Three-phase HV and LV asynchronous induction motors with squirrel-cage rotor and slip-ring rotor
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- Σίλας Τοκατλίδης
- 7 χρόνια πριν
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1 MANUFACTURING, REPAIRS, OVERHAULING AND ERECTION OF POWER EQUIPMENT Holder of the certificate No. EMS in accordance with Environmental Management Systems corresponding to ČSN EN ISO 101. Holder of the certificate No in accordance with System of Quality Assurance corresponding to ČSN EN ISO 1. Threephase HV and LV asynchronous induction motors with squirrelcage rotor and slipring rotor
2 CONTENT 1. INTRODUCTION 2. EXMONTEnergo a.s. MANUFACTURING PROGRAMME 3. STANDARD SPECIFICATIONS 4. MOTOR TYPE DESIGNATION 5. TECHNICAL SPECIFICATION 6. THREEPHASE HV ASYNCHRONOUS INDUCTION MOTORS WITH SQUIRRELCAGE ROTOR 7. THREEPHASE LV ASYNCHRONOUS INDUCTION MOTORS WITH SQUIRRELCAGE ROTOR 8. STANDARD DIMENSIONS OF INDUCTION MOTORS WITH SQUIRRELCAGE ROTOR 9. THREEPHASE HV ASYNCHRONOUS INDUCTION MOTORS WITH SLIPRING ROTOR 10. THREEPHASE LV ASYNCHRONOUS INDUCTION MOTORS WITH SLIPRING ROTOR 11. STANDARD DIMENSIONS OF INDUCTION MOTORS WITH SLIPRING ROTOR
3 1. INTRODUCTION This catalogue contains basic electric and dimensional data concerning lowvoltage (LV) and highvoltage (HV) asynchronous induction motors of 5 kw to kw in the 2 to 12 pole range. 2. EXMONTEnergo a.s. MANUFACTURING PROGRAMME Manufacturing of induction motors and generators Asynchronous induction motors and generators with output range to kw and with voltage range to 13.8 kw asynchronous induction motors with squirrelcage rotor asynchronous induction motors with slipring rotor asynchronous generators multispeed asynchronous induction motors explosionproof asynchronous induction motors Synchronous machines with output range to 000 kva and voltage range to 13.8 kv synchronous generators synchronous turbo motors synchronous alternators with salient poles powered by water turbines and diesel aggregates Overhaul, repairing and reconstruction services of electric rotating machines Asynchronous induction motors and generators with output range to 000 kw and with voltage range to 13.8 kv asynchronous induction motors with squirrelcage rotor asynchronous induction motors with slipring rotor asynchronous generators multispeed asynchronous motors explosionproof asynchronous motors Synchronous machines with output range to kva and voltage range to 13.8 kv synchronous turboalternators synchronous turbo motors synchronous alternators with salient poles powered by water turbines and diesel aggregates Directcurrent machines with output range to kw directcurrent dynamos directcurrent motors winding motors directcurrent traction motors rolling motors Range of repairs and overhaul services disassembly at the customer's transport of the machinery to the contractor shop disassembly, report preparing replacing of LV / HV winding (which is carried out only in the heat class F or H) mechanical repairs (overhaul of bearing brackets, repairs of bearings, repairs of sliding systems, repairs of commutators, rings etc.) other repairs and overhaul services on basis of customer's order balancing of rotors measuring of electric and mechanical values assembly of electric machines 1
4 3. STANDARD SPECIFICATION Asynchronous induction motors and generators and synchronous generators produced by EXMONTEnergo a.s. meet the requirements of the ČSN (Czech Standard Specification) and of IEC (International Electrotechnical Commission). 4. MOTOR TYPE DESIGNATION The type designation consists of a combination of letters and numerals. The type designation specifies the motor type, the position of the motor shaft, the shaft height, the number of poles and the voltage. STRUCTURE OF MOTOR DESIGNATION 1. Motor Type 2. Kind of Machine 3. Position of Motor Shaft 4. Height of Shaft Axis 5. Length of the Stator Core according to power 6. Number of Poles 7. Type of Rotor 8. Nominal Voltage A M H 0 06 N 04 The meaning of single symbols: Design of the point 1: A Asynchronous S Synchronous Design of the point 2: M Motor G Generator Design of the point 3: H Horizontal shaft V Vertical shaft Design of the point 4: 5 Shaft Axis 5 mm 0 Shaft Axis 0 mm Shaft Axis mm Shaft Axis mm Shaft Axis mm 600 Shaft Axis 600 mm Design of the point 5: 0 to 3 Length of the Stator Core according to power Design of the point 6: 02 2pole machine 04 4pole machine 06 6pole machine 08 8pole machine 10 10pole machine 12 12pole machine Design of the point 7: N Induction motor with squirrelcage rotor K Induction motor with slipring rotor Design of the point 8: 04 0 V 05 V V V 33 3 V V 63 6 V V V V 2
5 5. TECHNICAL SPECIFICATION This part contains technical data of HV and LV induction motors (with squirrelcage rotor and slipring rotor) produced by EXMONTEnergo a.s. All measurements mentioned in the tables are in millimeters [mm]. The producer reserves all rights for changes in this catalogue. Used symbols: Pn motor shaft nominal output nn rated speed In rated current Ik/In starting and rated current relation Mn rated torque Mk/Mn starting and rated torque relation Mmax/Mn pullout and rated torque relation cosϕ power factor η efficiency J moment of inertia m weight U rotor voltage I2n rotor current R2 rotor resistance R2f resistance of phase of rotor by C CONTENT HV induction motors with squirrelcage rotor Technical data p. 4 Dimensional scheme p. 8 LV induction motors with squirrelcage rotor Technical data p. 6 Dimensional scheme p. 8 HV induction motors with slipring rotor Technical data p. 10 Dimensional scheme p. 14 LV induction motors with slipring rotor Technical data p. 12 Dimensional scheme p. 14 Chart of efficiency (η) power factor (cosϕ) dependence Asynchronous induction motors with squirrelcage rotor Asynchronous induction motors with slipring rotor Efficiency for intensity of load in [%] Power factor for intensity of load Efficiency for intensity of load in [%] Power factor for intensity of load 1/4 2/4 3/4 4/4 5/4 1/4 2/4 3/4 4/4 5/4 1/4 2/4 3/4 4/4 5/4 1/4 2/4 3/4 4/4 5/ ,8 0,72 0,86 0,90 0,92 0, , ,8 0,67 0,86 0,90 0,92 0, ,8 0,71 0,85 0,89 0,91 0, , ,8 0,66 0,85 0,89 0,91 0,91 90, ,7 0,69 0,85 0,88 0,90 0, , ,7 0,65 0,84 0,88 0,90 0, ,7 0,63 0,82 0,87 0,89 0,89 87, , ,7 0,63 0,82 0,87 0,89 0, ,6 0,61 0,81 0,86 0,88 0,88 85, , ,6 0,58 0,78 0,85 0,88 0, ,5 0,59 0,79 0,84 0,87 0, , ,5 0,57 0,77 0,84 0,87 0, ,3 0,57 0,77 0,83 0,86 0, ,3 0,55 0,75 0,83 0,86 0, ,0 0,54 0,75 0,82 0,85 0, ,0 0,52 0,72 0,81 0,85 0, ,0 0,52 0,73 0,81 0,84 0,85 0,50 0,70 0,80 0,84 0,85 82, ,0 0,50 0,71 0,80 0,83 0,84 0,49 0,69 0,79 0,83 0, ,0 0,48 0,69 0,78 0,82 0,83 0,48 0,68 0,78 0,82 0, ,0 0,45 0,67 0,77 0,81 0,82 0,46 0,67 0,77 0,81 0,82 0,43 0,66 0,76 0,80 0,81 0, 0,64 0,75 0,80 0,81 0,41 0,64 0,74 0,79 0,80 0,41 0,63 0,74 0,79 0,80 0,39 0,62 0,73 0,78 0,79 0,39 0,62 0,73 0,78 0,79 0,38 0,61 0,72 0,77 0,78 0, 0,60 0,71 0,76 0,77 0,34 0,58 0,69 0,75 0,76 0, 0,56 0,68 0,74 0,75 0,31 0,55 0,67 0,73 0,74 0,29 0,53 0,65 0,72 0,73 0,27 0,51 0,63 0,71 0,72 0,25 0,49 0,61 0,70 0,71 3
6 6. THREEPHASE HV ASYNCHRONOUS INDUCTION MOTORS WITH SQUIRRELCAGE ROTOR TYPE Pn nn In cosϕ η Mn Mk / Mn Mmax / Mn Ik / In Moment [kw] [min 1 ] by 6 kv [] [%] [Nm] [] [] [] of inertia [A] [kg m 2 ] AMH002N ,9 0,9 95, ,0 2,5 6,0 5,9 AMH102N ,8 0,9 95, ,0 2,5 6,0 6,2 AMH202N ,3 0,9 95,7 14 1,0 2,5 6,0 6,6 AMH302N ,9 95, ,0 2,5 6,0 7,3 AMH02N , ,0 2,6 6,0 11,4 AMH45102N ,9 96,2 17 1,0 2,6 6,0 12,6 AMH45202N ,8 0,9 96, ,0 2,6 6,0 14,0 AMH02N ,2 0,91 95,9 2 0,8 2, AMH50102N ,91 96, ,8 2,6 6,9 AMH50202N ,91 96,3 1 0,8 2,6 6 AMH50302N ,91 96,3 22 0,8 2, AMH02N ,9 96, ,6 2,7 6,3 23 AMH56102N ,9 96, ,6 2,7 6,3 25 AMH56202N ,9 96, ,6 2,6 6,3 27 AMH56302N , ,6 2,7 6,3 30 AMH02N60 AMH63102N60 on request AMH602N60 0 AMH004N ,1 0,87 95, , ,4 AMH104N ,1 0,87 95, ,55 6,8 AMH204N ,88 95, , ,1 AMH04N ,88 95,8 1 2, AMH45104N , ,6 6 AMH45204N ,88 96, ,6 6 34,5 AMH04N , ,9 2,5 6 44,4 AMH50104N ,88 96, ,9 2,5 6 47,5 AMH50204N ,5 0,88 96, ,9 2,5 6 52,5 AMH50304N ,5 0,88 96,4 71 0,9 2, AMH04N ,89 96, ,8 91 AMH56104N ,89 96, ,8 104 AMH56204N ,89 96, ,55 6,5 115 AMH04N ,89 96, ,7 2,6 6,2 1 AMH63104N ,89 96, ,7 2,7 6,3 145 AMH604N ,89 96, ,7 2,7 6,4 165 AMH63304N ,89 96, ,7 2,7 6,5 192 AMH006N ,1 0,84 95, ,1 5,5 21,8 AMH106N ,3 0,84 95, ,1 5,5 24,4 AMH206N ,2 0,84 95, ,1 5,5 27,5 AMH06N ,85 95, AMH45106N , AMH45206N ,85 96, AMH06N ,2 0, ,3 5,7 58,5 AMH50106N ,5 0,85 96, ,3 5,7 64 AMH50206N ,85 96, ,3 5,7 69,5 AMH50306N ,6 0,85 96, ,3 5,7 75 4
7 TYPE Pn nn In cosϕ η Mn Mk / Mn Mmax / Mn Ik / In Moment [kw] [min 1 ] by 6 kv [] [%] [Nm] [] [] [] of inertia [A] [kg m 2 ] AMH06N ,86 96, ,95 2,2 5,5 117 AMH56106N ,86 96,5 50 0,95 2,2 5,5 125 AMH56206N ,86 96, , AMH56306N ,86 96, , AMH06N ,87 96, ,5 6,2 0 AMH63106N ,87 96, ,6 6,4 230 AMH606N ,88 96, ,6 6,3 253 AMH63306N , ,5 6 AMH008N ,5 0,83 94,9 13 0,9 2,5 5,5 21,8 AMH108N ,2 0,83 95,1 99 0,9 2,5 5,5 24,4 AMH208N ,4 0,83 95,2 49 0,8 2,3 5,2 27,5 AMH08N ,7 0,84 95, ,9 2,7 5,5 46 AMH45108N ,84 95, ,9 2,7 5,5 50 AMH45208N ,84 95, ,9 2,7 5,5 55 AMH08N ,1 0,84 95, ,9 2,5 5,5 66,6 AMH50108N ,4 0,84 95, ,9 2,5 5,5 74 AMH50208N ,6 0, ,9 2,5 5,5 83 AMH08N ,85 95, ,75 2,6 5,5 134 AMH56108N ,5 0, ,75 2,6 5,5 145 AMH56208N ,85 96, ,75 2, AMH56308N ,85 96, ,75 2,5 6 2 AMH08N ,85 96, ,75 2, AMH63108N ,85 96, ,75 2, AMH608N ,85 96, ,75 2, AMH10N ,5 0,8 94, ,5 38 AMH45110N ,8 94, ,5 44 AMH45210N ,5 0,81 94, ,3 5,5 50,5 AMH10K ,5 0,81 95, ,9 2,3 5,5 71 AMH10K ,81 95,2 60 0,9 2,3 5,5 78,6 AMH10K ,81 95, ,9 2,3 5,5 88,5 AMH10N ,5 0,81 95, ,85 2,3 5,6 128 AMH56110N ,5 0,82 95, ,8 2,3 5,5 145 AMH56210N , ,85 2,3 5,6 194 AMH10N ,81 96, ,9 2,1 5,5 285 AMH60N ,81 96, ,9 2,1 5,5 315 AMH610N ,81 96, ,9 2 5,5 0 AMH12N ,5 0,77 94, ,1 2,7 5,8 66 AMH50112N ,78 94, ,5 71 AMH50212N ,78 94, ,5 84 AMH50312N ,5 0, ,5 5,5 95 AMH12N ,8 95, ,9 5,6 143 AMH56112N ,8 95, ,85 2,3 5,5 162 AMH56212N ,5 0,8 95, ,95 2,5 5,9 213 AMH12N , ,95 2,2 5,5 294 AMH62N ,8 96, ,9 2 5,2 316 AMH612N ,8 96, ,85 1,
8 7. THREEPHASE LV ASYNCHRONOUS INDUCTION MOTORS WITH SQUIRRELCAGE ROTOR TYPE Pn nn In In cosϕ η Mn Mk / Mn Mmax / Mn Ik / In Moment [kw] [min 1 ] by 0 V by 690 V [] [%] [Nm] [] [] [] of inertia [A] [A] [kg m 2 ] AMH002N ,9 95, ,0 2,5 6,0 5,9 AMH102N ,9 95, ,0 2,5 6,0 6,2 AMH202N ,9 95,3 14 1,0 2,5 6,0 6,6 AMH302N ,9 95, ,0 2,5 6,0 7,3 AMH02N ,9 95, ,0 2,6 6,0 11,4 AMH45102N ,9 96,1 17 1,0 2,6 6,0 12,6 AMH45202N ,9 96, ,0 2,6 6,0 14,0 AMH02N ,91 95,9 2 0,8 2, AMH50102N ,91 96, ,8 2,6 6,9 AMH50202N ,91 96,3 1 0,8 2,6 6 AMH50302N ,91 96,5 22 0,8 2, AMH02N ,9 96, ,6 2,7 6,3 23 AMH56102N ,9 96, ,6 2,7 6,3 25 AMH56202N ,9 96, ,6 2,6 6,3 27 AMH56302N , ,6 2,7 6,3 30 AMH02N04 AMH63102N04 on request AMH602N04 0 AMH004N ,87 95, , ,4 AMH104N ,87 95, ,55 6,8 AMH204N ,88 95, , ,1 AMH04N ,88 95,8 1 2, AMH45104N , ,6 6 AMH45204N ,88 96, ,6 6 34,5 AMH04N , ,9 2,5 6 44,4 AMH50104N ,88 96, ,9 2,5 6 47,5 AMH50204N ,88 96, ,9 2,5 6 52,5 AMH50304N ,88 96,4 71 0,9 2, AMH04N ,89 96, ,8 91 AMH56104N ,89 96, ,8 104 AMH56204N ,89 96, ,55 6,5 115 AMH04N ,89 96, ,7 2,6 6,2 1 AMH63104N ,89 96, ,7 2,7 6,3 145 AMH604N ,89 96, ,7 2,7 6,4 165 AMH63304N ,89 96, ,7 2,7 6,5 192 AMH006N ,84 95, ,1 5,5 21,8 AMH106N ,84 95, ,1 5,5 24,4 AMH206N ,84 95, ,1 5,5 27,5 AMH06N ,85 95, AMH45106N , AMH45206N ,85 96, AMH06N , ,3 5,7 58,5 AMH50106N ,85 96, ,3 5,7 64 AMH50206N ,85 96, ,3 5,7 69,5 AMH50306N ,85 96, ,3 5,7 75 6
9 TYPE Pn nn In In cosϕ η Mn Mk / Mn Mmax / Mn Ik / In Moment [kw] [min 1 ] by 0 V by 690 V [] [%] [Nm] [] [] [] of inertia [A] [A] [kg m 2 ] AMH06N ,86 96, ,95 2,2 5,5 117 AMH56106N ,86 96,5 50 0,95 2,2 5,5 125 AMH56206N ,86 96, , AMH56306N ,86 96, , AMH06N ,87 96, ,5 6,2 0 AMH63106N ,87 96, ,6 6,4 230 AMH606N ,88 96, ,6 6,3 253 AMH63306N , ,5 6 AMH008N ,83 94,9 13 0,9 2,5 5,5 21,8 AMH108N ,83 95,1 99 0,9 2,5 5,5 24,4 AMH208N ,83 95,2 49 0,8 2,3 5,2 27,5 AMH08N ,84 95, ,9 2,7 5,5 46 AMH45108N ,84 95, ,9 2,7 5,5 50 AMH45208N ,84 95, ,9 2,7 5,5 55 AMH08N ,84 95, ,9 2,5 5,5 66,6 AMH50108N ,84 95, ,9 2,5 5,5 74 AMH50208N , ,9 2,5 5,5 83 AMH08N ,85 95, ,75 2,6 5,5 134 AMH56108N , ,75 2,6 5,5 145 AMH56208N ,85 96, ,75 2, AMH56308N ,85 96, ,75 2,5 6 2 AMH08N ,85 96, ,75 2, AMH63108N ,85 96, ,75 2, AMH608N ,85 96, ,75 2, AMH10N ,8 94, ,5 38 AMH45110N ,8 94, ,5 44 AMH45210N ,81 94, ,3 5,5 50,5 AMH10K ,81 95, ,9 2,3 5,5 71 AMH10K ,81 95,2 60 0,9 2,3 5,5 78,6 AMH10K ,81 95, ,9 2,3 5,5 88,5 AMH10N ,81 95, ,85 2,3 5,6 128 AMH56110N ,82 95, ,8 2,3 5,5 145 AMH56210N , ,85 2,3 5,6 194 AMH10N ,81 96, ,9 2,1 5,5 285 AMH60N ,81 96, ,9 2,1 5,5 315 AMH610N ,81 96, ,9 2 5,5 0 AMH12N ,77 94, ,1 2,7 5,8 66 AMH50112N ,78 94, ,5 71 AMH50212N ,78 94, ,5 84 AMH50312N , ,5 5,5 95 AMH12N ,8 95, ,9 5,6 143 AMH56112N ,8 95, ,85 2,3 5,5 162 AMH56212N ,8 95, ,95 2,5 5,9 213 AMH12N , ,95 2,2 5,5 294 AMH62N ,8 96, ,9 2 5,2 316 AMH612N ,8 96, ,85 1,
10 TYPE AMH002N.. AMH102N.. AMH202N.. AMH302N.. AHM02N.. AHM02N.. AHM02N.. AMH02N.. AMH50102N.. AMH50202N.. AMH50302N.. AMH02N.. AMH56102N.. AMH56202N.. AMH56302N.. AMH02N.. AMH63102N.. AMH602N.. AMH004N.. AMH104N.. AMH204N.. AHM04N.. AHM45104N.. AHM45204N.. AMH04N.. AMH50104N.. AMH50204N.. AMH50304N.. AMH04N.. AMH56104N.. AMH56204N.. AMH04N.. AMH63104N.. AMH604N.. AMH63304N.. AMH006N.. AMH106N.. AMH206N.. AHM06N.. AHM45106N.. AHM45206N.. AMH06N.. AMH50106N.. AMH50206N.. AMH50306N.. AMH06N.. AMH56106N.. AMH56206N.. AMH56306N.. AMH06N.. AMH63106N.. AMH606N.. AMH63306N.. AMH008N.. AMH108N.. AMH208N.. AHM08N.. AHM45108N.. AHM45208N.. AMH08N.. AMH50108N.. AMH50208N.. AMH08N.. AMH56108N.. AMH56208N.. AMH56308N.. AMH08N.. AMH63108N.. AMH608N.. AHM10N.. AHM45110N.. AHM45210N.. AMH10N.. AMH50110N.. AMH50210N.. AMH10N.. AMH56110N.. AMH56210N.. AMH10N.. AMH60N.. AMH610N.. AMH12N.. AMH50112N.. AMH50212N.. AMH50312N.. AMH12N. AMH56112N. AMH56212N. AMH12N.. AMH62N.. AMH612N.. A AA AB AC B BA BB C H HA HB HC K D E F GD L STANDARD DIMENSIONS OF INDUCTION MOTORS WITH SQUIRRELCAGE ROTOR 8
11 9
12 9. THREEPHASE HV ASYNCHRONOUS INDUCTION MOTORS WITH SLIPRING ROTOR TYPE Pn nn In cosϕ η Mn Mk / Mn Rotor data Moment [kw] [min 1 ] by 6 kv [] [%] [Nm] [] U I2n R2f of inertia [A] [V] [A] [Ω] [kg m 2 ] AMH004K ,2 0,87 93,6 2, ,00 12,5 AMH104K ,8 0, ,8 4 0, ,7 AMH204K ,4 0,88 94, , ,00 15,5 AMH304K ,4 0,88 94,6 2 2, , ,5 AMH404K ,88 94,8 3, ,0041 AMH04K ,89 94,7 08 2, , AMH45104K , , ,00 26 AMH45204K ,89 95, , , AMH04K , , ,0033 AMH50104K ,9 95, , , AMH50204K ,9 95, , ,00 50 AMH50304K ,9 95, , , AMH04K ,9 95, , , AMH56104K ,9 95, , , AMH56204K ,2 0, , , AMH56304K ,5 0,9 96, , , AMH04K ,5 0,9 95, , , AMH63104K , , AMH604K ,91 96, , , AMH63304K ,91 96,4 2, ,0039 AMH006K ,83 93, , ,00 AMH106K ,84 94, , , ,5 AMH206K ,4 0,84 94, , ,00 25,5 AMH06K ,5 0,86 94,4 42 2, , AMH45106K ,86 94, , ,00 38 AMH45206K ,86 94,9 54 2, , AMH45306K , , ,00 48,5 AMH06K ,86 95, , , AMH50106K ,86 95, , AMH50206K ,86 95, , , AMH06K ,87 95, , ,008 AMH56106K ,87 95, , , AMH56206K , , ,009 1 AMH56306K ,87 96, , , AMH06K ,87 95, , ,00 0 AMH63106K ,87 96, , , AMH606K ,87 96, , , AMH63306K ,87 96, , ,0051 AMH008K ,5 0,76 92, , ,003,5 AMH108K ,79 93, ,00 23,5 AMH208K ,8 93, , ,
13 TYPE Pn nn In cosϕ η Mn Mk / Mn Rotor data Moment [kw] [min 1 ] by 6 kv [] [%] [Nm] [] U I2n R2f of inertia [A] [V] [A] [Ω] [kg m 2 ] AMH08K ,5 0,82 93, , , AMH45108K ,82 93,8 53 1, , AMH45208K ,5 0, , ,003 52,5 AMH08K ,5 0,84 94, , AMH50108K ,83 94, , AMH50208K ,5 0,84 94, , AMH08K , , , AMH56108K ,5 0,84 95, , , AMH56208K ,5 0,84 95, , , AMH56308K ,5 0,85 95, , , AMH08K ,85 95, , AMH63108K ,85 95, , AMH608K ,85 96, , AMH10K ,78 92, ,0034 AMH45110K ,5 0, , AMH45210K ,78 93, , ,00 48 AMH10K ,79 93, ,00 66 AMH50110K , , AMH50210K ,79 94, ,00 83 AMH10K ,81 94, , , AMH56110K ,81 94, , , AMH56210K ,81 94, , , AMH56310K , , , AMH56410K ,8 95, , , AMH10K ,81 95, , AMH60K ,81 95, , AMH610K ,81 95, ,01 3 AMH63310K , , AMH12K , , , AMH50112K ,5 0,76 92, , AMH50212K , , , AMH50312K ,76 93, , , AMH12K ,5 0,77 93, , , AMH56112K , , , AMH56212K ,5 0,77 94, , , AMH56312K ,77 94, , , AMH56412K ,77 94, , , AMH12K ,77 94, , , AMH62K ,5 0, , , AMH612K ,77 95,2 8 2, ,016 3 AMH63312K ,77 95, , ,
14 10. THREEPHASE LV ASYNCHRONOUS INDUCTION MOTORS WITH SLIPRING ROTOR AMH004K04 AMH104K04 AMH204K04 AMH304K04 AMH404K04 AMH04K04 AMH45104K04 AMH45204K04 AMH04K04 AMH50104K04 AMH50204K04 AMH50304K04 AMH04K04 AMH56104K04 AMH56204K04 AMH56304K04 AMH04K04 AMH63104K04 AMH604K04 AMH63304K04 AMH006K60 AMH106K60 AMH206K60 AMH06K60 AMH45106K60 AMH45206K60 AMH45306K60 AMH06K60 AMH50106K60 AMH50206K60 AMH06K04 AMH56106K04 AMH56206K04 AMH56306K04 AMH06K04 AMH63106K04 AMH606K04 AMH63306K04 AMH008K04 AMH108K04 AMH208K04 TYPE Pn [kw] nn [min 1 ] In by 0 V [A] In by 690 V [A] 0,87 0,87 0,88 0,88 0,88 0,89 0,89 0,89 0,89 0,9 0,9 0,9 0,9 0,9 0,9 0,9 0,9 0,91 0,91 0,91 0,83 0,84 0,84 0,86 0,86 0,86 0,86 0,86 0,86 0,86 0,87 0,87 0,87 0,87 0,87 0,87 0,87 0,87 0,76 0,79 0,8 cosϕ [] 93, ,3 94,6 94,8 94, , ,2 95,5 95,7 95,6 95, ,2 95, ,2 96,4 93,9 94,3 94,4 94,4 94,6 94, ,1 95,3 95,5 95,7 95, ,2 95,9 96,1 96,2 96,4 92,8 93,4 93,5 η [%] Mn [Nm] 2,8 2,8 2,7 2,95 3,05 2,65 2,7 2,7 2,7 2,65 2,75 2,75 2,9 2,9 2,9 2,9 2,3 2,5 2,6 2,65 2,55 2,6 2,25 2,3 2, 2,5 2,5 2, 2,7 2,7 2,6 2,65 2,1 2,1 2,1 2,1 2,2 2 1,8 Mk / Mn [] U [V] Rotor data I2n [A] 0,00 0,0033 0,00 0,0038 0,0041 0,0033 0,00 0,0037 0,0033 0,0034 0,00 0,0037 0,0061 0,0065 0,0069 0,0073 0,00 0,00 0,0037 0,0039 0,00 0,0038 0,00 0,0034 0,00 0,0038 0,00 0,0039 0,0041 0,0043 0,008 0,0083 0,009 0,01 0,00 0,0045 0,0048 0,0051 0,003 0,00 0,00 R2f [Ω] 12,5 13,7 15,5 17, ,5 25, , ,5 23,5 26 Moment of inertia [kg m 2 ] 12
15 ,82 0,82 0,82 0,84 0,83 0,84 0,84 0,84 0,84 0,85 0,85 0,85 0,85 0,78 0,78 0,78 0,79 0,79 0,79 0,81 0,81 0,81 0,81 0,8 0,81 0,81 0,81 0,81 0,76 0,76 0,76 0,76 0,77 0,76 0,77 0,77 0,77 0,77 0,77 0,77 0,77 93,6 93, ,3 94,3 94, ,1 95,3 95,6 95,7 95,9 96,1 92, ,3 93, ,2 94,5 94,7 94, ,1 95,4 95,6 95, , ,3 93, ,2 94,4 94,5 94, ,2 95, ,8 1,8 1,85 2,7 2,55 2,5 2, , ,1 2,2 2,1 2,1 2,1 2,05 2 1,95 1,95 2,25 2,3 2,25 2,2 2,2 2,3 2,3 2,3 2, ,0027 0,0028 0,003 0,0052 0,0055 0,006 0,0053 0,0055 0,006 0,0067 0,0076 0,0081 0,0086 0,0034 0,0037 0,00 0,00 0,0039 0,00 0,00 0,0039 0,0041 0,0043 0,0048 0,0105 0,0112 0,01 0,0128 0,0047 0,0052 0,0059 0,0064 0,0047 0,0052 0,0055 0,0057 0,0064 0,0141 0,0152 0,016 0, , AMH08K04 AMH45108K04 AMH45208K04 AMH08K04 AMH50108K04 AMH50208K04 AMH08K04 AMH56108K04 AMH56208K04 AMH56308K04 AMH08K04 AMH63108K04 AMH608K04 AMH10K04 AMH45110K04 AMH45210K04 AMH10K04 AMH50110K04 AMH50210K04 AMH10K04 AMH56110K04 AMH56210K04 AMH56310K04 AMH56410K04 AMH10K04 AMH60K04 AMH610K04 AMH63310K04 AMH12K04 AMH50112K04 AMH50212K04 AMH50312K04 AMH12K04 AMH56112K04 AMH56212K04 AMH56312K04 AMH56412K04 AMH12K04 AMH62K04 AMH612K04 AMH63312K04 13 TYPE Pn [kw] nn [min 1 ] In by 0 V [A] In by 690 V [A] cosϕ [] η [%] Mn [Nm] Mk / Mn [] U [V] Rotor data I2n [A] R2f [Ω] Moment of inertia [kg m 2 ]
16 TYPE AMH004K.. AMH104K.. AMH204K.. AMH304K.. AMH404K.. AMH04K.. AMH45104K.. AMH45204K.. AMH04K.. AMH50104K.. AMH50204K.. AMH50304K.. AMH04K.. AMH56104K.. AMH56204K.. AMH56304K.. AMH04K.. AMH63104K.. AMH604K.. AMH63304K.. AMH006K.. AMH106K.. AMH206K.. AMH06K.. AMH45106K.. AMH45206K.. AMH45306K.. AMH06K.. AMH50106K.. AMH50206K.. AMH06K.. AMH56106K.. AMH56206K.. AMH56306K.. AMH06K.. AMH63106K.. AMH606K.. AMH63306K.. AMH008K.. AMH108K.. AMH208K.. AMH08K.. AMH45108K.. AMH45208K.. AMH08K.. AMH50108K.. AMH50208K.. AMH08K.. AMH56108K.. AMH56208K.. AMH56308K.. AMH08K.. AMH63108K.. AMH608K.. AMH10K.. AMH45110K.. AMH45210K.. AMH10K.. AMH50110K.. AMH50210K.. AMH10K.. AMH56110K.. AMH56210K.. AMH56310K.. AMH56410K.. AMH10K.. AMH60K.. AMH610K.. AMH63310K.. AMH12K.. AMH50112K.. AMH50212K.. AMH50312K.. AMH12K.. AMH56112K.. AMH56212K.. AMH56312K.. AMH56412K.. AMH12K.. AMH62K.. AMH612K.. AMH63312K.. A AA AB AC B BA BB C H HA HB HC K D E F GD L STANDARD DIMENSIONS OF INDUCTION MOTORS WITH SLIPRING ROTOR 14
17 15
18 16
19 << TO PRAGUE TO DOWNTOWN >> << TO VIENA TO BRATISLAVA, OLOMOUC >> EXMONTEnergo a.s.
20 CONTACTS: EXMONTEnergo a.s. Bohunicka 1 / BRNO CZECH REPUBLIC IČ: DIČ: CZ Registered at "Krajský soud v Brně, oddíl B, vložka 1606". Head of Commercial division: Phone: Head of Technical division: Phone: Head of Manufacturing division: Phone: MAIN OFFICE: Phone: Mobile phone: Fax: exmont@exmont.cz
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