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2 CLL NOW Hitachi s L3P Series ariable Fre Increased Energy Savings for Your WIDE RNGE OF PPLICTION SPECIFIC FUNCTIONS WIDE RNGE OF PPLICTION SPECIFIC FUNCTIONS UTOMTIC ENERGY-SING FUNCTION With its utomatic Energy-saving Function, the L3P delivers real-time energy-saving operation for your fan and pump applications. The function insures that motor operates at minimum current in response to the torque required by the load. Power Consumption Example of Energy Savings (Fan) Operation by Inlet vane and damper mount of energy to be saved Operation by v/f control Frequency Operation by utomatic Energy-saving Function ENHNCED INPUT/OUTPUT TERMINLS Three relay output terminals are provided as standard for flexible interface to external control systems. INTELLIGENT RELY OUTPUTS 12C 12 11C 11 L0 L1 L2 NO contact X 2 NO-NC contact X 1 NLOG OUTPUT MONITOR In addition to PWM monitor(fm), programmable analog output monitors are also available for both voltage(0-10dc) and current(4-20m) at M and MI terminals of the L3P. INTELLIGENT INPUT/ OUTPUT TERMINL SYSTEM The L3P features an intelligent control terminal system, which allows necessary drive I/O functions to be freely programmed. Input terminals can be selected for either sink or source type logic. [Sink type logic] Upper System FW CM1 L3P [Source type logic] Upper System +Power Supply P24 FW L3P ESY- TO-USE OPERTOR PNEL L3P's digital operator panel supports various monitoring functions. Output frequency Output current Rotation direction Process variable, PID feedback Intelligent input terminal status Intelligent output terminal status Scaled output frequency Output voltage Power Cumulative time Cumulative power-on time Trip event Trip history Warning code 1 CLL NOW charles@automatedpt.com

3 CLL NOW quency Drive Delivers Fan and Pump pplications! FOR OPTIML OPERTION FOR OPTIML OPERTION Highperformance CONTENTS FETURES STNDRD SPECIFICTIONS DIMENSIONS PGE Easy Maintenance Global Standards Hitachi Inverter L3P Ease of Operation Compact Size OPERTION and PROGRMMING FUNCTION LIST TERMINLS PROTECTIE FUNCTIONS CONNECTING DIGRM CONNECTING TO PLC 22 WIRING and CCESSORIES 23 CCESSORIES FOR COMPCT PNEL 27 TORQUE CHRCTERISTICS, DERTING DT 28 FOR CORRECT OPERTION ISO 141 EC97J1095 ISO 91 JQ-1153 Hitachi variable frequency drives (inverters) in this brochure are produced at the factory registered under the ISO 141 standard for environmental management system and the ISO 91 standard for inverter quality management system. CLL NOW

4 CLL NOW ESY-REMOBLE COOLING FN ND DC BUS CPCITOR Cooling fan(s) and DC bus capaci-tors can be easily changed in the field. fan ON/OFF function can be activated to provide longer cooling fan life. REMOBLE CONTROL CIRCUIT TERMINLS Eliminates control rewiring when field replacing the L3P. Control Circuit Terminals The L3P s compact size helps economize panel space. Installation area is reduced by approximately 30 from that of our previous series. (Comparison of 11 (15HP)) ESE OF OPERTION WITH DIGITL OPERTOR (OPE-SR) Output frequency can be controlled by the integral potentiometer provided as standard on the OPE-SR. The OPE-SR can be removed for remote control, and has an easy-to-see 4-digit display and LEDs to indicate the unit being monitored (i.e. frequency, amps, power, etc.). multilingual operator (English, French, German, Italian, Spanish, and Portuguese) with copy function (SRW- 0EX) and a digital operator without potentiometer (OPE- S) are also available as options. BUILT-IN RS485 RS485 is provided as standard for SCII serial communication. PROGRMMING SOFTWRE Optional PC drive configuration software which runs on Windows Operating System. 3 USER SELECTION OF COMMND FUNCTIONS ( Quick Menu ) You can select frequently used commands and store them for fast reference. CLL NOW charles@automatedpt.com

5 CLL NOW EMI FILTER EMI filters to meet European EMC (EN618-3, EN551) and low-voltage directive (EN578) are available for system conformance. REDUCED NOISE FROM MIN CIRCUIT SUPPLY ND CONTROL CIRCUIT SUPPLY Disturbance voltage of the main circuit power supply and of the control circuit power supply has been improved by approximately 15dB( ) and 20dB( ) respectively compared to our previous model(j3), resulting in significant reductions to noise interference with sensors and other peripheral devices. Disturbance voltage of the main circuit power supply (It does not comply with European EMC directive. To meet the EMC directive, please use an EMI filter.) Disturbance voltage [db(µ)] Frequency(M) Disturbance voltage of the control circuit power supply (Disturbance voltage of terminal L or CM1) Disturbance voltage [db(µ)] J3-220LFU L3P-220LFU2 J3-055LFU L3P-055LFU Frequency(M) HRMONICS MITIGTION J3 series L3P series J3 series L3P series Terminals for the connection of a DC Reactor are provided as standard for harmonics suppression. CONTROL OF OLTGE OF MICRO SERGE Suppressing the motor terminal voltage less than 2xE [] by improving the control method of PWM output. Input voltage: 4C(In the case) Motor terminal voltage:1,131(4x 2X2 IMPROEMENT OF ENIRONMENT The printed circuit board inside an inverter is varnish coating specification as standard. Standard enclosure protection for the L3P is IP20 (NEM1*). For IP54 (NEM12), please contact Hitachi sales office. *NEM 1 applies up to 30. n optional wire-entry conduit box is required for 37 to 75 models to meet NEM 1 rating. CONFORMITY TO GLOBL STNDRDS CE, UL, c-ul, C-Tick approvals. NETWORK COMPTIBILITY The L3P can communicate with DeviceNet, PROFIBUS, LONWORKS, Modbus RTU *1, and Ethernet *2 with communication options. *1, *2: Being planned MODEL NME INDICTION L3P - 5 L F U 2 Series Name pplicable Motor Capacity Power Source L:3-phase 2 Class H:3-phase 4 Class ersion number F:With Digital Operator U:UL version for North merica E:CE version for Europe MODEL CONFIGURTION pplicable Motor Capacity in (HP) 3-phase 2 class 3-phase 4 class 1.5(2) L3P-5LFU2 L3P-5HFU2/E2 2.2(3) L3P-022LFU2 L3P-022HFU2/E2 3.7(5) L3P-037LFU2 L3P-040HFU2/E2 5.5(7.5) L3P-055LFU2 L3P-055HFU2/E2 7.5(10) L3P-075LFU2 L3P-075HFU2/E2 11(15) L3P-110LFU2 L3P-110HFU2/E2 15(20) L3P-150LFU2 L3P-150HFU2/E2 18.5(25) L3P-185LFU2 L3P-185HFU2/E2 22(30) L3P-220LFU2 L3P-220HFU2/E2 30(40) L3P-3LFU2 L3P-3HFU2/E2 37(50) L3P-370LFU2 L3P-370HFU2/E2 45(60) L3P-450LFU2 L3P-450HFU2/E2 55(75) L3P-550LFU2 L3P-550HFU2/E2 75(1) L3P-750LFU2 L3P-750HFU2/E2 90(125) L3P-9HFU2/E2 110(150) L3P-11HFU2/E2 132(175) L3P-1320HFU2/E2 Windows is a registered trademark of Microsoft Corp. in the U.S. and other countries. DeviceNet is a trademark of Open DeviceNet endor ssociation. PROFIBUS is a registered trademark of Profibus Nutzer Organization. CLL NOW charles@automatedpt.com 4

6 CLL NOW CLL NOW STNDRD SPECIFICTIONS Model UL version L3P-XXX CE version Enclosure (* 2) pplicable motor (4-pole, (HP)) (* 3) Rated capacity 2 (k) 240 Rated input voltage Rated input current () Required power supply capacity (k) Rated output voltage (* 4) Rated output current (continuous)() Control method Output frequency range (* 5) Frequency accuracy Frequency resolution /f characteristics Overload capacity cceleration/deceleration time Dynamic braking (Short-time) Braking (* 6) DC braking Input signal Intelligent input terminals (ssign five functions to terminals) Thermistor input Intelligent output Output terminals signal Intelligent monitor output terminals Display monitor Other user-settable parameters Carrier frequency range Protective functions Environmental conditions Color Options Item Frequency setting Forward/ reverse Start/stop Operator Potentiometer External signal External port Operator External signal External port mbient operating /storage temperature( * 7)/humidity ibration ( * 8) Location 5LFU2 1.5(2) LFU2 2.2(3) LFU2 3.7(5) LFU2 075LFU2 2 Class 110LFU2 150LFU2 185LFU2 IP20 (NEM 1) (* 1) 11(15) (20) (25) LFU2 3LFU2 370LFU2 5.5(7.5) 7.5(10) 22(30) 30(40) 37(50) phase (3-wire) (±10), 50/ phase (3-wire) (Corresponding to input voltage) LFU2 45(60) LFU Line to line sine wave PWM Digital: ±1 of the maximum frequency, nalog: ±0.2(25±10 C) Digital setting: 1, nalog setting: (Maximum frequency)/4,0 (O terminal: 12-bit 0, O2 terminal: 12-bit-10+10) /f optionally variable, /f control (Constant torque, reduced torque) 120 for 60sec., 150 for 0.5sec. 1-3,6sec. (Linear/curve, accel./decel. selection), Two-stage accel./decel. Built-in BRD circuit(optional resistor) Performs at start; under set frequency at deceleration, or via an external input (braking force, time, and operating frequency). Up and Down keys Potentiometer DC 0-10, (input impedance 10k ), 4-20m (input impedance 1 ) RS-485 interface Run key/stop key (FW/R can be set by function command.) FW /STOP (NO contact), R set by terminal assignment (NO/NC selection), 3-wire input available Set by RS-485 R(Reverse), CF1-CF4(Multispeed command), JG(Jogging), DB(External DC braking), SET(Second motor constants setting), 2CH(Second accel./decel.), FRS(Free-run stop), EXT(External trip), USP(Unattended start protection), CS(Change to/from commercial power supply),sft(software lock), T(nalog input selection), RS(Reset), ST(3-wire start), STP(3-wire stop), F/R(3-wire fwd./rev.), PID(PID On/Off), PIDC(PID reset), UP/DWN(Remote-controlled accel./decel.) UDC(Remote-controlled data clearing), SF1-SF7(Multispeed bit command 1-7), OLR(Overload limit change), ROK( Permissive) and NO(Not selected) One terminal(ptc) ssign three functions to two NO contacts and one NO-NC combined contact (, F1, F2, OL, OD, L, F3, IP, U, RNT, ONT RMD and THM) nalog voltage, analog current, PWM output 55(75) External dynamic braking unit (option) EMI filters, input/output reactors, DC reactors, radio noise filters, braking resistors, braking units, LCR filter, communication cables, Network interface cards 750LFU2 Output frequency, output current, scaled value of output frequency, trip history, I/O terminal condition, input power, output voltage /f free-setting (up to 7 points), frequency upper/lower limit, frequency jump, accel./decel. curve selection, manual torque boost value and frequency adjustment, analog meter tuning, starting frequency, carrier frequency, electronic thermal protection level, external frequency output zero/span reference, external frequency input bias start/end, analog input selection, retry after trip, reduced voltage soft start, overload restriction, automatic energy-saving k Over-current protection, overload protection, braking resistor overload protection, over-voltage protection, EEPROM error, under-voltage error, CT(Current transformer) error, CPU error, external trip, USP error, ground fault, input overvoltage protection, instantaneous power failure, option 1 connection error, option 2 connection error, inverter thermal trip, phase failure detection, IGBT error, thermistor error C(* 9) / C / 25-90RH (No condensation) 75(1) m/s 2 (0.6G), m/s 2 (0.3G), ltitude 1,0m or less, indoors (no corrosive gases or dust) Blue Gray (Bezel for digital operator is blue) OPE-SR(4-digit LED with potentiometer) / OPE-SRE(4-digit LED with potentiometer, English overlay) Operator Optional: OPE-S(4-digit LED), SRW-0EX(Multilingual (English,French, German, Italian, Spanish, and Portuguese) operator with copy function), ICS-1,3(Cable for operators(1m, 3m)) Weight kg (lbs.) 3.5 (7.7) 3.5 (7.7) 3.5 (7.7) 3.5 (7.7) 5 (11) 5 (11) 5 (11) 12 (26.4) 12 (26.4) 12 (26.4) 20 (44) 30 (66) 30 (66) 50 (110) * 1: Up to 30. * 4: The output voltage decreases as the main power supply voltage decreases 7: Storage temperature refers to the temperature in transportation. n optional conduit box is required for 37 to 55 to meet NEM 1. except for the use of R function. Conforms to the test method specified in JIS C40(1999). 2: The protection method conforms to JEM 1030 / NEM(U.S.). * 8: To operate the motor beyond 50/60, please consult with the motor When using the inverter from 40º to 50ºC ambient, the output current of * 5: * 9: 3: The applicable motor refers to Hitachi standard 3-phase motor (4-pole). manufacturer about the maximum allowable rotation speed. the inverter must be derated (see the next section on derating curves). To use other motors, care must be taken to prevent the rated motor current * 6: Braking resistor is not integrated in the inverter. Please install optional (50) from exceeding the rated output current of the inverter. braking resistor or dynamic braking unit when large braking torque is required.

7 CLL NOW CLL NOW Model UL version L3P-XXX CE version Enclosure (* 2) pplicable motor (4-pole, (HP)) (* 3) Rated capacity 4 (k) 480 Rated input voltage Rated input current () Required power supply capacity (k) Rated output voltage (* 4) Rated output current (continuous)() Control method Output frequency range (* 5) Frequency accuracy Frequency resolution /f characteristics Overload capacity cceleration/deceleration time Dynamic braking (Short-time) Braking (* 6) DC braking Input signal Intelligent input terminals (ssign five functions to terminals) Thermistor input Intelligent output Output terminals signal Intelligent monitor output terminals Display monitor Other user-settable parameters Carrier frequency range Protective functions Environmental conditions Color Options Item Frequency setting Forward/ reverse Start/stop Operator Potentiometer External signal External port Operator External signal External port mbient operating /storage temperature( * 7)/humidity ibration ( * 8) Location 5HFU2 5HFE2 1.5(2) HFU2 022HFE2 2.2(3) HFU2 040HFE2 4.0(5) HFU2 055HFE2 5.5(7.5) Class 075HFU2 110HFU2 075HFE2 110HFE2 IP20 (NEM 1) (* 1) 7.5(10) 11(15) HFU2 150HFE2 15(20) 2 185HFU2 185HFE2 18.5(25) HFU2 220HFE2 22(30) phase (3-wire) (±10), 50/ phase (3-wire) (Corresponding to input voltage) Line to line sine wave PWM Digital: ±1 of the maximum frequency, nalog: ±0.2(25±10 C) Digital setting: 1, nalog setting: (Maximum frequency)/4,0 (O terminal: 12-bit 0, O2 terminal: 12-bit-10+10) /f optionally variable, /f control (Constant torque, reduced torque) 120 for 60sec., 150 for 0.5sec. 1-3,6sec. (Linear/curve, accel./decel. selection), Two-stage accel./decel. 3HFU2 3HFE2 External dynamic braking unit Built-in BRD circuit(optional resistor) (option) Performs at start; under set frequency at deceleration, or via an external input (braking force, time, and operating frequency). Up and Down keys Potentiometer DC 0-10, (input impedance 10k ), 4-20m (input impedance 1 ) RS-485 interface Run key/stop key (FW/R can be set by function command.) FW /STOP (NO contact), R set by terminal assignment (NO/NC selection), 3-wire input available Set by RS-485 R(Reverse), CF1-CF4(Multispeed command), JG(Jogging), DB(External DC braking), SET(Second motor constants setting), 2CH(Second accel./decel.), FRS(Free-run stop), EXT(External trip), USP(Unattended start protection), CS(Change to/from commercial power supply),sft(software lock), T(nalog input selection), RS(Reset), ST(3-wire start), STP(3-wire stop), F/R(3-wire fwd./rev.), PID(PID On/Off), PIDC(PID reset), UP/DWN(Remote-controlled accel./decel.) UDC(Remote-controlled data clearing), SF1-SF7(Multispeed bit command 1-7), OLR(Overload limit change), ROK( Permissive) and NO(Not selected) One terminal(ptc) ssign three functions to two NO contacts and one NO-NC combined contact (, F1, F2, OL, OD, L, F3, IP, U, RNT, ONT RMD and THM) nalog voltage, analog current, PWM output EMI filters, input/output reactors, DC reactors, radio noise filters, braking resistors, braking units, LCR filter, communication cables, Network interface cards 30(40) Output frequency, output current, scaled value of output frequency, trip history, I/O terminal condition, input power, output voltage /f free-setting (up to 7 points), frequency upper/lower limit, frequency jump, accel./decel. curve selection, manual torque boost value and frequency adjustment, analog meter tuning, starting frequency, carrier frequency, electronic thermal protection level, external frequency output zero/span reference, external frequency input bias start/end, analog input selection, retry after trip, reduced voltage soft start, overload restriction, automatic energy-saving k Over-current protection, overload protection, braking resistor overload protection, over-voltage protection, EEPROM error, under-voltage error, CT(Current transformer) error, CPU error, external trip, USP error, ground fault, input overvoltage protection, instantaneous power failure, option 1 connection error, option 2 connection error, inverter thermal trip, phase failure detection, IGBT error, thermistor error C(* 9) / C / 25-90RH (No condensation) 5.9m/s 2 (0.6G), ltitude 1,0m or less, indoors (no corrosive gases or dust) Blue OPE-SR(4-digit LED with potentiometer) / OPE-SRE(4-digit LED with potentiometer, English overlay) Operator Optional: OPE-S(4-digit LED), SRW-0EX(Multilingual (English,French, German, Italian, Spanish, and Portuguese) operator with copy function), ICS-1,3(Cable for operators(1m, 3m)) Weight kg (lbs.) 3.5 (7.7) 3.5 (7.7) 3.5 (7.7) 3.5 (7.7) 5 (11) 5 (11) 5 (11) 12 (26.4) 12 (26.4) 12 (26.4) * 1: Up to 30. * 4: The output voltage decreases as the main power supply voltage decreases 7: Storage temperature refers to the temperature in transportation. n optional conduit box is required for 37 to 55 to meet NEM 1. except for the use of R function. Conforms to the test method specified in JIS C40(1999). 2: The protection method conforms to JEM 1030 / NEM(U.S.). * 8: To operate the motor beyond 50/60, please consult with the motor When using the inverter from 40º to 50ºC ambient, the output current of * 5: * 9: 3: The applicable motor refers to Hitachi standard 3-phase motor (4-pole). manufacturer about the maximum allowable rotation speed. the inverter must be derated (see the next section on derating curves). To use other motors, care must be taken to prevent the rated motor current * 6: Braking resistor is not integrated in the inverter. Please install optional (50) from exceeding the rated output current of the inverter. braking resistor or dynamic braking unit when large braking torque is required.

8 CLL NOW STNDRD SPECIFICTIONS Model UL version L3P-XXX CE version Enclosure (* 2) pplicable motor (4-pole, (HP)) (* 3) Rated capacity 4 (k) 480 Rated input voltage Rated input current () Required power supply capacity (k) Rated output voltage (* 4) Rated output current (continuous)() Control method Output frequency range (* 5) Frequency accuracy Frequency resolution /f characteristics Overload capacity cceleration/deceleration time Dynamic braking (Short-time) Braking (* 6) DC braking Input signal Intelligent input terminals (ssign five functions to terminals) Thermistor input Intelligent output Output terminals signal Intelligent monitor output terminals Display monitor Other user-settable parameters Carrier frequency range Protective functions Environmental conditions Color Options Item Frequency setting Forward/ reverse Start/stop Operator Potentiometer External signal External port Operator External signal External port mbient operating /storage temperature( * 7)/humidity ibration ( * 8) Location 370HFU2 370HFE2 37(50) HFU2 550HFU2 450HFE2 550HFE2 IP20 (NEM 1) (* 1) 45(60) 55(75) Class 750HFU2 750HFE2 9HFU2 9HFE2 75(1) 90 (125) 110 (150) phase (3-wire) (±10), 50/ phase (3-wire) (Corresponding to input voltage) Line to line sine wave PWM Digital: ±1 of the maximum frequency, nalog: ±0.2(25±10 C) Digital setting: 1, nalog setting: (Maximum frequency)/4,0 (O terminal: 12-bit 0, O2 terminal: 12-bit-10+10) /f optionally variable, /f control (Constant torque, reduced torque) 120 for 60sec., 150 for 0.5sec. 1-3,6sec. (Linear/curve, accel./decel. selection), Two-stage accel./decel. External dynamic braking unit (option) Performs at start; under set frequency at deceleration, or via an external input (braking force, time, and operating frequency). Up and Down keys Potentiometer DC 0-10, (input impedance 10k ), 4-20m (input impedance 1 ) RS-485 interface Run key/stop key (FW/R can be set by function command.) FW /STOP (NO contact), R set by terminal assignment (NO/NC selection), 3-wire input available Set by RS-485 R(Reverse), CF1-CF4(Multispeed command), JG(Jogging), DB(External DC braking), SET(Second motor constants setting), 2CH(Second accel./decel.), FRS(Free-run stop), EXT(External trip), USP(Unattended start protection), CS(Change to/from commercial power supply),sft(software lock), T(nalog input selection), RS(Reset), ST(3-wire start), STP(3-wire stop), F/R(3-wire fwd./rev.), PID(PID On/Off), PIDC(PID reset), UP/DWN(Remote-controlled accel./decel.) UDC(Remote-controlled data clearing), SF1-SF7(Multispeed bit command 1-7), OLR(Overload limit change), ROK( Permission) and NO(Not selected) One terminal(ptc) ssign three functions to two NO contacts and one NO-NC combined contact (, F1, F2, OL, OD, L, F3, IP, U, RNT, ONT, RMD and THM) nalog voltage, analog current, PWM output Output frequency, output current, scaled value of output frequency, trip history, I/O terminal condition, input power, output voltage /f free-setting (up to 7 points), frequency upper/lower limit, frequency jump, accel./decel. curve selection, manual torque boost value and frequency adjustment, analog meter tuning, starting frequency, carrier frequency, electronic thermal protection level, external frequency output zero/span reference, external frequency input bias start/end, analog input selection, retry after trip, reduced voltage soft start, overload restriction, automatic energy-saving k 0.5-8k Over-current protection, overload protection, braking resistor overload protection, over-voltage protection, EEPROM error, under-voltage error, CT(Current transformer) error, CPU error, external trip, USP error, ground fault, input overvoltage protection, instantaneous power failure, option 1 connection error, option 2 connection error, inverter thermal trip, phase failure detection, IGBT error, thermistor error C(* 9) / C / 25-90RH (No condensation) 2.9m/s 2 (0.3G), ltitude 1,0m or less, indoors (no corrosive gases or dust) Gray (Bezel for digital operator is blue) 11HFU2 11HFE2 IP EMI filters, input/output reactors, DC reactors, radio noise filters, braking resistors, braking units, LCR filter, communication cables, Network interface cards 1320HFU2 1320HFE2 132 (175) Operator Weight kg (lbs.) 20 (44) * 1: Up to 30. n optional conduit box is required for 37 to 55 to meet NEM 1. The protection method conforms to JEM 1030 / NEM(U.S.). * 2: 3: The applicable motor refers to Hitachi standard 3-phase motor (4-pole). To use other motors, care must be taken to prevent the rated motor current (50) from exceeding the rated output current of the inverter. OPE-SR(4-digit LED with potentiometer) / OPE-SRE(4-digit LED with potentiometer, English overlay) Optional: OPE-S(4-digit LED), SRW-0EX(Multilingual (English,French, German, Italian, Spanish, and Portuguese) operator with copy function), ICS-1,3(Cable for operators(1m, 3m)) 30 (66) 30 (66) 30 (66) * 4: The output voltage decreases as the main power supply voltage decreases except for the use of R function. * 5: To operate the motor beyond 50/60, please consult with the motor manufacturer about the maximum allowable rotation speed. * 6: Braking resistor is not integrated in the inverter. Please install optional braking resistor or dynamic braking unit when large braking torque is required. 60 (132) 60 (132) 80 (176) 7: Storage temperature refers to the temperature in transportation. 8: Conforms to the test method specified in JIS C40(1999). * 9: When using the inverter from 40º to 50ºC ambient, the output current of the inverter must be derated (see the next section on derating curves). CLL NOW charles@automatedpt.com

9 CLL NOW CLL NOW DIMENSIONS L3P-5-055LFU HFU HFE2 25(0.98) 150(5.91) 130(5.12) 80(3.15) Digital Operator 2-6 ( 0.24) [Unit:mm (inch)] Inches for reference only 164(6.46) 79(3.11) 241(9.49) 255(14) Wall 40(1.57) ir intake 75(2.95) LFU2 HFU2 type(055lfu2 HFU2) Conduit box to meet NEM1 rating L3P LFU2, HFE2, HFU2 [Unit:mm (inch)] Inches for reference only 24.5(0.97) 210(8.27) 189(7.44) 80(3.15) Digital Operator 2-7( 0.28) 170(6.69) 79(3.11) 246(9.69) Wall 7(0.28) 189(7.44) 70(2.76) ir intake 80(3.15) LFU2 HFU2 type Conduit box to meet NEM1 rating 82(3.23) 260(10.24) 7(0.28) 6(0.24) 130(5.12) 3-20( 0.78) Wiring Hole 8.5(0.33) 69(2.72) 140(5.51) 143(5.63) 7(0.28) 8.5(0.33) 170(6.69) 3-25( 0.98) Wiring hole 203(7.99)

10 CLL NOW CLL NOW DIMENSIONS L3P-185-3LFU2, 185-3HFE2, 185-3HFU2 24.5(0.97) 250(9.84) 229(9.02) 80(3.15) Digital Operator 2-7( 0.28) [Unit:mm (inch)] Inches for reference only 79(3.11) 273(10.75) 376(14.80) 390(15.35) Wall 7(0.28) 229(9.02) 8.5(0.33) 147(5.79) ir intake 9.5(0.37) 83(3.27) 190(7.48) ( 1.16) Wiring hole 104(4.09) LFU2 HFU2 type Conduit box to meet NEM1 rating 244(9.61) L3P-370LFU2, 370HFE2, 370HFU2 45(1.77) 80(3.15) Digital Operator 2-10 ( 0.39) [Unit:mm (inch)] Inches for reference only 79(3.11) 510 (28) 2-10(0.39) 265(10.43) 310(12.20) 195(7.68) 540 (21.26) Wall 271(10.67) 8.5(0.33) 145(5.71) 175(6.89) ir intake 74(2.91) Conduit box to meet NEM1 rating (Optional)

11 CLL NOW L3P LFU2, HFE2, HFU2 32.5(1.28) 80(3.15) Digital Operator 2-12( 0.47) [Unit:mm (inch)] Inches for reference only L3P-750LFU2 2 12(0.47 ) 520(20.47) 550(21.65) Wall 2-12(0.47) 3(11.81) 390(15.35) 277(10.91) 250 (9.84) 8.5(0.33) 79(3.11) 155(6.) 185(7.28) ir intake 90(3.54) Conduit box to meet NEM1 rating (Optional) 125(4.92) 80(3.15) Digital Operator [Unit:mm (inch)] Inches for reference only 79(3.11) 670(26.38) 7(27.56) Wall 352(13.87) 2-12 (0.47) 380(14.96) 480(18.90) 160(6.30) 8.5(0.33) 190(7.48) 104(4.09) ir intake 250 (9.84) Conduit box to meet NEM 1 rating (Optional) CLL NOW charles@automatedpt.com

12 CLL NOW CLL NOW DIMENSIONS L3P-9HFE2, HFU2-11HFE2, HFU2 32.5(1.28) 80(3.15) Digital Operator 2-12( 0.47) [Unit:mm (inch)] Inches for reference only 79(3.11) 670(26.38) 7(27.56) Wall 2-12(0.47) 3(11.81) 390(15.35) ir intake L3P-1320HFE2, HFU2 710 (27.95) 740 (29.13) Wall 2-12 (0.47) 8.5 (0.33) ir intake 270 (10.63) 270(10.63) 357(14.06) 8.5(0.33) 62.5(2.46) 80(3.15) Digital Operator 2 12(0.47 ) [Unit:mm (inch)] Inches for reference only 480(18.91) 79(3.11) 380 (14.76) 480 (18.90)

13 CLL NOW CLL NOW OPERTION and PROGRMMING L3P Series can be easily operated with the digital operator (OPE-SR) provided as standard. The Digital operator can also be detached and used for remote-control. multilingual (English, French, German Italian, Spanish, and Portuguese) operator with copy function (SRW-0EX) or a digital operator without potentiometer(ope-s) is also available as an option. (For US version, OPE-SRE (English overlay with potentiometer) is provided as standard.) Parameter Display Displays frequency, motor current, rotational speed of the motor, and an alarm code. Monitor LEDs Shows drive's status. Key Press to run the motor. STOP/RESET Key Press to stop the drive or reset an alarm. Function Key Press to set or monitor a parameter value. Power LED Lights when the power input to the drive is ON. Display Unit LEDs Indicates the unit associated with the parameter display. Potentiometer Store Key Press to write the new value to the EEPROM. Up/Down Keys Press up or down to sequence through parameters and functions shown on the display, and increment/decrement values. 1. Setting the maximum output frequency (1) or the value previously monitored is displayed. (2)Function code appears. (3) appears. (4) or the code number set in the end of last setting is displayed. Power on FUNC MIN MX STR Press FUNC key. MIN MX MIN MX Press FUNC key. FUNC Press until MIN MX STR FUNC STR FUNC STR appears. (5) appears. (6)Preset value is displayed. (7)Newly set value is displayed. (8)Returns to and the setting is complete. Press until appears. FUNC MIN MX STR Press FUNC key. 2. Running the motor(by potentiometer) FUNC MIN MX STR Press to set desired value. FUNC MIN MX STR Press STR key to store the value. FUNC MIN MX STR *To run the motor, go back to monitor mode or basic setting mode. (1) or the value previously monitored is displayed. (2)The motor runs at the frequency set by the potentiometer. (3)The motor stops. Power on FUNC MIN MX STR 3. Monitoring output current value (1) or the value previously monitored is displayed. Press key and turn the potentiometer clockwise. Press MIN MX MIN MX FUNC STR FUNC STR (Output frequency monitor) STOP RESET (2)Function code appears. (3) appears. key to stop the motor. (4)Output current value is displayed. Power on FUNC MIN MX STR Press FUNC key. MIN MX MIN MX Press FUNC key. FUNC STR Press until appears. FUNC STR FUNC MIN MX STR

14 CLL NOW CLL NOW Code d1 d2 d3 d4 d5 FUNCTION LIST Monitoring Functions and Main Profile Parameters Name Output frequency monitor Output current monitor Motor rotational direction monitor Process variable (P), PID feedback monitor Intelligent input terminal status Description Default Setting -FE(CE) -FU2(UL) / F(Forward) / o(stop) / r(reverse) / / / / 1-999(10,0-99,9) FW ON (Example) Terminal FW, 2 and 1 : ON OFF Terminal 5, 4, and 3 : OFF = llowed [ = Not permitted] Run-time Setting Run-time Data Edit (Enabled at b031) Expanded Function Setting Mode Monitor Mode d6 d7 d3 d4 d6 d7 d080 d081 d086 d090 F1 F2 F202 F3 F203 F4 --- b--- C--- H--- P--- U--- Intelligent output terminal status Scaled output frequency monitor Output voltage monitor Power monitor Cumulative time monitor Cumulative power-on time monitor Trip count monitor Trip monitor 1-6 Warning monitor Output frequency setting cceleration time (1) setting cceleration time (1) setting for second motor Deceleration time (1) setting Deceleration time (1) setting for second motor Motor rotational direction setting Group: Standard functions b Group: Fine tuning functions C Group: Intelligent terminal functions H Group: Motor constants functions P Group: Expansion card functions U Group: User-selectable menu functions ON (Example) Terminal 12 and 11 : ON OFF L :OFF L / / / (10,0-39,960) / / (10,0-99,9)hr / / (10,0-99,9)hr / (10,0-65,530) Displays trip event information Warning code, Starting frequency to maximum frequency / maximum frequency for second motor / / sec / / sec / / sec / / sec. (Forward) / (Reverse) s 30.s 30.s 30.s s 60.s 60.s 60.s Basic Setting nalog Input Setting Multispeed and Jogging Frequency Setting Group: Standard Functions Code I Name Frequency source setting Run command source setting Base frequency setting Base frequency setting for second motor Maximum frequency setting Maximum frequency setting for second setting T selection O2 selection O-L input active range start frequency O-L input active range end frequency O-L input active range start voltage O-L input active range end voltage O-L input start frequency enable External frequency filter time constant Multispeed operation selection Multispeed frequency setting (0) Multispeed frequency setting (0) for second motor Multispeed frequency setting (1-15) Jog frequency setting Jog stop mode Description (Potentiometer) / (Terminals) / 02(Operator) / 03(RS485) / 04 (Expansion card 1) / 05(Expansion card 2) (Terminals) / 02(Operator) / 03(RS485) / 04 (Expansion card 1) / 05(Expansion card 2) 30.-Maximum frequency 30.-Maximum frequency for second motor (Selection between O and OI at T) / (Selection between O and O2 at T) (Independent) / (Only positive) / 02(Both positive and negative) (External frequency output zero reference) / (0) (Sampling time = 2 msec.) (Binary: up to 16-stage speed at 4 terminals) / (Bit: up to 6-stage speed at 5 terminals) 0., Starting frequency to maximum frequency 0., Starting frequency to maximum frequency for second motor 0., Starting frequency to maximum frequency 0., Starting frequency to 9.99 (Free-run stop/disable during ) / (Deceleration to stop/ disable during ) / 02(DC braking to stop/ disable during ) / 03(Free-run stop/ enable during ) / 04(Deceleration to stop/ enable during ) / 05(DC braking to stop/ enable during ) Default Setting -FE(CE) -FU2(UL) = llowed [ = Not permitted] Run-time Setting Run-time Data Edit (Enabled at b031)

15 CLL NOW Code /f Characteristic DC Braking Upper/ Lower Limit and Jump Frequency PID Control R Function Operation Mode and ccel./ Decel. Function External Frequency Tuning ccel./ Decel. Curve ( * 1) 90 and over Name Torque boost method selection Torque boost method selection for second motor Manual torque boost value Manual torque boost value for second motor Manual torque boost frequency adjustment Manual torque boost frequency adjustment for second motor /f characteristic curve selection /f characteristic curve selection for second motor /f gain setting DC braking enable DC braking frequency setting DC braking wait time DC braking force setting DC braking time setting DC braking edge or level detection DC braking force setting at the starting point DC braking time setting at the starting point DC braking carrier frequency setting Frequency upper limit setting Frequency upper limit setting for second motor Frequency lower limit setting Frequency lower limit setting for second motor Jump frequency (1) setting Jump frequency width (1) setting Jump frequency (2) setting Jump frequency width (2) setting Jump frequency (3) setting Jump frequency width (3) setting cceleration hold frequency setting cceleration stop time setting PID function enable PID proportional gain PID integral gain PID differential gain Process variable scale conversion Process variable source setting R function selection R voltage selection Operation mode selection Energy saving mode tuning cceleration time (2) cceleration time (2) for second motor Deceleration time (2) Deceleration time (2) for second motor Select method to switch to second accel./ decel. profile Select method to switch to second accel./ decel. profile for second motor ccel(1) to ccel(2) frequency transition point ccel(1) to ccel(2) frequency transition point for second motor Decel(1) to Decel(2) frequency transition point Decel(1) to Decel(2) frequency transition point for second motor cceleration curve selection Deceleration curve selection OI-L input active range start frequency OI-L input active range end frequency OI-L input active range start voltage OI-L input active range end voltage OI-L input start frequency enable O2-L input active range start frequency O2-L input active range end frequency O2-L input active range start voltage O2-L input active range end voltage cceleration curve constants setting Deceleration curve constants setting Description (Manual torque boost) / (utomatic torque boost) (Manual torque boost) / (utomatic torque boost) (C) / (P 1.7th power) / 02(/f free-setting) (C) / (P 1.7th power) / 02(/f free-setting) (Disabled) / (Enabled) sec sec. (Edge) / (Level) sec k (To be derated) {0.5-8k} ( * 1) 0., Starting frequency to maximum frequency 0., Starting frequency to maximum frequency for second motor 0., Starting frequency to maximum frequency 0., Starting frequency to maximum frequency for second motor / / / / sec. (Disable) / (Enable) sec. -1.0sec (at OI) / (at O) (lways ON) / (lways OFF) / 02(OFF during deceleration) 2/215/220/230/240, 380/4/415/440/460/480 (Normal operation) / (Energy-saving operation) -1.0sec / / sec / / sec / / sec / / sec. (2CH input from terminal) / (Transition frequency) (2CH input from terminal) / (Transition frequency) / / / / (Linear)/ (S-curve)/ 02(U-shape)/ 03(Reverse U-shape) (Linear)/ (S-curve)/ 02(U-shape)/ 03(Reverse U-shape) (External frequency output zero reference) / (0) (Smallest deviation)-10(largest deviation) (Smallest deviation)-10(largest deviation) Default Setting -FE(CE) -FU2(UL) / / = llowed [ = Not permitted] Run-time Setting Run-time Data Edit (Enabled at b031) CLL NOW charles@automatedpt.com

16 CLL NOW CLL NOW B Group : Fine Tuning Functions Restart after Instantaneous Power Failure Electronic Thermal Software Lock Others Code Overload Restriction Free-setting /f pattern b1 b2 b3 b4 b5 b6 b7 b2 b212 b3 b213 b5 b6 b7 b8 b9 b020 b021 b022 b023 b024 b025 b026 b031 b034 b035 b036 b037 b080 b081 b082 b083 b084 b085 b086 b087 b088 b090 b091 b092 b095 b096 b098 b099 b1 b1 b102 b103 b104 b105 b106 b107 b108 b109 b110 b111 b112 b113 Selection of automatic restart mode llowable instantaneous power failure time Time delay enforced before motor restart Instantaneous power failure and under-voltage trip enable Number of restarts after instantaneous power failure and under-voltage trip Phase loss detection enable Restart frequency setting Level of electronic thermal setting Level of electronic thermal setting for second motor Electronic thermal characteristics Electronic thermal characteristics for second motor Free-setting electronic thermal frequency (1) Free-setting electronic thermal current (1) Free-setting electronic thermal frequency (2) Free-setting electronic thermal current (2) Free-setting electronic thermal frequency (3) Free-setting electronic thermal current (3) Overload restriction operation mode Overload restriction setting Deceleration rate at overload restriction Overload restriction operation mode (2) Overload restriction setting (2) Deceleration rate at overload restriction (2) Software lock mode selection / power-on warning time Rotational direction restriction Reduced voltage soft start selection Function code display restriction M terminal analog meter adjustment FM terminal analog meter adjustment Start frequency adjustment Carrier frequency setting Initialization mode Name Country code for initialization Frequency scaling conversion factor STOP key enable Resume on free-run stop cancellation mode Dynamic braking usage ratio Stop mode selection Cooling fan control Dynamic braking control Dynamic braking activation level Thermistor for thermal protection control Thermistor for thermal protection level setting Free-setting /f frequency (1) Free-setting /f voltage (1) Free-setting /f frequency (2) Free-setting /f voltage (2) Free-setting /f frequency (3) Free-setting /f voltage (3) Free-setting /f frequency (4) Free-setting /f voltage (4) Free-setting /f frequency (5) Free-setting /f voltage (5) Free-setting /f frequency (6) Free-setting /f voltage (6) Free-setting /f frequency (7) Free-setting /f voltage (7) (larm output after trip, automatic restart disable) / (Restart at 0) / 02(Resume operation after frequency matching) / 03(Resume previous frequency after frequency matching, then decelerate to stop and display trip information) sec sec. (Disable) / (Enable) / 02(Disable during stop and ramp to stop) (16 times) / (lways restart) (Disable) / (Enable) / *rated current-1.20*rated current 0.20*rated current-1.20*rated current (Reduced torque) / (Constant torque) / 02(/f free-setting) (Reduced torque) / (Constant torque) / 02(/f free-setting) (Disable) / (Enable during accel./constant speed) / 02(Enable during constant speed) 0.50*rated current-1.50*rated current Description (Disable) / (Enable during accel./ constant speed) / 02(Enable at constant speed) 0.50*rated current-1.50*rated current (ll parameters except b031 are locked when SFT from terminal is on) / (ll parameters except b031 and output frequency F1 are locked when SFT from terminal is on) / 02(ll parameters except b031 are locked) / 03(ll parameters except b031 and output frequency F1 are locked) / 10(Run-time data edit mode) /106553(10,065,53)hr (Output to intelligent terminal) (Enable for both directions) / (Enable for forward) / 02(Enable for reverse) (Short)-06(Long) (ll) / (Utilized functions) / 02(User-selected functions only) k (To be derated) {0.5-8k}(*1) (Japanese version) / (European version) / 02(North merican version) (Enable) / (Disable) (Restart at 0) / (Resume operation after frequency matching) -1.0 (Deceleration and stop) / (Free-run stop) (Fan is always ON) / (Fan is ON during including 5min. afetr power-on and stop) (Disable) / (Enable during run) / 02(Enable during stop) / (Disable) / (PTC enable) / 02(NTC enable) Free-setting /f frequency (2) Free-setting /f frequency (3) Free-setting /f frequency (4) Free-setting /f frequency (5) Free-setting /f frequency (6) Free-setting /f frequency (7) Rated current Rated current Rated Rated current* current* Rated Rated current* current* (Trip history clear) / (Parameter initialization) / 02(Trip history clear and parameter initialization) Default Setting -FE(CE) -FU2(UL) / Rated current Rated current / = llowed [ = Not permitted] Run-time Setting Run-time Data Edit (Enabled at b031)

17 CLL NOW CLL NOW C Group: Intelligent Terminal Functions Intelligent Input Terminal Setting Code Intelligent Input Terminal State Setting Intelligent Output Terminal Setting Intelligent Output Terminal State and Output Level setting Serial Communication nalog Meter Setting Others C1 C2 C3 C4 C5 C1 C2 C3 C4 C5 C9 C021 C022 C027 C028 C029 C031 C032 C036 C040 C041 C042 C043 C044 C061 C070 C071 C072 C073 C074 C075 C078 C081 C082 C083 C085 C086 C087 C088 C091 C1 C102 C103 C121 C122 C123 H3 H203 H4 H204 H6 H206 P1 P2 P031 P044 P045 P046 P047 P048 P049 P050 U1 I U2 Terminal (1) function Terminal (2) function Terminal (3) function Terminal (4) function Terminal (5) function Terminal (1) active state Terminal (2) active state Terminal (3) active state Terminal (4) active state Terminal (5) active state Terminal FW active state Terminal (11) function Terminal (12) function Name FM signal selection M signal selection MI signal selection Terminal (11) active state Terminal (12) active state larm relay terminal active state Overload signal output mode Overload level setting rrival frequency setting for acceleration rrival frequency setting for deceleration PID deviation level setting Electronic thermal warning level setting Data command method Communication speed selection Node allocation Communication data length selection Communication parity selection Communication stop bit selection Communication wait time O input span calibration OI input span calibration O2 input span calibration Thermistor input tuning M terminal offset tuning MI terminal meter tuning MI terminal offset tuning Debug mode enable UP/DOWN memory mode selection Reset mode selection Restart frequency after reset O input zero calibration OI input zero calibration O2 input zero calibration H Group: Motor Constants Functions Motor capacity Motor capacity for second motor Motor poles setting Motor poles setting for second motor Motor stabilization constant Motor stabilization constant for second motor P Group: Expansion Card Functions Operation mode on Expansion card 1 error Operation mode on Expansion card 2 error ccel/deccel time input selection DeviceNet comm watchdog timer Inverter action on DeviceNet comm error DeviceNet polled I/O:Output instance number DeviceNet polled I/O:Input instance number Input action on DeviceNet idle mode Motor poles setting for RPM U Group: User-selectable Menu Functions User selected functions Description Default Setting -FE(CE) -FU2(UL) (R:Reverse) / 02(CF1:Multipeed(1)) / 03(CF2:Multispeed(2)) / 04(CF3:Multispeed(3)) / 05(CF4:Multispeed(4)) / 06(JG:Jogging) / 07(DB:External DC braking) / (SET:Second motor constants setting) / 09(2CH:Second accel./decel.) / 11(FRS:Free-run stop) / 12(EXT:External trip) / 13(USP:Unattended start protection) / (CS:Change to/from commercial power supply) / 15(SFT:Software lock) / 16(T:nalog input selection) /18(RS:Reset) / 20(ST:3-wire start) / 21(STP:3-wire hold) / 22(F/R:3-wire fwd./rev.) / 23(PID:PID On/Off) / 24(PIDC:PID reset) / (UP:Remote-controlled accel.) / 28(DWN:Remote-controlled decel.) / 29(UDC:Remote-controlled data clearing) / 31(OPE:Operator control) / 32(SF1:Multispeed bit command(1) / 33(SF2:Multispeed bit command(2) / 34(SF3:Multispeed bit command(3) / 35(SF4:Multispeed bit command(4) / 36(SF5:Multispeed bit command(5) / 37(SF6:Multispeed bit command(6) / 38(SF7:Multispeed bit command(7) / 39(OLR:Overload limit change)/ 49(ROK: permissive)( * 1) / 255(NO:Not selected) (NO) / (NC) (NO) / (NC) (NO) / (NC) (NO) / (NC) (NO) / (NC) (NO) / (NC) (:Run signal) / (F1:Frequency arrival signal (at the set frequency))/ 02(F2:Frequency arrival signal (at or above the set frequency)) / 03(OL:Overload advance notice signal) / 04(OD:Output deviation for PID control) / 05(L:larm signal) / 06(F3:Frequency arrival signal (only at the set frequency)) / 08(IP:Instantaneous power failure signal) / 09(U:Under-voltage signal)/ 11(RNT: time over) / 12(ONT:Power-on time over) / 13(THM:Thermal alarm) / 27(RMD: Operator command signal)( * 1) C026 larm relay terminal function Output frequency on analog reference signal loss (Output frequency) / (Output current) / 03(Digital output frequency-only at C027) / 04(Output voltage) / 05(Power) / 06(Thermal load ratio) / 07(LD frequency) (NO) / (NC) (NO) / (NC) (NO) / (NC) (During accel./decel) / (t constant speed) 0.*rated current-2.*rated current / / (Operator) / 03(RS485) / 04 (Expansion card 1) / 05(Expansion card 2) 03(24bps) / 04(48bps) / 05(96bps) / 06(192bps) (7-bit) / 8(8-bit) (No parity) / (Even) / 02(Odd) 1(1-bit) / 2(2-bit) msec / (10,0-65,530) / (10,0-65,530) / (10,0-65,530) m (No display) / (Display) (Clear previous frequency) / (Keep previous frequency) (Cancel trip state when reset signal turns ON) / (Cancel trip state when reset signal turns OFF) / 02(Cancel trip state when reset signal turns ON(Enable during trip state)) (Restart at 0) / (Resume operation after frequency matching) / (10,0-65,530) / (10,0-65,530) / (10,0-65,530) () {-160()}( * 2) () {-160()}( * 2) 2/4/6/8 2/4/6/ (Trip) / (Continuous operation) (Trip) / (Continuous operation) (operation)/(option1)/02(option2) s (trip)/(trip after deceleration stop)/02(invalid)/03(free-run)/04(deceleration stop) 20,21,1 70,71,1 (trip)/(trip after deceleration stop)/02(invalid)/03(free-run)/04(deceleration stop) 0-38(even only) (Output freq.forced to 0; 5ms wait to recover)/(output forced 0; no wait to recover)/02(output freq.forced to max.freq.4)/03(output ferq.forced to 020/220) no / d1-p2 Rated current no Rated current no = llowed [ = Not permitted] Run-time Setting Run-time Data Edit (Enabled at b031)

18 CLL NOW CLL NOW TERMINLS Terminal Description Main Circuit Terminals Terminal Symbol R(L1), S(L2), T(L3) U(T1), (T2), W(T3) PD(+1), P(+) P(+), RB(RB) P(+), N(-) (G) R0(R0), T0(T0) Terminal Name Main power supply input terminals Inverter output terminals DC reactor connection terminals External braking resistor connection terminals External braking unit connection terminals Ground connection terminal Control power supply input terminals Terminal rrangement LFU2, HFU2, HFE HFE2, HFU2/LFU2 R 0 T 0 (R0) (T0) R S T U (L1) (L2) (L3) (T1) PD P N RB (+1) (+) (-) (RB) (T2) (G) W (T3) (G) R S T U W (L1) (L2) (L3) (T1) (T2) (T3) PD P N RB (+1) (+) (-) (RB) (G) (G) R 0 (R0) T 0 (T0) LFU HFE2, HFU2 R 0 T 0 (R0) (T0) 220, 3, 450, 550, 750LFU HFE2/HFU2 R 0 T 0 (R0) (T0) (G) R S T PD P N U W (L1) (L2) (L3) (+1) (+) (-) (T1) (T2) (T3) (G) R S T PD P N U W (L1) (L2) (L3) (+1) (+) (-) (T1) (T2) (T3) (G) (G) Screw Diameter and Terminal Width Model Screw diameter Terminal width (mm) LFU2 HFE2/HFU2 M LFU2 HFE2/HFU2 M LFU2 HFE2/HFU2 M Main Circuit Terminals LFU2 HFE2/HFU2 M LFU2, HFE2/HFU2 M LFU2, HFE2/HFU2 M LFU2 M LFU2, 1320HFE2/HFU2 M HFE2/HFU2 M10 29 R0,T0 Terminals ll models M4 9 *For ground screw of 2, 3, 450, 550 LFU2, M6 is used. For HFE/HFU2, M8 is used. W W:Terminal width Control Circuit Terminals Terminal rrangement H O2 M FM TH FW L1 L O OI MI P24 PLC CM1 12C 12 11C 11 L0 L2 Screw diameter M3, Terminal width 6.4mm

19 CLL NOW Control Circuit Terminals Terminal Description [ ]: Default setting (CE/UL) Symbol Name Explanation of Terminals Ratings Power Supply L H Common Terminal for nalog Power Source Power Source for Frequency Setting Common terminal for H, O, O2, OI, M, and MI. Do not ground. Power supply for frequency command input DC 10, 20m max. O Frequency Command Terminal Maximum frequency is attained at DC 10 in DC 0-10 range. Set the voltage at 4 to command maximum frequency below DC 10. Input impedance: 10kΩ, llowable input voltage range: DC Frequency Setting O2 Frequency Command Extra Terminal O2 signal is added to the frequency command of O or OI in DC 0-± 10 range. By changing configuration, frequency command can be input also at O2 terminal. Input impedance:10kω, llowable input voltage range: DC 0-±12 nalog OI Frequency Command Terminal Maximum frequency is attained at DC 20m in DC 4-20m range. When the intelligent terminal configured as T is on, OI signal is enabled. Input impedance: 1Ω, llowable input voltage range: DC 0-24m Monitor Output M MI nalog Output Monitor (oltage) nalog Output Monitor (Current) Selection of one function from: Output frequency, output current, torque, output voltage, input power, electronic thermal load ratio, and LD frequency. DC 0-10, 2m max. DC 4-20m, 250Ω max. nalog Input Sensor TH Thermistor Input Terminals The inverter trips when the external thermistor detects abnormal temperature. Common terminal is CM1. [Recommended thermistor characteristics] llowable rated power: 1mW or over. Impedance in the case of abnormal temperature: 3k Note: Thermal protection level can be set between 0 and llowable input voltage range [ Input Circuit ] TH Thermistor CM1 DC0-5 DC5 10kΩ 1kΩ Monitor Output FM Digital Monitor (oltage) [DC0-10 output (PWM output)] Selection of one function from: Output frequency, output current, torque, output voltage, input power, electronic thermal load ratio, and LD frequency. [Digital pulse output (Pulse voltage DC 0/10)] Outputs the value of output frequency as digital pulse (duty 50) Digital output frequency range: 0-3.6k, 1.2m max. Power Supply P24 CM1 Power Terminal for Interface Common Terminal for Interface Internal power supply for input terminals. In the case of source type logic, common terminal for contact input terminals. Common terminal for P24, TH, and FM. In the case of sink type logic, common terminal for contact input terminals. Do not ground. DC 24, 1m max. Digital Contact Input Run Command Functions FW 1 [RS/RS] 2 [T/T] 3 [CF2/USP] 4 [CF1/CF1] 5 [R/R] Forward Command Input Intelligent Input Terminals The motor runs forward when FW terminal is ON, and stops when FW is OFF. ssign 5 functions to terminals. (Refer to the standard specifications for the functions.) [Input ON condition] oltage between each terminal and PLC: DC 18 min. [Input OFF condition] oltage between each terminal and PLC: DC 3 max. Input impedance between each terminal and PLC: 4.7Ω Common Terminal PLC Common Terminal for Intelligent Input Terminals, Common Terminal for External Power Supply for PLCs, etc. Select sink or source logic with the short-circuit bar on the control terminals. Sink logic: Short P24 to PLC / Source logic: Short CM1 to PLC. When applying external power source, remove the short-circuit bar and connect PLC terminal to the external device. llowable maximum voltage between each terminal and PLC: DC 27 Relay Output State/ larm 12C [/] 12 [/] 11C [F1/F1] 11 [F1/F1] L0 [L/L] L1 [L/L] L2 [L/L] Intelligent Output Terminals ssign 3 functions to two NO contacts and one NO-NC contact. (Refer to the standard specifications for the functions.) Intelligent relay output terminals 12C 12 11C 11 L0 L1 L2 NO contact X 2 NO-NC contact X 1 Maximum capacity of relays 11,12: C 250, 5(R load)/1(i load) DC 30, 5(R load)/1(i load) L1-L0: C 250, 2(R load)/0.2(i load) DC 30, 8(R load)/0.6(i load) L2-L0: C 250, 1(R load)/0.2(i load) DC 30, 1(R load)/0.2(i load) Minimum capacity of relays 11,12: DC 1, 1m L1-L0, L2-L0: C1, 10m DC5, 1m CLL NOW charles@automatedpt.com

20 CLL NOW PROTECTIE FUNCTIONS Name Cause(s) Display on digital operator Display on remote operator/copy unit ERR1**** Over-current protection Overload protection(*1) The inverter output was short-circuited, or the motor shaft is locked or has a heavy load. These conditions cause excessive current for the inverter, so the inverter output is turned off. While at constant speed During deceleration During acceleration Others When a motor overload is detected by the electronic thermal function, the inverter trips and turns off its output. OC.Drive OC.Drive OC.ccel Over.C Over.L Braking resistor overload protection When the regenerative braking resistor exceeds the usage time allowance or an over-voltage caused by the stop of the BRD function is detected, the inverter trips and turns off its output. OL.BRD Over-voltage protection When the DC bus voltage exceeds a threshold, due to regenerative energy from the motor, the inverter trips and turns off its output. Over. EEPROM error(*2) When the built-in EEPROM memory has problems due to noise or excessive temperature, the inverter trips and turns off its output. EEPROM Under-voltage error decrease of internal DC bus voltage below a threshold results in a control circuit fault. This condition can also generate excessive motor heat or cause low torque. The inverter trips and turns off its output. Under. CT(Current transformer) error If a strong source of electrical interference is close to the inverter or abnormal operations occur in the builtin CT(Current transformer), the inverter trips and turns off its output. CT CPU error When a malfunction in the built-in CPU has occurred, the inverter trips and turns off its output. CPU1 External trip When a signal to an intelligent input terminal configured as EXT has occurred, the inverter trips and turns off its output. EXTERNL USP error n error occurs when power is cycled while the inverter is in mode if the Unattended Start Protection (USP) is enabled. The inverter trips and does not go into mode until the error is cleared. USP Ground fault The inverter is protected by the detection of ground faults between the inverter output and the motor during power-up tests. This feature protects the inverter only. GND.Flt. Input over-voltage protection When the input voltage is higher than the specified value, it is detected 60 seconds after power-up and the inverter trips and turns of its output. O.SRC Instantaneous power failure When power is cut for more than 15msec., the inverter trips and turns off its output. If power failure continues, the error will be cleared. The inverter restarts if it is in mode when power is cycled. Inst.P-F Inverter thermal trip When the inverter internal temperature is higher than the specified value, the thermal sensor in the inverter module detects the higher temperature of the power devices and trips, turning off the inverter output. OH FIN Gate array error Communication error has occured between CPU and gate array. G Missing phase One of three lines of 3-phase power supply is missing. PH.Fail IGBT error When instantaneous over-current has occurred, the inverter trips and turns off its output to protect main circuit element. IGBT Thermistor error When the thermistor inside the motor detects temperature higher than the specified value, the inverter trips and turns off its output. TH Expansion card 1 connection error Expansion card 2 connection error n error has been detected in an expantion card or at its connecting terminals. OP1 0-9 OP2 0-9 Out of operation due to under-voltage Due to insufficient voltage, the inverter has turned off its output and been trying to restart. If it fails to restart, it goes into the under-voltage error. U.WIT How to access the details about the present fault (*1)You can clear the error by pressing the Start / Reset key 10 seconds after the trip occurred. (*2)If an EEPROM error occurs, be sure to confirm the parameter data values are still correct. Error code Status at trip point Output frequency at trip point Motor current at trip point oltage between P(+) and N() at trip point Cumulative inverter operation (run) time at trip point Cumulative power-on time at trip point CLL NOW charles@automatedpt.com

21 CLL NOW CLL NOW CONNECTING DIGRM SOURCE TYPE LOGIC In case of 4 class, place a transformer for operating circuit to receive /60 5 R (*2)Remove connection with J51 when RoTo power is supplied externally Control power source R(L1) S (L2) T (L3) T(J51) (*2) R0 T0 P24 L3P Removable terminals (T1)U (T2) (T3)W (+1)PD IM DC link choke Forward command Intelligent input terminals (5 terminals) FM Monitor output (PWM) Short-circuit bar - + PLC CM1 FW FM CM1 DC24 (+) P RB (-) N L0 L1 L2 11 Dynamic braking unit (BRD) P N (Inverter) L1 L2 P RB P RB RB R1 R2 L1 L2 L1 L2 For 18.5(25HP) and over For up to 15(20HP) RB P RB P (To operating circuit) Thermistor TH DC10 11C N Braking resistor (RB) nalog input Frequency setting device 5-2k DC0-10(12-bit) DC10+10(12-bit) H O O2 10k 12 12C SP Intelligent output terminals Current input 4-20m(12-bit) OI 10k SN nalog output DC0-10 (8-bit) DC4-20m (8-bit) L M MI 1 (G) RP SN RS485 Serial communication port Option Customer wiring (Outside the inverter) Terminal Name Common FW, 1, 2, 3, 4, 5 P24 FM, TH CM1 H, O, O2, OI, M, MI L

22 CLL NOW CLL NOW SINK TYPE LOGIC In case of 4 class, place a transformer for operating circuit to receive /60 5 R (*2)Remove connection with J51 when RoTo power is supplied externally Control power source R(L1) S (L2) T (L3) T(J51) (*2) R0 T0 P24 L3P Removable terminals (T1)U (T2) (T3)W (+1)PD IM DC link choke Forward command Intelligent input terminals Short-circuit bar PLC FW DC24 (+) P RB (-) N Dynamic braking unit (BRD) P N L1 L2 RB R1 R2 L1 L2 L1 L2 For 18.5(25HP) and over RB P RB P FM CM1 L0 L1 L2 11 (Inverter) For up to 15(20HP) P RB P RB (To operating circuit) Thermistor TH DC10 11C N Braking resistor (RB) Frequency setting device 5-2k nalog input DC0-10(12-bit) DC10+10(12-bit) H O O2 10k 12 12C SP Intelligent output terminals Current input 4-20m(12-bit) OI 10k SN nalog output DC0-10 (8-bit) DC4-20m (8-bit) L M MI 1 (G) RP SN RS485 Serial communication port Option Customer wiring (Outside the inverter) Terminal Name Common FW, 1, 2, 3, 4, 5, FM, TH CM1 H, O, O2, OI, M, MI L

23 CLL NOW CLL NOW CONNECTING TO PLC 1. USING INTERNL SUPPLY OF THE INERTER (1) Sink type logic (2) Source type logic S P24 COM P24 PLC PLC FW FW - DC24 DC COM CM1 S CM1 Hitachi EH-150 series PLC Output Module EH-YT16 L3P Hitachi EH-150 series PLC L3P Output Module EH-YTP16 (Note:Place short-circuit bar between PLC and CM1 instead of P24 and PLC.) 2. USING EXTERNL SUPPLY (1) Sink type logic (2) Source type logic DC24 + S - P24 COM PLC DC P24 PLC FW DC24 FW DC COM CM1 S CM1 Hitachi EH-150 series PLC L3P Output Module EH-YT16 (Note:Remove short-circuit bar between P24 and PLC.) Hitachi EH-150 series PLC L3P Output Module EH-YTP16 (Note:Remove short-circuit bar between P24 and PLC.) (Note:Be sure to turn on the inverter after turning on the PLC and its external power supply to prevent the parameters in the inverter from being modified.)

24 CLL NOW CLL NOW WIRING and CCESSORIES Power Supply Fuse R S Inverter R0 T0 U W T PD (L1) (L2) (L3) (+1) (T1) (T2) (T3) P RB N (-) (+) Motor IM Input oltage 2 4 Note 1: Field wiring connection must be made by a UL and c-ul listed closed-loop terminal connector sized for the wire gauge involved. Connector must be fixed using the crimping tool specified by the connector manufacturer. Note 2: Be sure to use bigger wires for power lines if the distance exceeds 20m(66ft). Input side C reactor EMI filter Radio noise filter Radio noise filter (Capacitive filter) DC link choke Braking resistor Braking unit Output side noise filter Radio noise filter C reactor LCR filter Motor Output ((HP)) 1.5(2) 2.2(3) 3.7(5) 5.5(8) 7.5(10) 11(15) 15(20) 18.5(25) 22(30) 30(40) 37(50) 45(60) 55(75) 75(1) 1.5(2) 2.2(3) 3.7(5) 5.5(8) 7.5(10) 11(15) 15(20) 18.5(25) 22(30) 30(40) 37(50) 45(60) 55(75) 75(1) 90(125) 110(150) 132(175) Name Model L3P-5LFU2 L3P-022LFU2 L3P-037LFU2 L3P-055LFU2 L3P-075LFU2 L3P-110LFU2 L3P-150LFU2 L3P-185LFU2 L3P-220LFU2 L3P-3LFU2 L3P-370LFU2 L3P-450LFU2 L3P-550LFU2 L3P-750LFU2 L3P-5HFU2 L3P-022HFU2 L3P-040HFU2 L3P-055HFU2 L3P-075HFU2 L3P-110HFU2 L3P-150HFU2 L3P-185HFU2 L3P-220HFU2 L3P-3HFU2 L3P-370HFU2 L3P-450HFU2 L3P-550HFU2 L3P-750LFU2 L3P-9LFU2 L3P-11LFU2 L3P-1320LFU2 Wiring Power Lines WG mm 2 WG WG WG WG WG WG WG WG 4 * *2 WG 1/ WG 2 * *2 WG 1 * *2 WG 1 *2(75 C) 42.4 *2 WG 2/0 * *2 WG 3/0 * *2 WG WG WG WG WG WG WG WG WG WG WG 4 * *2 WG WG 2 * *2 WG 1 * *2 WG 1 *2(75 C) 42.4 *2 WG 2/0 * *2 WG 2/0 * *2 Function This is useful in suppressing harmonics induced on the power supply lines, or when the main power voltage imbalance exceeds 3 (and power source capacity is more than 5k), or to smooth out line fluctuations. It also improves the power factor. This filter reduces the conducted noise in the power supply wiring between the inverter and the power distribution system. Connect it to the inverter primary (input side). Electrical noise interference may occur on nearby equipment such as a radio receiver. This magnetic choke filter helps reduce radiated noise (can also be used on output). This capacitive filter reduces radiated noise from the main power wires in the inverter input side. The choke suppresses harmonics generated by the inverter. However, it will not protect the input diode bridge rectifier. Braking components are useful for increasing the inverter's control torque for high duty-cycle (on-off) applications, and improving the decelerating capability. Reduces radiated noise from wiring in the inverter output side. Signal Lines 0.75mm 2 shielded wire 0.75mm 2 shielded wire Fuse (Class J) Electrical noise interference may occur on nearby equipment such as a radio receiver. This magnetic choke filter helps reduce radiated noise (can also be used on input). This reactor reduces the vibration in the motor caused by the inverter's switching waveforms, by smoothing the waveforms to approximate commercial power quality. It is also useful when wiring from the inverter to the motor is more than 10m in length, to reduce harmonics. Sine wave shaping filter for the output side. Note: n EMI filter is required for European EMC directive and C-Tick, but the others are not for this purpose.

25 CLL NOW CLL NOW CCESSORIES OPERTOR Model OPE-S OPE-SR/SRE SRW-0EX OPE-SRE: English overlay * Potentiometer Remote Control Installation in L3P Copy Function (Standard for L3P)(OPE-SRE: Standard for L3P UL version) Multilingual CBLE FOR OPERTOR Model Cable Length ICS-1 1m (3.3ft) ICS-3 3m (9.8ft) REMOTE OPERTOR SRW-0EX(Optional) DIMENSIONS [Unit:mm (inch)] Inches for reference only 13(0.51) 8(0.31) 79(3.11) OPE-S(R) SRW-0EX ICS-1, 3 (Cables for OPE-S/SR/SRE and SRW-0EX) FUNC 80(3.15) Potentiometer is installed only in ORE-SR/SRE. * 26.5(1.04) 18(0.71) 18(0.71) 2-4(0.16) STOP/RESET 1 2 ( * ) 59(2.32) 2(8) Mounting holes STR 13(0.51) 8(0.31) 123(4.84) MON FWD 80(3.15) FUN RE COPY REMT RED COPY STR STOP/RESET 2-M3 depth5 (Reverse side) 6.5(0.26) 103(4.06) 26.5(1.04) 18(0.7 1) 18(0.71) 2-4( 0.16) 103(4.06) 2(8) Mounting holes Model Name ICS-1 ICS-3 L Cable Length 1m (3.3ft) 3m (9.8ft)

All Rights Reserved,Copyright 2002,Hitachi,Ltd.

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