Best Quality 20kw DC96V Single Phase Pure Sine Wave Inverter

Best Quality 20kw DC96V Single Phase Pure Sine Wave Inverter

Energy Producers Ltd
Categories:
2026-04-05

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Product Description

Product Description

Power Frequency Pure Sine Wave Inverter Features:

1.Complete isolation-type inverter technology, noiseless output.

2.Adoption of advanced SPWM technology, pure sine wave output.

3.Dynamic current loop control technology to ensure inverter reliable operation.

4.Wide DC input voltage range.

5.Excellent EMC design.

6.Low output harmonic distortion (THD≤3%).

7.LED indicators for input voltage range, load power range, normal output & failure state.

8.Optional energy saving mode.

9.Extensive protections: reverse polarity, short-circuit, overload, under/over input voltage, over-temperature, and inverter’s inner fault identification protections.

10.Wide working temperature range (industrial level).
11.Continuous operation at full power.
Application
1. For desolate area like mountain, island, pasturing area, etc.
2. For transportation system like beacon light, traffic light, street light, etc.
3. For communication system: unattached operation microwave middle   station, optical
cable maintenance station, etc.
4. For photovoltaic power station, wind-solar power station, park charging station, family
   power house, factory power station, etc.
5. For solar building: has good business future.
6. For the new technology application project.


                                                                  
off grid solar power system
 

                                                              off grid wind turbine power system 

Detailed Photos

Product Parameters

 

20KW off grid single phase inverter technical parameters

Model NB96-20KDZ
DC input Input rated voltage 96VDC
Input rated current 231.5A
Input DC voltage allowing range 80-124VDC
AC Bypass Allow input voltage range 220 VAC ± 15%
Input rated current 90.9A
Bypass transfer time ≤40ms(4ms optional)
AC output Rated capacity 20KW
Output rated voltage and frequency 220 VAC 50Hz / 60Hz
Output rated current 90.9A
Output voltage accuracy 220 VAC± 2%
Output frequency accuracy 50Hz / 60Hz ± 0.05%
Wave Pure sine wave   (Isolation transformer)
THD. ≤3%(Linear load)
Power factor (PF) 1
Overload capacity 120%,10minutes,200%,10 second
Crest factor (CF) 3:1
Inverter efficiency >90%
Working Environment Dielectric strength 1500VAC,1minute
Noise (1m) ≤50dB
Ambient temperature -10ºC~+50ºC
Humidity 0~90%,No condensation
Altitude <3000m
Higher than 3000m rated power should be reduced
Production function Input reverse protection, input under-voltage protection, output overload protection, output short circuit protection, thermal protection
Communication interface RS485/WIFI/GPRS/Ethernet (optional)
Ac charger  (optional)
Battery, City grid (generator) priority (optional)
Size 550*1060*1300mm
Weight 250kg

20KW off grid three phase inverter technical parameters

Type NB216-20KSZ
DC input Input rated voltage 216VDC
Input rated current 102.9A
Input DC voltage allowing range 180-280VDC
AC bypass Allow input voltage range 380VAC± 15% VAC
Input rated current 30.4A
Bypass transfer time ≤100ms(4ms optional)
AC output Rated capacity 20KW
Output rated voltage and frequency Three phase 380VAC,50Hz/60HZ
Output rated current 30.4A
Output voltage accuracy 380VAC ± 2%
Output frequency accuracy 50Hz ± 0.05%
Wave Pure sine wave  (Isolation transformer)
THD. ≤3%(Linear load)
Power factor (PF) 1
Overload capacity 120%,10 minutes
Overcurrent capacity 200%,10 seconds
Crest factor (CF) 3:1
Inverter efficiency >92%
Working Environment Dielectric strength 1500VAC,1minute
Noise (1m) ≤50dB
Ambient temperature -10ºC~+50ºC
Humidity 0~90%, No condensation
Altitude <2000m
Higher than 2000m rated power should be reduced
Production function Input reverse protection, input under-voltage protection, output overload protection, output short circuit protection, thermal protection
Communication interface RS485/WIFI/GPRS/Ethernet (optional)
Ac charger  (optional)
Battery, City grid (generator) priority (optional)
Size 550×1050×1340mm
Weight 220KG

50KW off grid three phase inverter technical parameters

Type NB384-50KSZ
DC input Input rated voltage 384VDC
Input rated current 144.7A
Input DC voltage allowing range 320-480VDC
AC bypass Allow input voltage range 380VAC± 15% VAC
Input rated current 76A
Bypass transfer time ≤100ms(4ms optional)
AC output Output rated power 50KW
Output rated voltage and frequency Three phase 380VAC,50HZ
(Three phase four wire)
Output rated current 76A
Output voltage accuracy 380VAC ± 2%
Output frequency accuracy 50Hz ± 0.05%
Wave Pure sine wave  (Isolation transformer)
THD. ≤3%(Linear load)
Power factor (PF) 1
Overload capacity 120%,10 minutes
Overcurrent capacity Specifications

th style=”border:1px solid #ccc;padding:10px;background:#f5f5f5;text-align:left;font-size:13px;font-weight:bold;” >[‘Customization:’, ‘Available’]

th style=”border:1px solid #ccc;padding:10px;background:#f5f5f5;text-align:left;font-size:13px;font-weight:bold;” >[‘Nature of Source Flow:’, ‘Passive inverter’]

th style=”border:1px solid #ccc;padding:10px;background:#f5f5f5;text-align:left;font-size:13px;font-weight:bold;” >[‘Certification:’, ‘ISO9001, RoHS, CE’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Model’, ‘NB96-20KDZ’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘DC input’, ‘Input rated voltage’, ’96VDC’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input rated current’, ‘231.5A’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input DC voltage allowing range’, ’80-124VDC’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘AC Bypass’, ‘Allow input voltage range’, ‘220 VAC ± 15%’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input rated current’, ‘90.9A’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Bypass transfer time’, ‘≤40ms(4ms optional)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘AC output’, ‘Rated capacity’, ’20KW’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output rated voltage and frequency’, ‘220 VAC 50Hz / 60Hz’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output rated current’, ‘90.9A’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output voltage accuracy’, ‘220 VAC± 2%’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output frequency accuracy’, ’50Hz / 60Hz ± 0.05%’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Wave’, ‘Pure sine wavexa0xa0 (Isolation transformer)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘THD.’, ‘≤3%(Linear load)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Power factor (PF)’, ‘1’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Overload capacity’, ‘120%,10minutes,200%,10 second’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Crest factor (CF)’, ‘3:1’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Inverter efficiency’, ‘>90%’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Working Environment’, ‘Dielectric strength’, ‘1500VAC,1minute’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Noise (1m)’, ‘≤50dB’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Ambient temperature’, ‘-10ºC~+50ºC’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Humidity’, ‘0~90%,No condensation’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Altitude’, ‘<3000m Higherxa0thanxa03000m ratedxa0powerxa0shouldxa0bexa0reduced’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Production function’, ‘Input reverse protection, input under-voltage protection, output overload protection, output short circuit protection, thermal protection’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Communication interface’, ‘RS485/WIFI/GPRS/Ethernet (optional)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Ac charger’, ‘(optional)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Battery, City grid (generator) priority’, ‘(optional)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Size’, ‘550*1060*1300mm’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Weight’, ‘250kg’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Type’, ‘NB216-20KSZ’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘DC input’, ‘Input rated voltage’, ‘216VDC’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input rated current’, ‘102.9A’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input DC voltage allowing range’, ‘180-280VDC’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘AC bypass’, ‘Allow input voltage range’, ‘380VAC± 15% VAC’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input rated current’, ‘30.4A’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Bypass transfer time’, ‘≤100ms(4ms optional)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘AC output’, ‘Rated capacity’, ’20KW’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output rated voltage and frequency’, ‘Three phase 380VAC,50Hz/60HZ’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output rated current’, ‘30.4A’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output voltage accuracy’, ‘380VAC ± 2%’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output frequency accuracy’, ’50Hz ± 0.05%’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Wave’, ‘Pure sine wavexa0 (Isolation transformer)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘THD.’, ‘≤3%(Linear load)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Power factor (PF)’, ‘1’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Overload capacity’, ‘120%,10 minutes’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Overcurrent capacity’, ‘200%,10 seconds’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Crest factor (CF)’, ‘3:1’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Inverter efficiency’, ‘>92%’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Working Environment’, ‘Dielectric strength’, ‘1500VAC,1minute’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Noise (1m)’, ‘≤50dB’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Ambient temperature’, ‘-10ºC~+50ºC’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Humidity’, ‘0~90%, No condensation’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Altitude’, ‘<2000m Higherxa0thanxa02000m ratedxa0powerxa0shouldxa0bexa0reduced’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Production function’, ‘Input reverse protection, input under-voltage protection, output overload protection, output short circuit protection, thermal protection’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Communication interface’, ‘RS485/WIFI/GPRS/Ethernet (optional)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Ac charger’, ‘(optional)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Battery, City grid (generator) priority’, ‘(optional)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Size’, ‘550×1050×1340mm’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Weight’, ‘220KG’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Type’, ‘NB384-50KSZ’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘DC input’, ‘Input rated voltage’, ‘384VDC’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input rated current’, ‘144.7A’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input DC voltage allowing range’, ‘320-480VDC’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘AC bypass’, ‘Allow input voltage range’, ‘380VAC± 15% VAC’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Input rated current’, ’76A’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Bypass transfer time’, ‘≤100ms(4ms optional)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘AC output’, ‘Output rated power’, ’50KW’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output rated voltage and frequency’, ‘Three phase 380VAC,50HZ(Three phase four wire)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output rated current’, ’76A’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output voltage accuracy’, ‘380VAC ± 2%’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Output frequency accuracy’, ’50Hz ± 0.05%’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Wave’, ‘Pure sine wavexa0 (Isolation transformer)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘THD.’, ‘≤3%(Linear load)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Power factor (PF)’, ‘1’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Overload capacity’, ‘120%,10 minutes’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Overcurrent capacity’, ‘200%,10 seconds’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Crest factor (CF)’, ‘3:1’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Inverter efficiency’, ‘>92%’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Working Environment’, ‘Dielectric strength’, ‘1500VAC,1minute’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Noise (1m)’, ‘≤50dB’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Ambient temperature’, ‘-10ºC~+50ºC’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Humidity’, ‘0~90%, No condensation’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Altitude’, ‘<2000m Higherxa0thanxa02000m ratedxa0powerxa0shouldxa0bexa0reduced’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Production function’, ‘Input reverse protection, input under-voltage protection, output overload protection, output short circuit protection, thermal protection’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Communication interface’, ‘RS485/WIFI/GPRS/Ethernet (optional)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Ac charger’, ‘(optional)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Battery, City grid (generator) priority’, ‘(optional)’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Size’, ‘630*1310*1573mm’]

td style=”border:1px solid #ccc;padding:8px;font-size:12px;” >[‘Weight’, ‘430KG’]

Key Features

  • Manufacturer/Factory & Trading Company: Manufacturer/Factory & Trading Company