Használati útmutató Solplanet ASW12KH-T1

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ASW riH-T1 Se es
User Manual
ASW8KH-T1 / 10KH-T1 / 12KH-T1
Three phase Hybrid Inverter User Manual
2
Catalog
1 Notes this Manual on ............................................................................................................................................. 5
1.1 Scope Validity of .......................................................................................................................................... 5
1.2 Target Group ................................................................................................................................................. 5
1.3 Symbols Used ................................................................................................................................................ 5
2 Safety ........................................................................................................................................................................... 5
2.1 Important Safety Instructions .................................................................................................................. 5
2.2 Battery Safety Instructions ........................................................................................................................ 8
2.3 Notes this Manual Explanation of Symbol on ................................................................................... 8
2.4 CE Directives .................................................................................................................................................. 9
3 Introduction ............................................................................................................................................................... 9
3.1 Basic features ................................................................................................................................................. 9
3.2 System Diagram ........................................................................................................................................... 9
3.3 System Diagram ........................................................................................................................................ 10
3.4 Work Modes ............................................................................................................................................... 11
3.4.1 Work modes: Self-consumption mode..................................................................................................................... 11
3.4.2 Work modes: Custom mode ......................................................................................................................................... 12
3.4.3 Work modes: Reserve power mode ........................................................................................................................... 12
3.4.4 Off-grid mode ....................................................................................................................................................................13
3.5 Dimension .................................................................................................................................................... 13
3.6 Terminals inverter of PV ......................................................................................................................... 14
4 Technical Data ........................................................................................................................................................ 15
5 Installation ............................................................................................................................................................... 17
5.1 Check for Physical Damage ................................................................................................................... 17
5.2 Packing List ................................................................................................................................................. 17
5.3 Mounting ..................................................................................................................................................... 18
5.3.1 Installation Guide ............................................................................................................................................................. 18
5.3.2 Space Requirement .......................................................................................................................................................... 19
5.3.3 Mounting Steps ................................................................................................................................................................. 19
6 Electrical Connection ........................................................................................................................................... 20
6.1 Grid Connection ........................................................................................................................................ 20
6.2 PV connection ............................................................................................................................................ 21
6.3 BACKUP load Connection ...................................................................................................................... 23
6.4 Battery Connection ................................................................................................................................... 24
6.4.1 Battery breaker .................................................................................................................................................................. 24
6.4.2 Battery connection diagram ......................................................................................................................................... 24
Three phase Hybrid Inverter User Manual
3
6.4.3 BMS PIN Definition .......................................................................................................................................................... 24
6.4.4 Battery power cable Connection Steps .................................................................................................................... 25
6.5 CT Connection ............................................................................................................................................ 25
6.6 DRM Connection ....................................................................................................................................... 26
6.7 Wi- Connection Fi ...................................................................................................................................... 26
6.8 Inverter Manipulation .............................................................................................................................. 26
6.9 Instructions for LED Indicator ............................................................................................................... 27
7 Fault diagnosis and solutions ........................................................................................................................... 27
Contact information ................................................................................................................................................ 31
Three phase Hybrid Inverter User Manual
4
For the latest documents all supported languages, please visit: in
www.solplanet.net
Read this entire document before installation.
PRODUCT SPECIFICATIONS
All specifications and descriptions contained in this document are verified to be accurate at the time of
printing. However, because continuous improvement is a goal at SOLPLANET, we reserve the right to make
product modifications at any time.
The images provided in this document are for demonstration purposes only. Depending on product version and
market region, details may appear slightly different.
ERRORS OR OMISSIONS
To communicate any inaccuracies or omissions in this manual, send an email to
service@solplanet.net
ELECTRONIC DEVICE: NOT THROW AWAY DO
Proper Disposal of batteries is required. Refer to your local codes for disposal requirements
MADE IN CHINA
Copyright AISWEI Technology (Shanghai) Co., Ltd. ©2022. All rights reserved.
No part of this document may be reproduced or transmitted in any form or by any means without prior written
consent AISWEI Technology (Shanghai) Co., Ltd. of
Trademarks and Permissions
and other AISWEI trademarks are trademarks AISWEI Technology (Shanghai) Co., Ltd. of
All other trademarks and trade names mentioned in this document are the property their respective holders. of
The information in this document is subject to change without notice. Every effort has been made in the
preparation of this document to ensure accuracy of the contents, but all statements, information, and
recommendations this document do not constitute a warranty of any kind, express or implied. in
All other trademarks contained in this document are the property of their respective owners and third use herein
does not imply sponsorship or endorsement of third products or services. The unauthorized use of a ny
trademark displayed this document or on the product is strictly prohibited. in
Three phase Hybrid Inverter User Manual
5
1 Notes this Manual on
1.1 Scope Validity of
This manual is an integral part of solplanet three phase hybrid inverter, it describes the assembly, installation,
commissioning, maintenance and other information of the product. Please read it carefully before operating.
The descriptions in this manual a applicable to the following models inverters: re of
ASW08KH-T1
ASW10KH-T1
ASW12KH-T1
1.2 Target Group
This manual is for quali ed electricians. The tasks described in this manual only can be performed by quali fi fied
electricians.
1.3 Symbols Used
The following types of safety instructions and general information appear this document in as described below:
Indicates a hazard with a high level risk which, of if not avoided, will result
in death or serious injury.
Indicates a hazard with a medium level risk which, of if not avoided, could
result death in or serious injury.
Indicates a hazard with a low level risk which, of if not avoided, could result
in minor moderate injury or
Indicates a potentially hazardous situation which, if not avoided, could
result in equipment damage, data loss, performance deterioration, or
unanticipated results. Notice used address practices not related is to to
personal injury.
Supplements the important information in the main text. NOTE is used to
address information not related to personal injury, equipment damage, and
environment deterioration.
2 Safety
2.1 Important Safety Instructions
Danger due high voltages to life to in the inverter! All work must carried out quali electrician.be by ed
The appliance is not to be used by children or persons with reduced physical sensory or mental capabilities,
or of lack experience and knowledge, unless they have been given pervision instruction.su or
Danger burn injuries due hot enclosure parts!of to
During operation, the upper lid the enclosure and the enclosure body may become hot.of
Possible damage to health as a result the e ects radiation!of ff of
Do not stay closer than 20 cm inverter for any length time.to of
Three phase Hybrid Inverter User Manual
6
Grounding the PV generator.
Comply with the local requirements for grounding the PV modules and the PV generator. It is recommends
connecting the generator frame and other electrically conductive surfaces in a manner which ensures
continuous conduction and ground these order optimal protection system and persons.in to have of
Ensure input DC voltage ≤Max. DC voltage. Overvoltage may cause permanent damage to inverter or other
losses, which will not be included warranty!in
Authorized service personnel must disconnect both AC and DC power from inverter before attempting any
maintenance or cleaning working any circuits connected inverter.or on to
Do not operate the inverter when the device running.is
Risk electric shock!of
Prior to the application, please read this section carefully to ensure correct and safe application. Please keep
the user manual properly.
Accessories only together with the inverter shipment are recommended. Otherwise, may result in a risk of
fire, electric shock, or injury to person.
Make sure that existing wiring is in good condition and that wire not undersized.is
Do not disassemble any parts of inverter which are not mentioned in installation guide. It contains no user-
serviceable parts. See Warranty for instructions on obtaining service. Attempting to service the inverter
yourself may result a risk electric shock or and will void your warranty.in of re
Keep away from ammable, explosive materials avoid to re disaster.
The installation place should away from humid corrosive substance.be or
Authorized service personnel must use insulated tools when installing working with this equipment.or
PV modules shall have IEC class A rating.an 61730
Never touch either the positive or negative pole of PV connecting device. Strictly prohibit touching both of
them the same time.at
The unit contains capacitors that remain charged to a potentially lethal voltage after the MAINS, battery and
PV supply has been disconnected.
Hazardous voltage will present for 5 minutes after disconnection from power supply.up to
CAUTION-RISK of electric shock from energy stored in capacitor, never operate on the inverter couplers, the
MAINS cables, Battery cables, PV cables or the PV generator when power is applied. After switching o the
PV, battery and Mains, always wait for inutes let the intermediate circuit capacitors discharge before5m to
Three phase Hybrid Inverter User Manual
7
unplugging battery plug and MAINS couplers. DC, in
When accessing the internal circuit of inverter, it is very important to wait 5 minutes before operating the
power circuit or demounting the electrolyte capacitors inside the device. Do not open the device
beforehand since the capacitors require time suciently discharge!
Measure the voltage between terminals UDC+ and UDC- with a multi-meter (impedance at least 1M ohm)
to ensure that the device is discharged before beginning work (35VDC) inside the device.
Surge protection devices (SPDs) for PV installation
Over-voltage protection with surge arresters should provided when the be PV power system installed.is
Lightning will cause a damage either from a direct strike from surges due a nearby strike.or to
Induced surges are the most likely cause of lightning damage in majority or installations, especially in rural
areas where electricity is usually provided by long overhead lines. Surge may be included on both the PV
array conduction and the AC cables leading to the building.
Specialists lightning protection should consulted during the end use application.in be
Using appropriate external lightning protection, the effect of a direct lightning strike into a building can be
mitigated a controlled way, and the lightning current can in be discharged into the ground.
Installation of SPDs to protect the inverter against mechanical damage and excessive stress include a surge
arrester in case of a building with external lightning protection system (LPS) when separation distance is
kept.
To protect the DC system, surge suppression device (SPD type2) should be tted at the inverter end of the
DC cabling and at the array located between the inverter and the PV generator, if the voltage protection
level (VP) of the surge arresters is greater than 1100V, an additional SPD type 3 required for surge
protection for electrical devices.
To protect the AC system, surge suppression devices (SPD type2) should be tted at the main incoming
point of AC supply (at the consumer’s cutout), located between the inverter and the meter/distribution
system; SPD (test impulse D1) for signal according to EN -in 61632 1.
All DC cables should be installed to provide as short a run as possible, and positive and negative cables of
the string or main DC supply should be bundled together.
Avoiding the creation of loops in the system.
Spark gap devices are not suitable to be used in DC circuits once conducting, they won’t stop conducting
until the voltage across their terminals is typically more than 30 volts.
Anti-Islanding Effect
Islanding e ect is a special phenomenon that grid-connected PV system still supply power to the nearby ff
grid when the voltage loss is happened in the power system. It is dangerous for maintenance personnel and
the public.
PE Connection and Leakage Current
High leaka current! ge
Three phase Hybrid Inverter User Manual
8
Earth connection essential before connecting supply.
Incorrect grounding can cause physical injury, death or equipment malfunction and increase
electromagnetic.
Make sure that grounding conductor adequately sized is as required safety regulations. by
Do not connect the ground terminals of the unit in series in case of a multiple installation. This product
can cause current with a d.c component, where a residual current operated protective (RCD) or
monitoring (RCM) device is used for protection in case of direct or indirect contact, only an RCD or
RCM type B is allowed the supply side of this product. of on
2.2 Battery Safety Instructions
ASW H-T1 Series hybrid inverter should be worked with high voltage battery, for the speci c parameters such as
battery type, nominal voltage and nominal capacity etc.
As accumulator batteries may contain potential electric shock and short-circuit current danger, to avoid
accidents that might thus resulted, the following warnings should observed during battery replacement: be be
1) Do not wear watches, rings similar metallic items. or
2) Use insulated tools.
3) Put rubber shoes and gloves. on
4) Do not place metallic tools and similar metallic parts on the batteries.
5) Switch o load connected the batteries before dismantling battery connection terminals. ff to
6) Only personal with proper expertise can carry out the maintenance accumulator batteries. of
2.3 Notes this Manual Explanation on of Symbol
This section gives an explanation of all the symbols shown on the inverter and the label.
Symbols the Type Label on
Symbol
Explanation
CE Mark
The inverter complies with the requirements the applicable guidelines. of CE
TUV certi ed.
RCM Mark
Certification.
Beware hot surface. of
The inverter can become hot during operation. Avoid contact during
operation.
Danger high voltages. of
Danger due high voltages the inverter! to life to in
Risk electric shock! of
Observe enclosed documentation
The inverter cannot disposed together with the household waste. Disposal information can be be
found the enclosed documentation. in
Three phase Hybrid Inverter User Manual
9
Do not operate this inverter until it is isolated from battery, mains and -site generation on PV
suppliers.
Danger due high voltage. to life to
There residual voltage existing is in the inverter after powering o . ff
which needs 5 min to discharge.
Wait 5 min before open the upper lid the DC you or lid.
2.4 Directives CE
This chapter follows the requirements of the European low voltage directives, which contains the safety
instructions and conditions of acceptability for the endues system, which you must follow when installing,
operating and servicing the unit.
The Grid connected inverter meets the requirement stipulated in Low Voltage Directive (LVD) 2014/35/EU and
Electromagnetic Compatibility (EMC) Directive 2014/30/EU. The grid connected inverter leave the factory
completely connecting device and ready for connection to the mains and PV supply, the unit shall be installed in
accordance with national wiring regulations. Compliance with safety regulations depends upon installing and
con guring system correctly, including using the speci wires. fi fied
The system must be installed only by professional assemblers who are familiar with requirements for safety and
EMC. The assembler is responsible for ensuring that the end system complies with all the relevant laws in the
country where it is to be used.
3 Introduction
3.1 Basic features
ASW H-T1 Series hybrid inverter is a high-quality inverter which can convert solar energy to AC energy and store
energy into battery.
The inverter can be used to optimize self-consumption, store in the battery for future use or feed into public
grid. Work mode depends on PV energy and user’s preference. It can provide power for emergency use during
the grid lost by using the energy from battery and inverter generated from PV.
3.2 System Diagram
ASW H-T1 Series hybrid inverter is designed with two BACKUP interface for customer to choose based on the
local rules.
ASW H-T1 Series hybrid inverter applies to the wiring rules that requires the Live line and Neutral line of BACKUP
must be disconnected w the Live line and Neutral line grid (applies to most countries). ith of
Three phase Hybrid Inverter User Manual
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The wiring diagram is for reference only, and the complete electrical connection shall meet the
requirements local regulations.of
Please control the home loads, and make sure it’s within the “BACKUP output rating” under BACKUP
mode, otherwise the inverter will shut down with an “overload fault” warning.
Please con with the mains grid operator whether there are any special regulations for grid connection.rm
3.3 System Diagram
Three phase Hybrid Inverter User Manual
11
The arrow on the points the power grid, CT to as shown.
Do not misconnect the phase sequence.
Backup load is connected Backup1 to or Backup2 port.
Because the length of CT line is limited, the inverter needs to be installed near the parallel dot,
otherwise the anti-countercurrent function cannot be used.
Please control the home loads, and make sure it’s within the “BACKUP output rating” under
BACKUP mode, otherwise the inverter will shut down with an warning.“overload fault”
Please con rm with the mains grid operator whether there are any special regulations for grid
connection.
BACKUP1 for very important load, BACKUP2 for important or normal load.
When there is a power outage or when there is no power grid
If the battery does not report low voltage or undervoltage alarm, the inverter will supply power to
both BACKUP1 and BACKUP2
If the battery generates a low voltage or undervoltage alarm, the inverter only supplies power to
BACKUP1
3.4 Work Modes
Inverter provides multiple work modes based on different requirements.
3.4.1 Work modes: Self-consumption mode
3.4.1.1 When PV, Grid, Battery available is
1) Solar energy provides power to the loads as rst priority, if solar energy is su cient power all connected loads, to
solar energy excess power will provide charge battery, and then redundant power will feed to to
grid.
2) Solar energy provides power the loads rst , solar energy and battery are not power all to as priority if sufficient to
connected loads, utility energy (Main Grid) will supply power the loads with solar energy the same time.to at
3.4.1.2 When PV, Grid available (without battery): is
3) if is Solar energy provides power the loads priority, to as rst solar energy cient, the excess power will su
feed grid. to
4) if is Solar energy provides power the loads priority, to as rst solar energy not cient power all suto
connected loads, Grid energy will supply power the loads the same time. to at
Three phase Hybrid Inverter User Manual
12
3.4.2 Work modes: Custom mode
When PV, Grid, Battery available: is
5) On charge time, solar energy will charge battery rst priority. The excess energy will supply power as to
the loads. solar energy If is su
cient supply loads and charge battery, and there's still some extra to if
energy, then the excesspower will feed the power grid to
6) On charge time, solar energy will charge battery as rst priority. Then the excess solar energy will supply
power to loads. If solar energy is not su cient to charge battery and supply loads, grid will supply all the ffi
connected loads with solar energy together.
7) On discharge time, solar energy provides power to the loads as priority, if solar energy is su cient to rst
supply loads, and if there's still some extra energy from solar energy, then the excess power and battery
will deliver the power the grid the same time. to at
8) In the period of charge discharge, the solar power supply loads rst priority, excess energy the no or at to
grid.
When Grid, Battery available (PV disconnected) is is
9) On charge time, grid will charge battery and supply power the connected loads the same time. to at
10) On discharge time, if load power is less than battery power, battery will supply power to loads as rst
priority, the excess power will feed grid. be to
11) On discharge time, if load power is more than battery power, battery and grid will supply power to the
loads at the same time.
3.4.3 Work modes: Reserve power mode
3.4.3.1 When PV, Grid, Battery available: is
12) Solar energy will charge battery as rst priority, if solar energy is excess, the excess power will supply load. If
there's still some extra energy, then the excess power will feed the power to grid.
Three phase Hybrid Inverter User Manual
13
13) Solar energy will charge battery a rst priority, if solar energy is excess, the excess power will supply load. If s
solar energy not cient is suto charge battery and supply loads, grid will supply power loads. to
3.4.3.2 2. When Grid, Battery is available (PV disconnected) is
14) Grid will supply power load and charge battery the same time. to at
If set anti-Reverse function allowable, once on the work mode of Self- use, Peak shift, battery priority, the system
will not feed power to grid.
3.4.4 Off-grid mode
3.4.4.1 When PV, Battery available Grid disconnected): is is
15) if is A. Solar energy provides power the loads priority, to as rst solar energy cient power all suto
connected loads, solar energy will provide charge battery. to
16) B. Solar energy provides power to the loads as priority, solar energy is not cient power all rst if suto
connected loads, battery energy and solar energy will supply power the loads the same time. to at
3.5 Dimension
Unit: mm
Three phase Hybrid Inverter User Manual
14
3.6 Terminals of PV inverter
Description
PV string 1 positive input
PV string 1 negative input
PV string 2 positive input
PV string 2 negative input
This function reserved is
WI- Stick interface FI
Battery Positive input
Battery negative input
Upgrading software Ports
Function temporarily retained
Connect (current transformer) to CT
dry contact
BMS communication to Battery
CAN communication
NTC detection
Grid line A phase
Grid line B phase
Grid line C phase
Grid line null line
Grid line ground electrode
A phase
B phase
C phase
null line
ground electrode
Backup1 line A phase
Backup1 line B phase
Backup1 line C phase
Backup1 line null line
Backup1 line ground electrode
Backup2 line A phase
Backup2 line B phase
Backup2 line C phase
Backup2 line null line
Three phase Hybrid Inverter User Manual
15
Description
Backup2 line ground electrode
Quali electrician will ed be required for the installation.
4 Technical Data
Model
ASW08kH- T1
ASW10kH- T1
ASW12kH- T1
PV Input
Max. array power PV
12 kWp STC
15 kWp STC
18 kWp STC
Max. input voltage
1000 V
MPP voltage range
180 V ~ 850 V
Min. input voltage / start voltage
125V/180V
No. independent MPPT of
trackers / strings per MPPT input
2 / (1/1)
Max. input current per MPP
tracker
13 A
Max. short-circuit current per
MPP tracker
25A
Battery
Battery type
Lithium-ion
Battery voltage range
125 V ~ 600 V
Max. charging current / Max.
discharging current
50 50A A /
Rated. charging current / Rated.
discharging current
40A/40A
AC output
Nominal AC voltage
3W+N+PE, / 220 380 V; 230 / 400 240 415 V; / V
AC voltage range
360V~440V
Rated grid frequency AC
50 / Hz 60 Hz
AC grid frequency range
50 / Hz±5Hz 60 Hz±5Hz
Rated active power
8 kW
10 kW
12 kW
Rated apparent power
8 kVA
10 kVA
12 kVA
Max. apparent power
8.8 kVA
11 kVA
13.2 kVA
Rated grid output Current
(@400V)
11.6 A
14.5 A
17.4 A
Max. grid output current
12.7A
15.9A
19.1A
Harmonics THDi Nominal (@
power)
< 3%
AC input
Rated grid voltage
3W+N+PE, / 220 380 V; 230 / 400 240 415 V; / V
Rated grid frequency
50Hz / 60Hz
Rated apparent power
16 kW
20 kW
24 kW
Max. input apparent power from
grid
17.6 kVA
22 kVA
26.4 kVA
Rated input current from grid
23.1 A
28.9A
34.7 A
Three phase Hybrid Inverter User Manual
16
Model
ASW08kH- T1
ASW10kH- T1
ASW12kH- T1
Max. input current from grid
25.5 A
31.8A
38.2 A
BACKUP
output
Nominal output voltage
3W+N+PE, / 220 380 V; 230 / 400 240 415 V; / V
Nominal output frequency
50 / Hz 60 Hz
Rated apparent power
8 kVA
10 kVA
12 kVA
Max. output apparent power
8 kVA
10 kVA
12 kVA
Peak output apparent power
8.8kVA
11kVA
13.2kVA
Rated Current (@400V)
11.6 A
14.5 A
17.4 A
Max. output current
12.7A
15.9A
19.1A
Max. switch time
≤20 ms
Output THDv (@ Linear load)
<2%
Efficiency
MPPT efficiency
≥99.5%
Max efficiency
97.90%
98.20%
98.20%
Euro efficiency
97.20%
97.50%
97.50%
Max. battery load efficiency to
96.50%
96.50%
96.60%
Safety
protection
DC-side disconnection device
PV string- / Battery input reverse
polarity protection
● ● /
All-pole sensitive residual current
monitoring unit
Anti-islanding protection
AC output over current
protection
AC output short circuit current
protection
AC over voltage protection
Protection class (as per IEC
62109 1)-
I
overvoltage category (as per IEC
62109 1)-
AC: III; DC: II
General
data
Power factor rated power / at
adjustable displacement
≥0.99 / 0.8 leading 0.8 lagging to
Dimensions / H / (W D)
530 560 / / 220 mm
Device weight
29 kg
Installation
Wall-mounted
Operating temperature range
- 25 °C~+60 °C
Noise emissions (typical)
< dB(A) 35
Standby consumption
< 3 W
Cooling concept
Natural convection
Ingress protection rating (as per
IEC 60529)
IP65
Climatic category (according to
IEC -3- 60721 4)
4K4H
Three phase Hybrid Inverter User Manual
17
Model
ASW08kH- T1
ASW10kH- T1
ASW12kH- T1
Max. permissible value for relative
humidity (non-condensing)
0~95%
Max. operating altitude
4000m (>2000m power derating)
Country of Manufacture
THE PEOPLE'S REPUBLIC OF CHINA
Features
Inverter topology (Solar/ battery)
Transformer less / Transformer less
User interface
LED & App
Communication with BMS
RS485 / CAN
Communication with meter
RS485
Communication with portal
WIFI stick
Integrated power control / Zero
export control
● ● /
Standard
Compliance
Grid
EN - RfG 3 50549 1,
Safety
EN EN - 62109 1, 62109-2
EMC
IEC 61000 1/ 2/ 3/ 4,-6- - - - IEC -3- IEC61000-3- 61000 11,
12
5 Installation
5.1 Check for Physical Damage
Make sure the inverter is intact during transportation. If there is any visible damage, such as cracks, please
contact your dealer immediately.
5.2 Packing List
Open the package and take out the product, please check the accessories rst. The packing list shown as below.
Three phase Hybrid Inverter User Manual
18
D
E
F
G
Description
Inverter
Bracket
Expansion screws and pan-head screws
PV connectors (2*positive, 2*negative)
WIFI Stick
User manual
Current transformer
5.3 Mounting
5.3.1 Installation Guide
ASW H-T1 Series hybrid inverter is designed for outdoor installation (IP 65). Make sure the installation site meets
the following conditions:
1) in Not direct sunlight.
2) in Not areas where highly flammable materials are stored.
3) in Not potential explosive areas.
4) in Not the cool air directly.
5) Not near the television antenna or antenna cable.
C
B
A
Three phase Hybrid Inverter User Manual
19
6) Not higher than altitude of about 2000m above sea level.
7) in Not environment precipitation of or humidity ( 95%).
8) Under good ventilation condition.
9) The ambient temperature the range in of -20℃ to +60℃.
10) The slope the wall should of be within ± 5°.
11) The wall hanging the inverter should meet conditions below:
solid brick/concrete, or strength equivalent mounting surface.
Inverter must be supported or strengthened if the wall’s strength isn’t enough (such as
wooden wall, the wall covered by thick layer decoration)of
Please AVOIDE direct sunlight, rain exposure, snow laying during installation and operation.up
5.3.2 Space Requirement
Position
minimum spacing
Left
300mm
Right
300mm
Top
300mm
Bottom
300mm
5.3.3 Mounting Steps
5.3.3.1 Tools required for installation.
Installation tools: crimping pliers for binding post and RJ 45, screwdriver, manual wrench etc.
Step Screw the wall bracket 1: on the wall

Termékspecifikációk

Márka: Solplanet
Kategória: nincs kategorizálva
Modell: ASW12KH-T1

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