3G3HV_V01 OMRON | Alldatasheet
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Technical content
High-capacity, General-purpose Inverter Easy on Users, Easy on Equipment. The High-capacity, Easy-to-use Inverter.
Simple Operations that Anyone Can Use /C0072Special Indicators for Basic Parameter Constants Special indicators are provided for parameters, such as frequency settings and acceleration/de- celeration times, that are fundamental to opera- tion. For basic parameter constants, there is no need to check constant numbers one by one. Energy-saving Operation /C0072Energy-saving Control Mode When the load is reduced, the 3-phase induction motor maintains its rotation speed even as the voltage is lowered. Using this mode, the 3G3HV detects the current to the motor, estimates the load, and automatically lowers the voltage to the most efficient level. This reduces power consump- tion and achieves energy savings. Simple operations combined with full control capability. A complete lineup to choose from. Introducing an easier-to-use high-capacity inverter. The SYSDRIVE 3G3HV combines remarkable ease-of-use with advanced features and performance, such as energy-saving operation and PID control, that are expected of a high-capacity inverter. The lineup includes 12 models of the 200-V class ranging from 3.7 kW to 75 kW and 17 models of the 400-V class ranging from 3.7 kW to 300 kW. This is the inverter you’ve been looking for. Easy-setting indicators Digital Operator
- Fan Airflow ExamplePower Amount of energy saved by inverter control + energy-saving control Amount of energy saved by inverter control Electric power required for damper control Electric power required for invert- er control Electric power required for in- verter control + energy-saving control Airflow
/C0072PID Control PID (Proportional Integral Derivative) control makes it easy to operate motors at their highest ef- ficiency, and, for example, to realize the optimum air flow (current flow) control for devices such as fan pumps. /C0072Effective Harmonic Countermeasures for Power Supply Models of 18.5 kW and over (both 200 V and 400 V) have built-in DC reactors and can handle 12-phase inputs, providing effective countermea- sure guidelines for power supply harmonics. (When 12-phase control is used, a three-winding transformer is required for the power supply.) A Complete Lineup to Choose From /C007212 Models of the 200-V Class from 3.7 kW to 75 kW and 17 Models of the 400-V Class from 3.7 kW to 300 kW 200-V Class
- Enclosed wall-mounted type 3.7 kW, 5.5 kW, 7.5 kW, 11 kW, and 15 kW
- Open chassis type 18.5 kW, 22 kW, 30 kW, 37 kW, 45 kW, 55 kW, and 75 kW 400-V Class
- Enclosed wall-mounted type 3.7 kW, 5.5 kW, 7.5 kW, 11 kW, and 15 kW
- Open chassis type 18.5 kW, 22 kW, 30 kW, 37 kW, 45 kW, 55 kW, 75 kW, 110 kW, 160 kW, 185 kW, 220 kW, and 300 kW Caution This catalog contains only the information re- quired for selecting Inverter models, and not for actually operating them. Be sure to carefully read the relevant operation manuals before attempting to operate any of the equipment described here. Previous method: 6-phase control No AC reactor Current distortion factor: 88% 12-phase control With three-winding transformer Current distortion factor: 12% Power Supply Current Waveform Example Easy-to-use Inverter
The easy-to-use Inverter’s varied functions are useful in a wide range of applications. General Conveyers (Conveyer Control)
- Production efficiency is improved by finding the optimum conveyer speed control for particular objects.
- The soft start/stop function can be used as required to prevent damage to loads and to ensure safe operation and consistent quality. Pumps (Current Control)
- More efficient current control saves energy compared to controlling the amount of current by adjusting valves.
- Even during momentary power interruptions, using the speed search function continues operation without stopping the motor. This eliminates problems caused by motor stoppage. Fans (Air Flow Control)
- The optimum air flow control can be found according to the room temperature.
- No-contact air flow control improves safety and reliability compared to control based on the turning ON and OFF of contacts. And finding the optimum air flow also cuts down on energy usage. General Machinery (Machinery With Periodically Changing Loads)
- The energy-saving mode increases energy efficiency for machinery that has periodically changing loads.
Applications
Nomenclature and Functions Easy-setting indicators Displays basic parameter constants and monitor items. Mode Key Switches basic parameter constant and monitor items. Operation Mode Selection Key Switches between Digital Operator and external terminal operations. Operation Key Starts the Inverter. Operation Mode Indicators External Operation: Lit when operating references from exter- nal terminals are in effect. Analog Input: Lit when high-frequency references from external analog terminals are in effect. Data Display Displays frequency reference, output frequency, output current, constant set values, Inverter status, etc. Enter Key Enters set value when pressed after constant has been set. Increment Key Increments numbers when pressed during setting of constant number and constant data. Decrement Key Decrements numbers when pressed during setting of constant number and constant data. Stop/Reset Key Stops the Inverter. Also resets after alarm has been generated. DIGITAL OPERATOR PJVOP131J Fref Fout Iout kWout F/R Montr Accel Decel Vmtr V/F Fgain Fbias FLA PID kWsav PRGM LOCAL REMOTE RUN STOP RESET Switching Modes When the power supply is ON, an easy-setting indicator is lit. (When the power supply is turned OFF at something other than speed, frequency, current, or elec- trical power, this becomes a speed display.) Solid lines indicate switching during Inverter operating mode. Broken lines indicate switching during Inverter stopped mode Speed setting/Monitor Output frequency monitor Output current monitor Output power monitor Operator forward/ reverse selection Monitor selection Acceleration time setting Deceleration time setting Motor rated voltage setting V/f pattern selection Frequency reference gain Frequency reference bias Motor rated current setting PID control selection Energy-saving control selection Constant setting mode Power supply ON Fref Fout Iout kWout F/R Montr Accel Decel Vmtr V/F Fgain Fbias FLA PID kWsav PRGM Digital Operator
Parameter Constant Setting Setting Parameter Constants with Easy-setting Indicators Example: Changing Acceleration Time From 10 s to 50 s Acceleration time: 10 s Change data Data flashes during change Enter data Acceleration time: 50 s To another setting Accel Accel Accel Setting Parameter Constants by Specifying Parameter Constant Number Example: Setting Constant No. 025 (Frequency Reference 1) Display constant Change constant number Display constant no. 25 Return to constant number display To another constant setting Display contents of constant no. 25 Change data Data flashes during change Enter data Displayed for approx. 1 s PRGM PRGM PRGM PRGM PRGM PRGM PRGM Checking Monitor Contents Example: Checking Output Voltage (Monitor Item No. U-04) Display monitor Change monitor item Display U-04 Check monitor
contents
T o another monitor Montr Montr Montr Monitor Display Table Monitor No. Monitor item U-01 Frequency reference (same as easy-setting indicator’s “speed”) U-02 Output frequency (same as easy-setting indicator’s “frequency”) U-03 Output current (same as easy-setting indicator’s “current”) U-04 Output voltage (V) U-05 DC voltage (V) U-06 Output power (same as easy-setting indicator’s “power”) U-07 Input terminal status Monitor No. Monitor item U-08 Inverter status U-09 Error before power interruption (4 max.) U-10 PROM number (rightmost 4 digits) U-11 Total operating time (rightmost 4 digits) U-12 Total operating time (leftmost 2 digits) U-13 PID feedback value Digital Operator
No. Name Setting range Unit Factory setting n001 Parameter write inhibit selection/Parameter initial- ization 0 to 7 --- 1 n002 Operation mode selection0 to 3 --- 3 n003 Input voltage selection (see note 2) 150.0 to 255.0 V 200.0 n004 Interruption mode selec- tion 0 to 3 --- 0 n005 Forward/Reverse rotation selection 0, 1 --- 0 n006 Reverse rotation-inhibit selection 0, 1 --- 0 n007 Operation direction selec- tion key permit/inhibit 0,1 --- 1 n008 Stop Key function selec- tion 0, 1 --- 1 n009 Frequency reference type selection 0, 1 --- 1 n010 V/f pattern selection 0 to F --- 1 n011 Motor rated voltage (see note 2) 150.0 to 255.0 V 200.0 n012 Maximum frequency 50.0 to 400.0 Hz 60.0 n013 Maximum voltage (see note 2) 0.1 to 255.0 V 200.0 n014 Maximum voltage frequen- cy 0.2 to 400.0 Hz 60.0 n015 Intermediate output fre- quency 0.1 to 399.9 Hz 3.0 n016 Intermediate output fre- quency voltage (see note 2) 0.1 to 255.0 V 15.0 n017 Minimum output frequency0.1 to 10.0 Hz 1.5 n018 Minimum output frequency voltage (see note 2) 0.1 to 50.0 V 10.0 n019 Acceleration time 1 0.0 to 3 600 s 10.0 n020 Deceleration time 1 00 o 3,600 s 00 n021 Acceleration time 2 n022 Deceleration time 2 n023 S-shaped characteristic time selection 0 to 3 --- 1 n024 Frequency reference selection/Reference 0 to 3,999 --- 0 n025 Frequency reference 1 0 to i Set by 024 6.0 n026 Frequency reference 2 maxi- mum Se by n024. 0.0 n027 Frequency reference 3 mum frequen- 0.0 n028 Frequency reference 4 frequen cy 0.0 n029 Inching frequency refer- ence 0 to maxi- mum frequen- cy Set by n024. 6.0 n030 Output frequency upper limit 0 to 100 % 100 No. Name Setting range Unit Factory setting n031 Output frequency lower limit 0 to 100 % 0 n032 Motor rated current See note 3 A * n033 Electronic thermal protec- tive function selection 0 to 4 --- 1 n034 Selection of stop method for when radiation fin over heats 0 to 3 --- 3 n035 Multi-function input selec- tion 1 (S2) 0 to 24 --- 0 n036 Multi-function input selec- tion 2 (S3) 2 to 24 --- 2 n037 Multi-function input selec- tion 3 (S4) 2 to 24 --- 4 n038 Multi-function input selec- tion 4 (S5) 2 to 24 --- 9 n039 Multi-function input selec- tion 5 (S6) 2 to 25 --- 10 n040 Multi-function contact out- put 1 0 to 17 --- 0 n041 Multi-function contact out- put 2 0 to 17 --- 1 n042 Analog frequency refer- ence voltage/current selec- tion 0, 1 --- 0 n043 FI input level selection0, 1 --- 1 n044 Analog frequency refer- ence sample hold selec- tion 0, 1 --- 0 n045 Processing selection when analog frequency refer- ence is lost 0, 1 --- 0 n046 Frequency reference gain0 to 200 % 100 n047 Frequency reference bias–100 to 100 % 0 n048 Multi-function analog out- put selection 0 to 3 --- 0 n049 Multi-function analog out- put gain 0.01 to 2.00 Factors 1.00 n050 Carrier frequency 1 to 9 --- * n051 Selection of operation after restoration following a mo- mentary stop 0 to 2 --- 0 n052 Speed search operation level 0 to 200 % 150 n053 Minimum baseblock time 0.5 to 5.0 s * n054 V/f characteristics during speed search 0 to 100 % * n055 Stop compensation time 0.0 to 2.0 s * n056 Number of error retries 0 to 10 Times 0 Parameter Constants List
No. Name Setting range Unit Factory setting n057 Selection of error output during error retry 0, 1 --- 0 n058 Jump frequency 1 0.0 to 400 0 Hz 0.0 n059 Jump frequency 2 00 o 400.0 n060 Jump frequency range 0.0 to 25.5 Hz 1.0 n061 Total operating time func- tion selection 0, 1 --- 1 n062 Total operating time 1 (rightmost 4 digits) 0 to 9,999 h 0 n063 Total operating time 2 (left- most 2 digits) 0 to 27 x10,000 h n064 DC braking current 0 to 100 % 50 n065 Stopped DC braking time 0.0 to 10.0 s 0.5 n066 Startup DC braking time 0.0 to 10.0 s 0.0 n067 Automatic torque boost gain 0.0 to 3.0 Factors 1.0 n068 Motor winding resistance0.000 to 65.53 Ω * n069 Motor iron loss 0 to 9,999 W * n070 Decelerating stall preven- tion selection 0, 1 --- 1 n071 Accelerating stall preven- tion operation level 30 to 200 % 170 n072 Operating stall prevention operation level 30 to 200 % 160 n073 Frequency detection level0.0 to 400.0 Hz 0.0 n074 Overtorque detection func- tion selection 0 to 4 --- 0 n075 Overtorque detection level30 to 200 % 160 n076 Overtorque detection time0.1 to 10.0 s 0.1 n077 Timer function ON delay time 0.0 to 25.5 s 0.0 n078 Timer function OFF delay time 0.0 to 25.5 s 0.0 n079 Braking resistor overheat- ing protection selection 0, 1 --- 0 n080 Input open-phase detec- tion level 1 to 100 % 7 n081 Input open-phase detec- tion time 2 to 255 x 1.28 s 8 n082 Output open-phase detec- tion level 0 to 100 % 0 No. Name Setting range Unit Factory setting n083 Output open-phase detec- tion time 0.0 to 2.0 s 0.2 n084 PID control function selec- tion 0 to 2 --- 0 n085 Feedback adjustment gain0.00 to 10.00 Factors 1.00 n086 Proportional gain (P) 0.0 to 10.0 Factors 1.0 n087 Integral time (I) 0.0 to 100.0 s 10.0 n088 Differential time (D) 0.00 to 1.00 s 0.00 n089 PID offset adjustment –109 to 109 % 0 n090 Integral (I) upper limit0 to 109 % 100 n091 PID primary delay constant0.0 to 2.5 s 0.0 n092 Feedback loss detection selection 0, 1 --- 0 n093 Feedback loss detection level 0 to 100 % 0 n094 Feedback loss detection time 0.0 to 25.5 s 1.0 n095 Energy-saving control selection 0, 1 --- 0 n096 Energy-saving coefficient 0.00 to 655.0 --- * n097 Energy-saving voltage low- er limit for 60 Hz 0 to 120 % 50 n098 Energy-saving voltage low- er limit for 6 Hz 0 to 25 % 12 n099 Mean power time 1 to 200 x 25 ms 1 n100 Search operation voltage limit 0 to 100 % 0 n101 Search operation control voltage step when 100% 0.0 to 10.0 % 0.5 n102 Search operation control voltage step when 5% 0.0 to 10.0 % 0.2 Note: 1. Factory settings for items marked by asterisks vary accord- ing to the Inverter model. 2. With 400-V Inverters, the setting range upper limits and fac- tory settings are double those shown in the table. 3. The motor’s rated voltage setting range is 10% to 200% of the Inverter’s rated current. Parameter Constants List
Speed n025 to n028 Frequency references 1 to 4 Frequency references can be set internally. Item Setting contents Setting range 0 to maximum frequency Setting unit Set by n024. (The factory setting is for units of 0.1 Hz.) Factory settingsn025 only: 6.0 Hz; others: 0.0 Hz Note: Multistep operation of up to four steps can be specified by set- ting the multistep speed references to multifunction input. Frequency reference Forward op- eration input Multistep speed reference 1 Multistep speed reference 2 Frequency reference 1 Frequency reference 2 Frequency reference 3 Frequency reference 4 Time ON ONON ON Direction Operator Forward/Reverse Selection This setting switches the direction of operation when the Digital Operator is being used. Set value Setting contents f%r Forward operation reU Reverse operation Acceleration n019, n021 Acceleration Times 1, 2 Deceleration n020, n022 Deceleration Times 1, 2 Acceleration and deceleration times can be set within a wide range, from 0.0 to 3,600 s. Acceleration Time: Can be set from 0% to 100% of the maximum fre- quency. Deceleration Time: Can be set from 100% to 0% of the maximum fre- quency. Item Setting contents Setting range 0 to 3,600 s Setting unit 0.01 s (less than 1,000 s); 1 s (1,000 s or more) Factory setting10.0 s Note: Acceleration time 2 and deceleration time 2 can be used by set- ting the multi-step speed references to multifunction input. Maximum fre- quency (n012) Frequency reference Forward opera- tion input Acceleration/ Deceleration time change Accelera- tion time 1 (n019) Accelera- tion time 1 (n020) Accelera- tion time 2 (n021) Accelera- tion time 2 (n021) Time ON ON ON Motor Voltage n011 Motor Rated Voltage This parameter sets the rated voltage for the motor. Item Setting contents Setting range 150.0 to 255.0 V (155.0 to 515.0 V) Setting unit 0.1 V Factory settings200.0 V (400.0 V) Note: Values in parentheses indicate 400-V function settings. V/F n010 V/f Pattern Selection Any of 15 types of V/f patterns can be selected. Item Setting contents Setting range 0 to F Factory settings1 Note: 1. The user can select from among 15 preset V/f patterns (0 to E). 2. When “F” is set, any V/f pattern can be specified. At that time, parameters n012 through n018 will be valid. 3. The parameters related to V/f pattern settings are shown in the following table. Parameter No. Contents n012 Maximum frequency (FMAX) n013 Maximum voltage (VMAX) n014 Maximum voltage frequency (FA) n015 Intermediate output frequency (FB) n016 Intermediate output frequency voltage (VC) n017 Minimum output frequency (FMIN) n018 Minimum output frequency voltage (VMIN) Output voltage Frequency reference VMAX (n013) VC (n016) VMIN (n018) FMIN (n017) FB (n015) FA (n014) FMAX (n012) Parameter Constants
Gain n046 Frequency reference gain Bias n047 Frequency reference bias Any frequency reference relationship can be set for for analog inputs (0 to 10 V or 4 to 20 mA). Parameter Contents n046 Frequency reference gain Sets the frequency for when the frequency reference voltage (current) is 10 V (20 mA), with the maximum frequency (n012) taken as 100%. Setting range: 0 to 200% (unit: 1%) Factory setting:100% n047 Frequency reference bias Sets the frequency for when the frequency reference voltage (current) is 0 V (4 mA), with the maximum frequency (n012) taken as 100%. Setting range: –100 to 100% (unit: 1%) Factory setting:0% Analog input Frequency reference Maximum frequency x Gain/100 Maximum frequency x Bias/100 0 V (4 mA) 10 V (20 mA) Note: The values in parentheses are for current input. Motor Current n032 Motor Rated Current This parameter sets the motor’s rated current. The value set here will be the standard current for electronic thermal motor protection. Item Setting contents Setting range 10% to 200% of Inverter’s rated current Setting unit 0.1 A Factory settingsVaries depending on Inverter model. PID n084 PID Control Function Selection Set value Setting contents 0 Without PID control. 1 With PID control. (D control for deviation.) 2 With PID control. (D control for feedback value.) Note: The factory setting is “0” (without PID control). Functions
- With the 3G3HV, PID control allows for easy follow-up control.
- Follow-up control is a control method whereby sensing values from sensors are sent to the Inverter as feedback, and the Inverter’s frequency is changed to match standard values from references.
- Sensing values from sensors can be used for various types of control, depending on their contents. Valid Applications
- Speed Control: Using speed sensors such as tachogenerators, speeds can be uniformly controlled regardless of the size of the load, and they can be synchronized with the speeds of other motors.
- Pressure Control: Pressure can be uniformly controlled by means of feedback from pressure sensors.
- Current Control: Precise current control is made possible by current sensing.
- Temperature Control: Temperatures can be controlled by fans that are turned based on feedback from temperature sensors. Related Parameters Parameter No. Contents n085 Sensing adjustment gain n086 Proportional gain (P) n087 Integral time (I) n088 Differential time (D) n089 PID offset adjustment n090 Integral (I) upper limit n091 PID primary delay constant n092 Feedback loss detection selection n093 Feedback loss detection level n094 Feedback loss detection time Parameter Constants
Energy Saving n095 Energy-saving Control Selection Set value Setting contents 0 Energy-saving control disabled. 1 Energy-saving control enabled. Note: The factory setting is “0” (energy-saving control disabled). Functions
- The power ratio of inductive motors changes depending on the rotation speed and the load. In general, the rated load and rated rotation speed are set for a high power ratio. If the rotation speed is low or the load is reduced, the power ratio drops and the motor becomes loses efficiency. Lowering the power supply voltage to match the load and rotation speed allows the motor to be operated at the maximum power ratio and increased efficiency.
- With the 3G3HV, energy-saving operation can be implement- ed automatically by simply selecting the energy-saving mode.
- Existing motors can be operated with the factory-set energy-saving coefficients even if the motor constants are not known (except for special motors such as underwater or spindle motors). Valid Applications
- Air flow control for fans, blocks, etc.
- Flow control for pumps.
- Machinery with periodic load changes:
- Construction equipment
- Woodworking machinery
- Food processing equipment, etc. Related Parameters Parameter No.
n096 Energy-saving coefficient K2 n097 Energy-saving voltage lower limit for 60-Hz output n098 Energy-saving voltage lower limit for 6-Hz output n099 Electrical power average time n100 Search operation voltage limit n101 Search operation control voltage step when 100% n102 Search operation control voltage step when 5% Search Operation
- The search operation changes the output voltage in small increments and seeks the point at which electrical power is at a minimum.
- For example, if the motor constant is changed during operation due to a temperature change, the optimum running conditions will change, resulting in a deviation from the optimum operation. The search operation prevents this from occurring.
- The search operation can be used to provide the optimum voltage even if the motor constant is different from the factory setting.
Maximum applicable motor capacity (kW) 3.7 5.5 7.5 11 15 18.5 22 30 37 45 55 75 Output characteris- tics Rated output capacity (kVA) 6.7 9.5 13 19 24 30 37 50 61 70 85 110 characteris tics Rated output current (A) 17.5 25 33 49 64 80 96 130 160 183 224 300 Maximum output voltage (V) 3-phase, 200 to 230 VAC (Corresponds to input voltage.) Maximum output frequency (Hz) 400 Hz (Set by parameter constant.) Power sup- ply charac- teristics Rated voltage (V) Rated frequency (Hz) 3-phase, 200 to 230 VAC, 50/60 Hz ply charac teristics Allowable voltage fluctua- tion –15% to 10% Allowable frequency fluc- tuation ±5% W eight (kg) Approx. 4.5 Approx. 5.5 Approx. 6.0 135 Control Characteristics Model 3G3HV- A2037 A2055 A2075 A2110 A2150 B2185 B2220 B2300 B2370 B2450 B2550 B2750 Power supply harmonic countermeasures DC reactor connection possible. DC reactor built in. 12-pulse rectification input Control method Sine wave PWM (high-carrier frequency control) Carrier frequency 2.5 to 15 kHz (Step setting) 2.5 to 10 kHz (Step setting) Frequency control range 0.1 to 400 Hz Frequency precision (temperature characteristics) Digital commands: ±0.01% (–10° to 40°C) Analog commands: ±0.1% (25°±10°C) Frequency setting resolution Digital commands: 0.1 Hz Analog commands: 0.6 Hz/60 Hz (1/1,000 or equivalent) Output frequency resolution 0.01 Hz Overload capacity 150% of rated current for one minute 120% of rated current for one minute Frequency setting signal 0- to 10-VDC (20 kΩ ) voltage input or 4- to 20-mA (250 Ω ) current input Acceleration/Deceleration time 0.0 to 3,600 s (acceleration and deceleration set separately) Braking torque Approx. 20% (Up to 125% possible with external braking resistor.) Approx. 20% (External braking resistor cannot be attached.) Voltage/frequency characteristics Select from 15 types of fixed V/f patterns or set any V/f pattern. Protective Functions Model 3G3HV- A2037 A2055 A2075 A2110 A2150 B2185 B2220 B2300 B2370 B2450 B2550 B2750 Motor protection Protection by electronic thermal. Instantaneous overcurrent protection Stops at approx. 200% of rated output current. Stops at approx. 180% of rated output current. Overload protection Stops in one minute at approx. 150% of rated output current.Stops in one minute at approx. 120% of rated output current. Overvoltage protection Stops when main-circuit DC voltage is approx. 410 V. Undervoltage protection Stops when main-circuit DC voltage is approx. 190 V. Momentary power interruption compensa- tion (selection) Stops at 15 ms or more. By means of an operating mode selection, operation can be continued if recovery occurs within 2 seconds. Cooling fin overheating Protection by thermistor. Grounding protection Protection by electronic circuits. Charge indicator (internal LED) Lit when rated DC voltage is approx. 50 V or more. Environment Model 3G3HV- A2037 A2055 A2075 A2110 A2150 B2185 B2220 B2300 B2370 B2450 B2550 B2750 Location Indoors (no corrosive gas, oil spray, metallic dust, etc.) Ambient operating temperature –10° to 45°C (Enclosed wall-mounted type: –10° to 40°C) –10° to 45°C (Open-chassis type) Ambient operating humidity 90% RH (with no condensation) Storage temperature –20° to 60°C Altitude 1,000 m max. Insulation resistance 5 MΩ min. (Do not carry out the insulation resistance test or withstand voltage test.) Vibration withstand Vibration frequency less than 20 Hz, 9.8 m/s2 max.; 20 to 50 Hz, 2 m/s2 max Protective structure Both enclosed wall-mounted type and open-chassis type: IP10 Open-chassis type: IP00 Specifications
Function for Setting an Input Constant 400-V Inverters General Specifications Model 3G3HV- A4037 A4055 A4075 A4110 A4150 B4185 B4220 B4300 B4370 B4450 B4550 B4750 B411K B416K B418K B422K B430K Maximum applicable motor capacity (kW) 3.7 5.5 7.5 11 15 18.5 22 30 37 45 55 75 110 160 185 220 300 Output character- istics Rated output capac- ity (kVA) 6.1 11 14 21 26 31 40 50 61 73 98 130 170 230 260 340 460 character istics Rated output current (A) 8 14 18 27 34 41 52 65 80 96 128 165 224 302 340 450 605 Maximum output volt- age (V) 3-phase, 380 to 460 VAC (Corresponds to input voltage.) Maximum output fre- quency (Hz) 400 Hz (Set by parameter constant.) Power sup- ply charac- teristics Rated voltage (V) Rated frequency (Hz) 3-phase, 380 to 460 VAC, 50/60 Hz ply charac teristics Allowable voltage fluctuation –15 to 10% Allowable frequency fluctuation ±5% W eight (kg) Approx. 4.5 Approx. 6.0 Approx. 6.0 Approx. Approx. Approx. Approx. Approx. Approx. Approx. Approx. Approx. Approx. 135 Approx. 145 Approx. 360 Approx. 360 Approx. 420 Control Characteristics Model 3G3HV- A4037 A4055 A4075 A4110 A4150 B4185 B4220 B4300 B4370 B4450 B4550 B4750 B411K B416K B418K B422K B430K Power supply harmonic counter- measures DC reactor connection possible. DC reactor built-in 12-pulse rectification input No item Control method Sine wave PWM (high-carrier frequency control) Carrier frequency 2.5 to 15 kHz (Step setting) 2.5 to 10 kHz (Step setting) 2.5 kHz max. Frequency control range 0.1 to 400 Hz Frequency precision (temperature characteristics) Digital commands: ±0.01% (–10° to 40°C) Analog commands: ±0.1% (25°C ±10°C) Frequency setting resolution Digital commands: 0.1 Hz Analog commands: 0.6 Hz/60 Hz (1/1,000 or equivalent) Output frequency resolution 0.01 Hz Overload capacity 150% of rated current for one minute 120% of rated current for one minute Frequency setting signal 0- to 10-VDC (20 kΩ ) voltage input or 4- to 20-mA (250 Ω ) current input Acceleration/Deceleration time 0.0 to 3,600 s (acceleration and deceleration set separately) Braking torque Approx. 20% (Up to 125% possible with external braking resistor.) Approx. 20% (External braking resistor cannot be attached.) Approx. 20% (Up to 100% possible with external brak- ing resistor.) Voltage/frequency characteristics Select from 15 types of fixed V/f patterns or set any V/f pattern. Protective Functions Model 3G3HV- A4037 A4055 A4075 A4110 A4150 B4185 B4220 B4300 B4370 B4450 B4550 B4750 B411K B416K B418K B422K B430K Motor protection Protection by electronic thermal. Instantaneous overcurrent protec- tion Stops at approx. 200% of rated output current.Stops at approx. 180% of rated output current. Overload protection Stops in one minute at approx. 150% of rated out- put current. Stops in one minute at approx. 120% of rated output current. Overvoltage protection Stops when main-circuit DC voltage is approx. 820 V. Undervoltage protection Stops when main-circuit DC voltage is approx. 380 V. Momentary power interruption com- pensation (selection) Stops at 15 ms or more. By means of an operating mode selection, operation can be continued if recovery occurs within 2 seconds. Cooling fin overheating Protection by thermistor. Grounding protection Protection by electronic circuits. Charge indicator (internal LED) Lit when rated DC voltage is approx. 50 V or more. Environment Model 3G3HV- A4037 A4055 A4075 A4110 A4150 B4185 B4220 B4300 B4370 B4450 B4550 B4750 B411K B416K B418K B422K B430K Location Indoors (no corrosive gas, oil spray, metallic dust, etc.) Ambient operating temperature –10° to 45°C (Enclosed wall-mounted type: –10° to 40°C) –10° to 45°C (Open-chassis type) Ambient operating humidity 90% RH (with no condensation) Storage temperature –20° to 60°C Altitude 1,000 m max. Insulation resistance 5 MΩ min. (Do not carry out the insulation resistance test or withstand voltage test.) Vibration withstand Vibration frequency less than 20 Hz, 9.8 m/s2 max.; 20 to 50 Hz, 2 m/s2 max Protective structure Both enclosed wall-mounted type and open-chas- sis type: IP10 Open-chassis type: IP00
Terminal Block Configuration Example: 200 V, 3.7 kW Power supply inputs Braking Resistor Unit Motor output Control circuit terminalsMain circuit terminals S1 S2 S3 SC SC S4 S5 S6 FV FI FS FC AM AC M1 M2 MAMB MC E(G) R S T L3 – + 1 + 2 B1 B2 U V W/T3 CHARGE Main Circuit Terminals Voltage class 200-V Class 400-V Class Model 3G3HV - 2037-E to -A2075-E A2110-E to -A2150-E B2185-E to -B2750-E A4037-E to -A4150-E B4185-E to -B416K-E B418K-E to -B430K-E Symbol R, S, T Power supply input terminals, 3-phase, 200 to 230 VAC, 50/60 Hz Power supply input terminals, 3-phase, 380 to 460 VAC, 50/60 Hz R1, S1, T1 --- (See note) --- (See note) --- U, V, W Motor output terminals, 3-phase, 200 to 230 VAC (correspond to input voltage)Motor output terminals, 3-phase, 380 to 460 VAC (corresponds to input voltage) B1 Braking Resistor Unit ti t i l --- Braking Resistor Unit ti t i l --- Braking Resistor Unit connection terminals Braking Resistor Unit connection terminals +1 DC reactor connection terminal --- DC reactor connection terminal --- DC reactor connection terminal terminal --- +3 --- Braking Unit connection ti l --- --- Braking Unit connection ti l– Braking Unit connection terminals Braking Unit connection terminals Ground terminal (Ground to 100 Ω or less.) Ground terminal (Ground to 10 Ω or less.) Note: Connect the R1, S1, and T1 terminals to the R, S, and T terminals respectively. (They are short-circuited with short bars when shipped from the factory.) Control Circuit Terminal Common to Both 200-V and 400-V Classes Symbol Name Function Signal level Input S1 Forward/Stop Stops at OFF. Photocoupler
24 VDC 8 A
S2 Multi-function input 1 (S2) Set by constant n035 (reverse/stop). Photocou ler
24 VDC, 8 mA
S3 Multi-function input 2 (S3) Set by constant n036 (external error a). S4 Multi-function input 3 (S4) Set by constant n037 (error reset). S5 Multi-function input 4 (S5) Set by constant n038 (multistep speed reference 1). S6 Multi-function input 5 (S6) Set by constant n039 (multistep speed reference 2). SC Sequence input common Common for S1 to S6. FS Frequency reference power supply DC power supply for frequency reference. 15 VDC, 20 mA FV Frequency reference input (voltage) Voltage input terminal for frequency reference. 0 to 10 VDC (20 kΩ ) FI Frequency reference input (current) Current input terminal for frequency reference. 4 to 20 mA (250 Ω ) FC Frequency reference input common Common for FV, F1. --- G Shielded wire connection ground Shielded terminal for sequence and frequency reference inputs. --- Output MA Multi-function contact output 1 (normally open) Set by constant n040 (error) Bit output
30 VDC 1 A
MB Multi-function contact output 1 (normally closed) Set by constant n040 (error) Bit out ut 30 VDC, 1 A max. 250 VAC, 1 A max. MC Multi-function contact output 1 common Common for MA, MB 250 VAC , 1 A max . M1 Multi-function contact output 2 (normally open) Set by constant n041 (operating) M2 Multi-function contact output 2 common Common for M1 AM Multi-function analog output Set by constant n048 (output frequency) 0 to 10 VDC, 2 mA AC Multi-function analog output common Common for AM 0 to 10 VDC, 2 mA Terminal Block
3G3HV-A2 /C0106/C0106/C0106/A4/C0106/C0106/C0106-E 3G3HV-B2 /C0106/C0106/C0106/B4/C0106/C0106/C0106-E (160 kW max. for B4 models) W 4-d H D W 4-d H D 3G3HV-B4 /C0106/C0106/C0106-E (185 kW min.) 6-d W H H1H2 D Model 3G3HV- Maxi- mum applied motor capac Dimensions (mm) Mount- ing screws Weight (kg) capac- ity (kW) W H D W1 H1 H2 d A2037-E 3.7 140 280 180 126 266 7.0 M5 Approx. 4.5 A2055-E 5.5 200 300 205 186 285 8.0 M6 Approx. A2075-E 7.5 200 300 205 186 285 8.0 M6 A rox. A2110-E 11 250 380 225 236 365 7.5 M6 Approx. A2150-E 15 250 400 225 236 365 27.5 M6 A rox. B2185-E 18.5 325 450 285 275 435 7.5 M6 Approx. B2220-E 22 325 450 285 275 435 7.5 M6 A rox. B2300-E 30 425 675 350 320 650 12.5 M10 Approx. B2370-E 37 Approx. B2450-E 45 475 800 350 370 775 12.5 M10 Approx. B2550-E 55 475 800 350 370 775 12.5 M10 A rox. B2750-E 75 575 925 400 445 895 15 M12 Approx. 135 A4037-E 3.7 140 280 180 126 266 7.0 M5 Approx. 4.5 A4055-E 5.5 200 300 205 186 285 8.0 M6 Approx. A4075-E 7.5 200 300 205 186 285 8.0 M6 A rox. A4110-E 11 250 380 225 236 365 7.5 M6 Approx. A4150-E 15 250 380 225 236 365 7.5 M6 A rox. B4185-E 18.5 325 450 285 275 435 7.5 M6 Approx. B4220-E 22 325 450 285 275 435 7.5 M6 A rox. B4300-E 30 325 625 285 275 610 7.5 M6 Approx. B4370-E 37 325 625 285 275 610 7.5 M6 A rox. B4450-E 45 B4550-E 55 455 820 350 350 795 12.5 M10 Approx. B4750-E 75 Approx. B411K-E 110 575 925 375 445 895 15 M12 Approx. 135 B416K-E 160 400 Approx. 145 B418K-E 185 950 1450 435 750 1400 25 M12 Approx. 360 B422K-E 220 950 1450 435 750 1400 25 M12 A rox. 360 B430K-E 300 960 1600 455 750 1550 25 M12 Approx. 420 Dimensions
For Inverter Models of 200- to 400-V Class with 3.7- to 15-kW Output Three-phase, 200 (400) VAC DC reactor (External connection possible) Forward rotation/Stop Multi-function input 1 Multi-function input 2 Multi-function input 4 Multi-function input 5 Multi-function input 3 Common Shielded wire Variable resistor for frequency reference (voltage input) Frequency reference (current input) Note: These terminals of the 3G3HV-A2110 and 3G3HV-A2150 connect to the Braking Unit and Braking Resistor Unit. Braking Resistor Unit (see note) (optional) Three-phase induction motor Multi-function contact output 1 (Normally open contact) (Normally closed contact) Common Common Multi-function contact output 2 Common Multi-function analog output Voltmeter L1 (R) L2 (S) L3 (T) T1 (U) T2 (V) T3 (W) Wiring
For Inverter Models of 200- to 400-V Class with 18.5- to 300-kW Output Three-phase, 200 (400) VAC Forward rotation/Stop Multi-function input 1 Multi-function input 2 Multi-function input 4 Multi-function input 5 Multi-function input 3 Common Shielded wire Variable resistor for frequency reference (voltage input) Frequency reference (current input) Note 1. The Braking Unit or Braking Resistor Unit cannot be connected to the Inverter (18.5 kW to 160 kW). However, 185-kW to 300-kW models can be connected. Note 2. Make sure that terminals R and R1, S and S1, and T and T1 are short-circuited. These terminals are short-circuited with short bars before shipping. Be sure to re- move the short bars, however, when using 12-pulse rectification. Note 3. Terminals L11 (R1), L21 (S1), and L31 (T1) are not available on the 185- to 300-kW Inverters. Note 4. The 185- to 300-kW Inverters do not have built-in DC reactors, nor can DC reactors be externally connected. Three-phase induction motor Multi-function contact output 1 (Normally open contact) (Normally closed contact) Common Common Multi-function contact output 2 Common Multi-function analog output Voltmeter L1 (R) L2 (S) L3 (T) T1 (U) T2 (V) T3 (W) L11 (R1) L21 (S1) L31 (T1) See note 3
Voltage class Protective structure Maximum applied motor capacity Model 200-V class Enclosed wall-mounted 3.7 kW 3G3HV-A2037-E type 5.5 kW 3G3HV-A2055-E 7.5 kW 3G3HV-A2075-E 11 kW 3G3HV-A2110-E 15 kW 3G3HV-A2150-E Open-chassis type 18.5 kW 3G3HV-B2185-Ey 22 kW 3G3HV-B2220-E 30 kW 3G3HV-B2300-E 37 kW 3G3HV-B2370-E 45 kW 3G3HV-B2450-E 55 kW 3G3HV-B2550-E 75 kW 3G3HV-B2750-E 400-V class Enclosed wall-mounted 3.7 kW 3G3HV-A4037-E type 5.5 kW 3G3HV-A4055-E 7.5 kW 3G3HV-A4075-E 11 kW 3G3HV-A4110-E 15 kW 3G3HV-A4150-E Open-chassis type 18.5 kW 3G3HV-B4185-Ey 22 kW 3G3HV-B4220-E 30 kW 3G3HV-B4300-E 37 kW 3G3HV-B4370-E 45 kW 3G3HV-B4450-E 55 kW 3G3HV-B4550-E 75 kW 3G3HV-B4750-E 110 kW 3G3HV-B411K-E 160 kW 3G3HV-B416K-E 185 kW 3G3HV-B418K-E 220 kW 3G3HV-B422K-E 300 kW 3G3HV-B430K-E Standard Models
Maximum applied motor capacity Voltage class Protective structure Series name (3G3HV Series) Maximum Applied Motor Capacity 037 3.7 kW 055 5.5 kW 075 7.5 kW 110 11 kW 150 15 kW 185 18.5 kW 220 22 kW 300 30 kW 370 37 kW 450 45 kW 550 55 kW 750 75 kW 11K 110 kW 16K 160 kW 18K 185 kW 22K 220 kW 30K 300 kW Voltage Class 2 3-phase, 200 VAC (200-V class) 4 3-phase, 400 VAC (400-V class) Protective Structure A Enclosed wall-mounted type B Open-chassis type
Cat. No. I900-E1-3 Note: Specifications subject to change without notice. Printed in Japan 0500-ntlpM Authorized Distributor: OMRON Corporation FA Systems Division H.Q.
66 Matsumoto
Mishima-city, Shizuoka 411-8511 Japan T Regional Headquarters OMRON EUROPE B.V. W egalaan 67-69, NL-2132 JD Hoofddorp The Netherlands OMRON ELECTRONICS, INC.
1 East Commerce Drive, Schaumburg, IL 60173
U.S.A. T OMRON ASIA PACIFIC PTE. LTD.
83 Clemenceau Avenue,
#11-01, UE Square, Singapore 239920