M () ATVH0M () ATVHUM () ATVHUM ().00 Three-phase supply voltage: 00 to 0 V 0/0 Hz () ATVH0M () ATVH0M ATVH0M ATVHUM ATVHUM ATVHU0M ATVHU0M.000 Drives on a base plate Single-phase supply voltage: 00 to 0 V 0/0 Hz () ATVH0F () ATVP0F () 0.00 Single-phase supply voltage: 00 to 0 V 0/0 Hz () () ATVH0M () () ATVP0M () ATVP0M () ATVP0M () 0.00 Three-phase supply voltage: 00 to 0 V 0/0 Hz () ATVH0M () ATVP0M () ATVP0M () ATVPUM () ATVPUM () ATVPU0M () ATVPU0M ().00 () These values are given for a nominal switching frequency of khz, for use in continuous operation. If operation above khz needs to be continuous, the nominal drive current should be derated by 0% for khz, 0% for khz and 0% for khz. The switching frequency can be set between and khz for all ratings. Above khz, the drive will reduce the switching frequency automatically in the event of an excessive temperature rise. See the de-rating curves in the User Manual, available on our website at " () Weight of product without packaging. () Typical value for the indicated motor power and for the maximum prospective line Isc. () Min. (U) and max. (U) nominal supply voltage: 00 (U) to 0 V (U), 00 (U) to 0 V (U). () Due to the poor heat dissipation, the ATVH0pp drive is only supplied as a base plate version. () Drive supplied with category C integrated EMC filter. This filter can be disconnected. () Available in lots of : add TQ at the end of the reference. For example, ATVH0M becomes ATVH0MTQ. () Available in lots of : add TQ at the end of the reference. ATVHUM becomes ATVHUMTQ. () To size the ATVPppppp drive correctly, see the specific manual for the Altivar base plate version, available on our website at page page 0 page page page

5 Dimensions Altivar Drives with heatsinks Drives with heatsinks () ATVH0F, H0F, ATVH0M to H0M, ATVH0M to H0M Drive with EMC conformity kit VWA (available as an option) b xø H, x M screws c = 0 = c M ATV b c c H H0F (), H0M (), H0M () 0. H0F, H0M, H0M 0. 0 H0M, H0M, H0M 0. 0 () Due to the poor heat dissipation, ATVH0pp drives are only available as a base plate version. They can either be mounted conventionally (drive on heatsink) or on the machine frame (drive on base plate). ATVH0F, ATVHUM, HUM, ATVHUM, HUM Drive with EMC conformity kit VWA (available as an option) 0 b xø 0 b x M screws c = = 0 ATV b b c H0F, HUM, HUM.. HUM, HUM.. 0 M ATVHU0M, HU0M Drive with EMC conformity kit VWA (available as an option) 0 xø, 0, x M screws, = = 0, M 0 page page 0 page page page

6 Mounting recommendations Altivar Mounting recommendations Install the unit vertically, at ± 0. Avoid placing it close to heating elements. Leave sufficient free space to ensure that the air required for cooling purposes can circulate, by natural convection or by ventilation, from the bottom to the top of the unit. Operating temperature according to the mounting type Mounting type Drives with natural convection Drives with fan Type A mounting 0 mm 0 mm ATVH0F, H0F ATVH0M to H0M ATVH0M to H0M ATVH0F ATVHUM, HUM ATVHUM to HU0M Ambient air temperature () Ambient air temperature () -0 to +0 C -0 to +0 C Up to +0 C with current de-rating of % per additional degree above 0 C Type B mounting () -0 to +0 C () Up to +0 C with current de-rating of % per additional degree above 0 C -0 to +0 C Up to +0 C with current de-rating of % per additional degree above 0 C Type C mounting () -0 to +0 C Up to + 0 C with current de-rating of % per additional degree above 0 C -0 to +0 C on metal plate -0 to +0 C Up to +0 C with current de-rating of % per additional degree above 0 C 0 mm 0 mm () Value given for a switching frequency of khz, for use in continuous operation. If operation above khz needs to be continuous, the nominal drive current should be derated by 0% for khz, 0% for khz and 0% for khz. Above khz, the drive will reduce the switching frequency automatically in the event of an excessive temperature rise. See the de-rating curves in the User Manual, available on our website at " () Remove the protective cover from the top of the drive. () Maximum value depending on the drive rating and operating conditions; see the de-rating curves in the User Manual, available on our website at " 0 page page 0 page page page

7 Connections Altivar Drives Recommended connections Typical connection for ATVppppF, ATVppppM Typical connection for ATVppppM Single-phase power supply Three-phase power supply (power section) () Q Q Negative logic (Sink) () Positive logic (Source) () U/T V/T W/T PA/+ PC/ +V AI AO LO+ LO LI LI LI LI +V Q Q KM KM A R/L S/L/N RA RC RB LO+ LO LI LI LI LI +V A () R/L U/T V/T S/L W/T T/L U V M W c b P a 0 to 0 V or 0-0 ma U V M W Note: Install interference suppressors on all inductive circuits near the drive or connected on the same circuit, such as relays, contactors, solenoid valves, fluorescent lighting, etc. Compatible components (for a complete list of references, please refer to the "Motor starter solutions - Control and protection components" and "Motor starters up to 0 A" catalogs or visit " Item no. Description A ATVppppF or ATVppppM drive (see page ) A ATVppppM drive (see page ) KM Contactor (only if a control circuit is needed; see page ) P. kw reference potentiometer, SZ RV0. This can be replaced by a 0 kw potentiometer (maximum). Q Circuit breaker (see page ) Examples of recommended connections for logic and analog I/O -wire control -wire control Analog input configured for voltage +V LI ATVpppppp LIp +V LI ATVpppppp LI LIp IA ATVpppppp Analog input configured for current ATVpppppp IA LI: Forward LIp: Reverse LI: Stop LI: Forward LIp: Reverse c b. kw to 0 kw reference + 0 V potentiometer External 0 V a 0-0 ma -0 ma supply Examples of recommended connections for logic I/O powered by an external V c supply () Connected as positive logic (Source) Connected as negative logic (Sink) + V 0 V LO+ LO LI LI LI LI +V + V 0 V LO+ LO LI LI LI LI +V 0 V c supply V c supply () The control section is connected in exactly the same way as for the ATVppppF and ATVppppM drives. () Connection as positive logic (Source) or negative logic (Sink) is configured via parameters; the factory-set configuration is positive logic (Source). () Fault relay contacts for remote signalling of the drive status. () The R/L, S/L/N and T/L terminals are connected at the top of the drive. The other terminals are connected on the underside of the drive. () Please refer to the "Phaseo power supplies and transformers" catalog. page page 0 page page page

8 Selection guide Standard drives - Low voltage Simple machines CApplications: Simple machines for industry (small handling applications, packaging, pumps, fans, etc.) Simple consumer machines (access barriers, rotating advertising hoardings, medical beds, treadmills, dough mixers, etc.) Other types of application: - Mobile machines and small appliances equipped with a power socket - Applications which traditionally use other solutions (-speed DC motors, mechanical drives, etc.). C Applications: Simple industrial machines (material handling and packaging, textile machines, special machines, pumps and fans). C Applications: Simple industrial machines (material handling and packaging, textile machines, special machines, pumps and fans). Altivar Altivar Altivar C IP Variable speed drives for small machines with 0 V three-phase asynchronous motor Variable speed drives for threephase asynchronous motors Variable speed drives for threephase asynchronous motors for machines in harsh environments. Description Technical information Power range for 0 0 Hz supply Voltage Compact Easy to set up (Plug & Play) Reliable, cost-effective solution for compact machines Open: large number of communication cards available as options User-friendly: simplified interface Autotuning: maximum performance 0... kw 0... kw 0... kw Single-phase 00 0 V Three-phase 00 0 V Single-phase 00 0 V Three-phase V Drive/Output frequency Hz Hz Hz Rugged even in the most hostile environments: - Installed as close as possible to the motor - Integrated functions for applications requiring IP degree of protection - Modbus and CANopen communication protocols Flexibility to adapt to each machine: - Customisable depending on the model - Easy configuration Single-phase 00 0 V Three-phase 0 00 V Motor type Asynchronous Yes Yes Yes Synchronous No No No Communication Integrated Modbus Modbus and CANopen Modbus and CANopen As an option CANopen Daisy chain, DeviceNet, PROFIBUS DP, Modbus TCP, Fipio DeviceNet, Ethernet TCP/IP, Fipio, PROFIBUS DP 0 Standards and certifications IEC/EN 00--, IEC/EN 00- (environments and, categories C to C) CE, UL, CSA, C-Tick, GOST, NOM IEC/EN 00--, IEC/EN 00- (environments and, categories C to C) CE, UL, CSA, C-Tick, GOST Intended use Machines / Other versions: please consult our Customer Care Centre.

9 Altivar 0. kw Simple machines Ultra-compact drives Dimensions (in mm) width x height x depth C: x x 0. F: 0 x x. C: x x 0. F: 0 x x. C: x x. C: 0 x x. C: 0 x x. Type of drive Single-phase Single-phase Three-phase Supply voltage 0 V 0 V 0 V Degree of protection IP0 Drive Output frequency Hz Type of control Asynchronous motor U/F, sensorless flux vector control, quadratic Kn Transient overtorque Speed range to 0 Functions Number of functions of the nominal torque Number of preset speeds Number of I/O Analog inputs configurable analog input Logic inputs assignable logic inputs Analog outputs configurable analog output Relay outputs protected relay logic output Dialogue Integrated or remote display terminal, SoMove software workshop, or mobile phone via Bluetooth Communication Integrated Modbus Cards (available as an option) Reduction of current harmonics EMC filter Integrated C EMC As an option Motor power kw/hp 0./0. ATVH0F () C ATVH0M () () C ATVH0M () C 0./0. ATVH0F C ATVH0M () C ATVH0M C 0./0. ATVH0M () C 0./ ATVH0F C ATVH0M () C ATVH0M C./ ATVHUM () C ATVH0M F./ ATVHUM () C ATVH0M F / ATVH00M F / ATVH00M F () Because of the low heat dissipation, the ATVH0.. is only supplied on a base plate () Also exists as a multipack 0 / Other versions: please consult our Customer Care Centre.

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