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Power Frequency Inverter(GTYT Tower-type) – Remicgera

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Power Frequency Inverter(GTYT Tower-type)

  • Rated power:8-30KW
  • Conversion time:T≤5ms
  • Inverter efficdieney:97%
  • Frequency:50Hz±0.1%
  • work environment:0-40℃

DESCRIPTION

The inverter has a built-in mppt solar charging controller, which can adapt to all kinds of bad weather and has multiple protections.

Products characteristic:

● The inverter adopts MCU microprocessor fully digital SPWM controltechnology,with pure sine wave output.
● Perfect protection functions for input overvoltage and undervoltage,output overvoltage and undervoltage,over temperature,overload,and short circuit.
● Adopt high-power IGBT module,with strong power output.
● Unique dynamic current loop control technology,more stable loadcapacity
● High efficiency,low noise,environmental protection and energyconservation.
● Super load carrying capacity,suitable for capacitive,resistive,inductive,● Automatic switching,enabling unattended operation.and mixed loads.full load startup
● Stable performance,safety and reliability,and ultra-long service life.function and mobile phone short message function.
● Strong overload capacity and impact resistance,capable of withstanding ● With RS232 or USB communication interface or remote communication
● Static switch SCR switching control,zero delay switching.
● Built-in solar charging controller for higher charging efficiency andconvenience.

Product parameters

mode

HYGTYT8K~HYGTYT30K

Rated capacity

8-30KW

Instantaneous power

3 times

DC input

Battery voltage

96/192V(8-12K)192/240/360V(15-30K)

Voltage range

82.4-136(96V);164.8-272(192V);206-340(240V);309-510(360V)

Number of batteries

12V batter:8/16/20/30

Battery type

Maintenance-free lead-acid batteries

AC input

Number of phases

uniphase

Frequency

50Hz±10%

AC input

110(95-135V)/220(170-265V)AC(L+N+G)(Optional)

AC output

110(95-135V)/220(170-265V)AC(L+N+G)(Optional)

charge

Floating charge voltage

DC96V:116V/DC192V:232V     /DC240V:290V     /DC360V:435V

Overimpulse voltage protection

DC96V:124V/DC192V:248V     /DC240V:310V     /DC360V:465V

Charging current

10-20A Adjustable(customizable high current)

controller

Rated voltage

DC96V/DC192V/DC240V/DC360V/DC384V

PV input voltage

DC96V:132V /DC192V:264V/DC240V:328V/DC360V:495V/DC384V:528V(Input maximum voltage)

Charging voltage

Need to be pasted

Maximum charging current

50-100A

Protection function

Overcharge,over discharge,overload,low voltage,short circuit,reverse connection

Inverter output

Inverter output

110/220AC(L+N+G)±1%

Frequency

50Hz±0.1%

Conversion time

T≤5ms

Waveform distortion rate

≤3%(Linear load)

dynamic response

5%(0%~100%(load)

(CF)Peak coefficient

3:01

Inyerter efficiency

97%

interface

LCD liquid crystal display (3 operation modes can be set through the function keys on the LCD)

01 Mode:mains priority:(household inverter)

02 mode:mains priority:load detection with inverter output (load less than 10%,detected every 10 seconds)

03 mode:inverter priority (solar mode)

call the police

Buzzer alarm and LCD flashing alarm

Protection function

AC input overvoltage and undervoltage;DC input overvoltage and undervoltage;Overload and overtemperature of load;Output short circuit

Overload capacity

Overload>100-120%,hold the emergency beep for 60 seconds,(load shedding automatically returns to normal),and then shut down the machine;

Instantaneous shutdown when overload>150%

Communication method

USB/Remote monitoring (optional)

Protection level

IP21

anti surge capability

10/700US,5KVA;8/20US,20KA

noise

≤45db

Cooling method

Forced air cooling by fan

work environment

0-40℃

FAQs

  • How does an alkaline electrolytic bath function

    As a mature electrolysis technology, alkaline water electrolysis (AWE) plays a dominant role. The diaphragm of an electrolytic bath for alkaline water electrolysis to produce hydrogen is mainly composed of polymer materials, for the purpose of separating out gases. Both the anode and cathode are made of metal alloys, such as Ni-Mo. Water molecules are decomposed into H+ and OH- at the anode, and then H+ becomes hydrogen atoms afterwards with electrons, and further becomes hydrogen molecules (H2). OH-, under the effect of electric field between the anode and cathode, passes through the porous diaphragm to reach the anode, and then it produces one water molecule and one oxygen molecule after losing the electrons. The electrolytic bath is the core of the alkaline electrolysis device. A transformer and rectifier cabinet are needed in front of the bath to convert HV AC power into the DC power necessary for the electrolytic bath, so that electrolysis of water can be performed in the electrolytic bath.
  • Are there transparent modules from ABC?

    Because of the issue of light leakage in the gaps between he solar cells in double-glass modules, ABC generally uses glazed semi-tempered glass for the backside panel of the double-glass module, with a glazed layer formed into grids where the cells are placed. Because the requirement for accuracy and shading of the glazed layer on the back panel of the cell should be reduced, a certain amount of light leakage is allowed in the industry, without any effect on the quality and energy yield of the product. The inconsistency in light transmittance on the back panel of the single-glass module is caused by differences in light transmittance caused by variations in each model of the back panel of the module. However, when the quality of the back panel meets the certification criteria, there will be no effect on energy yield. Agents will preferentially load the same batch of modules and ship them to the downstream customers.
  • How does one operate and maintain ABC PARK?

    You can check out its operation status and make timely alarms on the mobile app. There's no need for scheduled duty shifts. It requires minimal O&M except for periodic cleaning because the equipment and materials used are made by top-tier, reliable companies.
  • How long is the service life of ABC BRIGHT products?

    The service life is 30 years, with lifetime power degradation not below 85%.

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