| Znamka | RW Energy |
| Model št | Serija HV610 posebnih frekvenčnih pretvornikov za dviganje |
| Nominativna frekvenca | 50/60Hz |
| Serija | HV |
Pregled
Za boljše izpolnjevanje potreb uporabnikov v industriji dviganja je produkt zasnovan s perspektive uporabe pri dviganju, integrira funkcije za odpravljanje nihajne gibanja, zaščito pred odkrivanjem trosa, zaščito klepa, nadzor kočnice, omejitev zmanjševanja, hitrost ob bremenu, makro parametre in druge posebne funkcije, kar popolnoma zagotavlja zanesljivo, učinkovito, varno in stabilno delovanje opreme za dviganje.
Lastnosti zmogljivosti
Posebne lastnosti
Kontrola odpravljanja nihajnega gibanja, utiševanje nihanja širilnika in učinkovita operacija
Prilagajanje hitrosti teka v realnem času glede na spremembe bremena z bremenom • Zaščita klepa, preverjanje kočnice klepa, nadzor izhoda motorja v visokem stanju
Enostavno postavljanje z omejitvijo zmanjševanja in sodelovanjem stop limita
Zaščita pred odkrivanjem trosa, hodenje navzgor z fiksno hitrostjo, počasno pospeševanje in gladko povečevanje pri zaznavanju težkega bremena
Ustrezen mehanizem dviganja lahko izberete glede na makro nastavitev parametrov dviganja
Preklop več motorjev, podprto je do 4 naborov parametrov motorja notranje.
Visoka zanesljivost
Neodvisna zračna kanalska zasnovana celotna naprava za učinkovito preprečevanje pridružitve prašnih nečistot • Učinkovita in natančna termalna simulacijska programska oprema
Napredne termalne testne in verifikacijske tehnologije in naprave za učinkovito preverjanje teoretičnih rezultatov termalne zasnove
Strog postopek preverjanja polnega in pretirane naložbe
Izdelki so starili pri visokih temperaturah in naložbah, učinkovito zagotavljajo kakovost proizvodnje
Ojačan dizajn zaščite vezanih plat
Visoka prilagodljivost
Širok obseg napihnosti, trifazni 380V~480V (-15%~+10%)
Vgrajen C3 filter, učinkovito utišuje visoko-frekvenčne harmonike, ki jih ustvari frekvenčni pretvornik
Preprost in prijazen EMC dizajn prekida zemlje, ki učinkovito zmanjša iztekanje struje na podlago
Dizajn v obliki knjige, ki zmanjša prostornino tradicionalnega modela približno za 40%
Celotna naprava se lahko namesti ob skozi za shranjevanje prostora za namestitev.
Odličen nadzor zmogljivosti
Podpora za pogon in nadzor trifaznega asinhronnega motorja in trajnega magnetnega sinhronnega motorja
Podpora za V/F nadzor, odprt zanke vektorski nadzor, zaprt zanke vektorski nadzor
Velik začetni navor, OLVC: 0.5Hz/150%, CLVC: 0Hz/200%
Visoka zmogljivost pretirane naložbe, 150% imenovane struje 60s, 180% imenovane struje 10s
Enostavno in enostavno uporabno
Standardni stroj nad 132kW opremljen z LED tipkovnico, ki podpira zunanje vpeljavo
Tipkovnica do 110kW z možnostjo zunanje vpeljave, lahko opremljena z samostojno LED tipkovnico
Ob zagonu in ustavitvi frekvenčnega pretvornika se motor lahko nadzira z držanjem kočnice • Funkcija večhitrostnega nadzora, ki omogoča 16-hitrostno delovanje preko kontrolnega terminala
Funkcija nične servomehanizma, motor
Naključna globina PWM za izboljšanje trdosti motorja
Redundantni operacijski način kodera, ki se samodejno preklopi na OLVC operacijo ob nezadovoljivosti kodera
Razširitev raznolikosti
Podpora za več vrst kodebnih diskov, podpora za razširitvene kartice I/O terminala
Podpora za komunikacije Profibus-DP, Profinet IO, CANopen, Modbus-TCP/IP, EtherNet IP, Ethercat in druge
Samostojno in hitro uvajanje
Podpora za povezavo z ozadnim programskim vmesnikom, kar olajša postopke nastavljanja in vzdrževanja
Podpora za zapis dogodkov in zapis napak
Glavni parametri
project |
Specifications and technical data |
|
Power input and output |
Input voltage |
380V(-15%)~480V(+10%) three-phase |
Input power frequency |
50Hz/60Hz ±5% |
|
Input voltage imbalance |
≤3% |
|
Output voltage |
0V~input voltage |
|
Output frequency |
0~600Hz |
|
Mainly control performance |
Motor type |
Asynchronous motor, synchronous motor |
Control mode |
V/F, OLVC (Open-Loop Vector Control), CLVC (Closed-Loop Vector Control) |
|
speed regulation range |
1:10 V/F; 1:100 OLVC; 1:1000 CLVC |
|
Start torque |
OLVC:150%(0.5Hz);CLVC:200%(0Hz) |
|
Torque accuracy |
≤±5%, under vector control mode |
|
Torque pulsation |
≤±5%, under vector control mode |
|
Steady speed accuracy |
OLVC: 0.2%; CLVC :0.01% |
|
Torque response |
≤5ms, under vector control |
|
acceleration and deceleration time |
0.0s~3200.0s;0.0min~3200.0min |
|
Torque increase |
0.0%~30.0% |
|
Overload capacity |
150%1min/5min、180%10s/5min |
|
VF curve |
Straight type, multi-point type |
|
Input frequency resolution |
Digital setting 0.01Hz; Analog setting: Maximum frequency ×0.025% |
|
Dedicated features |
Anti-shake function |
Prevents accidents caused by large swings of the load during acceleration or deceleration |
Anti-loose rope protection |
Accelerate slowly and rise smoothly according to whether the weight is lifted |
|
Hook protection |
After holding the gate, it detects whether the heavy object is hooked, and an alarm is issued, and the motor hovers |
|
Holding the brake control |
Control the brake holding device and loosening the brake through the judgment of frequency, current, etc., to avoid accidents such as slipping |
|
Joystick zeroing detection |
Determine whether the joystick is in neutral or not |
|
Command reverse control |
When the brake control is effective, it supports holding the brake to stop during the forward and reverse switching process, or running directly to the reversal frequency without holding the brake |
|
Accelerate and deceleration switching |
Support 3 frequency switching points to switch acceleration and deceleration time |
|
Deceleration limit |
Realize simple positioning function, automatic optimization of deceleration time |
|
Voltage suppression |
Automatically change the frequency to stabilize the bus voltage to prevent fault reporting |
|
Overload protection |
Prevents excessive loads from damaging the equipment |
|
Low-speed operation protection |
The main application is not suitable for machines that run at low speed for a long time |
|
Load as you go |
Automatically adjust the operating speed according to load changes to improve work efficiency |
|
Macro parameters |
According to the on-site application scenario, different lifting mechanisms choose different lifting macros |
|
Basic features: |
acceleration and deceleration curves |
Straight line, S-curve |
Simple PLC, multi-terminal speed |
16 speed operation is achieved through the control terminal |
|
Master-slave control |
It can realize the master-slave synchronous control function of two or more motors |
|
Automatic voltage adjustment |
When the grid voltage changes within a certain range, it can automatically keep the output voltage constant |
|
Multi-motor switching |
Four sets of motor parameters, which can realize the switching control of four motors |
|
Overvoltage and overcurrent stall control |
Automatic current and voltage limit during operation to prevent frequent overcurrent and overvoltage tripping |
|
Power outage and restart |
After the frequency converter is powered off, when it is powered on again, it will automatically run after the set time is reached |
|
Fast current throttling |
Avoid frequent overcurrent failures of the frequency converter |
|
Power input and output |
Frequency setting method |
Operation panel given, UP/DOWN terminal, multi-speed give, terminal pulse given, communication |
Analog input terminals |
AI1、AI2:0V~10V/ 0 (4)mA~20mA |
|
Digital input terminals |
DI1-DI5, 5 programmable digital inputs, optocoupler-isolated, drain/source compatible inputs |
|
The DI5 supports high-speed pulse input with a maximum input frequency of 100kHz |
||
Digital output terminals |
open-circuit collector output; Output Voltage Range: 0V~24V; Current load capacity: 50mA |
|
DO1 supports high-speed pulse output, maximum output frequency: 100kHz |
||
Analog output terminals |
1 way 0V~10V/0(4)mA~20mA |
|
Relay output |
1 contact type: FormC normally open + normally closed |
|
communication |
Communication protocol |
Modbus RTU (standard); Profibus-DP, Profinet IO, CANopen, Modbus TCP/IP, Ethercat, EtherNet/IP (optional) |
Usage environment |
altitude |
no derating is required within 1000 meters above sea level; At an altitude of 1000 meters ~ 3000 meters, the current must be reduced by 1% for every 100 meters of elevation |
Ambient temperature |
-25°C~+40°C (40°C to 55°C derating is allowed) |
|
humidity |
15%~95%, no condensation |
|
vibration |
0.75~110kW is the 3M3 standard, 2Hz≤f<9Hz, displacement 1.5mm, 9Hz≤f<200Hz, acceleration 5m/s2 |
|
132kW~400kW is the 3M5 standard, 2Hz≤f<9Hz, displacement 3mm, 9Hz≤f<200Hz, acceleration 10m/s2 |
||
Storage temperature |
−40°C~+70°C |
|
Place of use |
Indoors, there is no direct sunlight, no flammable and corrosive gases, liquids and conductive particles |
|
Options: |
code disk card, communication expansion card, I/O terminal expansion card |
|
Protection function |
Short circuit, overcurrent, overload, overvoltage, undervoltage, phase loss, overheating, external faults, etc |
|
Installation method: |
Loading machines and containers |
|
Protection level |
IP20 |
|
Cooling method |
Air cooling |
|