3G3JV-A2001 OMRON | Alldatasheet
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a SI§ -ISQD.. = Digital Operator GTA CAERATOR "POTION Ooo Seo coco ae Indicators Data display + 00, = [Lome ffprcu) (Setting/Monitor item F le oenle amie indicators) RUN J[ ALARM) ~ RUN aa jo | (es Keys STOP © Fy FREQ adjuster ¥Y Ea <4 tiv FREQ MAX [" appearance [Name *Fanatfnn Data display Displays relevant data items, such as frequency reference, output frequency, and parameter set values. la Frequency adjuster | Sets the frequency reference within a range between 0 Hz and the maximum 8 frequency. 4 ney Frequency reference | The frequency reference can be monitored or set while this indicator is lit. indicator . Output frequency The output frequency of the Inverter can be monitored while this indicator is 7 indicator lit, q Output current The output current of the Inverter can be monitored while this indicator is lit. 4 indicator aA Multi-function The values set in U01 through U10 are monitored while this indicator is lit. y monitor indicator 4 az: Forward/Reverse The direction of rotation can be selected while this indicator is lit when i selection indicator operating the Inverter with the RUN Key. i Local/Remote The operation of the Inverter through the Digital Operator or according to the ' selection indicator set parameters is selectable while this indicator is lit. Note This status of this indicator can be only monitored while the Inverter is fi in operation. Any RUN command input is ignored while this indicator is lit. fi Parameter setting The parameters in n01 through n79 can be set or monitored while this 9 indicator indicator is lit. . Note While the Inverter is in operation, the parameters can be only moni- tored and only some parameters can be changed. Any RUN command input is ignored while this indicator is lit. Mode Key ‘Switches the setting and monitor item indicators in sequence. Parameter being set will be canceled if this key is pressed before entering the setting. “x Increment Key Increases multi-function monitor numbers, parameter numbers, and ~# parameter set values. Decrement Key Decreases multi-function monitor numbers, parameter numbers, and vy parameter set values. Enter Key Enters multi-function monitor numbers, parameter numbers, and internal data values after they are set or changed RUN Key Starts the Inverter running when the 3G3UV is in operation with the Digital RUN Operator. STOP STOP/RESET Key _ | Stops the Inverter unless parameter n06 is not set to disable the STOP Key. RESET
—eclamting INGO = Selecting Indicators (FREE) H foun) LJ represents a tit indicator. Frequency Output reference > > frequency J]y p[Ourrutcurent Decccccccccccccccccces nn nn nn : UU UU UU 3 + : : + Py Parameter Local/Remote Direction of Multi-function . ed < settings < <{\\Ceelection < <{ otation < 4 monitor Parameter n01 Remote mode Forward Frequency reference net wn et AU re For uu Parameter n02 Local mode Reverse Output frequency n 1 wn nue Lol}. |(rEu uae Other parameters Other monitor items Note: Ifthe power is turned OFF with the FOUT or IOUT indicator lit, the same indicator will light when the power is turned ON again. In other cases, the FREF indicator will light when the power is turned ON. = Example of Frequency Reference Settings eel BO) — Ge (600) [_Keysequence [Indicator] Display example Qe Power ON . aa Note Ifthe FREF indicator has not been lit, press the Mode Key repeatedly until the FREF indicator is lit. Use the Increment or Decrement Key to set the frequency LO OL | reference. The data display will flash while the frequency reference is Set. (See note 1) FREF, Press the Enter Key so that the set value will be entered and OS the data display will be lit. (see note 1) Note: The Enter Key need not be pressed when performing the setting for n08. The frequency reference will change when the set value is changed with the Increment or Decrement Key while the data display is continuously lit. : *]
= Example of Multi-function Display Frequency DC bus Monitor coun Tference cn, Voltage ae, data = = Complete [ Key sequence | indicator | biapiay Power ON Press the Mode Key repeatedly until the MNTR indicator is lit. UO1 will be displayed. Use the Increment or Decrement Key to select the monitor a Bat item to be displayed. Press the Enter Key so that the data of the selected monitor | ° item will be displayed. {UNTR) The monitor number display will appear again by pressing i) ug the Mode Key. Status Monitor Display Display . Function unit Frequency reference Monitors the frequency reference. (Same as FREF) Output frequency Monitors the output frequency. (Same as FOUT) Monitors the output current. (Same as IOUT) Output voltage Monitors the internal output voltage reference value of the Inverter. DC bus voltage Monitors the DC voltage of the internal main circuit of the Inverter. U06 Input terminal status Shows the ON/OFF status of inputs. {: Input ON J: No input Terminal S1: Forward/Stop Terminal S2: Multi-function input 1 (S2) Terminal S3: Multi-function input 2 ($3) Terminal S4: Multi-function input 3 (S4)
2 Not Terminal SS: Multi-function input 4 (S5)
é) used . 07 Output terminal Shows the ON/OFF status of outputs. status { : Closed |: Open Not Pith Terminal MA: Multi-function contact used output Uog Error log (most Displays the latest error. recent one) ToT L enor [vio __|Sottware No. [OMRON use only 3 9
aaa —DdqOqO@DWiL0D..L SS .L—— = Example of Parameter Settings s) The following example shows how to set 2 to enable the frequency reference control terminal for 0- to 10-V input in parameter n03 (Frequency Reference Selection). Baa SB OT Enable the frequency reference Cancels set 77 Tran control terminal for O- to 10-V input. . | Complete PrGu [ “Key sequence [nestor | Daplay example Explanation Power ON [>] [no 1] "i indicator | = | = | (ad i] Press the Mode Key repeatedly until the PRGM indicator is 9 Use the Increment or Decrement Key to set the parameter Au number. Press the Enter Key. u The data of the selected parameter number will be displayed. Use the Increment or Decrement Key to set the data. At that — time the display will flash. Press the Enter Key so that the set value will be entered and the data display will be lit. (see note 1) in approximately 1 s. The parameter number will be displayed. Note: 1. To cancel the set value, press the Mode Key instead. The parameter number will be displayed. 2. There are parameters that cannot be changed while the Inverter is in operation. Refer to the list of parameters. When at- tempting to change such parameters, the data display will not change by pressing the Increment or Decrement Key. 10 9
| List of Parameters = List of Parameters Changes during op- eration not Parameter Used to prohibit parameters to be written, sets 0, 1,6, write-prohibit selec- | parameters, or change the monitor range of 8,9 tion/parameterini- | parameters. talization Used to initialize parameters to default values. a Operation made | Used to select the input method for the RUN and STOP selection commands in remote mode. Frequency reference | Used to set the input method for the frequency refer- 14 selection ence in remote mode. Interruption mode | Used to set the stopping method for use when the selection STOP command is input.
05 Reverse rotation- Used to select the operation with the reverse command 1
prohibit selection _| input. 'STOP/RESET Key _ | Used to select the stop method in remote mode with | 0, 1 No function selection _ | n02 for operation mode selection set to 1. :
07 Frequency selection | Used to set the input method for the frequency refer-
in local mode ence in local mode.
4 Key sequential Used to enable the Enter Key for setting the frequency
(:) frequency setting reference with the Increment and Decrement Keys. ‘Maximum frequency | Used to set the VM pattern as the basic characteristic of | 50.010 (FMAX) the Inverter with output voltage per frequency set. 400 Maximumvotage | Note Set the parameters so that the following TV 200 (VMAX) condition will be satistied, . s Maximum voltage N14 $ 12 <nit S n09 O2t0 |O1Hz | 600 frequency (FA) Note Thevaluesetinn15willbeignoredif parame- | 400 ne Midale output ters n14 and n12 are the same in value. dit oane Pry frequency (FB) 399 m3 Middle output iv frequency voltage (ve) . nig Minimum output 0.1 to 15 No frequency (FMIN) 10.0 Minimum output WV frequency voltage r (VMIN) ‘Acceleration time 1 | Acceleration time: The time required to go trom 0% to | 0.010 Yes 15 100% of the maximum frequency. 999 m7 Deceleration time 1 | Deceleration time: The time required to go from 100% 700 | ves 10 0% of the maximum frequency. AakeemIoN IEE |Note The actual acceleration or deceleration time 7 [re [Aeestonine | anelortton/Decuetaton tate = (ace a Acceleration/Deceleration time = (Accelera-
9 Deceleration time 2 tion/Deceleration time set value) x (Frequen- Yes 15
cy reference value) + (Max. frequency) : S-shape accelera- _| Used to set S-shape acceleration/deceleration charac- tion/deceleration teristics. characteristic Frequency reference | Used to set internal frequency references. 0.010 ee 1 Note Frequency reference 1 is enabled in remote | Max. Ire- Frequency reference mode with n03 for frequency reference selec- | qency 2 tion set to 1.
723 Frequency reference | Note These frequency references are selected with 15
3 multi-step speed references (multi-function in- Frequency reference put). See the reference pages for the relation- 4 ship between multi-step speed references and n29 Inching frequency | Used to set the inching frequency command. 15 command e) M
Description Default | Changes | Aeference 8 setting | during op- page eration Frequency reference | Used to set the upper and lower frequency reference | 010110 | 1% No upper limit limits in percentage based on the maximum frequency nat Frequency reference | 25 100%. Oto 110 | 1% 16 lower limit Rated motor current | Used to set the rated motor current for motor overload | 0.0 to Varies detection (OL1) based on the rated motor current. 120% of with the Note — Motor overtoad detection (OL1) is disabled by pet capacity. setting the parameter to 0.0. output
133 Motor protection Used to set the motor overload detection (OL1) for the 1
characteristics electronic thermal characteristics of the motor.
134 Motor protective Used to set the electric thermal characteristics of the | 1 0 60 16
time setting motor to be connected in 1-minute increments. 135, Cooling fan opera- | Used to operate the Cooling Fan of the Inverter while tion function the Inverter is turned on or only while the Inverter is in operation. Multi-lunction input 1 | Used to select the functions of mutti-function input ter- (input terminal $2) _| minals $2 through $5.
737 Multi-function input 2 o1022 | 4
(input terminal $3) ‘Multi-function input 3 1 No 9 (Input terminal $4) oD 139) Multi-lunction input 4 21034 16 (Input terminal SS) Multi-function output | Used to select the functions of multi-function output 0107, 7 (MAMB and MC | terminals. 100 17 output terminals) ‘ nat Frequency reference | Used to the input characteristics of analog frequency 1% Yes 7 gain references. n42 Frequency reference =9910 Yes 7 bias 99 ‘Analog frequency | Used to set the digital filter with a first-order lag for ana- | 0.00to 7 telerence filter ime _| log frequency references fo be input. 2.00 ‘Analog monitor Used to set the output frequency or current as a moni- 1 7 output tored item. ‘Analog monitor Used to set the output characteristics of analog monitor | 0.0010 Yes 7 output gain output. 2.00 Cartier frequency | Used to set the carrier frequency. 1104,7 Varies selection 09 with the capacity.
7 Momentary power | Used to specify the processing that is performed when
interruption com- _| a momentary power interruption occurs. pensation Fault retry Used to set the number of times the Inverterisreset_ | Ot010 | 1 and restarted automatically in the case the Inverter has (ss) an overvoltage fault, overcurrent fault, or ground fault. sd 400 Jump frequency2 | Note These values must satisfy the following condi- [9.919 | 0.1 Hz 18 tion: n49 2 50 400 151 Jump width 0.00 400 [52 | BC control current | Used to impose DC on the induction motorforbrakng [oto 100 [1% [s0 [No +i S~™ Interruption DC control. control time ‘Startup DC control time Stall prevention Used to select a function to change the deceleration during deceleration | time of the motor automatically so that there will be no overvoltage imposed on the motor during deceleration, ‘Stall prevention level | Used to select a function to stop the acceleration of the | 3010 | 1% 170 19 during acceleration | motor automatically for stall prevention during 200 acceleration. 157 ‘Stall prevention level | Used to select a function to reduce the output 30t0 | 1% during operation frequency of the Inverter automatically for stall 200 prevention during operation. 12 °
Description Changes: Reference during op- page eration Frequency detection | Used to set the frequency to be detected. 0.010 19 level 400 r n59 Overtorque Used to enable or disable overtorque detection and 1 19 detection function select the processing method after overtorque selection detection. Overtorque Used to set overtorque detection level. 30 to W% 19 detection level 200 Overtorque Used to set the detection time of overtorque. Otto O1s detection time 10.9 UP/DOWN Used to store the adjusted frequency reference with the 1 command frequency | UP/DOWN function. memory Torque Used to set the gain of the torque compensation 04 Yes 21 compensation gain function. Motor rated slip Used to set the rated slip value of the motor in use. 0.0to O.1H2 Varies Yes 21 20.0 with the: capacity. Motor no-load Used to set the no-load current of the motor in use 010 99 Varies ‘current based on the rated motor current as 100%. with the capacity. fe) | ‘Slip compensation _ | Used to set the gain of the slip compensation function. jgge fer fee free gain
767 Slip compensation | Used for the response speed of the slip compensation 21
time constant function. ‘0681074 | OMRON's control | Do not change the set value. . relerence use n75 Low-speedcarrier | Used to select a function to reduce the carrier frequency reduction | frequency when Inverter is at low speed, selection OMRON's control | Do not change the set value. relerence use n78 Error log Used to display the latest error recorded. ul L Display Note *-~—" will be displayed if no error has been re- corded. . Note This parameter is monitored only. n79 Software number —_| Used to display the software number of the Inverter for OMRON's control reference use. Note This parameter is monitored only. ) 13
Function of Each Parameter Now: Tho shaded vauschucawalatetngn ooo BD Note: The shaded values indicate default settings. Parameter Write-prohibit Selection/Parameter Reverse Rotation-prohibit Selection (n05) Initialization (n01) - . Select the operation to be performed when the reverse rotation This parameter makes it possible to write-prohibit parameters, — command is input. change the parameter set or displayed range, or initialize all pa- 7 Descapll rameters to default values. [vawe [eseription | , aa Parameters can be cisplayed only. STOP/RESET Key Function Selection (n06) [SIS the not trough 779 parameters canbe dapayesandaat | [6 | Onlythe errorlogmemoryis cleared. «| «= When parameter n02 is set to 1, set whether or not to use the PE eee sie ae eman ewes? | STOP/RESET Key of the Digital Operator to stop the Inverter in shat ihe parameters wil retum to default values remote mode. The STOP/RESET Key is always enabled in local [2 [erates ine intatzaton ofatparametersinwreseqvenee. | made regardless of the setting in nO2, Operation Mode Selection (n02) : Select the method of operation mode input to start or stop the In- [1___| The STOP/RESET Key of the Digital Operatoris disabled ___—| verter in remote mode. 9 ¥. Frequency Reference Selection (n07) - [ Vale [Description (Local Mode) The RUN and STOP/RESET Keys of the Digital Operator are SEE | enabled. A . a ~ Select the input method of frequency references in local mode. 1 Multi-function input in 2- or 3-wire sequence through the control . See ee [_vatwe [Description | Note: In local mode, RUN commands canbe entered using the Digital Operator only. [1___[key sequences on the Digital Operatorare enabled. + Frequency Reference Selection (n03) Key Sequential Frequency Setting (n08) (Remote Mode) Select whether to enable the Enter Key when setting the fre- Select the method for inputting the frequency reference tothe In- quency reference with the Increment and Decrement Keys on verter in remote mode. the Digital Operator. Le The Enter Key is disabled. (The setting is directly treated as a fF [Eirestnmreneeneseoren | | [Reruiemamemamanat The frequency reference control terminal (for 4- to 20-mA current " Er RMR I Vi Pattern Settings (709 to n15) 3) ‘The frequency reference control terminal (for 0- to 20-mA current aa _ [E_Trmareeegazgieresconsiominator oie aBmacoren | 55s tne vi pattern as the basic characters of he Inverter with output voltage per frequency set. ape NTCTED [rr fre | ee sen | se Select the stopping method to be used when the STOP com- Wacom Frequensy 30516 400 mand is input. (FMAX) [Wave [beseripton fio Meriva votage oman [roass [rv [200 | [rv [pazremvaawe —([pziewoo forme [eo | [r?_[jgpecuonraaons [ares forme [is | (FB) Middle Output Frequency tv Voltage (VC) Minimum Output 0.1 t0 10.0 Frequency (FMIN) nis Minimum Output iv Frequency Voltage (VMIN) 14 o
Function of Each Parameter Note: For n09, nit, and n12, the unit of setting is as follows: Setting the Frequency References 1 to 8 and the Values will be set in 0.1 -Hz increments if the frequency is Inching Frequency Command (n21 to n28 and n29) less than 100 Hz and 1-Hz increments if the frequency is 100 Hz or greater. Set internal frequency references. Output Value voltage (V) : Frequency reference2 _| “eavency se noe Too | ] Frequency reference 3 [oo | [oo | [726 | Frequency relerences | [oo | on 3 = ce Frequency Frequency reference 8 [oo | Inching frequency com- mand Note: 1. Set the parameters so that the following condition will ; : z z be satisfied. Note: 1, Valueswill be setin 0.1-Hz increments if the frequency is less nia. ni2<nt1 $09 than 100 Hz and 1-Hz increments if the frequency is 100 Hz 9 2. The value set in n15 will be ignored if parameters n14 or over, . . and n12 are the same in value. 2. Frequency reference 1 is enabled with n03 for frequency ret- erence selection set to 1. (Remote mode) . — . 3. Frequency references 1 to 8 are enabled by setting multi- Acceleration/Deceleration Time Settings step speed references 1, 2, and 3inn36 ton39 for multi-func- (n16 to n19) . tion input. Refer to the following table for the relationship be- tween multi-step speed references 1 to 3 and frequency ref- The acceleration time is the time required to go from 0% to 100% erences 1 to 8. of the maximum frequency and the deceleration time is the time Frequency | Muiti-step speed | Multi-step speed | Multi-step speed cy y P SPX required to go from 100% to 0% of the maximum frequency. The reference reference 1 reference 2 reference 3 actual acceleration or deceleration time is obtained from the fol- rarer [OF for lowing formula. . relerence . oa Frequency OFF Acceleration/Deceleration time = feference 2 (Acceleration/Deceleration time set value) x (Frequency refer- [Frewenoy [Orr fe ence value) + (Max. frequency) reterence 3 Frequency OFF reference 4 [seers [OF reference 5 ‘requency OFF [roo] [farses [X See a a 9 [roo |_| sterence? a a " - Tet relerence 8 . S-shape Acceleration/Deceleration Characteristic (n20) Note: 1. “ON” and “OFF” represent “input ON” and “input OFF,” re- spectively. Any one of three S-shape acceleration/deceleration times (0.2, 2. Inching frequency commands take precedence over multi- 0.5, and 1.0 s) is selectable. step speed references. ei tage| No S-shape acceleration/deceleration characteristic Five (Trapezoidal acceleration/deceleration) [1 | Shape accelatonteceleaton charaiefnic ine W023 | [2 [Shape accolratonteceleaton caracernie ne B05 | [3 ___| S-shape acceleration/deceleration characteristic time is 1.05 Note: When the S-shape acceleration/deceleration character- istic time is set, the acceleration and deceleration times willbe lengthened according to the S-shape at the begin- ning and end of acceleration/deceleration. J Is
~ Function of Each Parameter Frequency Reference Upper and Lower Limit Cooling Fan Operation Function Selection (n35) Settings (n30 and n31) i i ; This parameter is used to operate the cooling fan of the Inverter Set the upper and lower frequency reference limits in percent- _ while the Inverter is turned on or only while the Inverter is in op- age based on the maximum frequency as 100%. eration. P=] | ee See | oe setting | settings ‘O]SRZ=A| The fan rotates only while the RUN command is input and for 1 Leper Lint [i [The fanroiates whie he invereris umes ON id Gl Lower Limit Note: 1. This parameter is available only if the Inverter incorporates a " ; cooling fan. Note: Ifn31 is set to a value less than the minimum output fre- 2. If the operation frequency of the Inverter is low, the life of the quency (FMIN) (n14), the Inverter will have no output fan can be prolonged by setting the parameter to 0. when a frequency reference less than the minimum out- . " " put frequency input is ON. Muiti-function Input Selection (n36 to n39) Rated Motor Current Setting (n32) Select the functions of multi-function input terminals S2 to SS. Value Default Set the rated motor current as the reference value for motor [we [mre] Somes] coat | eas | Note: 1. Setting 0.0 disables the motor overload detection (OL1) func- (s2) 22 2. The rated motor current value is factory-set for each Inverter 1022 according to the maximum applicable motor capacity. [2 | Murunetion Input 3 2108, 1010 hoo ($5) 22,34 Rated Motor Current | 0.0% to 120% (A) of | 0.1A Varies with Gimenge ie Pe | [Value [Function [Description of Inverter ity Forward/Reverse ‘3-wire sequence (to be set in n37 only) "7 ry = rotation command ‘ Motor Protection Characteristic Selection (n33) This setting overrides the n36 setting. $1: RUN input (RUN when ON) Set the motor overload detection (OL1) for the electronic thermal $2: STOP input characteristics of the motor. (STOP when OFF) - $3: Forward/Reverse rotation [1 __| Protection characteristics for Inverter-dedicated motors Reverse/Stop Reverse rotation command (2-wire [2 [Reprocton series [3 __| Extemalfautt (NO) _| ON: External fault Note: When connecting multiple motors to one Inverter, set 2 [4 | Extemalfaut (NC) | OFF: External fautt (equivalent to n32 = 0.0). In addition, take overload pre- ON: Fault reset vention measures by mounting a thermal relay in each Note Disabled while RUN command is 4 . motor, for example. input [> [itisenseces | Signals to select frequency references 1 10 Motor Protective Time Setting (n34) relerence 1 8 Set the electronic thermal characteristics of the motor to be con- reterence 2 nected in 1-minute increments. Multi-step speed reference 3 Value Inching frequency _| ON: Inching frequency command command Motor Protective Time Amin Wn Acceleration/Decel | ON: Acceleration/deceleration time 2 Setting eration time selec- tion Note: 1. The default setting does not need any changes in normal op- Extemal base biock | ON: Output shut OFF (while motor coasting eration. command (NO) to a stop and “bb” flashing) 2. To set the parameter according to the characteristics of the Extemal base block | OFF: Output shut OFF (with motor free motor, confirm the thermal time constant with the motor command (NC) running and “bb” flashing) manufacturer and set the parameter with some margin. In [Gq | Searchcommand | ON: Speed search (Searching stars irom otherwords, setthe value alittle shorter than the thermal time (Searching starts | n09) constant. from maximum {re- 3. Todetect motor overloading more quickly, reduce the set val- quency) ue, provided thatit does not cause any application problems. 6 2)
0 Oe EE oa OE
| 15 Search command ON: Speed search (Searching starts from Rotating in ON: Rotating in reverse direction (Searching stans _| the frequency specified by n03.) reverse | from preset frequen- direction \\ oy) Speed search | ON: Speed search in progress,
16 Acceleration/Decel | ON: Acceleratior/Deceleration is on hold in progress
mand . a . — Gain and Bias Settings (n41 and n42) selection Operato A aati ; = erator) —- Set the input characteristics of analog frequency references in
19 Emergency stop The Inverter stops according to the setting in "
fault (NO) 104 for interruption mode selection when the n41 (for the frequency reference gain) and n42 (for the frequen- ! emergency stop input tums ON. cy reference bias). Note NO: Emer i “ith the con- . . : \\ Emergency stop tacteocea Set the frequency of maximum analog input (10 V or 20 mA) in | alarm (NO) NC: Emergency stop withthecon- | n41 as percentage based on the maximum frequency as 100%. . tact opened. A Fo Emeqeysap | Note FauteraunouputisONandreset | Setthe frequency of minimum analog input (0 V, 0 mA, or 4 mA) fault (NC) with RESET input, Alarm output is in n42 as percentage based on the maximum frequency as ON (no reset required). 100%. Emergency stop | Note “STP is displayed (lt with fault in- put ON) | Frequency Reference | 010 255 34 [| Upordowncom- | Up or down command (set in n39 only) Gain Bias $4: Up command $5: Down command Analog Frequency Reference Filter Time Setting Multi-function Output Selection (n40) (n43) Select the functions of multi-function output terminals. The digital filter with a first-order lag can be set for analog fre- quency references to be input. Value pee Sa _| Sie | ss | [| ‘Multi-tunetion Output (MA/ na ‘Analog Frequency Refer- | 0.00102.00 | 0.01s MB and MC) 17 ence Filter Time [vatue [Function [ _——iDescription | Analog Monitor Output Setting (n44) [>| Favtoupst [Orato [* [Sperone | ‘ON: Operation in progress Set a monitored item for analog monitor output. progress . Frequency | ON: Frequency detection detection Output frequency (Reference: 10 V at max. frequency) [3 [tating Toning | L___ cutout current (Reference: 10 V with rated output current) Frequency ‘ON: Output frequency & frequency detection i i . Getection 1 level (n58) Note: The values in parentheses are applicable when n45 is 9 3 Frequency ‘ON: Output frequency = frequency detection set to 1.00. detection 2 level (n58) . Oventorque ‘Output if any of the following parameter Analog Monitor Output Gain Setting (n45) being monitored | conditions is satistied. Wear tae + Overtorque detection function selection (n59) Set the output characteristics of analog monitor output. + Overtorque detection level (n60) Wrodomact | Note NO contact: ON with overtorque be- [| ‘Analog Monitor Output [oceezee oor [too | output) ing detected; NC contact: OFF with Gain overtorque being detected [10 | Alarmoutput__| ON: Alarm being detected (Nonfatal error) Base block in ON: Base block in progress progress [| unmade [Owrtacarmode = [13 | mvenercady [ON invererreadyiwoneate =| UV in progress | ON: Undervoltage being monitored (main circuit undervoltage UV or UV1 detected) e) "7
Carrier Frequency Selection (n46) Petey : Set the carrier frequency. 051 7 2.5 kHz (1x): 12 times as high as output Irequency (between 1.0 L i Reference and 2.5 kHz) n50 n4g frequency 2.5 kHz (24x): 24 times as high as output frequency (between 1.0 and 2.5 kH2) and 2.5 kH2) Used to impose DC on the induction motor for braking control. Note: Normally, the factory setting need not be changed. Unit of Momentary Power Interruption Compensation aoe (nt?) [re __[oCCowerewrent [owe fm [so | The parameter specifies the processing that will be performed ["s* _[fnsrmionoc corms Joowass fois [os | =) when @ momentary power interruption occurs. [ne —“[sunp0eConartine [owas [ors feo} ~ [oreee| Dates | Control Current: [z—“Trnetnenerstesanwnenpowereeaeea ga frequency Fault Retry (n48) Set the number of times the Inverter is to be automatically reset and restarted when the Inverter has an overvoltage fault, over- current fault, or ground fault. FMI Value (14) hee! Luu. Time _ Les [FautRety Foote To] ns4 953 Frequency Jump Function (n49 to n51) Stall Prevention during Deceleration (n55) Set the frequency jump function. Select a function to change the deceleration time of the motor automatically so that there will be no overvoltage imposed on the cS) © [soos Freaveny 0010400 ae [_vetwe | Description (see note i [| Siatprevenion aug deceleration ——S ae ee (ce [1___[Nestatiprevention during deceleration | (see note [ssi__[vonpwian [oowass [orre [oo] Qutrut Note: 1. Valueswill be setin 0.1-Hzincrements if the frequency is less than 100 Hz and 1 Hz-increments if the frequency is 100 Hz or greater. Deceleration time is 2. Make settings so that n49 2 n50. J oe 0 prevent J Time Deceleration time (Set value) 18 ))
Stall Prevention Level during Acceleration (n56) Overtorque Detection Function Selection (n59 to n61) Set the operation level of a function to stop the acceleration of the motor automatically for stall prevention during acceleration. Set n59 to enable or disable overtorque detection and select the Set this value in percentage based on the rated output current of processing to be performed after overtorque detection. the Inverter as 100%. [iate [weston 7 i —_—_— Inverter monitors overtorque only when speed is matched. Stall Prevention Level [3010200 | 1% 170 It continues operation (issues waming) even after overtorque is during Acceleration detected. inverter monitors overtorque only when speed is matched. Stall Prevention during Acceleration I discontinues operation (through protective function) when overtorque is detected. Output n56 Inverter always monitors overtorque during operation. current TS It continues operation (issues waming) even alter overtorque is detected. Inverter always monitors overtorque during operation. It discontinues operation (through protective function) when Time overtorque is detected. Output - p frequency Set the overtorque detection level in n60 and the overtorque , The output frequency is detection time in n61. fe) controlled so that the Inverter will not stall. Value Time 4 . 7 ‘Overtorque Detection 3010200 | 1% Stall Prevention Level during Operation (n57) Level . ; 761 Overtorque Detection 0.1 t0 10.0 Select the operation level of a function to reduce the output fre- Time quency of the Inverter automatically for stall prevention during Note; 1. in n60, set the overtorque detection level in percentage operation. Set this value in percentage based on the rated output based on the rated output current of the Inverter as 100%. See note. 69 ns7 Stall Prevention Level 30 to 200 1% Output f_ nn nye 4 on uring Operation current t Stall Prevention during Operation 5 ’ Time Output n57 current} Overtorque n61 detection [me tie (NO) co wil
9 Note: Overtorque detection will be canceled if the out-
\\ Time put current decreases from the detection level by Output approximately 5% of the Inverter rated current. frequency] ~The output frequency is controlled so that the Inverter will not stall. Time Frequency Detection Level (n58) Set the frequency to be detected. ‘ Note: When frequency detection 1 and 2 are to be output, n40 (multi-function output) must be set. la Frequency Detection 0.0 to 400 0.1 Hz Level ) 19
' Function of Each Parameter eee © UP/DOWN Command Frequency Memory Use n62 (UP/DOWN command frequency memory) to set Selection (n62) whether the frequency reference on hold is stored or not when an UP or DOWN commandis sent to the multi-function input ter- Select whether to store the frequency reference adjusted with minals. the UP/DOWN function. If n62 is set to 1, the output frequency held by the UP/DOWN a function for 5 s or more will be stored in the memory. This value ill be stored in memory even if power is interrupted. When a [eo ___[ retequerayontaldisrotewines iC emory even if power ; RESET command is input, operation will start with this value as the frequency. The UP/DOWN function uses UP and DOWN commands to | n62is set to 0, the frequency will be cleared. If parameter init- i change frequency references. ialization is performed (i.e.: n01 is set to 8 or 9), the stored fre- When using the UP/DOWN function, set multi-function input 4 quency will be initialized. ] (n39) to 34 (UP or DOWN command). The terminals for multi- Note: If the UP/DOWN function is used in remote mode, fre- function input 3 (S4) and multi-function input 4 (SS) will be set to quency references can only be given with UP/DOWN function in the following way: commands and inching commands. Multi-step speed Multiple-function input 3 (S4): UP command references will be invalid. Multiple-function input 4 (SS): DOWN command Operation of UP/DOWN Function € RUN command Time UP command ($4) 7 :
0 Time
an : i i , > Time won LO] fff) fy fo) fe detection - Time Status U: UP (acceleration) 0: DOWN (deceleration) H: Hold U1: Frequency acceleration restricted by upper limit. 4 D1: Frequency deceleration restricted by lower limit. 20 ©
Torque Compensation Gain (n63) Set the gain of the torque compensation function. Note: Normally, the factory setting need not be changed. pT ae [as [a Ee ee Gain { Slip Compensation Functions (n64 to n67) if In n64, set the rated slip value of the motor in use. . In n65, set the no-load current of the motor in use based on the fated motor current as 100%. In n66, set the gain of the slip compensation function. In n67, set the response speed of the slip compensation func- ‘ tion. a Le ee] seer [Prise [Sere
765 Motor No-load Cur- | 010 99 1% with the
rent capacity. Ga ela a Gain Pe Time Constant Note: If 0.0is set for n66, the slip compensation function will be disabled. j i d 21
= Specifications Sphase [Model Gay. AzsotTazooz[azcos [aco azors YT aa0a2 models, | Power supply fluctuation [Heatradiation gw) [130 Trg ean [ass fra ane [Weignt(ke) fos fos fos foe ss [Goolingmetod [ Naturatcooting | Coatingtan Single-phase [Modelscauv. [Aor] asooa [apoos [ascor [ aaots [=] models, | Power ' supply fluctuation [Heatradiation(w) [tat a0 ang [sie ene = [Weignt(ky fos fas fos ss ee [Cootingmethod | Naturalcooting Coalinga Output [Rated outputcapacity(xwy fos fos at ag ao ae specitcations [Ratedoutputeurent(a) foe fs faa ‘itso —if@o countermeasures [Carriertrequeney | 2510 10.0KHz(invectorconoy characteristics) Analog commands: +0.5% (25°C + 10°C) Analog commands: 0.06 Hz/60 Hz (equivalent to 1/1000) Protective € protection compensation (selection) be continued if power is restored within approximately 0.5 s. | Ambienttemperature | Operating:-1orcoso [Ambienttemperature | -20" tooo [arise | .000mmax [Insulation resistance | S MA min. (D0 not cary out any insulation resistance or withstand volage esis) | a oe = 2.0 mis? max. between 20 and 50 Hz 22 €
| Specifications i i = Terminal Block Position of Terminal Block Ground terminal Oaaa \\U] b CG) sora) Main circuit input an Aas terminals RR Sy] ' mococo ase emas a - Ps ~ ey @is an etree Control circuit Arrangement of Control Circuit Terminals Bowfesecessaees | errinas ——— 8 win creut { ee 2QOSOVOOOBO Main otnals ~ See / Ground ee PLEEEL OG sone (Si [sass] 54 [Ss1Sc]FS|PalFoIAMIAG] Note: This illustration shows the terminal block with the front cover removed. Main Circuit Terminals a Se Power supply input . | 3G3JV-A20:: 3-phase 200 to 230 V AC terminals 3G3UV-ABL:: Single-phase 200 to 240 V AC : TA3 Note Connect single-phase input to terminals R/L1 and S/L2. > Motor output terminals 3-phase power supply output for driving motors. : 3GQUV-A20), 3GQUV-ABD: 3-phase 200 to 230 V AC E wis Note The maximum output voltage corresponds to the input power supply i [was | voltage for the Inverter. r Connection terminals +1 Connect the DC reactor for suppressing harmonics to terminals +1 and +2. and +2: Pe P : . ot BG resctor connection When driving the Inverter with DC power, input the DC power to terminals +1 . P| terminals (Terminal +1 is a positive terminal.) . +1 and-: ; DC power supply input ; terminals ! © Ground terminal Be sure to ground the terminal under the following conditions. ' 3G3UV-A20:: Ground at a resistance of 100 9 or less. ! 3G3JV-ABL:: Ground at a resistance of 100 Q or less. i Note Be sure to connect the ground terminal directly to the motor frame ground. t §) 23
-opecitications | Control Circuit Terminals Cc [symbol [Name Function | Signal level Forward/Stop Forward at ON. Stops at OFF. | Photocoupler $2 Multi-function input 1 (S2) Set by parametern36(Re- | 8 TA at24V DC verse/Stop) $3 Multi-function input 2 (S3) Set by parameter n37 (Exter- nal fault: Normally open) $4 | Multi-function input 3 (S4) Set by parameter n38 (Fault reset) $5 Multi-function input 4 (S5) Set by parameter n39 (Multi- step reference 1) Commen for Si threugh 56 FS Frequency reference power DC power supply for frequen- | 20 mA at 12 VDC supply cy reference use FR Frequency reference input Input terminal for frequency O to 10 V DC (20 kQ) reference use . FC Frequency reference common | Common for frequency refer- . ence use MA | Multi-function contact output _ | Set by parameter n40 (during | Relay output € (Normally open) running) 1 Amax. at 30 VDC Multi-function contact output 1A max, at 250 V AC (Normally closed) MC Multi-function contact output | Common for MA and.MB use common : AM Analog monitor output Set by parameter n44 (Output | 2 mA max. at 0 to 10 VDC frequency) AC Analog monitor output com- Common for AM use mon Note: Functions in parentheses are default settings. . 24 €
| = Dimensions | 3G3JV-A2001 to 3G3JV-A2007 (0.1 to 0.75 kW) 3G3JV-A2015 to 3G3JV-A2022 (1.5 to 2.2 kW) ; 3-phase 200-V AC Input 3-phase 200-V AC Input 3G3JV-ABO001 to 3G3JV-AB004 (0.1 to 0.4 kW) 3G3JV-AB007 to 3G3JV-AB015 (0.75 to 1.5 kW) i" Single-phase 200-V AC Input Single-phase 200-V AC Input , Co) ay —; . Vain S-dia. holes a f if (OL: O- rs 4 0 5 ' Qj | 2] a q fl i oll s qin 4 | | Coy ie . qu} i — an iat em 1 — a ‘ * os ° s | tf | 9 6 | 56 8.5. o Les Rated voltage | _ Model Dimen- _ | Weight (kg) 3G3JV- sions (mm) Rated voltage Model Dimen- Weight (kg) | oo | 3G3JV- | sions (mm) Sphase 200V |A201s [129 | Approx. 1.3 pelt | ac S:phase 200V [Az001 170 [5 [Approx 05 | AC 200 VAC [azoo7 122 [S| Approx.0.9 | ' Single-phase 200 AC [asoo2 —|70_[3 | Approx.0.5 | [asoos [112 [5 | Approx. 0.9 | t J . 25
= Standard Connections DC reactor "3, (optional) aa 6—5—o Noise Fiter e420 SpA VAS, se (see note 1) oO aye ad | sastnctonconaaoune| a 6—0s1 T7646 no Marituncion inp 1 (52) om Mal Ac Martorcon wpa (83) [uc] ‘anion ena 3 (4) 73 7 common
5 O—o ss
Matrtancion input 6(85) ———
5 O—ds5
sowantennn |. A Frequency rolerence power supply + = FREQ & Frequency relerence input adjuster OFR S Frequency relerence common Orc Note: 1. Connect single-phase 200 V AC to terminals R/L1 and S/L2 of the 3G3JV-A8O. 2. The braking resistor cannot be connected because no braking transistor is incorporated. Input Method Selection Switches SW7 and SW8, both of which are located above the control circuit terminals, are used for input method selection. Remove the front cover and optional cover to use these switches. Sw? sWa oO sw7 swa + — Selector re | BESS SSS SS545] — contrat circuit terminal biock a | Sequence Input Method Selection By using SW7, NPN or PNP input can be selected as shown below. € 4 ) 4 @ ed” S on J" (Factory setting) o Kl 360 zavoc > 35 (e10%) 4 s6, . & Gxo " xo So i) Frequency Reference Input Method Selection By using SW8, frequency reference voltage or current input can be selected. Parameter settings are required together with the selection of the frequency reference input method. [——FreauanoyelrenesTapatmetnod | _____ SWaseting_ Frequeney eternce secon (parameter 03) |Votage input Wore) setae 26 ©
: Optio = Overview of Options a Power Supply 3G3JV-A2D: 3-phase 200 V AC 3G3JV-ABL: single-phase 200 V AC (connect to F/L1, S/L2) rom [Molded case circuit breaker lor leakage breaker ‘Supplied by the customer [TI ; Electromagnetic contactor | Supplied by the customer : Suppresses harmonic current generated from the a . Inverter and improves the power factor of the Recommended Option Inverter. Connect the AC Reactor to the Inverter if AC Reactor the capacity of the power supply is much larger than 3G31V-PUZBABD H that of the Inverter. Tr 1_] ia . . PeePrPPTSE TE Eliminates noise in the power ine connected to the Inverter and i Cotte suppresses noise leaking from the inverter to the power line, There are 3 ” ets Input Noise Filter types available: the EMC-conforming Input Noise Fitter, the Simple Input Br orl Noise Filter and the Input Noise Filter. Pgh = [:] . nS quae ! SEE: Simple Input Noise Fitter Zp” J 3G3ev-PLNFOO i Pai St2 113 Dedicated Option a Zn Sey Ul ] Dedicated Option DC Reactor 2 = xy S | DIN Track Mounting Bracket ' 3G3HV-PUVDABO) * ee 1 SG3IV-PEZZ081220) ‘Suppresses harmonic current generated from = > { {| Aradapter making it possible to easily mount the inverter to | the Inverter and improves the power factor of aaa ET A | DIN tracks. Bs one lbEBar, 7 i oa he a P a a eS Kl iE = BF ES ~ EN! | |g q] ene F om Bn -& =| ay ee 8 I: > a 9: Be lag : fet G q Fi ql ob. : : q Ef © 4a ‘ | q Separately Mounted Option [iN SEE = yy . ‘Scaling Meter SSE 7 ti Q paige re If Teme Option B an | <4 3G3IV-PFANO, | Connected to the analog monitor output of the inverter. U/T1 W/T2_ WITS Replacement for the existing cooling fan of The Scaling Meter displays the rpm or speed of the ‘the Inverter. 1 machine or line in actual units. | GEE TO Connect this Filter to the output side of the Inverter to H Output Noise Filter suppress the noise generated by the Inverter from being 3G3IV-PLFO transmitted to the output line. a \\ te. = | Eel | P | (im) 3-phase Inductive Motor 9 x
Fan Unit 3G3IV-PFANQ) Replacement for the existing cooling fan of the Inverter. Replace the cooling fan if it has reached the end of its service life or a warning of cooling fan failure : (FAN) is indicated. Separately Mounted Option Description Reference page Scaling Meter K3TJ-V110) Connected to the analog monitor output of the Inverter. The Scaling Meter displays the rpm or speed of the machine or line in actual units. Dedicated Options . Description Reference page OC Reactor 3G3HV-PUVDABO) Suppresses harmonic current generated from the . Inverter and improves the power factor of the Inverter. DIN Track Mounting 3G3IV-PEZZ081221) An adapter making it possible to easily mount the 30 Bracket Inverter to DIN tracks. Recommended Options Description Reference . page AC Reactor (Yaskawa 3G3IV-PUZBABQ Suppresses harmonic current generated from the 31 Electric) Inverter and improves the power factor of the Inverter. Connect the AC Reactor to the Inverter if the capacity of the power supply is much larger than that of the Inverter. EMC-conforming Input 3G3IV-PRSO, ANoise Filter on the input side meeting the EC 32 Noise Filter (Rasmi) Directive's EMC requirements. Simple Input Noise Filter 3G3EV-PLNFDO) Each of these Filters connected to the power input | 33 (Yaskawa Electric) side eliminates noise in the power line connected to C3) Input Noise Filter (Soshin | 3G3IV-PHFO) the Inverter and suppresses noise leaking from the y Output Noise Filter (Tokin) | 3G3IV-PLFO) Connect this Filter to the output side of the Inverter | 35. to suppress the noise generated by the Inverter from being transmitted to the output line. 28 e
| a Fan Unit 3G3IV-PFAND) | The Fan Unit is a replacement for the presently installed cooling fan of the Inverter. Replace the cooling fan if it has reached the end of | its service life or a warning of cooling fan failure (FAN) is indicated. Sprave 00 VAG [sesame nanan | [scaacowsransee —SCSCSC~*~r PPM : [Sngephese200VaG SCS nS Cv P ANDI = Scaling Meter | K3TJ-V1100 geet 7] The Scaling Meter is connected to the analog monitor lon “4 output of the Inverter so that the Scaling Meter will ae ig |@ display the rpm and speed values of the machines and SEE NW lines in actual units, Applicable Models OQ erry ener pene rer Ee a Note: The power supply circuit and input circuit are insulated from each other. Standard Specifications a [Bepyretesnoyae es § [overrange —*d ing Degree of protection Front panel: IP51 (see note) (conforming to IEC) Casing: IP20 i) Terminals: 1POO fa H Note: The front panel ensures IP5O, but the front panel with the K32-L493C Drip-proof Cover ensures IP51. Wiring Example External Dimensions (mm) Circuit breaker rm ; : ; ==) = = FETE ross, onee | poe | O] ; E [Meseo] — Weight: 200 g Display LED size 9 29
= DC Reactor | 3G3HV-PUZDABC <—s- The DC Reactor suppresses harmonic current generated | SoHE IRR tomithe Inverter and improves the power factor of the I On S| eet Inverter. The DC Reactor suppresses harmonic current | S ie more effectively than the AC Reactor. Furthermore, the DC ex Ie Reactor can be used in combination with the AC Reactor. eS Used with either 3-phase or single-phase 200-V AC ! (a iP Inverters. Applicable Models ” [ Wotage ass | Wax appicabi moor capaciy i) | Wedel | Ratdvatage() | Rated curent(A) [inductance (| 200 800 OC a Ce [stag asv-puzoasreasm | re Ee External Dimensions (mm) | External Dimensions 1 External Dimensions 2 oo EI Two mowing | em al : Cc] au oe * i \\ \\ 4 { Two, d1 mounting holes x 3 == rae = | 2. ! q it . . Four, d1 mounting S$ holes Moder sgaH a puzoaso [aw tw Too To To Te Ta Tae | [seaawe fafa as fre eo se fos foe Ligases fas feo ress eo ee ws 20 | = DIN Track Mounting Bracket 3G3IV-PEZZ08122() An adapter making it possible to easily mount the Inverter to DIN tracks. Applicable Models verter Tin Tracie Mounting Bracket | S-phase 200 V AC a Single-phase 200 V AC External Dimensions (mm) 3G3IV-PEZZ08122A 4. cet 3G3IV-PEZZ08122B ms cat | i | - a | are | f=) q (J at EE alz a2 al a W ed =) Gt =) s Ss U ———s)
4 Fou, Mabe al Four, M4 tab
30 @
, Options Or = AC Reactor 3G31IV-PUZBABL) (Yaskawa Electric) The AC Reactor suppresses harmonic current generated from the Inverter and improves the power factor of the Inverter. Connect the AC Reactor to the Inverter if the capacity of the power supply is much larger than that of the Inverter. Select the AC Reactor model from the following table according to the motor capacity. Note: The AC Reactor can be used with either 3-phase or single-phase 200-V AC Inverters. ——__ b a ie a « IPS POLS SZ = Sj .
9 Connection Example Applicable Range
MCCB AC Reactor AC Reactor required | for smooth operation RO) Mente v Motor 4000 + under present power so wrens sySORVE Vv . supply conditions 1 tT aitee ha w Power supply ' a capacity (kVA) 1 | 600 AC Reactor | [ j | notrequired | 4 . ° 60 400 Inverter capacity (kVA) Applicable Models and Dimensions 200-V Class Max. Model | Curr Loss Dimension (mm) applicab | 3G3IV- | ent (Ww) le motor | PUZBABO | (A) capacity F J L (kw) [orteom[aarown [2 [70 je [as [wo [m [ns [eo [so [0s [20 [we [vos [7 |wa_| 9 [oa [asasamn [2s [42 [is [2s [i20 [71 |v20 [40 [so [105 [20 [we [ios |7 [me | . [as romtawe ro [ax fas [3 [190 [oe _[r30 [30 [es [190 [22 [we [rs [7 [ma _| [22 __|vsao7imn [1s [ors [oo [3 [ra0 [es [130 [so [es [130 [22 [we [1s [7 [wa] External : M Terminal Dimensions a VIEL nameplate TH 4 a — eS = Mounting Dimensions 1 J« 4-J mounting bolt 9 31
= EMC-conforming Input Noise Filter 3G3JV-PRSC (Rasmi) The Input Noise Filter is connected between the power supply input terminals (R/L1, S/L2, T/L) of the Inverter and the power supply in order to meet the EC Directive’s EMC requirements. . » Connection Example MCCB Noise Filter Clamp core ood Lv.) Ora un OF s.ghase 200 AC 0 2 J | Single-phase 200 V AC Lo o6 i Applicable Models ete dE ceorming input Noize ner] a S-phase 200 VAC [aeawacoorrazcoarazooarazoo7 _[scsweaseny [wf [scavazowsraacze _—=iiscauwemsemeas eS @ ann peerereneren fees fe [acan-asooreasors __-acaveasiozy za External Dimensions . 3G3JV-PRS20105 | 3G3JV-PRS1010J Three, 181 ——" Fda, poles a sea ; als io) i . dg 1 fa an 2 eo 2 8 aa WE ca tg 3G3JV-PRS2020J 3G3JV-PRS1020J Sd holes us — +H {i io} Four, M4 holes i ~ ts] eet i 2 138 pees ca st +15 [aj es A. RG 3 a al x a a [4] q 32 @ ; ; —
eo eeeeeeeSSSSeeSSSSSsSSSSSssSSssese . = Simple Input Noise Filter - 3G3EV-PLNFD( (Yaskawa Electric) . PH . The Simple Input Noise Filter is connected to the power input side to z I y Be Sts eliminate the noise in the power line connected to the Inverter and - ee! ACs fete suppress noise leaking from the Inverter to the power line. . Applicable Models Simple Input Noise Filter 2 (A) 3-phase 200 V | 3G3JV-A2001/-A2002/-A2004/-A2007 PLNFO2Z103DY__- [10 (ss«C*d(CC( SSC«d Ac 3G3NV-A2015 PLNFO2issOY [1s__——idoe 3G3IV.A2022 PLNFD22030Y [20 ioe id @ Single-phase 200 | 3G3JV-AB001/-AB002 PUNFB2102bY [10 —Cé‘iCSTC (“$SCSSCSCs«d vac 3G3JV-A8008 PLNFB2152D¥ 3G3.V-A8007 PLNFB22000¥ 3GRWV-ABOTS ~[punreasoapy [30 ios —S—d Connection Example 3-phase input Single-phase input Noise filter [sysonive . Noise filter [sysonive MCCB IN - MCCB IN nS +R UP—9R Ub Rn—<]8 41 ab—$r up i )s vs +——{m) wil Lats =o) rset Wb ww . External Dimensions External Dimensions 1 (Single-phase Input) External Dimensions 2 (Three-phase Input) w w [TT eo af ‘ ufo} le & 3. ‘le Woda a : SGSEV- pow oT max TAT BT Mounting screw | [120 feos 0g ee axa 20mm | : a - [wo fg rose ra a4 20mm : [120 feo 50 tog ee axa 20mm | a [x20 feo 80 tog 68 max 20mm [iso fg es tg re x4 20mm J 3 H i
= Input Noise Filter (3-phase) 3G3IV-PHFL] (Soshin Electric) al The Input Noise Filter is connected to the power input side to a} _ : [| eliminate the noise in the power line connected to the cy Co FSee t i Inverter and suppress noise leaking from the Inverter to the a me eh hi, power line. ap . U Note: This Input Noise Filter is for three-phase use only and not available to single-phase input. Connection Example Noise filter |sysorive| Mca, : R-<]6 G1 4 —OR UD stmt sb —_<) Applicable Models . input Noise Fier Voltage class Max. applicable Inverter capacity Rated current (A) motor (kW) (kVA) 200-V dass fords ~*( SRV PPSOBAZ fog SCSI PHFSOTORZ External Dimensions ats Has [ ¥ a 1 | 2-P ground terminal 3-N input pin 3-N output pin CS pateatefTovtTetTriTetatTst«yT te Tuy nTe | 220 195 [170 70 10 | Length: me [Ma [10 | 8 as 34 e
: = Output Noise Filter B 3G3IV-PLFL (Tokin) Ea Ss) =. ie ol | per van The Output Noise Filter suppresses the generated noise of = Nesjpor yp omecrae as the Inverter from being transmitted to the output line. Con-_ Ineo )| bee ten eB nect the Output Noise Filter to the output side of the SS io) eee BS Inverter. Connection Example [sysonive] Noise filter MCCB n-<]5 J, up —t, ab ao HE =e Applicable Models . Voltage class Max. applicable motor Inverter capacity Rated current (A) capacity (kW) (kVA) BOO class for OS OGRIVPLFSTORA 0 [os ; [a2 a id External Dimensions c. M Se] | -#= | — t—— i—— ~— a Model Weight 3G3IV- | Terminal c F (kg) board i PLF310KA_ | TE-KS5.5 100 70 45 7x45dia. | 4.5 dia. ! M4 @ 5
’ Inverter Models : = Inverter Models Rated voltage Degree of protection Max. applicable motor capacity 3-phase 200 V AC Panel-mounting type (equivalent to 1P20) 3GQIV-A2001 0.2 kW 3G3JV-A2002 0.4 kW 3G3UV-A2004
0.75 KW 3G3JV-A2007
[iskw | Sauv-az0r5 2.2 kW 3GRUV-A2022 Single-phase 200 VAC _ | Panel-mounting type (equivalent to 1P20) 0.1 kW 3G3JV-ABO01 [oz | aGauV-aB002 [oakw | aGa0v-Aa008 0.75 kW 3G3JV-AB007 = Explanation of Product Code e@ Series name: Le Max. applicable motor capacity SGV Series [oo2 [7 o.2kw | [004 | o.4Kw__ | (ozz | 2.2kw | : Voltage class [2 T3-phase 200 V AC (200-V class) __] (“8 [Single-phase 200 V AC (200-V class) | Degree of protection (2 TPanetmountingtype 36 e