Xinje V5 User Manual

Manual is about: frequency inverter

Summary of V5

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    Xinje electronic co.,ltd. Vb3/vb5/v5 frequency inverter user manual no. Inv c 01 20081130 204.

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    Vb3/vb5/v5 seires inverter 2 vb3/vb5/v5 series inverter user manual table of contents preface ——————————————— safty precautions ——————————————— product introductions ——————————————— installation and wiring ——————————————— operation descriptions ——————————————— function parameters ——————————————— fau...

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    Vb3/vb5/v5 series inverter this manual includes the basic caution items that you should obey to ensure your personal safety, as well as to protect the product and the connected equipments. These items are highlighted in the manual by a warning triangle. Please comply with the essential electric oper...

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    Vb3/vb5/v5 series inverter i catalog preface .......................................................................................................................................1 safety precautions ......................................................................................................

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    Vb3/vb5/v5 seires inverter ii 3-2-1. Keyboard layout ........................................................................................................................................................ 28 3-2-2. Keyboard function .....................................................................

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    Vb3/vb5/v5 series inverter iii 7-2. Communication protocal ................................................................................................................................................ 91 7-2-1. Communication networking mode ...........................................................

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    1 ——essential introduction for this manual preface thank you for purchasing xinje inverter, this manual should be read and understood before attempting relevant operations. 1. Purpose of this manual this manual offers guidance and introductions about how to use and maintains the inverter correctly, ...

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    Vb3/v5/vb5 series inverter 2 ——essential introduction about product operation safety precautions upon unpacking, please confirm that: check whether the model and the rated values on the nameplate of the inverter are in accordance with your order. Check if there is any damage occurred during transpor...

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    Vb3/v5/vb5 series inverter 3 1. confirm that the voltage of the main ac power supply satisfies the rated voltage of the inverter. Injury and fire may occur if the voltage is not right. 2. do not perform voltage withstand tests on the inverter. Otherwise, semiconductor elements and other devices can ...

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    Vb3/v5/vb5 series inverter 4  mechanical resonance point of load the inverter mayencounter the mechanical resonance point of load within certain output frequency range. Jump frequen- cies have to be set to avoid it.  capacitor and resistor because the inverter output pulse wave, capacitor and resi...

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    Vb3/v5/vb5 series inverter 5  about protection classes the protection class of v5/f5 series inverter ip20 is reached in the case of status display unit or keyboard. When you scrap the inverter, please pay attention to: explosion risk of capacitor: the capacitors in the main circuits may explode whe...

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    Vb3/v5/vb5 series inverter 6 1 product instruction 1-1. Product overview vb3/vb5/v5 series inverter is produced by xinje co., ltd with high performance, easy operating and low noise. It is a innovative product with a series advanced and practical running and control functions such as practical pi, f...

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    Vb3/v5/vb5 series inverter 7 1-2. Product technical specification 1. Technical specification 220v type vb3-20p4 vb3-20p7 vb5-20p7 vb5-21p5 vb5-22p2 output match motor (kw) 0.4 0.75 0.75 1.5 2.2 output current (a) 3.0 4.7 4.7 7.5 10.0 voltage (v) ac 200 frequency range (hz) 0~500 frequency resolution...

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    Vb3/v5/vb5 series inverter 8 common characteristics environment application environment in-door, free from direct sunlight, dust, corrosive gas, oil mist, steam, water drop etc elevation lower than 1000m (the inverter should be derated when the elevation is higher than 1000m ) ambient temperature -1...

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    Vb3/v5/vb5 series inverter 9 main control function frequency resolution digital setting: 0.01hz; analog setting: max frequency × 0.1% start frequency 0.40hz ~ 20.00hz torque boost auto torque boost, manual torque boost 0.1% ~ 30.0% v/f curve five modes: constant torque v/f curve, 1 v/f curve mode by...

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    Vb3/v5/vb5 series inverter 10 menu esc jog rev ent data fwd stop reset fwd rev alm hz v a led control terminals power terminals mounting hole 4 bits led display buttons analog potentiometer.

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    Vb3/v5/vb5 series inverter 11 vb5 series single-phase 0.75~2.2kw vb3/vb5 series 3-phase 0.75~3.7kw vb5 series 5.5kw~7.5kw v5 series 11~18.5kw v5 series 22~55kw menu esc fwd ent data jog rev stop reset fwd rev alm hz v a warning ! * stored charge do not touch until 10 min. After disco- * risk of elec...

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    Vb3/v5/vb5 series inverter 12 1-4. Product dimension  vb3 series 0.4~0.75kw (unit: mm)  vb3, vb5 series 0.75~3.7kw (unit: mm) the details of the dimension: type w d1 l d2 h vb5-20p7 70 56 170 160 162 vb5-21p5 vb5-22p2 vb3/vb5-40p7 80 56 200 190 162 vb3/vb5-41p5.

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    Vb3/v5/vb5 series inverter 13 vb3/vb5-42p2 vb3/vb5-43p7  vb5 series 3-phase 5.5~7.5kw (unit: mm)  v5 series 3-phase 11~55kw (unit: mm) menu esc fwd ent data jog rev stop reset fwd rev alm hz v a 180.0 167.0 2 60 . 0 2 4 7 .5 17 1 . 8 ?5 .0 menu esc enter data fwd jog rev stop reset f wd r ev al m ...

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    Vb3/v5/vb5 series inverter 14 the details of the dimension: type w d1 l d2 h d3 v5-4011 230 120 420 160 218 400 v5-4015 v5-4018 v5-4022 290 180 450 210 217 430 v5-4030 v5-4037 375 230 581 230 261 551 v5-4045 v5-4055.

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    V5 series inverter 15 2 installation and wiring 2-1. Installation environment 2-1-1. Environment requirement  ambient tempeature: -10ºc~40ºc. The inverter should be derated when the temperature over 40ºc, at the same time ventilation and heat dissipation should be enhanced.  far away from the loca...

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    V5 series inverter 16 2-2. Wiring  wiring after power off for at least 10 minutes, otherwise, an electronic short may occur.  do not connect ac power to output terminals u, v and w.  both the inverter and the motor should be safety grounded as there is leakage current inside the inverter.The diam...

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    V5 series inverter 17 2-3-2. Terminal assignment and description fig. A fig. B fig. C fig. D fig. E fig. F fig. G fig.H the relationship between main circuit terminals and product types: voltage level power (kw) figure series 220v 0.4~0.75 fig. A vb3 0.75~2.2 fig. B vb5 380v 0.75~3.7 fig. C vb3 0.75...

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    V5 series inverter 18 2-4. Basic running wiring note: (1) p- terminal is only used in 5.5kw and larger inverters. (2) l, n terminals are suitable for 220v single phase inverters. (3) l1, l2, l3 terminals are suitable for vb5 series 0.75~3.7kw three phases types. (4) vb5 series 0.75~3.7kw three phase...

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    V5 series inverter 19 0.75~2.2kw vb5 series single phase inverter jumper position fig 2-4 (b) jumper position 0.75~3.7kw vb3, vb5 series three phases inverter jumper position fig 2-4 (c) jumper position 5.5~7.5kw vb5 series three phases inverter jumper position fig 2-4 (d) jumper position 11~55kw v5...

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    V5 series inverter 20 table 2-2 function of jumpers jumper function setup default setup jp1 pulse output terminal do power selection 1-2 connect: external power supply 2-3 connect: inverter’s internal 24v power supply external power supply jp2 analog output terminal ao output 1-2 connect: 4~20ma, ao...

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    V5 series inverter 21 3. Cn2 terminals’ function description are shown as below: table 2-4 cn2 terminals’ function description type terminal name terminal function description specification communication a rs485 port rs485 difference signal + standard rs485 port, please use twisted cable or shielded...

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    V5 series inverter 22 2-5-3. Analog i/o terminal wiring 1. The wiring of vi terminal voltage signal input fig. 2-6 vi terminal wiring diagram 2. Ci terminal analog input, jumper select voltage input(0~10v) or current input(4~20ma): fig. 2-7 ci terminal wiring 3. Wiring for analog ouput terminal ao a...

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    V5 series inverter 23 2-5-4. Connection of communication terminals the communication port of this inverter is standard rs485 port. With the following wiring methods, you can build up control system of one-host-one-slave or one-host-multi-slaves. Also, the superior device (pc or plc) can realize the ...

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    V5 series inverter 24 (inverters and motors are all grounded well) if the communication is still failed with the above connection methods, you can adopt the following methods: (1) use separate power supply for plc or isolate its power supply. (2) use magnetism ring for the cable and reduce the inver...

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    V5 series inverter 25 4,5,6 (1)the equipment and the signal cables should be far away from the inverter. The signal cables should be shielded and the shielding layer should be grounded. The signal cables should be located far away from the in- put/output cables of the inverter. If the signal cables ...

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    V5 series inverter 26 3 operating instructions 3-1. Run the inverter 3-1-1. Command channel of inverter we can control the inverter’s start, stop, jog and other running actions by three command channels. 1. Operation panel control by , and keys on the operation panel (default setting) 2. Control ter...

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    V5 series inverter 27 3-1-4. Running modes v5 inverter has 5 kinds of running modes which can be sequenced according to the priority: jog running→close loop run- ning→plc running→multi-speed running→simple running, as shown in fig. 3-1. 0: jog running when the inverter is in the stopp state, it will...

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    V5 series inverter 28 3-2. Use the keyboard 3-2-1. Keyboard layout start, speed, stop, brake, running parameter setting and control of the peripheral can be performed by inverter’s operation panel and control terminals; operation panel is shown in fig.3-2. Vb3 0.4~0.75kw vb5-opu-01 v5-opu-03 fig. 3-...

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    V5 series inverter 29 save/switch in program state, press this key to enter the next menu or save the parameters. Analog potentiometer when p0.01=0, adjust potentiometer to change the inverter’s output frequency. 3-2-3. Fucntion description of led and indicator the operation panel consists of 4-bit ...

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    V5 series inverter 30 fig. 3-4 display during initialize, stop and run 2. Parameters displayed in running status when the inverter receive running command, it starts to enter running status and operation panel will display running mon- itor parameters, the default parameter is output frequency (b-00...

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    V5 series inverter 31 fig. 3-6 editing status 3-2-5. Panel operation method the following show how to do various operations through the operation panel. 1. Parameter display press key to display parameter group b. First display the parameter no, then display parameter value after one second. The shi...

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    V5 series inverter 32 fig. 3-8 parameter editing in the third level menu, the parameter can’t be changed if no bit is flashing, the possible reasons are: (1) the setting of this parameter can not be changed, such as the actural detected parameters or recorded parameters. (2) this parameters can only...

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    V5 series inverter 33 5. Check error parameters: fig. 3-11 check operation in error status note: (1) press key to check parameter p6 in error code display mode, the range is p6.01~p6.06, press key, parameter no. Will firstly displayed and the parameter value will be displayed after 1s. (2)while chec...

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    V5 series inverter 34 fig. 3-12 procedures of starting the inverter for the first time.

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    V5 series inverter 35 4 function parameters 4-1. Function code ○: parameters can be changed while running ×: parameters can not be changed while running * : parameters can only be read, can not be changed 1. Basic running parameters (group p0) group p0: basic running parameters parameter name settin...

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    V5 series inverter 36 p0.15 linear time of s curve 10.0%~80.0%(acc/dec time) p0.14+p0.15<90% 0.1% 60.0% ○ p0.16 acc/dec time unit 0: second 1: minute 0 0 × p0.17 accerlate time 1 0.1~6000.0 0.1 10.0 ○ p0.18 decerlate time 1 0.1~6000.0 0.1 10.0 ○ p0.19 high limit frequency lowest frequency ~highest o...

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    V5 series inverter 37 p1.09 max setting of ci p1.07 ~10.00v 0.01v 10.00v ○ p1.10 frequency of the max setting of ci 0.00~highest frequency 0.01hz 50.00hz ○ p1.11 max input pulse frequency of pulse 0.1~20.0k 0.1k 10.0k ○ p1.12 min setting of pulse 0.0~p1.14 (max setting of pulse) 0.1k 0.1k ○ p1.13 fr...

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    V5 series inverter 38 4. Auxiliary running parameters (group p3) group p3: auxiliary running parameters parameter name range minmum unit factory setting change p3.00 combination of frequency input 0: vi+ci 1: vi-ci 2: external pulse+vi+ increase/decrease key 3: external pulse-vi- increase/decrease k...

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    V5 series inverter 39 tion 1: enabled p3.04 avr function 0: disabled 1: enable all the time 2: disabled when decelerating 1 0 × p3.05 slip frequency compen- sation 0~150% 1% 0% × p3.06 jog frequency 0.10~50.00hz 0.01hz 5.00hz ○ p3.07 accelerate time of jog 0.1~60.0s 0.1s 5.0s ○ p3.08 decelerate time...

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    V5 series inverter 40 p3.25 decerlate time 7 0.1~6000.0 0.1 10.0 ○ p3.26 multi-frequency 1 min frequency~max frequency 0.01hz 5.00hz ○ p3.27 multi-frequency 2 min frequency~max frequency 0.01hz 10.00hz ○ p3.28 multi-frequency 3 min frequency~max frequency 0.01hz 20.00hz ○ p3.29 multi-frequency 4 min...

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    V5 series inverter 41 terminal 2 3: multi-speed control terminal 3 4: exteral forward jog in- put 5: exteral reverse jog input 6: acc/dec time terminal 1 7: acc/dec time terminal 2 8: acc/dec time terminal 3 9: 3-wire operation control 10: free stop (frs) 11: external stop command 12: dc brake input...

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    V5 series inverter 42 33: counter reset input 34: external interrupt input 35: pulse frequency input (only valid for x6) 36: actual length reset input p4.01 function selection of input terminal x2 ditto 1 2 × p4.02 function selection of input terminal x3 ditto 1 3 × p4.03 function selection of input...

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    V5 series inverter 43 13: mid counting value arrived 14: inverter running prepa- ration is finished (rdy) 15: inverter fault 16: running with start frenquence 17: dc brake when startup 18: brake when stop 19: high and low limit of swing frequency 20: set running time arrived p4.11 relay output selec...

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    V5 series inverter 44 101: frequency reach signal (far) 102: frequency level detect signal (fdt1) 103: frequency level detect signal (fdt2) 104: overload pre-alarm (ol) 105: inverter under voltage blockade and stop (lu) 106: external error stop (ext) 107: output frequency reach upper limit (fh) 108:...

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    V5 series inverter 45 6. Protective function parameters (group p5) group p5: protective function parameters parameter name range minmum unit default setting change p5.00 motor overload protection mode selection 0: inverter lock the output 1: disabled 1 0 × p5.01 motor overload protection coefficient...

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    V5 series inverter 46 p6.07 first 2 times fault records first 2 times fault records 1 0 * p6.08 first 3 times fault records first 3 times fault records 1 0 * p6.09 first 4 times fault records first 4 times fault records 1 0 * p6.10 first 5 times fault records first 5 times fault records 1 0 * p6.11 ...

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    V5 series inverter 47 9. Simple plc operation parameters (group p8) group p8: simple plc operation parameters parameters name range minmum unit default setting change p8.00 simple plc operation mode selection 0000~1113 lowest bit: mode selection 0: disabled 1: stop after single cycle 2: keep the fin...

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    V5 series inverter 48 10. Swing frequency and measurement functions parameters (group 9) group p9: swing frequency and measurement function parameters parameters name range minmum unit default setting change p9.00 swing frequency selection 0: disabled 1: enabled 1 0 × p9.01 swing frequency mode 00~1...

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    V5 series inverter 49 pa.05 poles of motor 2~48 1 dependent on in- verter’s model × pa.06 stator inductance of motor 0.1~5000.0mh 0.1mh dependent on in- verter’s model × pa.07 rotor inductance of motor 0.1~5000.0mh 0.1mh dependent on in- verter’s model × pa.08 mutual induction of stator and rotor 0....

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    V5 series inverter 50 13. Default setting (group pf) group pp: default setting parameter name range minmum unit default setting change pf.00 default password - - - * pf.01 user’s password 0:no password 0001-9999: passwor protection 1 0000 ○ pf.02 software version - - - * pf.03~pf.10 reversed - - - *...

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    V5 series inverter 51 4-2. Function code description 4-2-1. Basic operating function parameters (group p0) p0.00 control mode selection range: 0~1 0 0: v/f control 1: open loop vector control p0.01 frequency setting channel selection range: 1~8 0 0: panel analog potentiometer setting 1: and keys on ...

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    V5 series inverter 52 p0.03 running command channel selection range: 0, 1, 2 0 0: panel control use to stop, start the inverter. 1: terminal control use external terminal fwd, rev, x1~x6 to start or stop the inverter. 2: serial port control to start or stop the inverter via rs485 port. Note: the con...

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    V5 series inverter 53 fig. 4-2 characteristic parameter fh(highest frequency), fl(lowest frequency) are defined by p0.19 and p0.20 . P0.09 torque boost range: 0.0%~30.0% 2.0% improve inverter low frequency torque characteristics, boost-compensate the output voltage. (a) torque boost of constant torq...

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    V5 series inverter 54 p0.12 carrier frequency range: 1.0k~14.0k 8.0k the default carrier frequency below 3.7kw inverter is 5.0 khz; it is 3.0 khz for 5.5kw and larger inverters. Carrier frequency will effects the motor’s noise and heat loss.The relationship among carier frequency, motor noise, leak ...

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    V5 series inverter 55 p0.16 acc/dec time unit range: 0, 1 0 this function defines acc/dec time unit 0: second 1: minute note: (1) this function is valid for all the acc/dec mode except jog running. (2) second unit is recommended. P0.17 acc time 1 range: 0.1~6000.0 10.0 p0.18 dec time 1 range: 0.1~60...

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    V5 series inverter 56 to obtain the best energy-saving effect, user can select v/f curve 1, 2, 3 for fan, pump load. Fig.4-7 v/f curve fig. 4-8 user-defined v/f curve when p0.22 = 4, you can define v/f curve via modifying (v1, f1), (v2, f2), (v3, f3) to satisfy the special load require- ment, as sho...

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    V5 series inverter 57 p1.13 frequency of pulse min setting range: 0.00~upper limit of frequency 0.00hz p1.14 max setting of pulse range: p1.12~p1.11 10.0k p1.15 frequency of pulse max setting range: 0.00~upper limit of frequency 50.00hz p1.16 input mode of ci range: 0, 1 0 when vi, ci and pulse are ...

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    V5 series inverter 58 inverter starts at the starting frequency (p2.01) within the lasting time of starting frequency (p2.02). 1: brake first and then start from the starting frequency brake with dc braking current (p2.03) within braking time (p2.04) and then start at starting frequency. 2: track th...

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    V5 series inverter 59 fig.4-11 starting mode 1 fig. 4-12 decelerate stop+dc brake p2.05 stopping mode range: 0,1,2 0 0: decelerate stop after receiving the stopping command, the inverter reduces its output frequency within decelerate time and stops when the frequency becomes 0. 1: free stop after re...

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    V5 series inverter 60 when p0.01(frequency setting chanel)= 8, set the frequency setting channel combination via p3.00. 0: vi+ci 1: vi-ci 2: external pulse +vi+increase/decrease key 3: external pulse-vi-increase/decrease key 4: external pulse+ci 5: external pulse-ci 6: rs485+vi+increase/decrease key...

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    V5 series inverter 61 avr is auto voltage regulation.When the input voltage of inverter fluctuates, avr function can keep it stable. When decelerating stop, if avr is disabled, the decelerate time is short and the running current is large; if avr is enabled, the motor will stable decelerate, the run...

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    V5 series inverter 62 p3.09. Lowest bit of led: set baud rate, the values are shown below: 0: 1200bps 1: 2400bps 2: 4800bps 3: 9600bps 4: 19200bps 5: 38400bps ten bit of led: set digital format, the values are show below: 0: 1-7-2 format, no parity check; 1 stop bit, 7 data bits, 2 stop bits, no par...

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    V5 series inverter 63 seven kinds of acc/dec time can be defined, and the inverter’s acc/dec time 1~7 can be selected by different combination of control terminals. Please refer to the introductions of p4.00~p4.05 for the definitions of terminals used to select acc/dec time, also, you can refer to a...

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    V5 series inverter 64 p3.42 display parameters selection 2 range: 0000~ffff 0000 p3.42 uses the 4 bits of this parameter (hex value) to control the displaying of b-25~b-40. Please transform the parameter to binary value when using. Each binary bit controls the displaying of one monitor parameter b. ...

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    V5 series inverter 65 1 multi-speed choice terminal 1 20 frequency setting channel 2 2 multi-speed choice terminal 2 21 frequency setting channel 3 3 multi-speed choice terminal 3 22 command switch to terminal 4 exteral forward jog input 23 running command channel selection 1 5 exteral reverse jog i...

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    V5 series inverter 66 fig.4-18 multi-speed operation in fig.4-19 terminal control is selected, the running direction is controlled by k 7 , k 8 . In fig.4-18, inverter can run at mul- ti-speed 1~7 or normal speed by controlling the on/off of k 1 , k 2 , k 3 . Fig.4-19 wire of multi-speed fig.4-20 ex...

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    V5 series inverter 67 13: inverter running prohibition. When the terminal is enabled, the inverter in running mode will free stop and prohibit to restart in standby mode. This function is sutiable for safe linkage. 14~15: frequency up (up)/frequency down (down). The terminal can be used to increase ...

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    V5 series inverter 68 29: plc disabled. This terminal can be used to flexible switch the plc operation and low level operation. Note: the switching between plc operation and low level operation are valid only when plc is running (the lowest bit of p8.00 is not 0) 30: reset plc stopping status. When ...

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    V5 series inverter 69 fig. 4-23 3-wire operation mode 1 xi is the multi-function input terminal of x1~x6; here you should define its function to no.9 “3-wire control mode”. 3: 3-wire control mode 2 sb1: stop button sb2: running button fig.4-24 3-wire control mode 2 xi is the multi-function input ter...

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    V5 series inverter 70 7 upper limit of output frequency (fh) 18 dc brake when stop 8 lower limit of output frequency (fl) 19 high and lower limit of swing frequency 9 inverter zero speed running 20 reach the preset running time 10 simple plc running completed 21 instructions of the functions shown i...

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    V5 series inverter 71 20: reach the setting running time.When the accumulating running time(p3.40)arrive the setting time (p3.39), an indication signal will be output. P4.12 detecting range of frequency arrive (far) range: 0.00~50.00hz 5.00hz this parameter is the additional definition of no. 1 func...

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    V5 series inverter 72 for analog output ao, you can adjust the output gain to change the measuring range or calibrate the meter. P4.19 ao output mode range: 0, 1 1 0: 4 ~20ma 1: 0 ~10v p4.20 do output terminal range: 0~120 0 refer to table 4-7 and 4-6 for function selection of do output terminal. P4...

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    V5 series inverter 73 4-2-6. Protection function parameters (group p5) p5.00 motor overload protection mode selection range: 0,1 0 this parameter defines the protection mode when overload or overheat occurs. 0: inverter locks the output. When overload or overheat occurs, inverter will lock output an...

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    V5 series inverter 74 fig. 4-31 overvoltage speed loss function p5.04 auto current limiting level range: 110~200(%) 150(%) p5.05 frequeny decrease rate when current limiting range: 0.00~99.99hz/s 10.00hz/s p5.06 auto current limiting selection range: 0, 1 1 auto current limiting function is used to ...

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    V5 series inverter 75 4-2-7. Fault recording parameters (group p6) p6.00 last fault record range: 0~23 0 p6.07 last 2 fault record range: 0~23 0 p6.08 last 3 fault record range: 0~23 0 p6.09 last 4 fault record range: 0~23 0 p6.10 last 5 fault record range: 0~23 0 p6.11 last 6 fault record range: 0~...

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    V5 series inverter 76 fig.4-33. In actual applications, if the motor speed increases with the preset value increasing, it is positive feature; if the motor speed decreases with the preset value increasing, it is negative features. The two close-loop features can be set via p7.14, as shown in fig4-35...

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    V5 series inverter 77 p7.06 min setting value range: 0.0~max setting value 0.0% p7.07 feedback value corresponding to min setting range: 0.0~100.0 (%) 0.0% p7.08 max setting value range: min reference~100.0 (%) 100.0% p7.09 feedback value corresponding to max setting range: 0.0%~100.0 (%) 100.0% p7....

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    V5 series inverter 78 p7.16 close-loop preset frequency range: 0~upper limit of frequency 0.00hz p7.17 holding time of close-loop preset frequency range: 0.0~250.0s 0.1s this function can make the close-loop adjustment enter stable status. When inverter is in close-loop running mode, it accelerates ...

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    V5 series inverter 79 fig.4-40 simple plc running in fig 4-40, a 1 ~a 7 , d 1 ~d 7 are the acc/dec time of each stage and they are set by acc/dec time parameters p0.17, p0.18 and p3.14~p3.2. F 1 ~f 7 , t 1 ~t 7 are the running frequency and running time and they are set by p8.01~p8.14. P8.00 simple ...

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    V5 series inverter 80 fig. 4-43 plc continuous running mode 3: continuous cycle. See fig.4-43, inverter start next cycle after one cycle finished, it will stop when stop command is input. Led ten bit: restart after pause 0: restart from stage 1. Stop caused by stop command, fault or power-off, resta...

  • Page 89

    V5 series inverter 81 p8.07 stage 4 setup range: 000~621 000 p8.08 running time of stage 4 range: 0.1~6000.0 10.0 p8.09 stage 5 setup range: 000~621 000 p8.10 running time of stage 5 range: 0.1~6000.0 10.0 p8.11 stage 6 setup range: 000~621 000 p8.12 running time of stage 6 range: 0.1~6000.0 10.0 p8...

  • Page 90

    V5 series inverter 82 fig.4-45 swing frequency p9.00 swing frequency function range: 0, 1 0 0: disabled 1: enabled p9.01 swing frequency running mode range: 00~11 0 lowest bit of led:input mode 0: auto input mode. The inverter will run at preset frequency (p9.02) for a while (p9.03), and then enter ...

  • Page 91

    V5 series inverter 83 p9.07 up time of triangle wave range: 0.0~98.0% 50.0% running time of swing frequency up stage =p9.06×p9.07(s), time of down stage=p9.06×(1-p9.07)(s). Refer to fig.4-45. Note: you can select s-curve acc/dec mode along with swing frequency, the swing frequency will run more smoo...

  • Page 92

    V5 series inverter 84 pa.07 rotor inductance of motor range: 0.1~5000.0mh model confirmation pa.08 mutual inductance of motor rotor and stator range: 0.1~5000.0mh model confirmation pa.09 stator resistance of motor range: 0.001~50.000Ω model confirmation pa.10 rotor resistance of motor range: 0.001~...

  • Page 93

    V5 series inverter 85 pb.01 dead zone time of forward/reverse running range: 0,1 0 0: always valid. Based on the value set in p0.05, the minimum value is 0.1s. 1: the time can be set to 0(no dead time).You should set p0.05=0.0s, p0.20≥0.5hz. This function is usually used to the continuous to-and-for...

  • Page 94

    V5 series inverter 86 5 fault diagnosis and solution 5-1. Fault diagnosis and solution when fault occurs, the error code will show in led display, the inverter stops outputting and the fault relay contactor is acti- vated. If the motor is running when the fault occurs, motor will free stop. Table 5-...

  • Page 95

    V5 series inverter 87 restart the motor when it is running set to restart after speed detection low ac supply voltage check ac supply voltage too heavy load select higher power inverter e-10 motor overload v/f curve is not suitable adjust v/f curve and torque boost value low ac supply voltage check ...

  • Page 96

    V5 series inverter 88 e-24 poff main circuit under voltage,the electro- magnetic contactor action error lack of phase when input current, momentary power off, power supply terminals are loose, power supply voltage fluctuates serious, the main circuit contactor is open check the reason and reset chec...

  • Page 97

    V5 series inverter 89 6 maintenance 6-1. Maintenance environment effections such as ambient temperature, humidity, fog, internal component aging and other factors will give rise to the occurrence of potential faults. Therefore, it is necessary to daily check and routine maintain the inverters. 6-1-1...

  • Page 98

    V5 series inverter 90 table 6-2 lifetime of inverter components component life cooling fan 2~3 year electrolytic capacitors 4~5 year print circuit board 5~8 year fuse 10 year the usage conditions of the above components are shown below: (1)environmental temperature: 30℃ in average. (2)load coefficie...

  • Page 99

    V5 series inverter 91 7 communication protocol 7-1. Overview of communication protocol the inverters supply rs485 communication port and adopt modbus startded communication proto- col. Therefore, the inverter can be set as a slave to communicate with the marter (such as plc and pc) which has the sam...

  • Page 100

    V5 series inverter 92 7-2-2. Communication protocol modes the inverter can be master and slave in rs485 network. If it is master, it can control other inverters made by our company to realize multi-machine linkage.If it is slave, pc or plc (master) can control it. The concrete communication modes ar...

  • Page 101

    V5 series inverter 93 start keep no signal input > =10ms address communication address: 8-bit binary address function function code: 8-bit binary address data (n - 1) data: n*8-bit data, n …………… data 0 crc chk low crc parity code crc chk high 16-bit crc parity code is combined by 2 8-bit binary valu...

  • Page 102

    V5 series inverter 94 02h 02h data 13h data 13h 88h 88h crc check low 25h crc check low 25h crc check high 5ch crc check high 5ch (3) command mode: 08h circuit test this command is used to test if the communication between the device (master) and inverter (slave) is normal. Inverter will send the da...

  • Page 103

    V5 series inverter 95 sent. The receiving device will calculate the crc again and compare to the received crc value. If the two value are not the same, discard this frame and receive the next frame. 7-3-3.Communication parameter name parameter address function internal parameters setting ggnnh gg st...

  • Page 104

    V5 series inverter 96 bit3: x4 bit4: x5 bit5: x6 bit6: fwd bit7: rev bit8: oc bit9: relay output read data of function code (03h) ggnnh (gg: group no. Of function code nn: function code no.) inverter responses to the data (when use modbus address, the nn must be turned into hex) write data to functi...

  • Page 105: Appendix A

    V5 series inverter 97 appendix a accessories a-1. Brake resistor 1.5~18.5kw (not including vb5-21p5, vb5-22p2) inverters have built-in brake unit. Please select brake unit as table 1-1. 22kw and above inverters need to connect brake unit. Please refer to fig. 1-1 for wiring. Figure 1-1 wiring of inv...

  • Page 106

    V5 series inverter 98 a-2. Operate panel operate panel power (kw) suitable model mounting dimension w*h (mm) v5-opu-01 0.75~2.2 vb5 series single-phase 62*75 0.75~3.7 vb3, vb5 series 3-phase 5.5~7.5 vb5 series 3-phase v5-opu-03 11~55 v5 series 71*131 a-3. Extension cable of operate panel the frequen...

  • Page 107: Appendix B

    V5 series inverter 99 appendix b function configuration list the terminal and function of inverter is shown in table 1~3: note: ○ user selection × not support √ support table 1: voltage level type power (kw) current (a) vector rs485 brake unit brake resistor 220v/ 1-phase vb3-20p7 0.75 4.7 × √ no × ...

  • Page 108

    V5 series inverter 100 table 2: voltage level type multi-funtion input pulse input x6 relay output transistor output oc 220v/ 1-phase vb3-20p7 x1~x3 × √ × vb5-20p7 x1~x3 × √ × vb5-21p5 x1~x3 × √ × vb5-22p2 x1~x3 × √ × 380v/ 3-phase vb3-40p7 x1~x4 × √ √ vb3-41p5 x1~x4 × √ √ vb3-42p2 x1~x4 × √ √ vb3-4...

  • Page 109

    V5 series inverter 101 table 3: voltage level type pulse out- put do analog input vi analog input ci analog output ao external power supply (compati- ble digital) (0~10v) (0~10v/4~20ma) (0~10v/4~20ma) 24v 10v 220v/ 1-phase vb3-20p7 × × √ × × √ vb5-20p7 × × √ × × √ vb5-21p5 × × √ × × √ vb5-22p2 × × √...

  • Page 110

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